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EP2428129B1 - Protective helmet; method for preventing or reducing head injury - Google Patents

Protective helmet; method for preventing or reducing head injury Download PDF

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Publication number
EP2428129B1
EP2428129B1 EP11007341A EP11007341A EP2428129B1 EP 2428129 B1 EP2428129 B1 EP 2428129B1 EP 11007341 A EP11007341 A EP 11007341A EP 11007341 A EP11007341 A EP 11007341A EP 2428129 B1 EP2428129 B1 EP 2428129B1
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EP
European Patent Office
Prior art keywords
insert
protective helmet
head
helmet
shell
Prior art date
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Active
Application number
EP11007341A
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German (de)
French (fr)
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EP2428129A2 (en
EP2428129A3 (en
Inventor
Oliver Schimpf
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Individual
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Individual
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Publication of EP2428129A2 publication Critical patent/EP2428129A2/en
Publication of EP2428129A3 publication Critical patent/EP2428129A3/en
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Publication of EP2428129B1 publication Critical patent/EP2428129B1/en
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Classifications

    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B3/00Helmets; Helmet covers ; Other protective head coverings
    • A42B3/04Parts, details or accessories of helmets
    • A42B3/06Impact-absorbing shells, e.g. of crash helmets
    • A42B3/062Impact-absorbing shells, e.g. of crash helmets with reinforcing means
    • A42B3/063Impact-absorbing shells, e.g. of crash helmets with reinforcing means using layered structures
    • A42B3/064Impact-absorbing shells, e.g. of crash helmets with reinforcing means using layered structures with relative movement between layers
    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B1/00Hats; Caps; Hoods
    • A42B1/04Soft caps; Hoods
    • A42B1/08Soft caps; Hoods with protection against blows
    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B3/00Helmets; Helmet covers ; Other protective head coverings
    • A42B3/04Parts, details or accessories of helmets
    • A42B3/10Linings
    • A42B3/12Cushioning devices
    • A42B3/125Cushioning devices with a padded structure, e.g. foam
    • A42B3/128Cushioning devices with a padded structure, e.g. foam with zones of different density

Definitions

  • the invention relates to a protective helmet, according to the preamble of claim 1, and a method for reducing or preventing a head injury, according to the preamble of claim 19.
  • protective helmets which serve to protect the head of a wearer from injury. These protective helmets are adapted to the human head, which seen from above an oval shape, which can be distinguished in a "round oval” shape and a "long oval” shape. Conventional safety helmets take this form to be similar to the human head, but especially to look narrow. Only narrow helmets, which look small from the front, are on the market for sale. Round helmets look wide from the front and are not successful in the market.
  • these protective helmets which can be designed differently depending on the field of application, consist of an outer shell made of a hard material, which usually has an oval basic shape, and an impact on the head receiving, shock-absorbing internal support means on the inside the outer shell is arranged and on its human head facing side (inside) is also of oval shape.
  • a disadvantage of these helmets that although they protect against shocks that meet the helmet or his bump cap translationally, but not against rotational forces acting on impact, so it is e.g. In many accidents, despite the use of a protective helmet, severe head injuries occur.
  • EP 696 34 862 T2 there is proposed a protective helmet in which the inside of the hard outer shell is disposed a synthetic resin foam inner support means, the inner support means being composed of a main insert part and a sub insert part fitted in a recess provided on the main insert part.
  • the secondary insert part has a density that is 20% to 80% of the density of the main insert part.
  • EP 1 142 495 A1 there is described a protective helmet having an outer shell made of a hard material and a head-on-receiving internal support means disposed on the inside of the outer shell, the inner support being divided into a shell-side liner and a head-side liner , wherein the side facing away from the head of the head-side insert at least partially has a sliding surface and the facing sides of the head-side insert and the shell-side insert at least partially correspond to each other and the shell-side insert is rotatable about a pivot point in at least one direction with respect to the head-side insert ,
  • the disadvantage here is that with particularly large shifts, a risk of injury can not be avoided.
  • the protective helmet according to the invention, with the characterizing feature of claim 1, and the method according to the invention for reducing or preventing a head injury, with the characterizing feature of claim 19, have the advantage that by a division of the shock-absorbing or shock-absorbing and comforting internal support means, the liner , Comfort padding, protective padding, knobbed baskets and / or strapped carrying devices (eg spreaders, straps, headbands or the like) may have, in a shell-side insert and a head-side insert, which are rotatable against each other (preferably from a certain force) in at least one direction Sliding surface is present, which takes over the function of a rotation surface, so that the introduced by a shock spin is greatly reduced or prevented, since the head-side liner and the shell-side liner and thus the head of the wearer and the helmet outside Chale against each other quickly and without inhibition are preferably rotatable in all directions, wherein the impact introduced by the spin rotation is additionally counteracted by a chin strap, which is arranged on at least one arranged
  • the sliding surface is a spherical surface, which may also be defined only over partial regions of the hemisphere body, and / or a rotationally symmetrical body (for example ellipsoids of revolution, etc.).
  • the head-side insert and the shell-side insert have different densities.
  • the inner support means may be made of closed cellular and / or open cellular foams. In general, all materials that are suitable for shock absorption of protective helmets are conceivable. Included here are also soft foams, which are only for comfort padding, knobbed baskets or other carrying facilities.
  • the protective helmet according to the invention different densities occur within the head-side insert and / or within the shell-side insert.
  • This makes it possible, depending on the geometry of the protective helmet in its various regions, in which different requirements can be made for the strength of the material used, the material is adapted to these specific requirements.
  • the use of linem from foams preferably particle foams (particle foams), in particular foamed polystyrene (EPS), expanded polypropylene (EPP), polyurethane (PU), or the like, is advantageous.
  • EPS foamed polystyrene
  • EPP expanded polypropylene
  • PU polyurethane
  • separate segments are made for the different regions.
  • the density of the individual components depends on the regional differences customized. Subsequently, the components are joined by means of plugging, gluing or foaming.
  • components that are multi-zone foamed (multi-density) with up to 3 different densities in one component; preferably as a dual-density liner.
  • the density is varied in a two-stage process within a component.
  • the individual zones are delimited by slides. The zones are filled and prefabricated separately. During the molding process, the slides are pulled out of the tool and the beads of the individual zones are welded together to form a component.
  • This method can be used to produce precisely defined areas of different densities.
  • a component with different densities can also be produced in the single-stage process by selectively filling the tool areas, in part by utilizing the filling pressure or by means of an air curtain. In this process, it comes at the borders to a mixture of different prefoamed beads. This creates components with transitional areas of medium density at the zone boundaries.
  • Another advantage is the combination of both technologies.
  • large segments are produced by means of multi-density methods, in particular dual-density methods, and combined with smaller segments of simple design.
  • the head-side insert and / or the shell-side liner have a surface that has no bumps due to the spray of the EPS process, because a process with a local nozzle-free tool is used or because a tool with a porous surface is used.
  • the head-side insert and / or the shell-side insert have a structured surface (golf ball). to lower the footprints of the dies of the EPS forming process and to prevent unevenness of the surface.
  • an intermediate layer is arranged between the head-side insert and the shell-side insert.
  • the intermediate layer could, if it is particularly stiff and made of carbon fiber, for example, have a positive effect on the shock absorption. Should there be no complete interlayer, for example, punctual, star-shaped or crosswise mounted sliding points are conceivable.
  • the intermediate layer may be a liquid or a gel. The viscosity of the liquid or of the gel is in this case adjusted so that you can achieve different coefficients of friction (shear values) and thus also different accelerations with their help. This sets the rotation acceleration curve.
  • the intermediate layer is firmly with the head-side insert or the shell-side insert connected.
  • the intermediate layer is harder than the head-side insert.
  • the head-side insert and the shell-side insert are connected to each other by at least one connecting means.
  • this connecting means can be a pressed-EPS body, which can also absorb energy for shock absorption (keyword: fixed storage). It is also conceivable that this connection means may be a spring damper system, which resets the system in its initial position.
  • a preferred embodiment may be rubber bands (for example in double T form) (keyword: floating storage).
  • the connecting means has at least one predetermined breaking point.
  • This Sollbrauchstelle can also be a textile structure that ruptures at a controlled force.
  • the predetermined breaking point can also be in the connecting means, preferably also an EPS cylinder or cone (dowel). This cylinder is preferably adjusted with respect to its breakaway force exactly to the respective test standard. Variations are about volume weight, bead size and diameter the predetermined breaking point conceivable, the defined breakaway can also be done via a cutting plate made of metal.
  • the head-side insert on its side facing the shell-side insert at least one survey.
  • the survey has at least one predetermined breaking point.
  • the execution of this predetermined breaking point can be such that a signal is triggered when breaking the predetermined breaking point. This can be used to signal that the system was in operation and the helmet is no longer usable.
  • an SOS emergency call signal can also be sent
  • the survey cooperates with a damping means.
  • a constructive element is arranged around the elevation which holds the trays in position and collapses in a controlled manner upon impact.
  • the survey projects into the shell-side insert.
  • an indicator indicates a twisting and / or an existing rotation of the shell-side insert to the head-side insert.
  • the indicator is preferably visible to the outside and / or inside and indicates that the system has been triggered. This is particularly important after an accident, because from the outside hard hats often look undamaged, even though they have to absorb high energy.
  • the indicator indicates that the system has moved and therefore has taken up rotational energy.
  • the head-side insert and / or the shell-side insert as a carrying device a knobbed basket or the like. on.
  • the protective helmet is a motorcycle helmet, car helmet, winter sports helmet (ski and snowboard helmet), riding helmet, bicycle helmet, mountaineering helmet, safety helmet, police helmet, fire helmet, jet fighter, military helmet or the like.
  • a molded part can be joined together with the shell if the wall thickness of the EPS part becomes too small at the edges of the two shells (the head-side insert and the shell-side insert).
  • This molding can aid in smooth sliding of the system but can also accommodate functional parts of the helmet (e.g., foams, belts, textile components).
  • a chinstrap attachment point may be located near the fulcrum of the rotation system (RDP), or at least on the bond line between a chinstrap attachment point (KBP) and a chinstrap support point (KAP).
  • the position of the chin strap in the case of the rotational function can be brought to the connecting line of the (RDP) and the resting point of the chin strap (KAP).
  • the chin strap may be mounted on a rotation line about the pivot of the rotation system. On this line, the chin strap can always remain at the same distance from the rotation pivot point. For particularly large displacements of the chin strap slips against a stop and then tightens controlled.
  • This arrangement fulfills the function of a belt tensioner during impact with rotational movement.
  • the protective helmet having an outer shell made of a hard material and an upside-down inner support device, which is arranged on the inside of the outer shell, and wherein the inner support means is divided into a shell-side insert and a head-side insert, wherein the side facing away from the head side of the head-side insert has at least partially a spherical surface and the mutually facing sides of the head-side insert and the tray-side insert at least partially correspond to each other, so that by the impact striking the tray-side liner in relation to the head-side liner is rotated, a protective helmet according to any one of claims 1 to 18 is used.
  • the Fig. 1 and Fig. 2 show sectional drawings of a conventional safety helmet.
  • This one is made of a hard one outer shell 1, on the inside 2, the inner support means 3 is arranged.
  • the inner support means 3 has an inner side 4, whose oval shape to a human head 5 (see Fig. 2 ) is adjusted.
  • FIG. 3 and FIG. 4 Sectional drawings of a first embodiment of a protective helmet 6 according to the invention.
  • the shock-absorbing or shock-absorbing and comfort-giving internal support device surrounded by the hard, outer shell 1 is subdivided into a shell-side insert 7 and a top-side insert 8, wherein the head 5 (see FIG Fig. 4 ) facing away from outer side 9 of the head-side insert 8 at least partially has a spherical surface and the outer side 9 of the head-side insert 8 with the inner side 2 of the shell-side insert 7 corresponds.
  • the shell-side insert 7 and the head-side insert 8 of the inner support device are preferably connected to each other so that they can move freely in all directions against each other, so that they form a movable system. It is preferably provided that after a shift, a return to the starting position. This can be effected for example by an elastic layer or an elastic band. The release force of the system is always smaller than the force to return the system to the starting position.
  • Fig. 5 shows an exploded view of a second embodiment of a protective helmet 6.
  • an intermediate layer 10 which has an inner side 11 and an outer side 12 and preferably a harder material is made arranged between the head-side insert 8 and the shell-side insert 7.
  • the outer side 13 of the shell-side insert 7 corresponds to the inner side 2 of the outer shell 1.
  • Die Intermediate layer 10 is firmly connected to the shell-side insert 7 or the head-side insert 8.
  • the Fig. 6 and Fig. 7 show sectional drawings of the protective helmet 6 according to the invention Fig. 5 ,
  • the shell-side insert 7 is rotatable about a pivot point 14 on the head-side insert 8.
  • Fig. 8 to Fig. 10 show the operation of the protective helmet 6 according to the invention Fig. 5 .
  • the head-side insert 8 together with the outer shell 1 rotates about the pivot point 14 in the direction of arrow 15 forward.
  • the head-side insert 8 together with the outer shell 1 is rotated in the direction of arrow 16 impact on a bottom 17 and thus in the direction of arrow 18 associated force in the direction of arrow 15 forward.
  • the Fig. 11 shows the operation of the protective helmet 6 according to the invention Fig. 5 , In a stroke from the front, the head-side insert 8 together with the outer shell 1 rotates about the pivot point 14 in the direction of arrow 19 to the rear.
  • Fig. 12 shows a sectional view of a third embodiment of a protective helmet 6 according to the invention head-side insert 8 and the shell-side insert 7 by means of connecting means 20 connected to each other.
  • the connecting means 20 have predetermined breaking points 21 which, for example, break when they strike from the front, so that the head-side insert 8 together with the outer shell 1 rotates about the pivot point 14 in the direction of the arrow 19 towards the rear ( Fig. 13 ).
  • Fig. 14 shows a sectional view of a fourth embodiment of a protective helmet 6.
  • the head-side insert 8 has a projection 22 which projects into the region of the shell-side insert 7 on.
  • the elevation 22 is surrounded by a damping means 23 which is pressed together in a stroke from the front, while the head-side insert 8 together with the outer shell 1 rotates about the pivot point 14 in the direction of arrow 19 to the rear ( Fig. 15 ).
  • the damping means 23 may preferably be a foam ring which is introduced, for example, cylindrically in the upper region of the protective helmet 6.
  • Fig. 16 shows a sectional view of a fifth embodiment of a protective helmet 6.
  • the head-side insert 8 has two elevations 22.
  • the elevations 22 have predetermined breaking points 21, for example, break in a blow from behind, so that the head-side insert 8 together with the outer shell 1 about the pivot point 14 in the direction of arrow 15 rotates forward ( Fig. 17 ).
  • Fig. 18 and 19 show front views of a protective helmet according to the invention 6. It is clear that the head-side insert 8 and The shell-side insert 7 have a common pivot point 14, so that, for example, in a lateral impact, the head-side insert 8 together with the outer shell 1 about the pivot point 14 in the direction of arrow 24 is rotated ( Fig. 20 ).
  • Fig. 21 shows a sectional view of a sixth embodiment of a protective helmet 6 according to the invention.
  • the head-side insert 8 and the shell-side insert 7 knobbed baskets.
  • the Fig. 22 shows an exploded view of an inner support means of a protective helmet 6.
  • an intermediate layer 10 which has an inner side 11 and an outer side 12 and is preferably made of a harder material arranged.
  • the outer side 13 of the shell-side insert 7 corresponds to the inner side 2 of the outer shell 1.
  • Die Intermediate layer 10 has straps 26 fixed by pins 25, which preferably have a fastening means 27, and an edge 28 into which the shell-side insert 7 can be inserted.
  • FIGS. 23 to 25 show detailed views of the inner support device according to Fig. 22 ,
  • the fastening means 27 can be fixed to the holder 29 in holes 31.
  • Fig. 26 shows a perspective view of a protective helmet according to the invention with an inner support device according to Fig. 22 and Fig. 27 shows the operation of the protective helmet according to the invention Fig. 22 in a blow from behind.

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  • Helmets And Other Head Coverings (AREA)

Description

Stand der TechnikState of the art

Die Erfindung geht aus von einem Schutzhelm, nach der Gattung des Anspruchs 1, und einem Verfahren zur Verminderung oder Verhinderung einer Kopfverletzung, nach der Gattung des Anspruchs 19.The invention relates to a protective helmet, according to the preamble of claim 1, and a method for reducing or preventing a head injury, according to the preamble of claim 19.

Es sind eine Vielzahl von Schutzhelmen bekannt, die dazu dienen, dass der Kopf eines Trägers vor Verletzungen geschützt wird. Diese Schutzhelme sind an den menschlichen Kopf, der von oben gesehen eine ovale Form, die unterschieden werden kann in eine "round oval" Form und eine "long oval" Form, aufweist, angepasst. Marktübliche Schutzhelme nehmen diese Form auf, um dem menschlichen Kopf ähnlich zu sein, besonders aber, um schmal zu wirken. Nur von vorne gesehen schmale Helme, die klein wirken, sind am Markt verkäuflich. Runde Helme wirken von vorne gesehen breit und sind am Markt nicht erfolgreich.There are a variety of protective helmets are known, which serve to protect the head of a wearer from injury. These protective helmets are adapted to the human head, which seen from above an oval shape, which can be distinguished in a "round oval" shape and a "long oval" shape. Conventional safety helmets take this form to be similar to the human head, but especially to look narrow. Only narrow helmets, which look small from the front, are on the market for sale. Round helmets look wide from the front and are not successful in the market.

In der Regel bestehen diese Schutzhelme, die je nach Anwendungsgebiet unterschiedlich ausgestaltet sein können, aus einer äußeren, aus einem harten Material hergestellten Schale, die meist eine ovale Grundform aufweist, und einer einen Aufprall auf den Kopf aufnehmenden, stoßdämpfenden Innentrageeinrichtung, die an der Innenseite der äußeren Schale angeordnet ist und auf ihrer dem menschlichen Kopf zugewandten Seite (Innenseite) ebenfalls von ovaler Form ist. Nachteilig ist bei diesen Schutzhelmen, dass diese zwar vor Schlägen, die den Schutzhelm oder seine Anstoßkappe translatorisch treffen, schützen, nicht aber vor rotatorischen Kräften, die beim Schlag wirken, so dass es z.B. bei vielen Unfällen trotz der Verwendung eines Schutzhelmes zu schweren Kopfverletzungen kommt.As a rule, these protective helmets, which can be designed differently depending on the field of application, consist of an outer shell made of a hard material, which usually has an oval basic shape, and an impact on the head receiving, shock-absorbing internal support means on the inside the outer shell is arranged and on its human head facing side (inside) is also of oval shape. A disadvantage of these helmets, that although they protect against shocks that meet the helmet or his bump cap translationally, but not against rotational forces acting on impact, so it is e.g. In many accidents, despite the use of a protective helmet, severe head injuries occur.

In der europäischen Patentschrift EP 0 790 787 B1 wird eine schützende Kopfbedeckung beschrieben, an deren Außenschale eine Rutschfläche angeordnet ist. Auf dieser Rutschfläche ist eine dünne, zähe Haut angeordnet, die bei Einwirkung eines Schlages auf der harten Außenschale des Schutzhelmes gleitet, wodurch eine durch den Schlag verursachte Drehbeschleunigung des Kopfes reduziert wird, da die Haut an der Außenseite wie die Kopfschwarte des menschlichen Kopfes wirkt. Nachteilig ist zu beurteilen, dass die äußere Erscheinung des Schutzhelmes durch die Haut negativ beeinflusst wird.In the European patent specification EP 0 790 787 B1 a protective headgear is described, on whose outer shell a sliding surface is arranged. On this sliding surface, a thin, tough skin is arranged, which slides on the hard outer shell of the protective helmet when impacted, thereby reducing a spin of the head caused by the impact, since the skin acts on the outside like the head of the human head. The disadvantage is that the external appearance of the protective helmet is negatively influenced by the skin.

Um das äußere Erscheinungsbild nicht negativ zu beeinflussen, wird in der europäischen Patentschrift EP 1 246 548 B1 ein Schutzhelm beschrieben, bei dem zwischen der Innenschale und der Außenschale eine dünne gleitfähige Schale eingebracht wird. Somit verdreht sich die Innenschale gegen die Außenschale und vermindert die eingebrachten Drehbeschleunigungen. Nachteil dieser Lösung ist, dass die Drehbewegung durch die ovale Form des Helms in seiner allgemeinen Form gehemmt wird.In order not to adversely affect the appearance, is in the European patent specification EP 1 246 548 B1 a protective helmet is described in which a thin lubricious shell is inserted between the inner shell and the outer shell. Thus, the inner shell twists against the outer shell and reduces the introduced spins. Disadvantage of this solution is that the rotational movement is inhibited by the oval shape of the helmet in its general form.

In der europäischen Patentschrift EP 696 34 862 T2 wird ein Schutzhelm vorgeschlagen, bei dem die an der Innenseite der harten, äußeren Schale eine Innentrageeinrichtung aus synthetischem Harzschaum angeordnet ist, wobei die Innentrageeinrichtung in ein Haupteinlageteil und ein Nebeneinlageteil, das in einer am Haupteinlageteil angeordneten Aussparung eingepasst ist, besteht. Das Nebeneinlageteil weist dabei eine Dichte auf, die 20% bis 80% von der Dichte des Haupteinlageteiles beträgt. Dadurch wird eine gute Schutzwirkung erzielt, wobei diese Lösung sehr aufwändig ist.In the European patent specification EP 696 34 862 T2 there is proposed a protective helmet in which the inside of the hard outer shell is disposed a synthetic resin foam inner support means, the inner support means being composed of a main insert part and a sub insert part fitted in a recess provided on the main insert part. The secondary insert part has a density that is 20% to 80% of the density of the main insert part. As a result, a good protective effect is achieved, this solution is very expensive.

In der europäischen Patentanmeldung EP 1 142 495 A1 wird ein Schutzhelm beschrieben, der eine äußere, aus einem harten Material hergestellten Schale und eine einen Aufprall auf den Kopf aufnehmenden Innentrageeinrichtung, die an der Innenseite der äußeren Schale angeordnet ist, aufweist, wobei die Innentrageeinrichtung in eine schalenseitige Einlage und eine kopfseitige Einlage unterteilt ist, wobei die dem Kopf abgewandte Seite der kopfseitigen Einlage zumindest teilweise eine Gleitfläche aufweist und die einander zugewandten Seiten der kopfseitigen Einlage und der schalenseitigen Einlage zumindest teilweise miteinander korrespondieren und die schalenseitige Einlage im Bezug auf die kopfseitige Einlage in mindestens eine Richtung um einen Drehpunkt verdrehbar ist. Nachteilig ist hierbei, dass bei besonders großen Verschiebungen eine Verletzungsgefahr nicht vermieden werden kann.In the European patent application EP 1 142 495 A1 there is described a protective helmet having an outer shell made of a hard material and a head-on-receiving internal support means disposed on the inside of the outer shell, the inner support being divided into a shell-side liner and a head-side liner , wherein the side facing away from the head of the head-side insert at least partially has a sliding surface and the facing sides of the head-side insert and the shell-side insert at least partially correspond to each other and the shell-side insert is rotatable about a pivot point in at least one direction with respect to the head-side insert , The disadvantage here is that with particularly large shifts, a risk of injury can not be avoided.

Die Erfindung und ihre VorteileThe invention and its advantages

Der erfindungsgemäße Schutzhelm, mit dem kennzeichnenden Merkmal des Anspruchs 1, und das erfindungsgemäße Verfahren zur Verminderung oder Verhinderung einer Kopfverletzung, mit dem kennzeichnenden Merkmal des Anspruchs 19, haben demgegenüber den Vorteil, dass durch eine Teilung der stoßdämpfende oder stoßdämpfenden und komfortgebenden Innentrageeinrichtung, die Liner, Komfortpolster, Schutzpolster, Noppenkörbe und/oder bebänderte Trageeinrichtungen (z.B. Tragespinnen, Tragebänder, Kopfbänder odgl.) aufweisen kann, in eine schalenseitige Einlage und eine kopfseitige Einlage, die gegeneinander (bevorzugt ab einer bestimmten Krafteinwirkung) in mindestens eine Richtung verdrehbar sind, eine Gleitfläche vorhanden ist, die die Funktion einer Rotationsfläche übernimmt, so dass die durch einen Schlag eingebrachte Drehbeschleunigung stark verringert bzw. verhindert wird, da die kopfseitige Einlage und die schalenseitige Einlage und somit der Kopf des Trägers und die Helmaußenschale gegeneinander schnell und ohne Hemmung bevorzugt in alle Richtungen verdrehbar sind, wobei der durch den Schlag eingebrachten Drehbeschleunigung zusätzlich durch einen Kinnriemen, der an mindestens einem auf einer Rotationslinie um einen Drehpunkt angeordneten Kinnriemenbefestigungspunkt angeordneter ist, entgegen gewirkt wird. Die Teilung kann den stoßdämpfenden und/oder den nicht stoßdämpfenden Teil der Innentrageeinrichtung betreffen.The protective helmet according to the invention, with the characterizing feature of claim 1, and the method according to the invention for reducing or preventing a head injury, with the characterizing feature of claim 19, have the advantage that by a division of the shock-absorbing or shock-absorbing and comforting internal support means, the liner , Comfort padding, protective padding, knobbed baskets and / or strapped carrying devices (eg spreaders, straps, headbands or the like) may have, in a shell-side insert and a head-side insert, which are rotatable against each other (preferably from a certain force) in at least one direction Sliding surface is present, which takes over the function of a rotation surface, so that the introduced by a shock spin is greatly reduced or prevented, since the head-side liner and the shell-side liner and thus the head of the wearer and the helmet outside Chale against each other quickly and without inhibition are preferably rotatable in all directions, wherein the impact introduced by the spin rotation is additionally counteracted by a chin strap, which is arranged on at least one arranged on a rotation line about a pivot point chin strap attachment point. The division may relate to the shock-absorbing and / or the non-shock-absorbing part of the inner support device.

Nach einer vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes ist die Gleitfläche eine Kugelfläche, die auch lediglich über Teilbereiche des Halbkugelkörpers definiert sein kann, und/oder ein rotationssymmetrischer Körper (z.B. Drehellipsoiden, etc).According to an advantageous embodiment of the protective helmet according to the invention, the sliding surface is a spherical surface, which may also be defined only over partial regions of the hemisphere body, and / or a rotationally symmetrical body (for example ellipsoids of revolution, etc.).

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes weisen die kopfseitige Einlage und die schalenseitige Einlage unterschiedliche Dichten auf. Die Innentrageeinrichtung kann aus geschlossen zelligen und/oder offen zelligen Schäumen hergestellt sein. Denkbar sind generell alle Materialien, die zur Stoßdämpfung von Schutzhelmen geeignet sind. Eingeschlossen sind hierbei auch weiche Schäume, die lediglich zur Komfortpolsterung dienen, Noppenkörbe oder andere Trageeinrichtungen.According to an additional advantageous embodiment of the protective helmet according to the invention, the head-side insert and the shell-side insert have different densities. The inner support means may be made of closed cellular and / or open cellular foams. In general, all materials that are suitable for shock absorption of protective helmets are conceivable. Included here are also soft foams, which are only for comfort padding, knobbed baskets or other carrying facilities.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes treten innerhalb der kopfseitigen Einlage und/oder innerhalb der schalenseitigen Einlage unterschiedliche Dichten auf. Dadurch wird es ermöglicht, dass je nach Geometrie des Schutzhelmes in dessen verschiedenen Regionen, in denen unterschiedliche Anforderungen an die Festigkeit des verwendeten Materials gegeben sein können, das Material an diese speziellen Anforderungen angepasst wird. Hierbei ist der Einsatz von Einsatz von Linem aus Schaumstoffen, bevorzugt Partikelschaumstoffen (Partikelschäumen), insbesondere aufgeschäumtes Polystyrol (EPS), expandiertes Polypropylen (EPP), Polyurethan (PU), odgl., vorteilhaft. Im Allgemeinen werden für die verschiedenen Regionen separate Segmente gefertigt. Dabei wird die Dichte der einzelnen Bauteile an die regionalen Unterschiede angepasst. Anschließend werden die Bauteile mittels Stecken, Kleben oder Verschäumen gefügt.According to an additional advantageous embodiment of the protective helmet according to the invention different densities occur within the head-side insert and / or within the shell-side insert. This makes it possible, depending on the geometry of the protective helmet in its various regions, in which different requirements can be made for the strength of the material used, the material is adapted to these specific requirements. Here, the use of linem from foams, preferably particle foams (particle foams), in particular foamed polystyrene (EPS), expanded polypropylene (EPP), polyurethane (PU), or the like, is advantageous. Generally, separate segments are made for the different regions. The density of the individual components depends on the regional differences customized. Subsequently, the components are joined by means of plugging, gluing or foaming.

Weiterhin ist auch der Einsatz von Bauteilen möglich, die mittels Mehrzonenverschäumung (Multi-Density) mit bis zu 3 verschiedenen Dichten in einem Bauteil; bevorzugt als Dual-Density-Liner, hergestellt werden. Hierbei wird in einem zweistufigen Prozess innerhalb eines Bauteils die Dichte variiert. Für die Herstellung dieser Bauteile werden die einzelnen Zonen durch Schieber abgegrenzt. Die Zonen werden separat gefüllt und vorgefertigt. Während des Formgebungsprozesses werden die Schieber aus dem Werkzeug gezogen und die Perlen der einzelnen Zonen werden miteinander zu einem Bauteil verschweißt. Durch dieses Verfahren können genau abgegrenzte Bereiche verschiedener Dichten hergestellt werden. Alternativ kann auch im einstufigen Prozess durch ein gezieltes Befüllen der Werkzeugbereiche teilweise unter Ausnutzung des Fülldrucks oder mittels Luftvorhang ein Bauteil mit verschiedenen Dichten hergestellt werden. Bei diesem Verfahren kommt es an den Grenzen zu einer Vermischung der unterschiedlich vorgeschäumten Perlen. Dadurch entstehen Bauteile mit Übergangsbereichen mittlerer Dichten an den Zonengrenzen.Furthermore, it is also possible to use components that are multi-zone foamed (multi-density) with up to 3 different densities in one component; preferably as a dual-density liner. In this case, the density is varied in a two-stage process within a component. For the production of these components, the individual zones are delimited by slides. The zones are filled and prefabricated separately. During the molding process, the slides are pulled out of the tool and the beads of the individual zones are welded together to form a component. This method can be used to produce precisely defined areas of different densities. Alternatively, a component with different densities can also be produced in the single-stage process by selectively filling the tool areas, in part by utilizing the filling pressure or by means of an air curtain. In this process, it comes at the borders to a mixture of different prefoamed beads. This creates components with transitional areas of medium density at the zone boundaries.

Vorteilhaft ist auch die die Kombination beider Technologien. Hierbei werden große Segmente mittels Multi-Density-Verfahren, insbesondere Dual-Density-Verfahren, hergestellt und mit kleineren Segmenten einfacher Ausführung kombiniert.Another advantage is the combination of both technologies. In this case, large segments are produced by means of multi-density methods, in particular dual-density methods, and combined with smaller segments of simple design.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes weisen die kopfseitige Einlage und/oder die schalenseitige Einlage eine Oberfläche auf, die keine Unebenheiten durch die Bedüsung des EPS Prozesses haben, weil ein Prozess mit lokal düsenfreiem Werkzeug angewendet wird oder weil ein Werkzeug mit poröser Oberfläche verwendet wird.According to an additional advantageous embodiment of the protective helmet according to the invention, the head-side insert and / or the shell-side liner have a surface that has no bumps due to the spray of the EPS process, because a process with a local nozzle-free tool is used or because a tool with a porous surface is used.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes weisen die kopfseitige Einlage und/oder die schalenseitige Einlage eine strukturierte Oberfläche (Golfball) auf. um die Abdrücke der Düsen des EPS Formgebungsprozesses tiefer zu setzten und Unebenheiten der Oberfläche zu verhindern.According to an additional advantageous embodiment of the protective helmet according to the invention, the head-side insert and / or the shell-side insert have a structured surface (golf ball). to lower the footprints of the dies of the EPS forming process and to prevent unevenness of the surface.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes ist zwischen der kopfseitigen Einlage und der schalenseitigen Einlage eine Zwischenschicht angeordnet. Die Zwischenschicht könnte, wenn sie besonders steif und beispielsweise aus Kohlefaser hergestellt ist, eine positive Wirkung auf die Stoßdämpfung haben. Sollte es keine vollständige Zwischenschicht geben, sind beispielsweise punktuelle, sternförmig oder kreuzweise angebrachte Gleitstellen denkbar. Denkbar ist auch, dass die Zwischenschicht eine Flüssigkeit oder ein Gel sein kann. Die Viskosität der Flüssigkeit oder des Gels ist in diesem Falle so eingestellt, dass man mit ihrer Hilfe verschiedene Reibwerte (Scherwerte) und damit auch verschiedene Beschleunigungen erzielen kann. Damit ist der Rotationsbeschleunigungsverlauf einzustellen.According to an additional advantageous embodiment of the protective helmet according to the invention, an intermediate layer is arranged between the head-side insert and the shell-side insert. The intermediate layer could, if it is particularly stiff and made of carbon fiber, for example, have a positive effect on the shock absorption. Should there be no complete interlayer, for example, punctual, star-shaped or crosswise mounted sliding points are conceivable. It is also conceivable that the intermediate layer may be a liquid or a gel. The viscosity of the liquid or of the gel is in this case adjusted so that you can achieve different coefficients of friction (shear values) and thus also different accelerations with their help. This sets the rotation acceleration curve.

Nach einer diesbezüglichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes ist die Zwischenschicht fest mit der kopfseitigen Einlage oder der schalenseitigen Einlage verbunden.After a related advantageous embodiment of the protective helmet according to the invention, the intermediate layer is firmly with the head-side insert or the shell-side insert connected.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes ist die Zwischenschicht härter als die kopfseitige Einlage.According to an additional advantageous embodiment of the protective helmet according to the invention, the intermediate layer is harder than the head-side insert.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes sind die kopfseitige Einlage und die schalenseitige Einlage durch mindestens ein Verbindungsmittel miteinander verbunden. Denkbar ist, dass dieses Verbindungsmittel ein eingepresster EPS Körper sein kann, der zusätzlich auch Energie für die Stoßdämpfung aufnehmen kann (Stichwort: feste Lagerung). Denkbar ist auch, dass dieses Verbindungsmittel ein Federdämpfersystem sein kann, welches das System in seine Ausgangposition zurückstellt. Eine bevorzugte Ausführungsform können Gummibänder (beispielsweise in Doppel T Form) sein (Stichwort: schwimmende Lagerung).According to an additional advantageous embodiment of the protective helmet according to the invention, the head-side insert and the shell-side insert are connected to each other by at least one connecting means. It is conceivable that this connecting means can be a pressed-EPS body, which can also absorb energy for shock absorption (keyword: fixed storage). It is also conceivable that this connection means may be a spring damper system, which resets the system in its initial position. A preferred embodiment may be rubber bands (for example in double T form) (keyword: floating storage).

Nach einer diesbezüglichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes weist das Verbindungsmittel mindestens eine Sollbruchstelle auf.According to a related advantageous embodiment of the protective helmet according to the invention, the connecting means has at least one predetermined breaking point.

Diese Sollbrauchstelle kann auch eine textile Struktur sein, die bei einer kontrollierten Kraft aufreißt. Die Sollbruchstelle kann auch im Verbindungsmittel, vorzugsweise auch ein EPS Zylinder oder Kegel (Dübel) sein. Dieser Zylinder ist bevorzugt bezüglich seiner Losbrechkraft exakt auf die jeweilige Prüfnorm eingestellt. Variationen sind über Raumgewicht, Perlgröße und Durchmesser der Sollbruchstelle denkbar, wobei das definierte Losbrechen auch über einen Schneidteller aus Metall erfolgen kann.This Sollbrauchstelle can also be a textile structure that ruptures at a controlled force. The predetermined breaking point can also be in the connecting means, preferably also an EPS cylinder or cone (dowel). This cylinder is preferably adjusted with respect to its breakaway force exactly to the respective test standard. Variations are about volume weight, bead size and diameter the predetermined breaking point conceivable, the defined breakaway can also be done via a cutting plate made of metal.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes weist die kopfseitige Einlage auf ihrer der schalenseitigen Einlage zugewandten Seite mindestens eine Erhebung auf.According to an additional advantageous embodiment of the protective helmet according to the invention, the head-side insert on its side facing the shell-side insert at least one survey.

Nach einer diesbezüglichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes weist die Erhebung mindestens eine Sollbruchstelle auf. Die Ausführung dieser Sollbruchstelle kann so sein, dass beim Bruch der Sollbruchstelle ein Signal ausgelöst wird. Damit kann wie auch immer signalisiert werden, dass das System in Funktion war und der Helm nicht mehr zu benutzen ist. Zusätzlich kann aber auch ein SOS Notruf Signal gesendet werdenAccording to a related advantageous embodiment of the protective helmet according to the invention, the survey has at least one predetermined breaking point. The execution of this predetermined breaking point can be such that a signal is triggered when breaking the predetermined breaking point. This can be used to signal that the system was in operation and the helmet is no longer usable. In addition, however, an SOS emergency call signal can also be sent

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes wirkt die Erhebung mit einem Dämpfungsmittel zusammen. Bevorzugt ist um die Erhebung herum ein konstruktives Element angeordnet, welches die Schalen in Position hält und beim Aufprall aber kontrolliert kollabiert.According to an additional advantageous embodiment of the protective helmet according to the invention, the survey cooperates with a damping means. Preferably, a constructive element is arranged around the elevation which holds the trays in position and collapses in a controlled manner upon impact.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes ragt die Erhebung in die schalenseitige Einlage.According to an additional advantageous embodiment of the protective helmet according to the invention, the survey projects into the shell-side insert.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes zeigt ein Indikator eine erfolgte Verdrehung und/ oder eine bestehende Verdrehung der schalenseitigen Einlage zur kopfseitigen Einlage an. Der Indikator ist bevorzugt nach außen und/oder innen sichtbar und weist darauf hin, dass das System ausgelöst wurde. Dies ist besonders nach einem Unfall wichtig, da von außen Schutzhelme oft unbeschädigt aussehen, obwohl sie hohe Energie haben absorbieren müssen. Der Indikator zeigt an das das System sich bewegt hat und damit also Drehenergie aufgenommen hat wurde.According to an additional advantageous embodiment of the protective helmet according to the invention, an indicator indicates a twisting and / or an existing rotation of the shell-side insert to the head-side insert. The indicator is preferably visible to the outside and / or inside and indicates that the system has been triggered. This is particularly important after an accident, because from the outside hard hats often look undamaged, even though they have to absorb high energy. The indicator indicates that the system has moved and therefore has taken up rotational energy.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes weist die kopfseitige Einlage und/oder die schalenseitige Einlage als Trageeinrichtung einen Noppenkorb odgl. auf.According to an additional advantageous embodiment of the protective helmet according to the invention, the head-side insert and / or the shell-side insert as a carrying device a knobbed basket or the like. on.

Nach einer zusätzlichen vorteilhaften Ausgestaltung des erfindungsgemäßen Schutzhelmes ist der Schutzhelm ein Motorradhelm, Autorennhelm, Wintersporthelm (Ski-, Snowboardhelm), Reithelm, Fahrradhelm, Bergsteigerhelm, Arbeitsschutzhelm, Polizeihelm, Feuerwehrhelm, Jet Fighter, Militärhelm odgl..According to an additional advantageous embodiment of the protective helmet according to the invention the protective helmet is a motorcycle helmet, car helmet, winter sports helmet (ski and snowboard helmet), riding helmet, bicycle helmet, mountaineering helmet, safety helmet, police helmet, fire helmet, jet fighter, military helmet or the like.

Bevorzugt kann ein Formteil mit der Schale zusammengefügt werden, wenn an den Rändern der beiden Schalen (der kopfseitigen Einlage und der schalenseitigen Einlage) die Wandstärke des EPS Teiles zu gering wird. Dieses Formteil kann das problemlose Gleiten des Systems unterstützen, aber auch zusätzlich Funktionsteile des Helmes (z.B. Schäume, Riemen, textile Bestandteile) aufnehmen.Preferably, a molded part can be joined together with the shell if the wall thickness of the EPS part becomes too small at the edges of the two shells (the head-side insert and the shell-side insert). This molding can aid in smooth sliding of the system but can also accommodate functional parts of the helmet (e.g., foams, belts, textile components).

Bevorzugt kann ein Kinnriemenbefestigungspunkt (KBP) in der Nähe des Drehpunktes des Rotationssystems (RDP) oder zumindest auf der Verbindungslinie zwischen einem Kinnriemenbefestigungspunkt (KBP) und einem Kinnriemenauflagepunkt (KAP) angebracht sein.Preferably, a chinstrap attachment point (KBP) may be located near the fulcrum of the rotation system (RDP), or at least on the bond line between a chinstrap attachment point (KBP) and a chinstrap support point (KAP).

Durch ein zusätzliches Funktionsteil kann die Position des Kinnriemens im Fall der Rotationsfunktion auf die Verbindungslinie des (RDP) und des Auflagepunktes des Kinnriemens (KAP) gebracht werden.By means of an additional functional part, the position of the chin strap in the case of the rotational function can be brought to the connecting line of the (RDP) and the resting point of the chin strap (KAP).

In einer anderen vorteilhaften Anordnung kann der Kinnriemen auf einer Rotationslinie um den Drehpunkt des Rotationssystems angebracht werden. Auf dieser Linie kann der Kinnriemen immer im gleichen Abstand zum Rotationsdrehpunkt bleiben. Bei besonders großen Verschiebungen rutscht der Kinnriemen gegen einen Anschlag und strafft sich dann kontrolliert. Diese Anordnung erfüllt die Funktion eines Gurtstraffers beim Aufprall mit Rotationsbewegung.In another advantageous arrangement, the chin strap may be mounted on a rotation line about the pivot of the rotation system. On this line, the chin strap can always remain at the same distance from the rotation pivot point. For particularly large displacements of the chin strap slips against a stop and then tightens controlled. This arrangement fulfills the function of a belt tensioner during impact with rotational movement.

Nach einer vorteilhaften Ausgestaltung des erfindungsgemäßen Verfahrens zur Verminderung oder Verhinderung einer Kopfverletzung, die aufgrund eines eine Drehbewegung verursachenden Schlages hervorgerufen wurde, mittels eines Schutzhelmes, wobei der Schutzhelm eine äußere, aus einem harten Material hergestellte Schale und eine einen Aufprall auf den Kopf aufnehmenden Innentrageeinrichtung, die an der Innenseite der äußeren Schale angeordnet ist, aufweist, und wobei die Innentrageeinrichtung in eine schalenseitige Einlage und eine kopfseitige Einlage unterteilt ist, wobei die dem Kopf abgewandte Seite der kopfseitigen Einlage zumindest teilweise eine Kugelfläche aufweist und die einander zugewandten Seiten der kopfseitigen Einlage und der schalenseitigen Einlage zumindest teilweise miteinander korrespondieren, so dass durch den auftreffenden Schlag die schalenseitige Einlage in Bezug zur kopfseitigen Einlage verdreht wird, wird ein Schutzhelm gemäß einem der Ansprüche 1 bis 18 eingesetzt.According to an advantageous embodiment of the method according to the invention for reducing or preventing a head injury caused by a rotational movement causing impact, by means of a protective helmet, the protective helmet having an outer shell made of a hard material and an upside-down inner support device, which is arranged on the inside of the outer shell, and wherein the inner support means is divided into a shell-side insert and a head-side insert, wherein the side facing away from the head side of the head-side insert has at least partially a spherical surface and the mutually facing sides of the head-side insert and the tray-side insert at least partially correspond to each other, so that by the impact striking the tray-side liner in relation to the head-side liner is rotated, a protective helmet according to any one of claims 1 to 18 is used.

Weitere Vorteile und vorteilhafte Ausgestaltungen der Erfindung sind der nachfolgenden Beschreibung, der Zeichnung und den Ansprüchen entnehmbar.Further advantages and advantageous embodiments of the invention are the following description, the drawings and claims removed.

Zeichnungdrawing

Ausführungsbeispiele des Gegenstandes der Erfindung sind in der Zeichnung dargestellt und werden im Folgenden näher erläutert. Es zeigen:

Fig. 1 und 2
Schnittzeichnungen eines herkömmlichen Schutzhelms,
Fig. 3 und 4
Schnittzeichnungen einer ersten Ausführungsform eines erfindungsgemäßen Schutzhelmes,
Fig. 5
eine Explosionszeichnung einer zweiten Ausführungsform eines erfindungsgemäßen Schutzhelmes,
Fig. 6 und 7
Schnittzeichnungen des erfindungsgemäßen Schutzhelmes gemäß Fig. 5,
Fig. 8 bis 10
die Funktionsweise des erfindungsgemäßen Schutzhelmes gemäß Fig. 5 bei einem Schlag von hinten,
Fig. 11
die Funktionsweise des erfindungsgemäßen Schutzhelmes gemäß Fig. 5 bei einem Schlag von vorne,
Fig. 12
eine Schnittzeichnung einer dritten Ausführungsform eines erfindungsgemäßen Schutzhelmes,
Fig. 13
die Funktionsweise des erfindungsgemäßen Schutzhelmes gemäß Fig. 12 bei einem Schlag von vorne,
Fig. 14
eine Schnittzeichnung einer vierten Ausführungsform eines erfindungsgemäßen Schutzhelmes,
Fig. 15
die Funktionsweise des erfindungsgemäßen Schutzhelmes gemäß Fig. 14 bei einem Schlag von vorne,
Fig. 16
eine Schnittzeichnung einer fünften Ausführungsform eines erfindungsgemäßen Schutzhelmes,
Fig. 17
die Funktionsweise des erfindungsgemäßen Schutzhelmes gemäß Fig. 16 bei einem Schlag von hinten,
Fig. 18 und 19
eine Frontansicht eines erfindungsgemäßen Schutzhelmes,
Fig. 20
die Funktionsweise des erfindungsgemäßen Schutzhelmes gemäß Fig. 18 bei einem Schlag von der Seite,
Fig. 21
eine Schnittzeichnung einer sechsten Ausführungsform eines erfindungsgemäßen Schutzhelmes,
Fig. 22
eine Explosionszeichnung einer Innentrageeinrichtung eines erfindungsgemäßen Schutzhelmes,
Fig. 23 bis 25
Detailansichten der Innentrageeinrichtung gemäß Fig. 22,
Fig. 26
eine perspektivische Darstellung eines erfindungsgemäßen Schutzhelmes mit einer Innentrageeinrichtung gemäß Fig. 22 und
Fig. 27
die Funktionsweise des erfindungsgemäßen Schutzhelmes gemäß Fig. 22 bei einem Schlag von hinten.
Embodiments of the subject invention are illustrated in the drawing and are explained in more detail below. Show it:
Fig. 1 and 2
Sectional drawings of a conventional safety helmet,
3 and 4
Sectional drawings of a first embodiment of a protective helmet according to the invention,
Fig. 5
an exploded view of a second embodiment of a protective helmet according to the invention,
6 and 7
Sectional drawings of the protective helmet according to the invention Fig. 5 .
Fig. 8 to 10
the operation of the protective helmet according to the invention according to Fig. 5 in a blow from behind,
Fig. 11
the operation of the protective helmet according to the invention according to Fig. 5 in a blow from the front,
Fig. 12
a sectional view of a third embodiment of a protective helmet according to the invention,
Fig. 13
the operation of the protective helmet according to the invention according to Fig. 12 in a blow from the front,
Fig. 14
a sectional view of a fourth embodiment of a protective helmet according to the invention,
Fig. 15
the operation of the protective helmet according to the invention according to Fig. 14 in a blow from the front,
Fig. 16
a sectional view of a fifth embodiment of a protective helmet according to the invention,
Fig. 17
the operation of the protective helmet according to the invention according to Fig. 16 in a blow from behind,
FIGS. 18 and 19
a front view of a protective helmet according to the invention,
Fig. 20
the operation of the protective helmet according to the invention according to Fig. 18 with a blow from the side,
Fig. 21
a sectional view of a sixth embodiment of a protective helmet according to the invention,
Fig. 22
an exploded view of an inner support means of a protective helmet according to the invention,
FIGS. 23 to 25
Detail views of the interior carrying device according to Fig. 22 .
Fig. 26
a perspective view of a protective helmet according to the invention with an inner support device according to Fig. 22 and
Fig. 27
the operation of the protective helmet according to the invention according to Fig. 22 in a blow from behind.

Beschreibung der AusführungsbeispieleDescription of the embodiments

Die Fig. 1 und Fig. 2 zeigen Schnittzeichnungen eines herkömmlichen Schutzhelms. Dieser besteht aus einer harten äußeren Schale 1, an deren Innenseite 2 die Innentrageeinrichtung 3 angeordnet ist. Die Innentrageeinrichtung 3 weist eine Innenseite 4, deren ovale Form an einen menschlichen Kopf 5 (siehe Fig. 2) angepasst ist.The Fig. 1 and Fig. 2 show sectional drawings of a conventional safety helmet. This one is made of a hard one outer shell 1, on the inside 2, the inner support means 3 is arranged. The inner support means 3 has an inner side 4, whose oval shape to a human head 5 (see Fig. 2 ) is adjusted.

Die Fig. 3 und Fig. 4 zeigen Schnittzeichnungen einer ersten Ausführungsform eines erfindungsgemäßen Schutzhelmes 6. Die durch die harte, äußere Schale 1 umgebene stoßdämpfende oder stoßdämpfende und komfortgebende Innentrageeinrichtung ist in eine schalenseitige Einlage 7 und eine kopfseitige Einlage 8 unterteilt ist, wobei die dem Kopf 5 (siehe Fig. 4) abgewandte Außenseite 9 der kopfseitigen Einlage 8 zumindest teilweise eine Kugelfläche aufweist und die Außenseite 9 der kopfseitigen Einlage 8 mit der Innenseite 2 der schalenseitigen Einlage 7 korrespondiert.The FIG. 3 and FIG. 4 Sectional drawings of a first embodiment of a protective helmet 6 according to the invention. The shock-absorbing or shock-absorbing and comfort-giving internal support device surrounded by the hard, outer shell 1 is subdivided into a shell-side insert 7 and a top-side insert 8, wherein the head 5 (see FIG Fig. 4 ) facing away from outer side 9 of the head-side insert 8 at least partially has a spherical surface and the outer side 9 of the head-side insert 8 with the inner side 2 of the shell-side insert 7 corresponds.

Die schalenseitige Einlage 7 und die kopfseitige Einlage 8 der Inntrageeinrichtung werden bevorzugt so miteinander verbunden, dass sie sich frei in alle Richtungen gegeneinander verschieben können, so dass sie ein verschiebbares System bilden. Bevorzugt ist vorgesehen, dass nach einer Verschiebung eine Rückstellung in die Ausgangsposition erfolgt. Dies kann beispielsweise durch eine elastische Schicht oder ein elastisches Band bewirkt werden. Dabei ist die Auslösekraft des Systems immer kleiner als die Kraft zum Rückstellen des Systems in die Ausgangsposition.The shell-side insert 7 and the head-side insert 8 of the inner support device are preferably connected to each other so that they can move freely in all directions against each other, so that they form a movable system. It is preferably provided that after a shift, a return to the starting position. This can be effected for example by an elastic layer or an elastic band. The release force of the system is always smaller than the force to return the system to the starting position.

Fig. 5 zeigt eine Explosionszeichnung einer zweiten Ausführungsform eines erfindungsgemäßen Schutzhelmes 6. Bei dieser Ausführungsform ist zwischen der kopfseitigen Einlage 8 und der schalenseitigen Einlage 7 eine Zwischenschicht 10, die eine Innenseite 11 und eine Außenseite 12 aufweist und bevorzugt aus einem härteren Material hergestellt ist, angeordnet. Die Außenseite 13 der schalenseitigen Einlage 7 korrespondiert mit der Innenseite 2 der äußeren Schale 1. Ebenso korrespondieren die Innenseite 2 der schalenseitigen Einlage 7 mit der Außenseite 12 der Zwischenschicht 10 und die Außenseite 9 der kopfseitigen Einlage 8 mit der Innenseite 11 der Zwischenschicht 10. Die Zwischenschicht 10 ist fest mit der der schalenseitigen Einlage 7 oder der kopfseitigen Einlage 8 verbunden. Fig. 5 shows an exploded view of a second embodiment of a protective helmet 6. According to this embodiment, between the head-side insert 8 and the shell-side insert 7, an intermediate layer 10, which has an inner side 11 and an outer side 12 and preferably a harder material is made arranged. The outer side 13 of the shell-side insert 7 corresponds to the inner side 2 of the outer shell 1. Similarly, correspond to the inside 2 of the shell-side insert 7 with the outside 12 of the intermediate layer 10 and the outside 9 of the head-side insert 8 with the inside 11 of the intermediate layer 10. Die Intermediate layer 10 is firmly connected to the shell-side insert 7 or the head-side insert 8.

Die Fig. 6 und Fig. 7 zeigen Schnittzeichnungen des erfindungsgemäßen Schutzhelmes 6 gemäß Fig. 5. Die schalenseitige Einlage 7 ist um einen Drehpunkt 14 auf der kopfseitigen Einlage 8 verdrehbar.The Fig. 6 and Fig. 7 show sectional drawings of the protective helmet 6 according to the invention Fig. 5 , The shell-side insert 7 is rotatable about a pivot point 14 on the head-side insert 8.

Die Fig. 8 bis Fig. 10 zeigen die Funktionsweise des erfindungsgemäßen Schutzhelmes 6 gemäß Fig. 5. Bei einem Schlag von hinten verdreht sich die kopfseitige Einlage 8 samt der äußeren Schale 1 um den Drehpunkt 14 in Pfeilrichtung 15 nach vorne. Ebenso wird die kopfseitige Einlage 8 samt der äußeren Schale 1 bei einem in Pfeilrichtung 16 erfolgenden Aufprall auf einen Boden 17 und einer damit in Pfeilrichtung 18 einher gehenden Krafteinwirkung in Pfeilrichtung 15 nach vorne verdreht.The Fig. 8 to Fig. 10 show the operation of the protective helmet 6 according to the invention Fig. 5 , In a blow from behind, the head-side insert 8 together with the outer shell 1 rotates about the pivot point 14 in the direction of arrow 15 forward. Likewise, the head-side insert 8 together with the outer shell 1 is rotated in the direction of arrow 16 impact on a bottom 17 and thus in the direction of arrow 18 associated force in the direction of arrow 15 forward.

Die Fig. 11 zeigt die Funktionsweise des erfindungsgemäßen Schutzhelmes 6 gemäß Fig. 5. Bei einem Schlag von vorne verdreht sich die kopfseitige Einlage 8 samt der äußeren Schale 1 um den Drehpunkt 14 in Pfeilrichtung 19 nach hinten.The Fig. 11 shows the operation of the protective helmet 6 according to the invention Fig. 5 , In a stroke from the front, the head-side insert 8 together with the outer shell 1 rotates about the pivot point 14 in the direction of arrow 19 to the rear.

Fig. 12 zeigt eine Schnittzeichnung einer dritten Ausführungsform eines erfindungsgemäßen Schutzhelmes 6. Hierbei sind die kopfseitige Einlage 8 und die schalenseitige Einlage 7 mittels Verbindungsmittel 20 miteinander verbunden. Die Verbindungsmittel 20 weisen Sollbruchstellen 21 auf, die z.B. bei einem Schlag von vorne brechen, so dass sich die kopfseitige Einlage 8 samt der äußeren Schale 1 um den Drehpunkt 14 in Pfeilrichtung 19 nach hinten verdreht (Fig. 13). Fig. 12 shows a sectional view of a third embodiment of a protective helmet 6 according to the invention head-side insert 8 and the shell-side insert 7 by means of connecting means 20 connected to each other. The connecting means 20 have predetermined breaking points 21 which, for example, break when they strike from the front, so that the head-side insert 8 together with the outer shell 1 rotates about the pivot point 14 in the direction of the arrow 19 towards the rear ( Fig. 13 ).

Fig. 14 zeigt eine Schnittzeichnung einer vierten Ausführungsform eines erfindungsgemäßen Schutzhelmes 6. Hierbei weist die kopfseitige Einlage 8 eine Erhebung 22, die in den Bereich der schalenseitigen Einlage 7 ragt, auf. Die Erhebung 22 ist von einem Dämpfungsmittel 23 umgeben, das bei einem Schlag von vorne zusammen gepresst wird, während sich die kopfseitige Einlage 8 samt der äußeren Schale 1 um den Drehpunkt 14 in Pfeilrichtung 19 nach hinten verdreht (Fig. 15). Um die Kräfte in jede Bewegungsrichtung gleichstark sein zu lassen, kann das Dämpfungsmittel 23 bevorzugt ein Schaumring sein, der beispielsweise zylinderförmig im oberen Bereich des Schutzhelmes 6 eingebracht wird. Fig. 14 shows a sectional view of a fourth embodiment of a protective helmet 6. According to the invention, the head-side insert 8 has a projection 22 which projects into the region of the shell-side insert 7 on. The elevation 22 is surrounded by a damping means 23 which is pressed together in a stroke from the front, while the head-side insert 8 together with the outer shell 1 rotates about the pivot point 14 in the direction of arrow 19 to the rear ( Fig. 15 ). In order to let the forces be equally strong in each direction of movement, the damping means 23 may preferably be a foam ring which is introduced, for example, cylindrically in the upper region of the protective helmet 6.

Fig. 16 zeigt eine Schnittzeichnung einer fünften Ausführungsform eines erfindungsgemäßen Schutzhelmes 6. Hierbei weist die kopfseitige Einlage 8 zwei Erhebungen 22 auf. Die Erhebungen 22 weisen Sollbruchstellen 21 auf, die z.B. bei einem Schlag von hinten brechen, so dass sich die kopfseitige Einlage 8 samt der äußeren Schale 1 um den Drehpunkt 14 in Pfeilrichtung 15 nach vorne verdreht (Fig. 17). Fig. 16 shows a sectional view of a fifth embodiment of a protective helmet 6. According to the invention, the head-side insert 8 has two elevations 22. The elevations 22 have predetermined breaking points 21, for example, break in a blow from behind, so that the head-side insert 8 together with the outer shell 1 about the pivot point 14 in the direction of arrow 15 rotates forward ( Fig. 17 ).

Fig. 18 und 19 zeigen Frontansichten eines erfindungsgemäßen Schutzhelmes 6. Deutlich wird, dass die kopfseitige Einlage 8 und die schalenseitige Einlage 7 einen gemeinsamen Drehpunkt 14 haben, so dass z.B. bei einem seitlichen Schlag sich die kopfseitige Einlage 8 samt der äußeren Schale 1 um den Drehpunkt 14 in Pfeilrichtung 24 verdreht (Fig. 20). Fig. 18 and 19 show front views of a protective helmet according to the invention 6. It is clear that the head-side insert 8 and The shell-side insert 7 have a common pivot point 14, so that, for example, in a lateral impact, the head-side insert 8 together with the outer shell 1 about the pivot point 14 in the direction of arrow 24 is rotated ( Fig. 20 ).

Fig. 21 zeigt eine Schnittzeichnung einer sechsten Ausführungsform eines erfindungsgemäßen Schutzhelmes 6. Bei dieser Ausführungsform weisen die kopfseitige Einlage 8 und die schalenseitige Einlage 7 Noppenkörbe auf. Fig. 21 shows a sectional view of a sixth embodiment of a protective helmet 6 according to the invention. In this embodiment, the head-side insert 8 and the shell-side insert 7 knobbed baskets.

Die Fig. 22 zeigt eine Explosionszeichnung einer Innentrageeinrichtung eines Schutzhelmes 6. Bei dieser denkbaren Ausführungsform der Innentrageeinrichtung ist zwischen der kopfseitigen Einlage 8 und der schalenseitigen Einlage 7 eine Zwischenschicht 10, die eine Innenseite 11 und eine Außenseite 12 aufweist und bevorzugt aus einem härteren Material hergestellt ist, angeordnet. Die Außenseite 13 der schalenseitigen Einlage 7 korrespondiert mit der Innenseite 2 der äußeren Schale 1. Ebenso korrespondieren die Innenseite 2 der schalenseitigen Einlage 7 mit der Außenseite 12 der Zwischenschicht 10 und die Außenseite 9 der kopfseitigen Einlage 8 mit der Innenseite 11 der Zwischenschicht 10. Die Zwischenschicht 10 weist durch Stifte 25 fixierte Bänder 26, die ein Befestigungsmittel 27 bevorzugt elastisch sind, und einen Rand 28, in den die schalenseitige Einlage 7 einführbar ist, auf. Eine Halterung 29, die einen Rand 30, in den die kopfseitige Einlage 8 einführbar ist, dient zur Fixierung der kopfseitigen Einlage 8.The Fig. 22 shows an exploded view of an inner support means of a protective helmet 6. In this conceivable embodiment of the inner support means between the head-side insert 8 and the shell-side insert 7, an intermediate layer 10, which has an inner side 11 and an outer side 12 and is preferably made of a harder material arranged. The outer side 13 of the shell-side insert 7 corresponds to the inner side 2 of the outer shell 1. Similarly, correspond to the inside 2 of the shell-side insert 7 with the outside 12 of the intermediate layer 10 and the outside 9 of the head-side insert 8 with the inside 11 of the intermediate layer 10. Die Intermediate layer 10 has straps 26 fixed by pins 25, which preferably have a fastening means 27, and an edge 28 into which the shell-side insert 7 can be inserted. A holder 29, which has an edge 30 into which the head-side insert 8 can be inserted, serves to fix the head-side insert 8.

Die Fig. 23 bis 25 zeigen Detailansichten der Innentrageeinrichtung gemäß Fig. 22. Das Befestigungsmittel 27 ist an der Halterung 29 in Löchern 31 fixierbar.The FIGS. 23 to 25 show detailed views of the inner support device according to Fig. 22 , The fastening means 27 can be fixed to the holder 29 in holes 31.

Fig. 26 zeigt eine perspektivische Darstellung eines erfindungsgemäßen Schutzhelmes mit einer Innentrageeinrichtung gemäß Fig. 22 und Fig. 27 zeigt die Funktionsweise des erfindungsgemäßen Schutzhelmes gemäß Fig. 22 bei einem Schlag von hinten. Fig. 26 shows a perspective view of a protective helmet according to the invention with an inner support device according to Fig. 22 and Fig. 27 shows the operation of the protective helmet according to the invention Fig. 22 in a blow from behind.

Alle hier dargestellten Merkmale können sowohl einzeln als auch in beliebiger Kombination miteinander erfindungswesentlich sein.All features shown here may be essential to the invention both individually and in any combination.

BezugszahlenlisteLIST OF REFERENCE NUMBERS

11
Äußere SchaleOuter shell
22
Innenseiteinside
33
InnentrageeinrichtungInternal support means
44
Innenseiteinside
55
Kopfhead
66
Schutzhelmhelmet
77
Schalenseitige EinlageBowl-side insert
88th
Kopfseitige EinlageHead-side insert
99
Außenseiteoutside
1010
Zwischenschichtinterlayer
1111
Innenseiteinside
1212
Außenseiteoutside
1313
Außenseiteoutside
1414
Drehpunktpivot point
1515
Pfeilrichtungarrow
1616
Pfeilrichtungarrow
1717
Bodenground
1818
Pfeilrichtungarrow
1919
Pfeilrichtungarrow
2020
Verbindungsmittelconnecting means
2121
SollbruchstelleBreaking point
2222
Erhebungsurvey
2323
Dämpfungsmitteldamping means
2424
Pfeilrichtungarrow
2525
Stiftpen
2626
Bandtape
2727
Befestigungsmittelfastener
2828
Randedge
2929
Halterungbracket
3030
Randedge
3131
Lochhole

Claims (20)

  1. A protective helmet (6) for a head (5),
    - comprising a chin strap arranged on at least one chin strap fastening point,
    - comprising an outer shell (1) made of a hard material and
    - comprising an inner support device (3), which absorbs an impact on the head (5) and which is arranged on the inner side (2) of the outer shell (1), wherein the inner support device (2) is divided into an insert (7) on the shell side and an insert (8) on the head side, wherein the side of the insert (8) on the head side, which faces away from the head (5), at least partially encompasses a sliding surface and the sides of the insert (8) on the head side and of the insert (7) on the shell side, which face one another, at least partially correspond with one another and the insert (7) on the shell side can be pivoted about a pivot point (14) in at least one direction with reference to the insert (8) on the head side,
    characterized in
    that a chin strap fastening point is arranged on a rotational line about the pivot point (14).
  2. The protective helmet (6) according to claim 1, characterized in that the sliding surface is a spherical surface and/or a rotationally symmetrical body.
  3. The protective helmet (6) according to claim 1 or claim 2, characterized in that the insert (8) on the head side and the insert (7) on the shell side encompass different densities.
  4. The protective helmet (6) according to one of the preceding claims, characterized in that different densities appear within the insert (8) on the head side and/or within the insert (7) on the shell side.
  5. The protective helmet (6) according to one of the preceding claims, characterized in that the insert (8) on the head side and/or the insert (7) on the shell side encompass a surface without unevenness.
  6. The protective helmet (6) according to one of the preceding claims, characterized in that the insert (8) on the head side and/or the insert (7) on the shell side encompass a structured surface (golf ball) for deepening the marks of the nozzles of the EPS moulding process and to prevent unevenness of the surface.
  7. The protective helmet (6) according to one of the preceding claims, characterized in that an intermediate layer (10) is arranged between the insert (8) on the head side and the insert (7) on the shell side.
  8. The protective helmet (6) according to claim 7, characterized in that the intermediate layer (10) is fixedly connected to the insert (8) on the head side or to the insert (7) on the shell side.
  9. The protective helmet (6) according to claim 7 or claim 8, characterized in that the intermediate layer (10) is harder than the insert (8) on the head side.
  10. The protective helmet (6) according to one of the preceding claims, characterized in that the insert (8) on the head side and the insert (7) on the shell side are connected to one another by means of at least one connecting means (20).
  11. The protective helmet (6) according to claim 10, characterized in that the connecting means (20) encompasses at least one predetermined breaking point (21).
  12. The protective helmet (6) according to one of the preceding claims, characterized in that the insert (8) on the head side encompasses at least one elevation (22) on its side, which faces the insert (7) on the shell side.
  13. The protective helmet (6) according to claim 12, characterized in that the elevation (22) encompasses at least one predetermined breaking point (21).
  14. The protective helmet (6) according to claim 12 or claim 13, characterized in that the elevation (22) interacts with a damping means (23).
  15. The protective helmet (6) according to one of claims 12 to 14, characterized in that the elevation (22) projects into the insert (7) on the shell side.
  16. The protective helmet (6) according to one of the preceding claims, characterized in that an indicator displays a twisting, which took place, and/or an existing twisting of the insert (7) on the shell side to the insert (8) on the head side.
  17. The protective helmet (6) according to one of the preceding claims, characterized in that the insert (8) on the head side and/or the insert (7) on the shell side encompasses a burl basket or the like.
  18. The protective helmet (6) according to one of the preceding claims, characterized in that the protective helmet (6) is an auto race helmet, winter sport helmet, riding helmet, bicycle helmet, mountain climbing helmet, work safety helmet, police helmet, firefighter's helmet, jet fighter, military helmet or the like.
  19. A method for reducing or preventing a head injury, which was caused by an impact causing a rotary motion, by means of a protective helmet (6), wherein the protective helmet (6) comprises a chin strap arranged on at least one chin strap fastening point, an outer shell (1) made of a hard material, and an inner support device (3), which absorbs an impact on the head (5) and which is arranged on the inner side (2) of the outer shell (1), wherein the inner support device (3) is divided into an insert (7) on the shell side and an insert (8) on the head side, wherein the side of the insert (8) on the head side, which faces away from the head (5), at least partially encompasses a spherical surface and the sides of the insert (8) on the head side and of the insert (7) on the shell side, which face one another, at least partially correspond with one another,
    characterized in
    that, caused by the impact, the insert (7) on the shell side is pivoted relative to the insert (8) on the head side about a pivot point (14), on the rotational line of which a chin strap fastening point is arranged.
  20. The method according to claim 19, characterized in that a protective helmet (6) according to one of claims 1 to 18 is used.
EP11007341A 2010-09-09 2011-09-09 Protective helmet; method for preventing or reducing head injury Active EP2428129B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102010045843 2010-09-09
DE102010046134 2010-09-10

Publications (3)

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EP2428129A2 EP2428129A2 (en) 2012-03-14
EP2428129A3 EP2428129A3 (en) 2012-03-21
EP2428129B1 true EP2428129B1 (en) 2013-04-03

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US (1) US20120060251A1 (en)
EP (1) EP2428129B1 (en)
KR (1) KR20130082501A (en)
CN (1) CN102406262A (en)
DE (2) DE112011104130A5 (en)
ES (1) ES2413281T3 (en)
PT (1) PT2428129E (en)
WO (1) WO2012037927A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107518489A (en) * 2017-09-06 2017-12-29 阜南县邰氏宇崴运动器材有限公司 A kind of skidding permeable helmet

Families Citing this family (94)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9289024B2 (en) 2007-04-16 2016-03-22 Riddell, Inc. Protective sports helmet
US8533869B1 (en) * 2008-02-19 2013-09-17 Noggin Group LLC Energy absorbing helmet underwear
US8588806B2 (en) 2010-02-26 2013-11-19 Thl Holding Company, Llc Wireless device and methods for use in a paging network
US9943746B2 (en) 2010-02-26 2018-04-17 The Holding Company, Llc Protective headgear with impact diffusion
SE534868C2 (en) * 2010-05-07 2012-01-24 Mips Ab Helmet with sliding promoter provided at an energy absorbing bearing
US8726424B2 (en) 2010-06-03 2014-05-20 Intellectual Property Holdings, Llc Energy management structure
US10561192B2 (en) 2011-02-09 2020-02-18 6D Helmets, Llc Omnidirectional energy management systems and methods
CN103635112B (en) 2011-02-09 2015-12-23 6D头盔有限责任公司 Helmet omnidirectional EMS
US11324273B2 (en) 2011-02-09 2022-05-10 6D Helmets, Llc Omnidirectional energy management systems and methods
US11766085B2 (en) 2011-02-09 2023-09-26 6D Helmets, Llc Omnidirectional energy management systems and methods
US8756719B2 (en) * 2011-03-17 2014-06-24 Waldemar Veazie Method and apparatus for an adaptive impact absorbing helmet system
USD838922S1 (en) 2011-05-02 2019-01-22 Riddell, Inc. Football helmet
USD681281S1 (en) 2011-05-02 2013-04-30 Riddell, Inc. Protective sports helmet
US9516910B2 (en) 2011-07-01 2016-12-13 Intellectual Property Holdings, Llc Helmet impact liner system
EP2742817A3 (en) 2011-07-27 2014-09-17 Bauer Hockey Corp. Sports helmet with rotational impact protection
US9763488B2 (en) 2011-09-09 2017-09-19 Riddell, Inc. Protective sports helmet
USD683079S1 (en) 2011-10-10 2013-05-21 Intellectual Property Holdings, Llc Helmet liner
DE112012005354A5 (en) 2011-12-19 2014-08-28 Oliver Schimpf Helmet; Method for reducing or preventing head injury
US9320311B2 (en) 2012-05-02 2016-04-26 Intellectual Property Holdings, Llc Helmet impact liner system
US9578917B2 (en) 2012-09-14 2017-02-28 Pidyon Controls Inc. Protective helmets
US8640267B1 (en) * 2012-09-14 2014-02-04 Yochanan Cohen Protective helmet
CN103253219A (en) * 2012-09-19 2013-08-21 梁有其 Collision-resistant safety head and neck protecting armor for automobile passengers
US9894953B2 (en) 2012-10-04 2018-02-20 Intellectual Property Holdings, Llc Helmet retention system
US9603408B2 (en) * 2012-10-05 2017-03-28 Elwood J. B. Simpson Football helmet having improved impact absorption
US9572390B1 (en) 2012-10-05 2017-02-21 Elwood J. B. Simpson Football helmet having improved impact absorption
US10039335B2 (en) * 2012-11-29 2018-08-07 Bell Sports, Inc. Multi-component helmet construction
US10159296B2 (en) 2013-01-18 2018-12-25 Riddell, Inc. System and method for custom forming a protective helmet for a customer's head
US9487110B2 (en) 2014-03-05 2016-11-08 Pidyon Controls Inc. Car seat
US10220734B2 (en) 2013-03-05 2019-03-05 Pidyon Controls Inc. Car seat
US8911015B2 (en) 2013-03-05 2014-12-16 Yochanan Cohen Car seat
CN103284393A (en) * 2013-06-17 2013-09-11 重庆安尔特汽车摩托车配件制造有限公司 Motorcycle helmet with intensive honeycomb-shaped air bag buffer pad
US10736373B2 (en) 2013-08-13 2020-08-11 Smith Optics, Inc. Helmet with shock absorbing inserts
USD733972S1 (en) 2013-09-12 2015-07-07 Intellectual Property Holdings, Llc Helmet
WO2015065902A1 (en) 2013-10-28 2015-05-07 Intellectual Property Holdings, Llc Helmet retention system
CA2929623C (en) * 2013-12-06 2024-02-20 Bell Sports, Inc. Flexible multi-layer helmet and method for making the same
US10477909B2 (en) 2013-12-19 2019-11-19 Bauer Hockey, Llc Helmet for impact protection
CA2935566C (en) * 2014-01-06 2023-05-23 Lisa Ferrara Composite devices and methods for providing protection against traumatic tissue injury
GB2557748B (en) * 2014-03-14 2018-09-19 Pembroke Bow Ltd Helmet
GB2540238B (en) * 2014-03-14 2018-04-11 Pembroke Bow Ltd Helmet
US9975032B2 (en) * 2014-03-24 2018-05-22 Mark Frey Concussive helmet
GB201409041D0 (en) * 2014-05-21 2014-07-02 Leatt Corp Helmet
JP6296611B2 (en) 2014-08-05 2018-03-20 株式会社Shoei helmet
US9616782B2 (en) 2014-08-29 2017-04-11 Pidyon Controls Inc. Car seat vehicle connection system, apparatus, and method
US9408423B2 (en) * 2014-09-25 2016-08-09 David A. Guerra Impact reducing sport equipment
CA2966189C (en) 2014-10-28 2023-09-26 Bell Sports, Inc. Protective helmet
CZ28115U1 (en) 2015-01-30 2015-04-20 Ĺ mĂ­d Petr Helmet comprising energy absorbing layer
GB201502104D0 (en) * 2015-02-09 2015-03-25 Mips Ab Material for forming apparel and apparel
EP3258803B1 (en) * 2015-02-19 2019-08-28 Donald, Edward Morgan Pendulum impact damping system
US20160278467A1 (en) * 2015-03-26 2016-09-29 Daniel Irwin Safety Helmet
KR20180017026A (en) 2015-05-12 2018-02-20 피? 컨트롤스 인코포레이티드 Car seats and connecting systems
CN107635425B (en) * 2015-05-19 2021-01-22 毛里西奥·帕兰赫斯·托雷斯 Improvements introduced in head protection units
WO2016209740A1 (en) * 2015-06-17 2016-12-29 6D Helmets, Llc Helmet omnidirectional energy management systems and methods
US9961952B2 (en) 2015-08-17 2018-05-08 Bauer Hockey, Llc Helmet for impact protection
US10517342B2 (en) * 2015-11-25 2019-12-31 The CtFoT Group LLC Shock absorbing cap
US10517343B2 (en) 2015-11-25 2019-12-31 The CtFoT Group LLC Hybrid sports shock absorbing cap
US10463099B2 (en) * 2015-12-11 2019-11-05 Bell Sports, Inc. Protective helmet with multiple energy management liners
US20170188649A1 (en) * 2016-01-04 2017-07-06 Bell Sports, Inc. Helmet with boundary nub and elastomer retainers
CA3013380A1 (en) * 2016-02-02 2017-08-10 Thomas Blaine Hoshizaki Helmet
US10470513B2 (en) * 2016-03-01 2019-11-12 Mips Ab Helmet
WO2017151028A1 (en) * 2016-03-02 2017-09-08 Poc Sweden Ab A comfort padding and a helmet comprising the comfort padding
CN109068783B (en) * 2016-03-04 2022-10-21 韦弗赛尔有限公司 Protective liner for helmets and other articles
US10271603B2 (en) 2016-04-12 2019-04-30 Bell Sports, Inc. Protective helmet with multiple pseudo-spherical energy management liners
CN106017220A (en) * 2016-05-31 2016-10-12 安瑞装甲材料(芜湖)科技有限公司 Safety helmet
US10780338B1 (en) 2016-07-20 2020-09-22 Riddell, Inc. System and methods for designing and manufacturing bespoke protective sports equipment
CN106017223B (en) * 2016-08-09 2017-07-21 北京普凡防护科技有限公司 A kind of combined type bulletproof halmet
US10736371B2 (en) 2016-10-01 2020-08-11 Choon Kee Lee Mechanical-waves attenuating protective headgear
FR3058298B1 (en) * 2016-11-07 2019-01-25 Universite De Strasbourg SAFETY HELMET
WO2018092144A1 (en) * 2016-11-21 2018-05-24 Technion Research And Development Foundation Ltd. Blunt force protection system
AU2017245280A1 (en) * 2017-03-27 2018-10-11 Zhenghui Gu Multi-Buffering Safety Helmet
US10542788B2 (en) 2017-05-11 2020-01-28 Safer Sports, LLC Football helmet having three energy absorbing layers
JP6842991B2 (en) * 2017-05-22 2021-03-17 株式会社Shoei Helmet
US10010126B1 (en) 2017-06-29 2018-07-03 Bell Sports, Inc. Protective helmet with integrated rotational limiter
KR20190037628A (en) 2017-09-29 2019-04-08 송형민 Pump helmet
US11839254B2 (en) 2017-10-19 2023-12-12 Mips Ab Helmet
EP3479713B1 (en) * 2017-11-07 2021-04-14 Locatelli S.p.A. Protective helmet
US10433610B2 (en) * 2017-11-16 2019-10-08 Choon Kee Lee Mechanical-waves attenuating protective headgear
US10561189B2 (en) 2017-12-06 2020-02-18 Choon Kee Lee Protective headgear
GB201800256D0 (en) 2018-01-08 2018-02-21 Mips Ab Helmet
GB201800255D0 (en) * 2018-01-08 2018-02-21 Mips Ab Helmet
WO2020037279A1 (en) 2018-08-16 2020-02-20 Riddell, Inc. System and method for designing and manufacturing a protective helmet
KR20200043035A (en) 2018-10-17 2020-04-27 석우관 Skiing helmet with descending speed guide
US12004584B2 (en) * 2018-11-02 2024-06-11 Zam Helmets Inc. Protective headgear with integrally-formed layer
CN113423296A (en) 2018-11-21 2021-09-21 瑞德尔有限公司 Protective recreational sports helmet with components additively manufactured to manage impact forces
USD927084S1 (en) 2018-11-22 2021-08-03 Riddell, Inc. Pad member of an internal padding assembly of a protective sports helmet
US11766083B2 (en) 2019-03-25 2023-09-26 Tianqi Technology Co (Ningbo) Ltd Helmet
USD927073S1 (en) 2019-04-16 2021-08-03 Safer Sports, LLC Football helmet
CN114667077A (en) 2019-11-14 2022-06-24 米沃奇电动工具公司 Headgear attachment system and safety equipment
USD935106S1 (en) 2019-11-22 2021-11-02 Safer Sports, LLC Helmet
EP4149310A4 (en) 2020-05-12 2024-09-25 Milwaukee Electric Tool Corporation Hard hat with impact protection material
US20210352991A1 (en) * 2020-05-18 2021-11-18 Shield-X Technology Inc. Method for reducing rotational acceleration during an impact to an outside surface of protective headgear
USD974663S1 (en) 2020-10-05 2023-01-03 Milwaukee Electric Tool Corporation Hard hat
WO2022120498A1 (en) * 2020-12-11 2022-06-16 The University Of British Columbia Multi-shell helmet with pivotable outer shell
AU2022232312A1 (en) 2021-03-12 2023-08-24 Milwaukee Electric Tool Corporation Safety headwear systems and accessories
US20230367365A1 (en) * 2022-05-16 2023-11-16 Oxti Pte Ltd Wearable pressure relief structure

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1142495A1 (en) * 2000-04-04 2001-10-10 Honda Giken Kogyo Kabushiki Kaisha A helmet

Family Cites Families (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3153242A (en) * 1962-02-28 1964-10-20 Nedwick Zygmund Rotary football helmet
US4012794A (en) * 1975-08-13 1977-03-22 Tetsuo Nomiyama Impact-absorbing helmet
DE3320301C1 (en) * 1983-06-04 1984-11-08 Schuberth-Werk Gmbh & Co Kg, 3300 Braunschweig crash helmet
DE3671826D1 (en) * 1986-08-01 1990-07-19 Tongerese Automaten Center PROTECTIVE HELMET.
US5204998A (en) * 1992-05-20 1993-04-27 Liu Huei Yu Safety helmet with bellows cushioning device
GB9423113D0 (en) 1994-11-16 1995-01-04 Phillips Kenneth D Protective headgear
GB9517046D0 (en) * 1995-08-19 1995-10-25 Howat Jonathan M P Protective headwear
EP0771534B1 (en) 1995-10-30 2001-09-05 Shoei Co., Ltd. Safety helmet and a head protector therefor
US5950244A (en) * 1998-01-23 1999-09-14 Sport Maska Inc. Protective device for impact management
WO2001045526A1 (en) * 1998-06-23 2001-06-28 Neuroprevention Scandinavia Ab Protective helmet
US6560787B2 (en) * 2000-08-31 2003-05-13 Irma D. Mendoza Safety helmet
GB0116738D0 (en) * 2001-07-09 2001-08-29 Phillips Helmets Ltd Protective headgear and protective armour and a method of modifying protective headgear and protective armour
WO2003096832A1 (en) * 2002-05-14 2003-11-27 Whitewater Research And Safety Institute, Inc. Protective headgear for whitewater use
US20040117896A1 (en) * 2002-10-04 2004-06-24 Madey Steven M. Load diversion method and apparatus for head protective devices
US20040250340A1 (en) * 2003-02-05 2004-12-16 Dennis Piper Protective headguard
GB0323437D0 (en) * 2003-10-07 2003-11-05 Helmet Integrated Syst Ltd Two piece helmet
FR2863149B1 (en) * 2003-12-08 2006-10-06 Salomon Sa MODULAR HELMET
CN101557731B (en) * 2006-10-13 2013-04-03 英属哥伦比亚大学 Apparatus for mitigating spinal cord injury
US7950073B2 (en) * 2007-08-06 2011-05-31 Xenith, Llc Headgear securement system
WO2009029907A2 (en) * 2007-08-29 2009-03-05 Revision Eyewear, Inc. Attachment system for a helmet
US20120096631A1 (en) * 2009-06-25 2012-04-26 Wayne State University Omni-directional angular acceration reduction for protective headgear
SE534868C2 (en) * 2010-05-07 2012-01-24 Mips Ab Helmet with sliding promoter provided at an energy absorbing bearing

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1142495A1 (en) * 2000-04-04 2001-10-10 Honda Giken Kogyo Kabushiki Kaisha A helmet

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107518489A (en) * 2017-09-06 2017-12-29 阜南县邰氏宇崴运动器材有限公司 A kind of skidding permeable helmet

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CN102406262A (en) 2012-04-11
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DE102011112790A1 (en) 2012-03-15
KR20130082501A (en) 2013-07-19
DE112011104130A5 (en) 2013-09-12
US20120060251A1 (en) 2012-03-15
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ES2413281T3 (en) 2013-07-16
EP2428129A3 (en) 2012-03-21

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