EP2490576B1 - Temperature-control apparatus comprising a housing frame - Google Patents
Temperature-control apparatus comprising a housing frame Download PDFInfo
- Publication number
- EP2490576B1 EP2490576B1 EP10771024.6A EP10771024A EP2490576B1 EP 2490576 B1 EP2490576 B1 EP 2490576B1 EP 10771024 A EP10771024 A EP 10771024A EP 2490576 B1 EP2490576 B1 EP 2490576B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- profile
- metal elements
- temperature
- frame
- control apparatus
- 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
Links
- 229910052751 metal Inorganic materials 0.000 claims description 107
- 239000002184 metal Substances 0.000 claims description 50
- 239000004033 plastic Substances 0.000 claims description 20
- 229920003023 plastic Polymers 0.000 claims description 20
- 239000000463 material Substances 0.000 claims description 18
- 229910000831 Steel Inorganic materials 0.000 claims description 9
- 239000010959 steel Substances 0.000 claims description 9
- 230000003014 reinforcing effect Effects 0.000 claims description 5
- 238000005452 bending Methods 0.000 description 8
- 238000005496 tempering Methods 0.000 description 8
- 238000010276 construction Methods 0.000 description 5
- 239000011521 glass Substances 0.000 description 5
- 239000004952 Polyamide Substances 0.000 description 3
- 229920002647 polyamide Polymers 0.000 description 3
- 239000000853 adhesive Substances 0.000 description 2
- 230000001070 adhesive effect Effects 0.000 description 2
- 230000000295 complement effect Effects 0.000 description 2
- 238000001125 extrusion Methods 0.000 description 2
- 238000009413 insulation Methods 0.000 description 2
- 229920000049 Carbon (fiber) Polymers 0.000 description 1
- 239000002318 adhesion promoter Substances 0.000 description 1
- 238000004378 air conditioning Methods 0.000 description 1
- 229910052782 aluminium Inorganic materials 0.000 description 1
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 239000007767 bonding agent Substances 0.000 description 1
- 239000004917 carbon fiber Substances 0.000 description 1
- 230000002349 favourable effect Effects 0.000 description 1
- 239000011888 foil Substances 0.000 description 1
- 239000003365 glass fiber Substances 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 239000002984 plastic foam Substances 0.000 description 1
- 239000004800 polyvinyl chloride Substances 0.000 description 1
Images
Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47F—SPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
- A47F3/00—Show cases or show cabinets
- A47F3/04—Show cases or show cabinets air-conditioned, refrigerated
- A47F3/0482—Details common to both closed and open types
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/20—Casings or covers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2221/00—Details or features not otherwise provided for
- F24F2221/36—Modules, e.g. for an easy mounting or transport
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25D—REFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
- F25D23/00—General constructional features
- F25D23/06—Walls
- F25D23/062—Walls defining a cabinet
Definitions
- the invention relates to a tempering device comprising a housing frame, in particular an air conditioner or freezer, wherein at least one of the edges of the housing frame is formed by a frame profile and / or at least one of the posts of the housing frame is formed by a post profile, each comprising a base profile made of plastic.
- Frame profiles of the type mentioned above can be used in particular for the construction of housings of air conditioners or freezers and for the construction of door or window frames, in particular of freezers.
- Known such frame profiles are usually made of aluminum.
- frame profiles are known in which metal elements are coated with plastic materials.
- a door profile is from the DE 10 2005 059 145 A1
- a frame profile with a basic profile made of plastic, a heat-conducting film and a decorative metal foil in particular made of metal known.
- the GB 2287491 A discloses a component having a cavity and made of a first material, wherein in the cavity a stiffening body is arranged, which has substantially the same length as the component, this body fills all or only part of the cavity, this body a second Material comprises, whose density is lower than that of the first material and the body has at least one stiffening member whose length is substantially equal to the length of the component and which consists of a third material which is connected to the second material.
- the second material is a plastic foam.
- the stiffening part is made of metal or carbon fibers and has a high modulus of elasticity.
- the component itself consists of a plastic material which can be produced in a conventional extrusion process.
- the case frame should have a simple structure and be inexpensive to produce.
- a frame profile and / or post profile with at least one pair of mutually parallel metal elements which are designed as Arm michsb S and are connected over its entire contact surface on a base profile made of plastic with this material, despite a basic profile made of plastic bending stiffness a bend perpendicular to the profile longitudinal axis which meets demanding specifications and is often comparable to the bending stiffness of an overall metallic frame profile.
- the cross section of the frame profile has an axis of symmetry and the isotherm corresponding to the temperature means between the exterior and the interior of the tempering device intersects this axis of symmetry at right angles, this isotherm having no intersection with the metal elements.
- the housing frame according to the invention over a total metallic housing frame or in the EP 1 801 525 A2 described housing frame has an advantageously low thermal conductivity.
- the metal elements used not only serve as decorative or réelleleitfolien, but as Arm michsbs, again significantly improved stability.
- the stability of the frame profile is improved in such a way that the frame profile according to the invention can be used with the plastic base profile where previously exclusively metal frame profiles were used.
- the bending stiffness is increased by, for example, a factor of 2, wherein increases of, for example, a factor of 5 or even 10 are possible. Due to the plastic base profile also results in an improved sound insulation.
- the present invention relates to a tempering device comprising a housing frame, outside of the temperature control device is a temperature T1 and within the tempering a temperature T2, wherein at least one of the edges of the housing frame is formed by a frame profile, which is a basic profile of plastic and at least one A pair of metal elements arranged in pairs parallel to each other, which are formed as reinforcing bands and are integrally connected to the base profile over its entire contact surface, wherein the cross section of the frame profile has an axis of symmetry, the isotherm for the temperature (T1 - T2) / 2 in the intersection the axis of symmetry is orthogonal thereon and the isotherm for the temperature (T1 - T2) / 2 has no point of intersection with the metal elements; and / or at least one of the posts of the housing frame is formed by a post profile comprising a base profile made of plastic and at least one pair of metal elements arranged in pairs parallel to each other, which are formed as Arm istsb selected and are connected over their entire contact
- all edges of the housing frame from such frame profiles and / or all posts of the housing frame are formed from such post profiles.
- the metal element has an angled cross-section transverse to the profile extension.
- Such a cross section of the metal element has been found to be particularly suitable for improving the bending stiffness, in particular when the flexural rigidity about two axes perpendicular to one another and perpendicular to the longitudinal axis of the profile is considered.
- the metal element is designed as an insert in the basic profile designed as an extrudate. As a result, the appearance of the respective profile is hardly and the thermal properties further improved.
- the cohesive connection according to the invention of the base profile applied externally to the metal element is obtained, for example, by using an adhesion promoter or an adhesive.
- the frame profile and / or the post profile have at least one hollow chamber, wherein at least one of the metal elements defines one of the hollow chamber walls. This increases the bending stiffness while saving material.
- the metal element can also be advantageously used in a hollow chamber.
- the metal element can also be advantageously used in a hollow chamber.
- the metal element can also be advantageously used in a hollow chamber.
- the two metal elements are designed angled in cross-section, wherein one of the metal elements, which is part of the basic profile of the frame profile, two hollow chamber walls bounded at least one hollow chamber and the other of the two metal elements in the region of the two hollow chamber walls opposite corner of the hollow chamber is arranged.
- the two hollow chamber walls that form the opposite corner continue through a crossing point of the two hollow chamber walls.
- the post profile has at least two hollow chambers, wherein in opposite hollow chamber walls in each case a pair of the metal elements are arranged.
- the frame profile and / or the post profile has at least one hollow chamber which is not limited by metal elements.
- the frame profile and / or the post profile may also be advantageous if the frame profile and / or the post profile have a U-shaped cross-sectional contour. As a result, for example, further functional components can be introduced between side arms of the frame profile formed by the U-shape.
- the metal elements have a thickness perpendicular to the longitudinal extent of the metal elements of 0.1 mm to 1.5 mm, preferably 0.3 mm to 0.8 mm and particularly preferably of about 0.5 mm to 0.6 mm. It may also be advantageous if the metal elements perpendicular to the longitudinal extent of the frame profile have a width in the range of 10 mm to 100 mm, preferably from 10 mm to 60 mm and particularly preferably 10 to 20 mm. Such dimensions have proven to be a good compromise between increasing the stability of the frame or post profile on the one hand and economical use of the metal element material on the other hand.
- the steel inserts fully penetrate the base profile, i. over its entire length. Such steel inserts passing through the base profile increase the intimate connection of the metal elements with the basic profile by means of a form-fitting contribution in addition to the material connection.
- An air conditioner 1 has a housing frame 2, which has support elements 3 in the floor area, which carry components of an air conditioning unit 4.
- the housing frame 2 is constructed from correspondingly assembled frame profiles 5.
- Fig. 2 shows schematically the structure of the housing frame 2 in a corner region of the housing.
- three of the frame profiles 5, which define corresponding housing edges, converge toward one another.
- the frame profiles 5 all have the same profile cross-section.
- the frame profiles 5 limit, possibly with additional post sections 9, rectangular fields for inserting surface support elements 10 for closing the housing of the air conditioner 1.
- the surface support elements 10 have circumferential grooves 11, the corresponding longitudinal ribs 12 of the frame profiles 5 engage behind in the assembled state. In this way, a secure hold of the surface support elements 10 is ensured on the housing frame 2.
- Fig. 3 shows in detail a cross-sectional profile of an embodiment of the frame profile 5.
- This has a base profile 13 made of plastic.
- the base profile 13 is extruded.
- the frame profile 5 has two metal elements 14, 15, which complement a frame profile cross section of the frame profile 5.
- the metal elements 14, 15 are each placed outside on the base profile 13.
- the metal elements 14, 15 are connected cohesively over their entire contact surface on the base profile 13 with this.
- a bonding agent or an adhesive can be used.
- the metal elements 14, 15 can be connected in the extrusion of the base profile 13 with this.
- the base profile 13 has in addition to the square hollow chamber 6 two more profile hollow chambers 16, 17.
- the profile hollow chamber 16 to the right of the profile hollow chamber 6 and the profile hollow chamber 17 is disposed below the profile hollow chamber 6.
- the metal elements 14, 15 are designed as Arm michussbs, so increase the bending stiffness of the frame profile 5, so the resistance, the frame profile 5 a bending about an axis perpendicular to the profile longitudinal axis counter.
- the metal element 14 is designed angled in cross section. In a 90 ° angle region 18, the metal element 14 bent bent around an outer edge 19 of the hollow chamber 6 around.
- the metal element 14 defines two hollow chamber walls 20, 21 of the hollow chamber 6.
- the metal element 14 also engages over the two hollow chamber walls 22, 23 of the hollow chambers 16, 17 adjoining the hollow chamber 6 to the right and downwards Metal element 14 are edge-free by 90 ° around the hollow chambers 16, 17 formed outer edges 26, 27 of the hollow chambers 16, 17 around.
- the second metal element 15 of the frame profile 5 after FIG. 5 is also designed angled, wherein the metal element 15 is present in an 90 ° angle region 28 with an angle compared to the 90 ° angle region 18 with a smaller radius of curvature.
- the metal element 15 is arranged in the region of a corner 29 opposite the two hollow chamber walls 20, 21 which are delimited by the metal element 14.
- Two hollow chamber walls 30, 31 of the square hollow chamber 6, which form this corner 29, continue through a crossing point of the two hollow chamber walls 30, 31.
- the metal element 15 is inserted into continued sections 32, 33 of the two hollow chamber walls 30, 31 so that the two angled metal elements 14, 15 towards the same side, namely in the Fig. 3 to the bottom right, open.
- the two continued sections 32, 33 each delimit with a section narrow sides of the hollow cavities 16, 17 which are of rectangular design.
- the metal element 15 therefore delimits the hollow chamber walls of the hollow chambers 16, 17 formed by the continued sections 32, 33.
- Fig. 4 shows a further embodiment of the frame profile 5.
- Components which correspond to those described above with reference to the FIGS. 1 to 3 have the same reference numbers and will not be discussed again in detail.
- the frame profile 5 after Fig. 4 an angled metal element 34.
- This is inserted inside the hollow chamber 6.
- the metal element 34 follows in a 90 ° angle region 35 of the inner corner of the hollow chamber 6, which forms the outer edge 19 to the outside.
- the 90 ° angle region 35 of the metal element 34 has a radius of curvature which is smaller than the radius of curvature of the 90 ° angle region 18 of the metal element 14 of the frame profile 5 Fig. 3 , but at the same time larger than the 90 ° angle region 28 of the metal element 15.
- the two profile legs of the metal element 34 cover about three quarters of the inner hollow chamber walls 20, 21 of the hollow chamber. 6
- the post profile 5 has an axis of symmetry 62 which extends diagonally through the profile hollow chamber 6.
- the isotherm corresponding to the temperature means between the exterior and the interior of the tempering device intersects this axis of symmetry 62 at right angles, this isotherm having no intersection with the metal elements 15, 34.
- Fig. 5 shows a further embodiment of the frame profile 5.
- Components which correspond to those described above with reference to the Fig. 1 to 4 have the same reference numbers and will not be discussed again in detail.
- the basic profile 13 of the frame profile 5 after Fig. 5 also has three profile hollow chambers 6, 16 and 17, which correspond to the arrangement in the frame profiles 5 after the 3 and 4 are arranged.
- the hollow chambers 16, 17 of the embodiments according to the 3 and 4 are the hollow chambers 16, 17 of the embodiment according to Fig. 5 made larger in relation to the cross section of the square profile hollow chamber 6.
- metal element 14 in the embodiment according to Fig. 3 or the metal element 34 in the embodiment according to Fig. 4 has the frame profile 5 in the execution Fig. 5 two metal elements 36, 37 in the form of metal bands. These have after the execution Fig. 5 a width of 32 mm and a thickness of 0.75 mm.
- the metal elements 36, 37 are made of steel.
- the metal element 36 is designed as a depositor in the continuous hollow chamber walls 20, 23 of the base section 13.
- the metal element 37 is designed as a depositor in the continuous hollow chamber walls 21, 22 of the base section 13.
- the cross sections of the metal elements 36, 37 are the frame profile 5 after Fig. 5 So completely surrounded by the plastic material of the base profile 13.
- the outer edge 19 is metal element-free.
- the metal elements 36, 37 cover about 90% of the hollow chamber walls 20, 21 and about 20% of the hollow chamber walls 22, 23.
- metal element 15 in the embodiments of the 3 and 4 has the frame profile 5 after Fig. 5 two further metal elements 38, 39, which are also designed as steel strips with a width of 32 mm and a thickness of 0.75 mm.
- the metal element 38 is designed as a depositor in the continued section 32 of the hollow chamber wall 30.
- the metal element 39 is designed as a depositor in the continued section 33 of the hollow chamber wall 31.
- the corner 29 is metal element-free.
- the metal elements 38, 39 extend along virtually the entire profile extension of the continued sections 32, 33 of the base profile 13.
- the metal elements 38, 39 are completely surrounded in cross-section by the plastic material of the continued sections 32, 33.
- outer, metal-element-free, longitudinal hollow chamber walls 40, 41 of the base profile 13 of the frame profile 5 follow Fig. 5 in each case three outer molded profile ribs 42.
- Fig. 6 shows in perspective a broken section of a frame profile 5, the frame profile 5 after Fig. 4 is carried out similarly.
- Shown in the Fig. 6 only one half of the along the diagonal symmetry plane in turn symmetrically designed frame profile 5.
- the metal element 34 according to Fig. 4 are the legs of the metal element 34 of the embodiment according to Fig. 6 up to the opposite hollow chamber walls 30 and, symmetrically thereto, 31, the square profile hollow chamber wall 6 out.
- Fig. 7 shows a door-side view of a supermarket freezer 64. This has a total of three juxtaposed glass access doors 65, 66 and 67.
- the glass access doors 65 to 67 each have a door frame with outer door frame profiles 68 and post door frame profiles 69th
- the access doors 65 to 67 are hinged to a housing frame of the freezer 64, which in the view Fig. 8 is arranged behind the door frame.
- the housing frame of the freezer 64 has, similar to the housing frame 2 of the air conditioner 1 after the Fig. 1 to 7 , Outside frame profiles on the type of frame profiles 5 and post frame profiles 70, one of which in the Fig. 8 is shown in cross section.
- the post frame profile 70 Below the post frame profile 70 is a door side 71 of the frame profile 70.
- the FIG. 8 Above the frame profile 70 is a housing inside 72 of the freezer 64.
- the frame profile 70 has a base profile 73 made of plastic.
- the base profile 73 has a U-shaped cross-sectional contour.
- a base of the U is formed by a in the Fig. 8 lying rectangular profile hollow chamber 74.
- the hollow chamber 74 is not limited by metal elements.
- the two lateral legs of the U are formed by two, in FIG. 9 standing arranged, also rectangular profile hollow chambers 75, 76th
- the base profile 73 is made of polyvinyl chloride (PVC).
- the base profile 73 may be made of polyamide (PA), in particular of glass fiber reinforced polyamide.
- the frame profile 70 has two metal elements 78, 79, which are designed as steel strips with a width of 16.5 mm and a thickness of 0.5 mm.
- the metal elements 78, 79 are designed as inserts in the basic profile 73 designed as an extrudate.
- the hollow chamber wall 77 opposite hollow chamber walls 80, 81 of the hollow chambers 75, 76 have metal elements 82, 83, which are also steel reinforcing bands are designed with a Briton of 16.5 mm and a thickness of 0.5 mm.
- the hollow chambers 75, 76 are thus each bounded by metal elements 78, 82 and 79, 83 lying opposite one another.
- the basic structure of the outer door frame profiles 68 is from the DE 10 2005 059 145 A1 known.
- the outer door frame profile 68 has an extruded basic profile made of plastic. This, together with a plastic glass strip, forms a seam with a seam base for receiving a glass element, for example the glass access door.
- the basic profile has a further functional component-containing hollow chamber.
- metal elements comparable to the metal element 14 of the embodiment of the frame profile 5 after FIG. 3 a metal element completely cover an outer corner of the plastic base profile of the outer door frame profiles.
- the exterior door frame profile 68 may include another metal element disposed at the bottom of the rebate base.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Refrigerator Housings (AREA)
- Patch Boards (AREA)
Description
Die Erfindung betrifft eine Temperiervorrichtung umfassend einen Gehäuserahmen, insbesondere ein Klimagerät oder Gefrierschrank, wobei mindestens eine der Kanten des Gehäuserahmens von einem Rahmenprofil gebildet ist und/oder mindestens einer der Pfosten des Gehäuserahmen von einem Pfostenprofil gebildet ist, die jeweils ein Grundprofil aus Kunststoff umfassen.The invention relates to a tempering device comprising a housing frame, in particular an air conditioner or freezer, wherein at least one of the edges of the housing frame is formed by a frame profile and / or at least one of the posts of the housing frame is formed by a post profile, each comprising a base profile made of plastic.
Rahmenprofile der eingangs genannten Art können insbesondere zum Aufbau von Gehäusen von Klimageräten oder Gefrierschränken sowie zum Aufbau von Tür- oder Fensterrahmen, insbesondere von Gefrierschränken herangezogen werden. Bekannte derartige Rahmenprofile sind in der Regel aus Aluminium. Aus der
Die
Es ist eine Aufgabe der vorliegenden Erfindung, eine Temperiervorrichtung mit einem Gehäuserahmen der eingangs genannten Art mit einem Grundprofil aus Kunststoff derart weiterzubilden, dass dessen Isolationseigenschaften bei gleichzeitig hoher Stabilität verbessert sind. Der Gehäuserahmen soll dabei einen einfachen Aufbau aufweisen und kostengünstig herstellbar sein.It is an object of the present invention to develop a tempering device with a housing frame of the type mentioned above with a basic profile made of plastic such that its insulation properties are improved at the same time high stability. The case frame should have a simple structure and be inexpensive to produce.
Diese Aufgabe ist erfindungsgemäß durch eine Temperiervorrichtung umfassend einen Gehäuserahmen nach Anspruch 1 gelöst.This object is achieved by a tempering comprising a housing frame according to claim 1.
Erfindungsgemäß wurde erkannt, dass ein Rahmenprofil und/oder Pfostenprofil mit mindestens einem Paar paarweise parallel zueinander angeordneter Metallelemente, die als Armierungsbänder ausgeführt sind und über ihre gesamte Anlagefläche an einem Grundprofil aus Kunststoff mit diesem stoffschlüssig verbunden sind, trotz eines Grundprofils aus Kunststoff eine Biegesteifigkeit gegenüber einer Biegung senkrecht zur Profil-Längsachse erreichen kann, die anspruchsvolle Vorgaben erfüllt und oftmals mit der Biegesteifigkeit eines insgesamt metallischen Rahmenprofils vergleichbar ist. Erfindungsgemäß weist der Querschnitt des Rahmenprofils eine Symmetrieachse auf und die dem Temperaturmittel zwischen dem Äußeren und dem Inneren der Temperiervorrichtung entsprechende Isotherme schneidet diese Symmetrieachse rechtwinklig, wobei diese Isotherme mit den Metallelementen keinen Schnittpunkt aufweist. Auf diese Weise ist gewährleistet, dass der erfindungsgemäße Gehäuserahmen gegenüber einem insgesamt metallischen Gehäuserahmen oder den in der
Dementsprechend bezieht sich die vorliegenden Erfindung auf eine Temperiervorrichtung umfassend einen Gehäuserahmen, wobei außerhalb der Temperiervorrichtung eine Temperatur T1 und innerhalb der Temperiervorrichtung eine Temperatur T2 vorliegt, wobei mindestens eine der Kanten des Gehäuserahmens von einem Rahmenprofil gebildet ist, das ein Grundprofil aus Kunststoff und mindestens ein Paar paarweise parallel zueinander angeordnete Metallelemente umfasst, die als Armierungsbänder ausgebildet sind und über ihre gesamte Anlagefläche am Grundprofil mit diesem stoffschlüssig verbunden sind, wobei der Querschnitt des Rahmenprofils eine Symmetrieachse aufweist, die Isotherme für die Temperatur (T1 - T2)/2 im Schnittpunkt mit der Symmetrieachse auf dieser orthogonal angeordnet ist und die Isotherme für die Temperatur (T1 - T2)/2 keinen Schnittpunkt mit den Metallelementen besitzt; und/oder mindestens einer der Pfosten des Gehäuserahmen von einem Pfostenprofil gebildet ist, das ein Grundprofil aus Kunststoff und mindestens ein Paar paarweise parallel zueinander angeordnete Metallelemente umfasst, die als Armierungsbänder ausgebildet sind und über ihre gesamte Anlagefläche am Grundprofil mit diesem stoffschlüssig verbunden sind, wobei der Querschnitt des Rahmenprofils eine Symmetrieachse aufweist, die Isotherme für die Temperatur (T1 - T2)/2 im Schnittpunkt mit der Symmetrieachse auf dieser orthogonal angeordnet ist und die Isotherme für die Temperatur (T1 - T2)/2 keinen Schnittpunkt mit den Metallelementen besitzt. Darüber hinaus bezieht sich die vorliegende Erfindung auf eine Temperiervorrichtung, insbesondere ein Klimagerät oder einen Gefrierschrank, der einen erfindungsgemäßen Gehäuserahmen umfasst.Accordingly, the present invention relates to a tempering device comprising a housing frame, outside of the temperature control device is a temperature T1 and within the tempering a temperature T2, wherein at least one of the edges of the housing frame is formed by a frame profile, which is a basic profile of plastic and at least one A pair of metal elements arranged in pairs parallel to each other, which are formed as reinforcing bands and are integrally connected to the base profile over its entire contact surface, wherein the cross section of the frame profile has an axis of symmetry, the isotherm for the temperature (T1 - T2) / 2 in the intersection the axis of symmetry is orthogonal thereon and the isotherm for the temperature (T1 - T2) / 2 has no point of intersection with the metal elements; and / or at least one of the posts of the housing frame is formed by a post profile comprising a base profile made of plastic and at least one pair of metal elements arranged in pairs parallel to each other, which are formed as Armierungsbänder and are connected over their entire contact surface on the base profile with this cohesively, wherein the cross section of the frame profile an axis of symmetry has the isotherm for the temperature (T1 - T2) / 2 orthogonal to it at the point of intersection with the axis of symmetry and the isotherm for the temperature (T1 - T2) / 2 has no point of intersection with the metal elements. Moreover, the present invention relates to a tempering device, in particular an air conditioner or a freezer comprising a housing frame according to the invention.
In bevorzugten Ausführungsformen sind alle Kanten des Gehäuserahmens aus derartigen Rahmenprofilen und/oder alle Pfosten des Gehäuserahmens aus derartigen Pfostenprofilen ausgebildet.In preferred embodiments, all edges of the housing frame from such frame profiles and / or all posts of the housing frame are formed from such post profiles.
Dabei kann es sich als günstig erweisen, wenn das Metallelement einen abgewinkelten Querschnitt quer zur Profilerstreckung aufweist. Ein derartiger Querschnitt des Metallelement hat sich zur Verbesserung der Biegesteifigkeit insbesondere, wenn die Biegesteifigkeit um zwei zueinander senkrecht und zur Profil-Längsachse senkrecht stehende Achsen betrachtet wird, als besonders geeignet herausgestellt.It may prove advantageous if the metal element has an angled cross-section transverse to the profile extension. Such a cross section of the metal element has been found to be particularly suitable for improving the bending stiffness, in particular when the flexural rigidity about two axes perpendicular to one another and perpendicular to the longitudinal axis of the profile is considered.
Es kann auch von Vorteil sein, wenn das Metallelement als Einleger im als Extrudat ausgeführten Grundprofil ausgeführt ist. Dadurch wird die Optik des jeweiligen Profils kaum und die thermischen Eigenschaften weiter verbessert.It may also be advantageous if the metal element is designed as an insert in the basic profile designed as an extrudate. As a result, the appearance of the respective profile is hardly and the thermal properties further improved.
Es kann aber auch nützlich sein, wenn das Metallelement außen auf das Grundprofil aufgesetzt ist. Ein derartiges Profil lässt sich einfach herstellen. Die erfindungsgemäße stoffschlüssige Verbindung des außen auf das Metallelement aufgesetzten Grundprofils ergibt sich beispielsweise durch Einsatz eines Haftvermittlers bzw. eines Klebers.But it can also be useful if the metal element is placed outside on the basic profile. Such a profile is easy to produce. The cohesive connection according to the invention of the base profile applied externally to the metal element is obtained, for example, by using an adhesion promoter or an adhesive.
Es kann auch hilfreich sein, wenn das Rahmenprofil und/oder das Pfostenprofil mindestens eine Hohlkammer aufweisen, wobei mindestens eines der Metallelemente eine der Hohlkammerwände begrenzt. Dies erhöht die Biegesteifigkeit bei gleichzeitiger Materialersparnis.It may also be helpful if the frame profile and / or the post profile have at least one hollow chamber, wherein at least one of the metal elements defines one of the hollow chamber walls. This increases the bending stiffness while saving material.
Alternativ zu einem außen aufgesetzten Metallelement kann das Metallelement auch vorteilhaft in eine Hohlkammer eingesetzt sein. Je nach den Anforderungen an den Wärmeleitquerschnitt bzw. an bestimmte Stabilitätsparameter des Rahmen- und/oder Pfostenprofils kann ein in eine Hohlkammer eingesetztes Metallelement zum Einsatz kommen.As an alternative to an externally placed metal element, the metal element can also be advantageously used in a hollow chamber. Depending on the requirements of the Wärmeleitquerschnitt or to certain stability parameters of the frame and / or post profile can be used in a hollow chamber metal element used.
Erfindungsgemäß sind die beiden Metallelemente im Querschnitt abgewinkelt ausgeführt, wobei eines der Metallelemente, welches Teil des Grundprofils des Rahmenprofils ist, zwei Hohlkammerwände der mindestens einen Hohlkammer begrenzt und das andere der beiden Metallelemente im Bereich einer den beiden Hohlkammerwänden gegenüberliegenden Ecke der Hohlkammer angeordnet ist. In diesem Zusammenhang setzen sich die beiden Hohlkammerwände, die die gegenüberliegende Ecke bilden, durch einen Kreuzungspunkt der beiden Hohlkammerwände hindurch fort. Durch einen derartigen Profilquerschnitt ist eine besonders hohe Biegungssteifigkeit gewährleistet.According to the invention, the two metal elements are designed angled in cross-section, wherein one of the metal elements, which is part of the basic profile of the frame profile, two hollow chamber walls bounded at least one hollow chamber and the other of the two metal elements in the region of the two hollow chamber walls opposite corner of the hollow chamber is arranged. In this context, the two hollow chamber walls that form the opposite corner continue through a crossing point of the two hollow chamber walls. By such a profile cross section a particularly high bending stiffness is ensured.
Erfindungsgemäß weist das Pfostenprofil mindestens zwei Hohlkammern auf, wobei in gegenüberliegenden Hohlkammerwänden jeweils ein Paar der Metallelemente angeordnet sind. Dadurch wird eine hohe Stabilität des Gehäuserahmens im Bereich der Pfosten erzielt, wobei die thermischen Eigenschaften des Gehäuses nicht beeinträchtigt werden.According to the invention, the post profile has at least two hollow chambers, wherein in opposite hollow chamber walls in each case a pair of the metal elements are arranged. As a result, a high stability of the housing frame is achieved in the area of the posts, wherein the thermal properties of the housing are not affected.
Um eine Gewichtsersparnis beim Gehäuserahmen zu erzielen, hat es als günstig erwiesen, wenn das Rahmenprofil und/oder das Pfostenprofil mindestens eine Hohlkammer aufweist, die nicht von Metallelementen begrenzt ist.In order to achieve weight savings in the case frame, it has proven to be advantageous if the frame profile and / or the post profile has at least one hollow chamber which is not limited by metal elements.
Es kann auch von Vorteil sein, wenn das Rahmenprofil und/oder das Pfostenprofil eine U-förmige Querschnittskontur aufweisen. Dadurch können zum Beispiel weitere Funktionskomponenten zwischen von der U-Form gebildeten Seitenschenkeln des Rahmenprofils eingebracht werden.It may also be advantageous if the frame profile and / or the post profile have a U-shaped cross-sectional contour. As a result, for example, further functional components can be introduced between side arms of the frame profile formed by the U-shape.
In der Praxis kann es sich als günstig erweisen, wenn die Metallelemente eine Dicke senkrecht zur Längserstreckung der Metallelemente von 0,1 mm bis 1,5 mm, vorzugsweise 0,3 mm bis 0,8 mm und besonders bevorzugt von etwa 0,5 mm bis 0,6 mm aufweisen. Ebenso kann es von Vorteil sein, wenn die Metallelemente senkrecht zur Längserstreckung des Rahmenprofils eine Breite im Bereich von 10 mm bis 100 mm, vorzugsweise von 10 mm bis 60 mm und besonders bevorzugt 10 bis 20 mm besitzen. Derartige Dimensionen haben sich als guter Kompromiss zwischen einer Erhöhung der Stabilität des Rahmen- bzw. Pfostenprofils einerseits und einem sparsamen Einsatz des Metallelement-Materials andererseits herausgestellt.In practice, it may prove favorable if the metal elements have a thickness perpendicular to the longitudinal extent of the metal elements of 0.1 mm to 1.5 mm, preferably 0.3 mm to 0.8 mm and particularly preferably of about 0.5 mm to 0.6 mm. It may also be advantageous if the metal elements perpendicular to the longitudinal extent of the frame profile have a width in the range of 10 mm to 100 mm, preferably from 10 mm to 60 mm and particularly preferably 10 to 20 mm. Such dimensions have proven to be a good compromise between increasing the stability of the frame or post profile on the one hand and economical use of the metal element material on the other hand.
Letztlich kann es auch hilfreich sein, wenn Stahleinsätze das Grundprofil punktuell zumindest abschnittsweise durchdringen. In besonders bevorzugten Ausführungsformen durchdringen die Stahleinsätze das Grundprofil vollständig, d.h. über dessen gesamte Länge. Derartige das Grundprofil durchsetzende Stahleinsätze erhöhen die innige Verbindung der Metallelemente mit dem Grundprofil durch einen Formschlussbeitrag zusätzlich zum Stoffschluss.Finally, it can also be helpful if steel missions at least partially penetrate the basic profile. In particularly preferred embodiments, the steel inserts fully penetrate the base profile, i. over its entire length. Such steel inserts passing through the base profile increase the intimate connection of the metal elements with the basic profile by means of a form-fitting contribution in addition to the material connection.
Ausführungsbeispiele der Erfindung werden nachfolgend anhand der Zeichnungen näher erläutert. Darin zeigen:
- Fig. 1
- ein Klimagerät mit einem aus Rahmenprofilen aufgebauten Gehäuserahmen, wobei den Gehäuserahmen zwischen den Rahmenprofilen ergänzende Flächentragelemente weggelassen sind;
- Fig. 2
- schematisch eine Explosionsdarstellung zur Darstellung des Aufbaus des Gehäuserahmens in einem Eckbereich;
- Fig. 3
- eine stirnseitige, den Querschnitt zeigende Ansicht eines der Rahmenprofile zum Aufbau des Gehäuserahmens in einer vergrößerten Darstellung;
- Fig. 4
- in einer zu
Fig. 3 ähnlichen Darstellung eine weitere Ausführung eines Rahmenprofils zum Aufbau des Gehäuserahmens; - Fig. 5
- in einer zu
Fig. 3 ähnlichen Darstellung weiter Ausführung eine Rahmenprofilen zum Aufbau des Gehäuserahmens; - Fig.6
- perspektivisch einen Ausschnitt aus einer weiteren Ausführung eines Rahmenprofils zum Aufbau des Gehäuserahmens;
- Fig. 7
- schematisch eine benutzungsseitige Ansicht einer drei Zugangstüren aufweisenden Front eines Supermarkt-Gefrierschranks;
- Fig. 8
- einen Schnitt gemäß Linie IX-IX in
Fig. 7 in vergrößerter Darstellung, wobei lediglich ein Gehäusepfostenprofil des Gefrierschranks dargestellt ist.
- Fig. 1
- an air conditioner with a housing frame constructed of frame profiles, wherein the housing frame between the frame profiles complementary surface support elements are omitted;
- Fig. 2
- schematically an exploded view showing the structure of the housing frame in a corner region;
- Fig. 3
- an end-side, the cross-sectional view of one of the frame profiles for the construction of the housing frame in an enlarged view;
- Fig. 4
- in one too
Fig. 3 similar representation of a further embodiment of a frame profile for the construction of the housing frame; - Fig. 5
- in one too
Fig. 3 similar representation further embodiment of a frame profiles for the construction of the housing frame; - Figure 6
- perspective view of a section of a further embodiment of a frame profile to the structure of the housing frame;
- Fig. 7
- schematically a use side view of a three access doors front of a supermarket freezer;
- Fig. 8
- a section along line IX-IX in
Fig. 7 in an enlarged view, wherein only a housing pillar profile of the freezer is shown.
Ein Klimagerät 1 hat einen Gehäuserahmen 2, der im Bodenbereich Tragelemente 3 aufweist, die Bauelemente einer Klimaeinrichtung 4 tragen. Der Gehäuserahmen 2 ist aus entsprechend konfektionierten Rahmenprofilen 5 aufgebaut.An air conditioner 1 has a
Die Rahmenprofile 5 begrenzen, ggf. mit zusätzlichen Pfostenprofilen 9, rechteckige Felder zum Einsetzen von Flächentragelementen 10 zum Verschließen des Gehäuses des Klimagerätes 1. Die Flächentragelemente 10 haben umlaufende Nuten 11, die entsprechende Längsrippen 12 der Rahmenprofile 5 in montiertem Zustand hintergreifen. Auf diese Weise ist ein sicherer Halt der Flächentragelemente 10 am Gehäuserahmen 2 gewährleistet.The frame profiles 5 limit, possibly with
Die Metallelemente 14, 15 sind über ihre gesamte Anlagefläche am Grundprofil 13 mit diesem stoffschlüssig verbunden. Dabei kann ein Haftvermittler bzw. ein Kleber zum Einsatz kommen. Die Metallelemente 14, 15 können bei der Extrusionsherstellung des Grundprofils 13 mit diesem verbunden werden.The
Das Grundprofil 13 hat neben der quadratischen Hohlkammer 6 noch zwei weitere Profil-Hohlkammern 16, 17. In der
Die Metallelemente 14, 15 sind als Armierungsbänder ausgeführt, erhöhen also die Biegesteifigkeit des Rahmenprofils 5, also den Widerstand, den das Rahmenprofil 5 einer Verbiegung um eine Achse senkrecht zur Profil-Längsachse entgegenbringt.The
Das Metallelement 14 ist im Querschnitt abgewinkelt ausgeführt. In einem 90°-Winkelbereich 18 ist das Metallelement 14 kantenfrei gebogen um eine Außenkante 19 der Hohlkammer 6 herumgeführt. Das Metallelement 14 begrenzt zwei Hohlkammerwände 20, 21 der Hohlkammer 6. Zudem übergreift das Metallelement 14 auch noch die beiden sich an die Hohlkammer 6 nach rechts und nach unten anschließenden Hohlkammerwände 22, 23 der Hohlkammern 16, 17. Endbereiche 24, 25 des Profilquerschnitts des Metallelements 14 sind kantenfrei um 90° um von den Hohlkammern 16, 17 gebildete Außenkanten 26, 27 der Hohlkammern 16, 17 herumgeführt.The
Das zweite Metallelement 15 des Rahmenprofils 5 nach
Das Metallelement 15 ist im Bereich einer den beiden Hohlkammerwänden 20, 21, die vom Metallelement 14 begrenzt werden, gegenüberliegenden Ecke 29 angeordnet. Zwei Hohlkammerwände 30, 31 der quadratischen Hohlkammer 6, die diese Ecke 29 bilden, setzen sich durch einen Kreuzungspunkt der beiden Hohlkammerwände 30, 31 hindurch fort. Das Metallelement 15 ist in fortgesetzte Abschnitte 32, 33 der beiden Hohlkammerwände 30, 31 so eingesetzt, dass sich die beiden abgewinkelten Metallelemente 14, 15 zur gleichen Seite hin, nämlich in der
Die beiden fortgesetzten Abschnitte 32, 33 begrenzen jeweils mit einem Abschnitt Schmalseiten der rechteckig ausgeführten Hohlkammern 16, 17. Das Metallelement 15 begrenzt daher die von den fortgesetzten Abschnitten 32, 33 gebildeten Hohlkammerwände der Hohlkammern 16, 17.The two continued
Anstelle des Metallelements 14 hat das Rahmenprofil 5 nach
Auch bei der Ausführung nach
Im Querschnitt weist das Pfostenprofil 5 eine Symmetrieachse 62 auf, diagonal durch die Profil-Hohlkammer 6 verläuft. Die dem Temperaturmittel zwischen dem Äußeren und dem Inneren der Temperiervorrichtung entsprechende Isotherme schneidet diese Symmetrieachse 62 im rechten Winkel, wobei diese Isotherme mit den Metallelementen 15, 34 keinen Schnittpunkt besitzt.In cross-section, the
Das Grundprofil 13 des Rahmenprofils 5 nach
Anstelle des Metallelements 14 bei der Ausführung nach
Das Metallelement 36 ist als Einleger in die einander fortsetzenden Hohlkammerwände 20, 23 des Grundprofils 13 ausgeführt. Das Metallelement 37 ist als Einleger in die einander fortsetzenden Hohlkammerwände 21, 22 des Grundprofils 13 ausgeführt. Die Querschnitte der Metallelemente 36, 37 sind beim Rahmenprofil 5 nach
Anstelle des Metallelements 15 bei den Ausführungen nach den
Zur weiteren Erhöhung der Biegesteifigkeit haben äußere, metallelementfreie, längsseitige Hohlkammerwände 40, 41 des Grundprofils 13 des Rahmenprofils 5 nach
Der Gehäuserahmen des Gefrierschranks 64 hat, ähnlich zum Gehäuserahmen 2 des Klimageräts 1 nach den
Das Rahmenprofil 70 hat ein Grundprofil 73 aus Kunststoff. Das Grundprofil 73 hat eine U-förmige Querschnittskontur. Eine Basis des U wird gebildet durch eine in der
Nach unten werden die nebeneinander liegenden Hohlkammern 75, 74 und 76 durch eine gemeinsame Hohlkammerwand 77 begrenzt.Down the adjacent
Das Grundprofil 73 ist aus Polyvinylchlorid (PVC). Alternativ kann das Grundprofil 73 auch aus Polyamid (PA), insbesondere aus glasfaserverstärkten Polyamid gefertigt sein.The
Dort, wo die Hohlkammerwand 77 die beiden seitlichen Hohlkammern 75, 76 an ihren Schmalseiten begrenzt, hat das Rahmenprofil 70 zwei Metallelemente 78, 79, die als Stahlbänder mit einer Breite von 16,5 mm und einer Stärke von 0,5 mm ausgeführt sind. Die Metallelemente 78, 79 sind als Einleger im als Extrudat ausgeführten Grundprofil 73 ausgeführt. Der Hohlkammerwand 77 gegenüberliegende Hohlkammerwände 80, 81 der Hohlkammern 75, 76 weisen Metallelemente 82, 83 auf, die ebenfalls als Stahl-Armierungsbänder mit einer Brite von 16,5 mm und einer Stärke von 0,5 mm ausgeführt sind. Die Hohlkammern 75, 76 sind also jeweils durch einander gegenüberliegende Metallelemente 78, 82 bzw. 79, 83 begrenzt.Where the
Aufgrund der U-förmigen Querschnittskontur des Rahmenprofils 70 ergibt sich zwischen den beiden oberen Abschnitten der Hohlkammern 75, 76 ein zu drei Seiten hin begrenzter Aufnahmeraum 84, der zur Aufnahme von Funktionskomponenten des Gefrierschranks 64, insbesondere zur Aufnahme von Leuchtmitteln, genutzt werden kann.Due to the U-shaped cross-sectional contour of the
Der grundsätzliche Aufbau der Außen-Tür-Rahmenprofile 68 ist aus der
Claims (10)
- Temperature-control apparatus (1, 64), comprising a housing frame (2), wherein a temperature T1 prevails outside the temperature-control apparatus (1, 64) and a temperature T2 prevails inside the temperature-control apparatus (1, 64), wherein- at least one of the edges of the housing frame is formed by a frame profile (5; 68) which comprises a base profile (13) of plastics material and at least one pair of metal elements (14, 15; 34; 36 to 39) arranged parallel to one another in pairs, which metal elements are in the form of reinforcing strips and are connected to the base profile (13) by a material-bonded connection over their entire contact surface with the base profile, wherein the cross-section of the frame profile has an axis of symmetry (62), the isotherm for the temperature (T1 - T2)/2 is arranged orthogonally relative to the axis of symmetry (62) at the point of intersection with the axis of symmetry, and the isotherm for the temperature (T1 - T2)/2 does not have a point of intersection with the metal elements (14, 15; 34; 36 to 39), that the two metal elements (14, 15, 34) are angular in cross-section, wherein one of the metal elements (14, 34) delimits two hollow-chamber walls (20, 21) of the at least one hollow chamber (6) and the other of the two metal elements (15) is arranged in the region of a corner (29) of the hollow chamber (6) opposite the two hollow-chamber walls (20, 21), that the two hollow-chamber walls (30, 31) which form the opposite corner (29) continue through a crossing point of the two hollow-chamber walls (30, 31);and/or- at least one of the posts (69) of the housing frame (2) is formed by a post profile (9, 70) which comprises a base profile (73) of plastics material and at least one pair of metal elements (78, 79, 82, 83) arranged parallel to one another in pairs, which metal elements are in the form of reinforcing strips and are connected to the base profile (73) by a material-bonded connection over their entire contact surface with the base profile, wherein the cross-section of the post profile has an axis of symmetry, the isotherm for the temperature (T1 - T2)/2 is arranged orthogonally relative to the axis of symmetry at the point of intersection with the axis of symmetry, and the isotherm for the temperature (T1 - T2)/2 does not have a point of intersection with the metal elements (78, 79, 82, 83), that the post profile (9, 70) has at least two hollow chambers (74 to 76), wherein a pair of the metal elements (78, 82; 79, 83) is in each case arranged in opposing hollow-chamber walls (77, 80; 77; 81).
- Temperature-control apparatus (1, 64) according to claim 1, characterised in that the metal elements (36 to 39; 78, 79, 82, 83) are in the form of inserts in the base profile (13; 73), which is in the form of an extruded article.
- Temperature-control apparatus (1, 64) according to claim 1, characterised in that the metal elements (14, 15) are fitted to the outside of the base profile (13) of the frame profile.
- Temperature-control apparatus (1, 64) according to any one of claims 1 to 3, characterised in that the frame profile (5, 68) and/or the post profile (9, 70) has at least one hollow chamber (6, 16, 17; 74 to 76), wherein at least one of the metal elements (14, 15; 34; 36 to 39; 78, 79, 82, 83) delimits one of the hollow-chamber walls (20, 21).
- Temperature-control apparatus (1, 64) according to claim 4, characterised in that at least one metal element of the metal elements arranged parallel to one another in pairs is inserted on the inside into the at least one hollow chamber (6) of the base profile (13) of the frame profile (5; 68).
- Temperature-control apparatus (1, 64) according to any one of claims 1 to 5, characterised in that the frame profile (5, 68) and/or the post profile (9, 70) has at least one hollow chamber (74) which is not delimited by metal elements.
- Temperature-control apparatus (1, 64) according to any one of claims 1 to 6, characterised in that the frame profile (5, 68) and/or the post profile (9, 70) has a U-shaped cross-sectional contour.
- Temperature-control apparatus (1, 64) according to any one of claims 1 to 7, characterised in that the metal elements have a thickness perpendicular to the longitudinal extent of the metal elements of from 0.1 mm to 1.5 mm, preferably from 0.3 mm to 0.8 mm and particularly preferably of approximately from 0.5 mm to 0.6 mm.
- Temperature-control apparatus (1, 64) according to any one of claims 1 to 8, characterised in that the metal elements have a width perpendicular to the longitudinal extent of the frame profile in the range of from 10 mm to 100 mm, preferably from 10 mm to 60 mm and particularly preferably from 10 to 20 mm.
- Temperature-control apparatus (1, 64) according to any one of claims 1 to 9, characterised in that steel inserts (63) pass through the base profile (13, 73) in places at least in part and in particular completely.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PL10771024T PL2490576T3 (en) | 2009-10-22 | 2010-10-20 | Temperature-control apparatus comprising a housing frame |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE202009014319U DE202009014319U1 (en) | 2009-10-22 | 2009-10-22 | Housing a tempering and this comprehensive tempering |
PCT/EP2010/006419 WO2011047851A1 (en) | 2009-10-22 | 2010-10-20 | Housing frame of a temperature-control apparatus and temperature-control apparatus comprising said housing frame |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2490576A1 EP2490576A1 (en) | 2012-08-29 |
EP2490576B1 true EP2490576B1 (en) | 2019-03-20 |
Family
ID=43499782
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP10771024.6A Active EP2490576B1 (en) | 2009-10-22 | 2010-10-20 | Temperature-control apparatus comprising a housing frame |
Country Status (5)
Country | Link |
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EP (1) | EP2490576B1 (en) |
DE (1) | DE202009014319U1 (en) |
PL (1) | PL2490576T3 (en) |
TR (1) | TR201908475T4 (en) |
WO (1) | WO2011047851A1 (en) |
Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102011121152B4 (en) * | 2011-12-15 | 2015-10-22 | Al-Ko Therm Gmbh | Ventilation unit with housing |
EP3015782B1 (en) | 2014-10-29 | 2017-03-08 | Euroclima S.p.A. | Housing for air- conditioning devices |
CN104390417A (en) * | 2014-11-20 | 2015-03-04 | 江苏欧邦塑胶有限公司 | Column structure of filmed glass of refrigerator |
DE202016101045U1 (en) * | 2016-02-29 | 2017-05-31 | A.P.S. Arosio S.p.A. | Thermally insulated housing for an air conditioner |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB1051549A (en) * | ||||
DE29610652U1 (en) * | 1996-06-18 | 1997-07-17 | H. Hüttenbrauck Gmbh u. Co. Profil- Walz- und Presswerk, 58730 Fröndenberg | Reinforcement profile for hollow plastic profiles for the production of windows, doors or the like. |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE1196680B (en) * | 1959-11-07 | 1965-07-15 | Bbc Brown Boveri & Cie | Cooling furniture or the like with insulation made of synthetic foam |
GB9404949D0 (en) * | 1994-03-15 | 1994-04-27 | Topham William H | Method of making a stiffened structural member, and the product of said method |
MXPA01008639A (en) * | 1999-12-30 | 2005-08-26 | Carrier Corp | Air handler framework. |
DE20011107U1 (en) * | 2000-06-23 | 2000-08-31 | Klose, Dieter, 46569 Hünxe | Frame profile with connector for air conditioners |
DE102005059145A1 (en) | 2005-12-10 | 2007-06-28 | Rehau Ag + Co | Freezer door assembly and freezer with such a freezer door assembly |
ITRE20050145A1 (en) | 2005-12-23 | 2007-06-24 | Cisaplast Srl | "COUNTERFRAME UNIT-FRAME FOR REFRIGERATOR CABINETS" |
-
2009
- 2009-10-22 DE DE202009014319U patent/DE202009014319U1/en not_active Expired - Lifetime
-
2010
- 2010-10-20 WO PCT/EP2010/006419 patent/WO2011047851A1/en active Application Filing
- 2010-10-20 TR TR2019/08475T patent/TR201908475T4/en unknown
- 2010-10-20 PL PL10771024T patent/PL2490576T3/en unknown
- 2010-10-20 EP EP10771024.6A patent/EP2490576B1/en active Active
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB1051549A (en) * | ||||
DE29610652U1 (en) * | 1996-06-18 | 1997-07-17 | H. Hüttenbrauck Gmbh u. Co. Profil- Walz- und Presswerk, 58730 Fröndenberg | Reinforcement profile for hollow plastic profiles for the production of windows, doors or the like. |
Also Published As
Publication number | Publication date |
---|---|
WO2011047851A1 (en) | 2011-04-28 |
DE202009014319U1 (en) | 2011-02-24 |
TR201908475T4 (en) | 2019-07-22 |
PL2490576T3 (en) | 2019-11-29 |
EP2490576A1 (en) | 2012-08-29 |
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