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EP3085859B1 - Barillet modifiable - Google Patents

Barillet modifiable Download PDF

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Publication number
EP3085859B1
EP3085859B1 EP16166547.6A EP16166547A EP3085859B1 EP 3085859 B1 EP3085859 B1 EP 3085859B1 EP 16166547 A EP16166547 A EP 16166547A EP 3085859 B1 EP3085859 B1 EP 3085859B1
Authority
EP
European Patent Office
Prior art keywords
module
connecting element
cylinder body
straining
modules
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP16166547.6A
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German (de)
English (en)
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EP3085859A1 (fr
Inventor
Herbert Meyerle
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SimonsVoss Technologies GmbH
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SimonsVoss Technologies GmbH
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Filing date
Publication date
Application filed by SimonsVoss Technologies GmbH filed Critical SimonsVoss Technologies GmbH
Publication of EP3085859A1 publication Critical patent/EP3085859A1/fr
Application granted granted Critical
Publication of EP3085859B1 publication Critical patent/EP3085859B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B9/00Lock casings or latch-mechanism casings ; Fastening locks or fasteners or parts thereof to the wing
    • E05B9/04Casings of cylinder locks
    • E05B9/045Modular casings for adjusting the length of cylinder locks
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/04Spring arrangements in locks
    • E05B2015/0458Leaf springs; Non-wound wire springs

Definitions

  • the invention relates to an extendable lock cylinder, in particular an extendable cylinder body for electronic locking systems such as electronic lock cylinder. More particularly, the invention relates to extendible cylinder bodies for electronic double knob cylinders or single knob cylinders.
  • mortise locks are provided according to DIN 18251 for doors with mechanical locking cylinders according to DIN 18252.
  • Such lock cylinders have a cylinder housing and therein a cylinder core, which can be rotated with a matching key in the housing and moves out of the cylinder housing cam (driver) moves to unlock or lock the lock.
  • cam driver
  • the lock cylinder is today the heart of the security of lock and door.
  • Electronic lock cylinders are also known in the prior art.
  • Electronic lock cylinders are generally characterized by the fact that instead of the mechanical coding of the key an electronic coding, e.g. is used in the form of electrical signals.
  • an "electronic key” is used in the form of a transmitter or transponder, which transmits electrical signals by means of electromagnetic waves from the transponder or transmitter to the lock cylinder.
  • the signals are verified by means of an electronic device, the electronic device usually being housed in a knob or in two knobs provided on the lock cylinder or profile cylinder.
  • the knob or the knobs are preferably used in addition to the accommodation of electronic components as a handle for actuating the lock cylinder and its cam.
  • the length of the built-in lock cylinder should preferably correspond to the respective door thickness (door leaf), since the cylinders should not protrude for safety reasons and for aesthetic reasons as possible over the door leaf or the door fitting or be mounted too deep inside the door.
  • the length of the cylinder body is also dependent on the thickness of the door fitting. For example, a lock cylinder that is too short can not be fitted if a wider door fitting is used.
  • lock cylinders with different lengths are therefore offered on the market.
  • mechanical lock cylinders are offered, which are sold in a few mm increments to the different door thicknesses.
  • Each special lock cylinder is then used only for a certain door thickness. This has the consequence that finished lock cylinders of different lengths must be produced and stocked in the warehouse, but this leads to high manufacturing and storage costs.
  • an elongated cylinder body which consists of modules which have mutual guides and which are axially screwed together.
  • the cylinder body consists of a center module and two outside termination modules. On either side of the center module as many extension modules can be screwed.
  • the length adjustment is reversible and the assembly and eventual subsequent disassembly of the cylinder are possible.
  • a disadvantage of this solution is the fact that a screw for connecting the modules must be screwed axially, with a screw in the axial direction having disadvantages in terms of ease of assembly is associated.
  • a corresponding disadvantage manifests itself in disassembly and reassembly of the cylinder body; here It takes quite a bit of getting used to processes that are not self-evident to the end user.
  • a threaded bolt can be screwed in by a known tool, wherein by screwing an increasing force is generated on a foot part of the fastening bolt.
  • An advantage of the present invention is, for example, in the simple or very simple installation, so that the cylinder body can be extended by an end user / user without expertise even or can be shortened again.
  • the invention relates to profile cylinder wherein the axial direction along the length of the cylinder extends.
  • the overall length is the length of a cylinder, measured from the center of its closing lug (usually also the center of the forend screw thread) to the respective closing side.
  • the overall length of a double cylinder basically consists of the dimensions of both sides, while the overall length of a half cylinder consists of a dimension.
  • a variable cylinder body is provided, preferably for electronic locking systems, in particular for electronic lock cylinders.
  • the cylinder body has a central module and at least one outer-side termination module and / or an inner-side termination module.
  • the cam is preferably rotatably arranged in the central module.
  • one, preferably two, three, four or any number of extension modules can be inserted between the center module and the outer terminating module and / or between the center module and the inner terminator, in order to individually adjust the overall length of the cylinder body but also the length outwards or inwards.
  • the inside end module is connected to the center module and by an axially arranged fastening bolt.
  • the outer-side termination module is connected to the center module and by an axially arranged fastening bolt.
  • the extension module or the extension modules are preferably clamped between the center module and the termination module. In other words, it is preferably sufficient if the connecting element bwz.
  • the mounting bolt engages the center module and the termination module so that a tensile stress is built up between them.
  • a foot part of the fastening bolt with a first module is fixed (preferably fixed in the pulling direction), for example, the center module or the termination module.
  • a head part of the fastening bolt with the second module is firmly connected, for example, the termination module or the center module.
  • This second connection is made by an inserted into the entprechende module or pressed Verspannelement, which is inserted radially inserted into the corresponding module with inserted clamping element and with the head part of the fastening bolt engages so that a tension of the fastening bolt is made in the axial direction.
  • the length of the fastening bolt is preferably adapted to the length of the extension module and preferably also to the termination module.
  • the fastening bolt is arranged in the axial direction, which means the term of the length of the fastening bolt as well as the modules in the axial direction.
  • the fastening bolt can either have a round profile (cut perpendicular to the length) or have a rectangular profile.
  • the profile can also change over the length, that is, the cross section of the bolt need not be the same over the entire length of the fastening bolt, which can offer significant advantages in terms of assembly.
  • a preferred and decisive advantage of the present invention lies in the design of the bracing element, which preferably leads to a fixation of the system by simply inserting or inserting into a corresponding slot in a module.
  • the simple insertion allows a simple yet secure installation.
  • the bracing element can be easily and yet accurately produced.
  • the clamping element can be produced by pressing and / or punching, whereby a simple and even cost-effective production method can be used while maintaining the desired tolerances.
  • the invention relates to a variable cylinder body for electronic locking systems, in particular for electronic lock cylinders, wherein the cylinder body has a central module and at least one outer-side termination module and / or an inner-side termination module. Between the center module and the outer side termination module and / or between the middle module and the inside termination module, any number of extension modules can be inserted according to the invention. For example, one, two, three, four or five extension modules may be employed therebetween. Preferably, it is also possible that a termination module directly on the center module can be attached, ie, it is used no extension module in between. In addition, a person skilled in the art will recognize that a different number and also modules of different lengths (measured in the axial direction) can be used on the inside and outside.
  • a first of the modules is fixedly connected to one another by an axially arranged connecting element with a second of the modules.
  • the connector may be a mounting bolt, as discussed in greater detail below.
  • the connecting element or the fastening bolt is not screwed, which is particularly preferred in view of a simple assembly.
  • the connecting element preferably has two ends with respect to the longitudinal extent, wherein one end should be referred to as a foot part and the other end as a head part.
  • the connecting element is connected for mounting with the first module, preferably in an axial pulling direction. This connection need not be fixed during assembly, that is, axial displacement is possible. However, if the cylinder body is finally mounted, then a tensile stress between the middle module and termination module is made by the connecting element, so that these two modules and preferably also arranged therebetween extension modules are firmly pressed against each other, or are firmly mounted together.
  • the head part of the connecting element or of the fastening bolt in the second module is axially movably inserted during assembly and by a radially inserted into the second module Verspannelement which acts against the head part, or with the head part is engaged , strained or fastened.
  • inserted clamping element prevents an axial pulling apart of the two connected modules and preferably generates an axially directed tensile force, which presses the two connected modules against each other.
  • the clamping element is inserted or pressed in and is not screwed in. This facilitates on the one hand the assembly and disassembly and preferably prevents incorrect assembly.
  • the foot part of the connecting element is connected to the central module, preferably firmly connected.
  • the radially inserted clamping element is accordingly preferably inserted in the inside end module or the outside end module in order to fix the head part of the connecting element (or fastening bolt) in an axial direction.
  • a tensile stress is built up by the connecting element in cooperation with the bracing element which acts against the head part in the pulling direction (axially), that this tensile stress is built up in the connecting element and a corresponding force presses the head part and any extension modules against the center module.
  • the foot part of the connecting element is connected to the inside end module or outside end module, preferably firmly connected.
  • the radially inserted clamping element is accordingly preferably inserted in the central module in order to fix the head part of the connecting element (or fastening bolt) in an axial direction.
  • the connecting element is preferably designed as a fastening bolt.
  • the connecting element has a rectangular profile.
  • the connecting element is formed from a plurality of layers of material, wherein preferably each of the layers is formed by stamping and / or compression molding.
  • the biasing member preferably has a recess at a first end for engaging the head portion of the connector to provide the tensile force.
  • the bracing element has, preferably and at a second end, an opening into which, for example, an assembly tool, for example a rod for assembly or disassembly, can be inserted.
  • the bracing element is inserted radially. This can also be done, for example, by hand or with the aid of a hammer.
  • the bracing element is preferably constructed so that it braces itself in the closure module. This is achieved, for example, in that the bracing element is configured at an angle and braced in the corresponding straight-shaped slot in the end module of the cylinder body. In order to achieve a simple disassembly of this Verspannelements, the Verspannelement can be levered out or pulled out again, for example, with the mounting tool or the rod.
  • the bracing member consists essentially of a plate-shaped member which is preferably bent at a second end out of the plane of the plate-shaped member to clamp in a straight slot in one of the modules of the cylinder body.
  • the foot part of the connecting element is preferably screwed loosely into the center module.
  • the tensile stress is used to clamp the modules preferably not achieved by a screw, but by the introduction of the Verspannelements.
  • the foot part of the connecting element has a hook part to be connected to the center module by hooking.
  • the connecting element on the foot part on a circumferential recess or circumferential groove, wherein in this recess or groove a clamping ring can be used.
  • the bracing element can preferably be produced very easily.
  • the bracing element may be a flat part, preferably produced by pressing and / or punching.
  • the invention also provides a method for assembling a variable cylinder body according to the invention.
  • the method according to the invention comprises the following steps: First, a connecting element is axially inserted into a center module and connected to the center module so that the head part of the connecting element can not be pulled out in the axial direction.
  • a connecting element is axially inserted into a center module and connected to the center module so that the head part of the connecting element can not be pulled out in the axial direction.
  • the center module has an axial opening which is elongate perpendicular to the axial direction, ie longer than wide.
  • the longer direction may extend from bottom to top in the radial direction to the cylinder body.
  • the connecting element may for example be designed so that a hook or a T-shaped head is formed on a foot part of the connecting element which can be pushed through the elongated opening in a first position in the axial direction.
  • the connecting element is then aligned substantially in the axial direction. If the connecting element is then rotated about its own longitudinal axis, preferably in the axial direction, for example by 90 °, then the connecting element can no longer be pulled out, since the hook or the T-shaped head is wider than the width of the elongated opening.
  • the connecting element is thus still arranged axially displaceable within the opening, but can not be pulled out.
  • an extension module with a desired axial extent is arranged next to the center module, so that the connection element extends through the extension module in the axial direction.
  • the termination module next to the extension module can be arranged so that the head part of the connecting element in the axial direction in the termination module inside extends.
  • the modules are still displaceable in the axial direction.
  • the bracing element is then inserted or pressed radially into the termination module. The bracing member thereby engages the head portion of the extension module so that tension is developed in the connector and a corresponding force is generated by pressing the termination module and the extension module against the center module.
  • FIG. 1 shows in a perspective view a part of an inventive expandable cylinder body 100, wherein the cylinder body of the illustrated profile cylinder has a cylindrical or round core portion 101 and the flange portion 102.
  • the cylinder body according to the invention can be used for mechanical lock cylinder, but is preferably used for electronic lock cylinder.
  • Corresponding electronic knobs or electronic components or actuators or couplings are not shown in the drawings and also not described in more detail, since these components are known to a person skilled in the art and the present invention relates primarily to the extensibility of the cylinder body.
  • FIG. 1 only one door outer side end module 20, wherein for simplicity a corresponding inside end module 30 is not shown. It will be apparent, however, to one skilled in the art, that the following statements with respect to the outboard termination module 20 with the corresponding extension modules 40 are respectively applicable to an inboard termination module 30.
  • the position of a corresponding inside end module 30 is shown symbolically only by the curly bracket. However, this does not mean that the outside end module 20 has to be constructed exactly the same as the inside end module 30. For example, different security requirements with regard to the two end modules 30 may be desired or necessary. So on the outside a Bohrschutz be desired, whereas on the inside can be dispensed with a Bohrschutz.
  • termination modules 20, 30 in general, which can be mounted substantially identical or exactly identical both on the inside and on the outside of the door , This has the advantage, for example, that a smaller number of different end modules must be produced, which results in lower production costs and lower storage costs.
  • the inside modules are preferably made the same as the outside modules and are preferably assembled in the same way as the outside modules.
  • FIG. 1 shows the center module 10 with the forend screw hole 11, which serves to fasten the cylinder 100 by means of forend screw in the door leaf or in the lock case.
  • the center module 10 shown is simplified, ie without the driver (often referred to as a closing nose or cam) is to be arranged in the recess shown in order to operate the lock.
  • the extension module 40 is inserted between middle module 10 and outer end module 20, the extension module 40 is inserted.
  • FIG. 2 shows one to FIG. 1 corresponding cross-sectional view, it can be seen that the cylindrical part (the core portion 101) of the center module 10, the cylindrical part of the outer side end module 20 and the cylindrical part of the extension module 40 have guides 90 to a precise alignment to ensure each other and to prevent displacement in the radial direction or prevent. Additionally or alternatively, guides may also be present in the flange section in order to prevent a lateral displacement of the individual modules.
  • the axial direction A and radial direction R is in Fig. 2 shown.
  • a connecting element or fastening bolt 50 in the form of a screw with foot part 51 and head part 52, with which the three modules 10, 40, 20 shown are connected to one another.
  • the fastening bolt may be a commercially available screw.
  • head shapes for the head part 52 are possible, for example, a hexagonal head, a cylinder head or a round head.
  • the three modules are interconnected according to a preferred embodiment as follows.
  • the extension module 40 is placed on the center module 10, wherein the above-mentioned guides 90 in the cylindrical part help to properly align the modules with each other; a shift in the radial direction is avoided or prevented.
  • the fastening bolt 50 is performed by the extension module 40 or a corresponding recess 41 or bore in the extension module 40 and the foot part 51 of the fastening bolt 50 attached to the center module 10.
  • the foot part 51 of the fastening bolt 50 is simply screwed into a corresponding bore in the central module 10.
  • the hole in the middle module may be, for example, a through hole (as shown) or a blind hole.
  • the outer side termination module 20 in which a recess 21 is provided, is slid with this recess 21 over the head portion 52 of the fastening bolt.
  • the guide 90 in the cylindrical part of the end module 20 helps to properly locate the modules in the axial direction.
  • the Recess 21 be formed as a blind hole in the radial direction in the flange 102.
  • the head portion 52 of the fastening bolt 50 within the recess 21 of the outer end module 20 in the axial direction A has a small clearance, which in FIG. 2 represented by the reference numeral 22.
  • the bracing member 53 is radially inserted from below into the recess 23 formed in the flange portion 102 of the outer side end module 20, so that the bracing member engages with the head portion 52 of the fastening bolt 50 and axially displaces the modules 10, 40 and 20 prevented.
  • the outside is completely assembled.
  • a decisive advantage of the present invention is that after merging the modules, the attachment is achieved very simply by only one clamping element 53 is inserted / inserted radially into the outer side termination module 20.
  • the assembly is very easy.
  • an end user recognizes the correct assembly because the clamping element 53 is preferably inserted flush with the underside of the flange portion 102 of the end module. This can be ensured in a simple manner that the modules are connected correctly by an end user.
  • Known screw solutions often have the disadvantage that a correct installation can be dependent on the torques with which the screws are screwed. If, for example, a screw with too high a torque is screwed in, then this screw is in a too "deep" position.
  • the embodiment of a threaded fastening bolt 50 on the foot part 51 has advantages in terms of manufacturing costs.
  • a disadvantage of this solution is that the depth of engagement of the fastening bolt 50 in the center module 10 may possibly vary slightly, depending on the torque with which the end user screws the fastening bolt 50 into the central module 10. According to the invention, this uncertainty can be further reduced in that the thread on the foot part 51 has a stop which prevents the fastening bolt from being screwed too far into the center module 10.
  • FIG. 5 shows, for example, a fastening bolt 50 with a head portion 52 similar to the embodiment of FIG. 2 .
  • the embodiment of the Fig. 5 shows a foot 51, similar to the head 52nd is trained. Both the head part and the foot part are formed substantially T-shaped.
  • the foot part 51 of the fastening bolt 50 is connected to the central module 10.
  • the center module 10 may for example have an opening 11 in the form of a slot.
  • the slot 11 may have the longer extent in the radial direction, here from top to bottom.
  • the T-shaped head part 51 can thus be performed through the slot 11, and then rotated by 90 °, so that the foot part 51 in the rotated position no longer fits through the slot 11 and the head part under tensile load with the center module 10 engages ,
  • the extension module 40 to be arranged therebetween is preferably also formed with a corresponding oblong hole.
  • a larger hole or a larger opening 41 is formed in the extension module 40, since a direct attachment between the fastening bolt 50 and extension module 40 preferably does not occur.
  • the extension module 40 is preferably clamped only between the center module and an outside or inside termination module.
  • the fastening bolt 50 can be performed by the extension module 40, without coming into direct engagement with the extension module 40 itself.
  • the fastening bolt 50 may also be waisted and have a waist portion 55 which may preferably serve to rotate the fastening bolt in the slot 11 by 90 °.
  • FIG. 3 an embodiment of a clamping element 53 according to the invention is shown, which preferably has the shape of a plate or a small plate.
  • This simple, platelet-shaped embodiment again has the advantage, for example, that the simple and known production method can be used which, in addition, is cost-effective while maintaining a high degree of precision in terms of dimensions.
  • FIG. 5 shows a similar view, but the bolt 50 already arranged in the center module 10.
  • FIG. 4 shows similar to the FIG. 1 a perspective view of a portion of the cylinder head 100, wherein the extension module 40 between the center module 10 and the termination module 30 is arranged. Similar in the FIG. 3 can be seen in the center module 10 of the fastening bolts 50, in particular the foot part 51.
  • the closure module 20 in the flange portion 110, the recess 23 is shown, into which the clamping element 53 is inserted (shown in FIG FIG. 4 by the double arrow).
  • the bracing member 53 preferably has two sections, the first section 531 having a recess for engaging the fastening bolt 50 and for securing the fastening bolt 50 in the axial direction.
  • the second portion 532 is preferably for inserting or removing the clamp member 53.
  • the second portion 532 is shown unwound from the first portion 531, thereby providing tensioning of the tension member 53 within the slot 23.
  • a round opening 533 is shown on the second section, which can serve, for example, to simply remove the bracing element 53.
  • a round rod (not shown) is inserted into the opening 533 and levered out of the inserted position by means of leverage.
  • FIG. 6a and 6b show the position of the connecting element 50 according to the invention according to FIG. 5 in two different mutually perpendicular cross-sectional views in the clamped state in the cylinder body.
  • FIG. 6a corresponds to an outline
  • Fig. 6b corresponds to a floor plan.
  • Both the head part and the foot part are formed substantially T-shaped, wherein both T-shaped heads are formed in the same plane.
  • the fastening bolt 50 is correspondingly flat in one plane (see Fig. 6a ) and the T-shaped heads are only in the Fig. 6b visible, noticeable.
  • fastening bolts should be formed with a rectangular cross-section, ie, rectangular, if one were to cut the fastening bolt along a plane perpendicular to the axial longitudinal extent of the bolt.
  • This rectangular cross-section can be made simpler, in contrast to round embodiments, for example by pressing or punching.
  • the foot part 51 of the fastening bolt 50 is connected to the central module 10.
  • the T-shaped head part 51 can be performed by a corresponding elongated opening 11, and then rotated by 90 °, so that the foot part 51 can not be pulled out in the rotated position through the slot 11, the head part comes under tensile load the center module 10 in engagement.
  • the extension module 40 to be arranged therebetween is preferably also formed with a corresponding oblong hole.
  • a larger hole or opening 41 is formed in the extension module 40, since a direct attachment between the fastening bolt 50 and extension module 40 preferably does not occur. This is, for example, through the gap 49 in FIG Fig.
  • the fastening bolt 50 may also be waisted and have a waist portion 55 which may preferably serve to rotate the fastening bolt in the slot 11 by 90 °.
  • the invention also includes the exact or exact terms, features, numerical values or ranges, etc. when, above or below, these terms, features, numerical values or ranges are used in conjunction with terms such as, for example. "about, about, essentially, in general, at least, at least”, etc., were called (ie, “about 3” should also “3” or “substantially radially” should also include “radial”).
  • the expression “or” means moreover “and / or”.

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Claims (9)

  1. Corps de cylindre (100) modifiable pour des systèmes de fermeture électroniques, en particulier pour des cylindres de fermeture électroniques, dans lequel le corps de cylindre présente :
    un module central (10) et au moins un module de terminaison de côté extérieur (20) et/ou un module de terminaison de côté intérieur (30), dans lequel autant de modules de prolongement (40) souhaités peuvent être insérés entre le module central (10) et le module de terminaison de côté extérieur (20) et/ou entre le module central (10) et le module de terminaison côté intérieur (30), dans lequel un premier des modules (10, 20, 30, 40) peut être relié de manière solidaire à un deuxième des modules (10, 20, 30, 40) par un élément de liaison (50) disposé de manière axiale,
    dans lequel une partie de pied (51) de l'élément de liaison (50) est reliée au premier module de manière solidaire dans une direction de traction axiale,
    et une partie de tête (52) de l'élément de liaison (50) est placée de manière mobile axialement dans le deuxième module,
    caractérisé en ce que
    un élément de renfort (53) enfilé de manière radiale dans le deuxième module agit dans la direction de traction contre la partie de tête (52), et
    une tension de traction est créée, qui agit dans la direction de traction contre la partie de tête (52) de telle sorte que ladite tension de traction est créée dans l'élément de liaison (50) et qu'une contre-force correspondante pousse la partie de tête et d'éventuels modules de prolongement (40) contre le module central.
  2. Corps de cylindre (100) modifiable selon la revendication 1, dans lequel
    i) la partie de pied (51) de l'élément de liaison (50) est reliée de manière solidaire au module central (10), et
    ii) l'élément de renfort (53) enfilé de manière radiale est enfilé dans le module de terminaison de côté intérieur (30) ou dans le module de terminaison côté extérieur (20) pour bloquer la partie de tête (52) de l'élément de liaison (50) dans une direction axiale.
  3. Corps de cylindre (100) modifiable selon l'une quelconque des revendications précédentes, dans lequel l'élément de liaison (50) présente un profil rectangulaire et est formé de préférence à partir de plusieurs couches de matériau.
  4. Corps de cylindre (100) modifiable selon l'une quelconque des revendications précédentes, dans lequel l'élément de renfort (53) présente un évidement (535) au niveau d'une première extrémité (531) pour venir en prise avec la partie de tête (52) de l'élément de liaison (50).
  5. Corps de cylindre (100) modifiable selon l'une quelconque des revendications précédentes, dans lequel l'élément de renfort (53) présente, au niveau d'une seconde extrémité (532), une ouverture (533), de préférence une ouverture ronde, dans laquelle une tige peut être insérée pour le montage ou démontage.
  6. Corps de cylindre (100) modifiable selon l'une quelconque des revendications précédentes, dans lequel l'élément de renfort (53) est constitué sensiblement d'un élément en forme de plaque, qui est courbé de préférence au niveau d'une seconde extrémité (532) depuis le plan de l'élément en forme de plaque, pour effectuer un renfort dans une entaille (23) rectiligne dans l'un des modules (10, 20, 30, 40) du corps de cylindre.
  7. Corps de cylindre (100) modifiable selon l'une quelconque des revendications précédentes, dans lequel
    la partie de pied (51) de l'élément de liaison (50)
    i) est vissée de manière lâche dans le module central (10) ;
    ii) présente une partie formant crochet (51) pour être reliée au module central (10) par accrochage dans une direction de traction axiale, ou
    iii) présente un évidement périphérique, dans lequel une bague de serrage peut être insérée.
  8. Corps de cylindre (100) modifiable selon l'une quelconque des revendications précédentes, dans lequel l'élément de renfort (53) est une partie plate fabriquée de préférence par pressage et/ou estampage.
  9. Procédé pour assembler un corps de cylindre (100) modifiable pouvant être prolongé de manière axiale selon l'une quelconque des revendications précédentes, avec les étapes :
    - d'insertion axiale d'une partie de pied d'un élément de liaison (50) dans un module central (10) ;
    - d'agencement d'un module de prolongement (40) à côté du module central (10), si bien que l'élément de liaison (50) s'étende à travers le module de prolongement (40) dans une direction axiale,
    - d'agencement d'un module de terminaison (20, 30) à côté du module de prolongement (40), si bien qu'une partie de tête (53) de l'élément de liaison (50) s'étende dans une direction axiale à l'intérieur du module de terminaison ;
    - d'introduction par glissement ou enfoncement radial d'un élément de renfort (53) dans le module de terminaison (20, 30), si bien que l'élément de renfort vienne ainsi en prise avec la partie de tête (52) de l'élément de liaison (50) et qu'une tension de traction soit créée dans l'élément de liaison (50) et qu'une force correspondante soit générée, avec laquelle le module de terminaison (20, 30) et le module de prolongement (40) sont poussés contre le module central (10).
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DE102017114543A1 (de) 2017-06-29 2019-01-03 Wilka Schließtechnik GmbH modularer Schließzylinder
CN109025490A (zh) * 2018-08-06 2018-12-18 平湖台丽办公自动化设备有限公司 一种快装锁条
DE202019102154U1 (de) * 2019-04-15 2020-07-16 C.Ed. Schulte Gesellschaft mit beschränkter Haftung Zylinderschlossfabrik Modulartig aufgebauter Schließzylinder
DE202019102155U1 (de) * 2019-04-15 2020-07-16 C.Ed. Schulte Gesellschaft mit beschränkter Haftung Zylinderschlossfabrik Modulartig aufgebauter Schließzylinder
CN113685090A (zh) * 2021-08-30 2021-11-23 中山市基信锁芯有限公司 一种可加长的锁芯结构

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DE19861400B4 (de) 1997-11-07 2013-08-01 Simonsvoss Technologies Ag Schließzylinder
DE102004051163A1 (de) * 2004-10-20 2006-04-27 Schliessanlagen Gmbh Pfaffenhain Modularer Schliesszylinder
DE102006001267B3 (de) 2006-01-10 2007-05-10 Seccor High Security Gmbh Verlängerbarer Zylinderkörper für elektronische Schließzylinder
DE102010047429B4 (de) * 2010-10-04 2014-10-30 ABUS Seccor GmbH Verlängerbarer Zylinderkörper mit axialen Befestigungsbolzen

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