EP1538271B1 - Conteneur extensible - Google Patents

Conteneur extensible Download PDF

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Publication number
EP1538271B1
EP1538271B1 EP04023523A EP04023523A EP1538271B1 EP 1538271 B1 EP1538271 B1 EP 1538271B1 EP 04023523 A EP04023523 A EP 04023523A EP 04023523 A EP04023523 A EP 04023523A EP 1538271 B1 EP1538271 B1 EP 1538271B1
Authority
EP
European Patent Office
Prior art keywords
extension element
container
side wall
action
extension
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.)
Not-in-force
Application number
EP04023523A
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German (de)
English (en)
Other versions
EP1538271A3 (fr
EP1538271A2 (fr
Inventor
Hubert Bucher
Andreas Serden
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.)
Airbus Defence and Space GmbH
Original Assignee
EADS Deutschland GmbH
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from DE102004007297A external-priority patent/DE102004007297B4/de
Application filed by EADS Deutschland GmbH filed Critical EADS Deutschland GmbH
Publication of EP1538271A2 publication Critical patent/EP1538271A2/fr
Publication of EP1538271A3 publication Critical patent/EP1538271A3/fr
Application granted granted Critical
Publication of EP1538271B1 publication Critical patent/EP1538271B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/343Structures characterised by movable, separable, or collapsible parts, e.g. for transport
    • E04B1/344Structures characterised by movable, separable, or collapsible parts, e.g. for transport with hinged parts
    • E04B1/3442Structures characterised by movable, separable, or collapsible parts, e.g. for transport with hinged parts folding out from a core cell
    • E04B1/3444Structures characterised by movable, separable, or collapsible parts, e.g. for transport with hinged parts folding out from a core cell with only lateral unfolding
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/343Structures characterised by movable, separable, or collapsible parts, e.g. for transport
    • E04B1/34305Structures characterised by movable, separable, or collapsible parts, e.g. for transport telescopic
    • E04B1/3431Structures characterised by movable, separable, or collapsible parts, e.g. for transport telescopic with only one level of nesting

Definitions

  • the invention relates to an expandable container, e.g. According to the ISO standard, in particular as a work space, according to the preamble of claim 1.
  • Such walk-in containers are also referred to as Shelter in Anglo-American language area.
  • An expandable container is eg from the DE-G 92 16 314.9 known. It comprises a base container with hinged side walls and one or more extendable from the base container expansion elements.
  • An extension element comprises two side walls and a front wall. In the state with extended extension element form two unfolded side walls of the base container roof wall and bottom wall of an extension element.
  • a disadvantage of this design the large sealing lengths that are necessary for the sealing of the container along the roof and bottom wall. This is particularly problematic in the demand for ABC-tightness.
  • Another expandable container is from the EP 0 682 156 B1 known. It comprises a base container and, to expand the interior, one or more extension elements which can be extended from the base container.
  • the extension elements are box-shaped and - with the exception of the open side to the base container - closed on all sides.
  • To achieve a flat bottom within the entire container also has a lifting device with which the extension elements are lowered so that after lowering the bottom walls of base container and extension element are at the same height.
  • the dimensions must be the two extension elements are chosen so that the one extension element can be retracted into the other extension element.
  • a generic expandable container which has a lifting device to achieve a flat bottom, with which the extension elements are lowered so that after lowering the bottom walls of base container and extension element are at the same height.
  • the extension elements are open at the top.
  • On the base container a foldable about a horizontal axis side wall is present, which forms the roof wall of an extension element when the extension element is extended. With this construction, an improved standing height can be achieved in an extension element.
  • a mechanism already present on the container (a side wall of the base container is pivotable about a horizontal axis so that it can also serve as a roof wall of an extension element in the folded-up state) is used to lower the extension elements, so that a uniform one throughout the container Ground level arises.
  • a lifting device in particular designed as a linear actuator, is provided, which acts on the hinged side wall. This linear actuator can be supported on both the base container and on the ground on which the container is located.
  • a compensation device is provided. This allows a parallel lowering, ie without tilting the extension element from the vertical; the bottom of the extension element remains in a horizontal position during lowering.
  • an extension element has at its inner end (ie the end which, when the extension element is extended, comes to rest adjacent to the loading container) a plurality of upper and several lower sliding or unrolling elements, e.g. Roll, up.
  • the base container has a plurality of guide elements associated with the upper sliding or unrolling elements, with ramps sloping down towards the extended extension element.
  • the base container has a plurality of lower stops associated with lower sliding or unrolling elements, e.g. in the form of vertical profile strips, on.
  • extension element When the extension element is fully extended, it assumes a statically fixed, stable position in which the lower sliding or unrolling elements abut against the associated lower stops and the upper sliding or unrolling elements rest on the ramps of the guide elements. This stable position forms the starting position for the lowering of the extension element by actuation of the lifting device.
  • Fig. 1 a) to e) show the individual steps in the construction of an expandable container according to the invention with two extension elements 10,20.
  • the box-shaped base container 1 contains the two extension elements 10, 20 (see Fig. 1d )).
  • the extension element 20 is retracted into the somewhat larger extension element 10 in terms of length and height. It can be seen in each case bottom wall 15,25 and front wall 16,26 of the two extension elements 10,20 and a side wall 27 of the inner extension member 20.
  • the base container 1 has bottom wall 2, roof wall 3 and two hinged side walls 4,5, each about a horizontal Axis 41,51 are rotatably mounted on the upper edge of a container wall.
  • Fig. 1 b are the two hinged side walls 4,5 folded upwards and are now essentially in a horizontal plane.
  • Side surface of the base container 1 and unfolded side wall 4.8 form a right angle.
  • variable-length support 55 linear actuator
  • the support 55 may e.g. be designed as a telescopic lifting cylinder (for example, hydraulic, pneumatic, electromechanical).
  • the smaller extension element 20 is already fully extended. This is done by means arranged on the extension element 20 rollers 23,24 ( Fig. 3 ) in the upper region of the side wall of an extension element. These rollers engage in guideways 80 (see also Fig. 2 ), which are provided on the folded-up side wall 5. For each extension element are advantageously two Guideways provided.
  • an extension element 10, 20 in the bottom area has further rollers 21, which roll on extension on the bottom wall 15 of the larger extension element 10.
  • the folded-up side wall 5 of the base container 1 now forms the roof wall of the extension element 20.
  • the folded-up side wall 4 or 5 is therefore referred to below depending on the context as a roof wall.
  • the larger extension element 10 is also completely extended over the guideways 80 arranged on the folded-up side wall 4.
  • the extension of the two extension elements was in each case in the horizontal direction, i. without change in the vertical.
  • the floor levels of the extension member 10,20 and the base container 1 are respectively different, with the floor level of the base container 1 being lowest and the floor level of the small extension member 20 being the highest.
  • the level difference of the smaller extension element to the base container is about 100 mm, the difference in level of the larger extension element 10 to the base container 1 about 50 mm.
  • Fig. 1 e shows the fully unfolded container with lowered extension elements 4,5, so that now a uniform floor level is produced within the entire extended container.
  • the length of the respective extension element associated support 55 ( Fig. 1 d) reduced.
  • the roof walls 4, 5 which are rotatably mounted on the horizontal axis 41, 51 are pivoted out of their horizontal position.
  • this compensating device conveys to the outer end of an extension element a preferably equal vertical change in position of the inner end adjacent to the base container 1 Expansion element.
  • a significant advantage of this embodiment is that only the relevant lifting device 55 must be actuated for lowering.
  • the mechanism for achieving the parallel lowering is coupled with the movement of the lifting device 55 and thus takes place automatically without further external intervention for control.
  • Fig. 2 shows a vertical section through a container according to the invention. It can be seen the base container 1, in which an extension element 20 is fully retracted.
  • the hinged side wall 5 of the base container 1 is folded from its vertical position of the transport state up into a horizontal position.
  • the fulcrum is designated 51.
  • a guide track 80 can be seen. It is divided into two parts, wherein the two sections 80a, 80b are connected by means of a hinge 85.
  • this hinge 85 By means of this hinge 85, the inner (adjacent to the base container 1) section 80a can be folded down.
  • the outside (toward the outer edge of the unfolded container) lying portion 80 b is rigidly connected to the side wall 5.
  • the extension element 20 has at the upper edge of its side wall on a roller 23 which engages upon extension into the guide track 80. In Fig. 2 it is located in its starting position, before the extension element 20 is extended. At the outer end of the guideway, the end position of the roller is shown in dashed lines with fully extended extension element 20. Another roller 24 is located at the same height at the rear, in Fig. 2 not shown end of the extension element (see Fig. 3 ).
  • the extension element 20 also has bottom rollers 21, which roll on extension on the bottom wall 15 of the larger extension element 10.
  • variable-length support 55 Approximately in the middle of the unfolded side wall 5 engages the variable-length support 55, which is supported with its other end to the base container 1.
  • the balancing device intended to prevent tilting of the extension element on lowering by the lifting device 55 comprises as an essential element a cable 57, e.g. from steel. It is connected at one end to the outer end of the guide track 80 (alternatively: the side wall 5). The rope 57 is guided over a deflection roller U1 in the lower region of the base container 1. From there it is guided via a further deflection roller U2 in the upper region of the base container 1 (above the pivot point 51) and fastened to the foldable section 80a of the guideway 80 (attachment point B2).
  • a cable 57 e.g. from steel. It is connected at one end to the outer end of the guide track 80 (alternatively: the side wall 5).
  • the rope 57 is guided over a deflection roller U1 in the lower region of the base container 1. From there it is guided via a further deflection roller U2 in the upper region of the base container 1 (above the pivot point 51) and fastened to the foldable section 80a of
  • the length of the rope is adjusted so that when folded side wall 5 according to Fig. 2 the foldable portion 80a of the guide track 80 is oriented horizontally, so that there is no kink on the hinge 85.
  • the rope is acted upon by means of a clamping device with a bias voltage.
  • the extension element 20 can now via the rollers 23 and 24 ( Fig. 3 ), which roll on the guideways 80, are extended.
  • the two rollers 23,24 come to rest in the region of the beginning or end of the guideway 80.
  • a roller 23 thus comes to lie on the rigidly connected to the folded-up side wall 5 section 80b, while the other roller 24 comes to lie on the hinged portion 80a of the guideway.
  • the lifting device is actuated, ie the length of the support 55 is reduced.
  • the side wall 5 together with the outer side of the extension member 20 pivots about the fulcrum 51 downward.
  • a corresponding pitch is released at the other end of the rope.
  • the foldable portion 80a of the guide rail 80 in which the one guide roller 24 of the extension member 20 engages, is also lowered down together with the inside end of the extension member 20.
  • Fig. 3 shows the container in the state with extended and lowered extension element 20th
  • the direction of movement of the extension element 20 is substantially vertical.
  • the horizontal movement of the extension member 20 due to the fact that the outer end of the pivotable roof 5 moves in a circular path about the pivot point 51, can be neglected, given the radius of the pivoting movement (width of the extension element 10,20 in ISO containers : several meters) and a typically desired amount of lowering of about 100 mm into consideration.
  • the described lowering movement is completely reversible.
  • the mechanism described is run through in reverse time sequence.
  • To lift the lifting device 55 is actuated (change in length of the support).
  • the roof wall 5 pivots about the axis 51 upwards.
  • the resulting change in position of the attachment point B1 of the rope 57 at the outer end of the roof wall 5 causes the foldable portion 80a of the guideway 80, and thus the inside of the extension member 20 is raised, so that a parallel lifting results without tilting from the vertical.
  • the foldable portion 80a of the guide track 80 rests against the roof wall 5.
  • the extension element 20 can now be inserted into the base container 1.
  • 1 additional guide means 99 may be attached to the base container. These may be in the form of a vertically extending rail into which pins 98 (FIG. Fig. 4 ), Pins or bolts, which are connected to an extension elements 10,20, engage.
  • tension struts 101 can be attached.
  • the tension struts can be designed in a particularly advantageous embodiment as ropes, which are permanently attached (both with retracted and extended extension element as well as in the transition phase) at the diagonally opposite attachment points between an extension element 10,20 and the base container 1.
  • these ropes 55 set the maximum horizontal extension travel of an extension element 10, 20. They also ensure correct alignment of the extension element (no tilting of the extension element from the vertical) with the extension element fully lowered.
  • the Fig. 5 to 8 show a second embodiment of the container according to the invention. Unlike in the Fig. 2 to 4 In this case, for the lowering of the inner end of an extension element no cable 57 Fig. 2 . 3 ) or other balancing device needed.
  • FIG. 5 the base container 1 with extended extension element 20.
  • the solid lines show the state before the lowering of the extension element 20, the dotted lines indicate the state with lowered extension element again.
  • the lifting device 55 is exactly as in the in the Fig. 2 to 4 shown first embodiment designed as a linear actuator, which acts to achieve the reduction (and lifting) of the extension member 20 on the hinged side wall 5.
  • the actuator 55 is supported on the base container 1.
  • the actuator 55 may be supported on the ground on which the container is located.
  • a support of the lifting device 55 on the ground also in the first embodiment ( Fig. 2 to 4 ) of the container is possible.
  • a second linear actuator 56 is provided which acts between the base container 1 and the hinged side wall 5.
  • the other lifting device 55 is specifically responsible for the lowering and raising of the extension member 20. According to the different operating loads of the actuator 56 can be designed weaker than the actuator 55.
  • the extension element 20 is guided in the guideway 180 at exactly one point (roller 123). At this point, the extension element is rotatable about a horizontal axis D. This roller 123 is disposed in a (horizontally extending) region between the center of gravity S of the extension member 20 and the outer end of the extension member 20.
  • the extension member 20 also has an upper 201 and a lower roller 202 at its inner end adjacent the base container.
  • the two rollers are each connected via a shaft receiver 205 (FIG. Fig. 6 ) is attached to a side wall of the extension member 20.
  • the upper roller 201 is assigned a guide element 211. It is located at the top of the base container 1, namely at its end adjacent to the extension element 20. It has the shape of an angle with horizontally and vertically aligned legs and a ramp connecting the two legs, which drops towards the extension element.
  • the ramp has a length (in the horizontal) of 10 mm in a typical embodiment. Preferred angles are in the range of 20 to 50 degrees relative to the vertical.
  • the lower roller 202 is associated with a stop 212. It is arranged on the base container 1, specifically at its end adjacent to the extension element 20. It has the shape of a substantially vertically extending profile, which in this embodiment extends over approximately the entire height of the base container 1.
  • Fig. 5 and 7 show the rollers 201,202, arranged on a side wall 27 of the extension member 20.
  • corresponding rollers are present, which cooperate with a present on the other side of the base container guide member and vertical stop.
  • Fig. 7 shows a horizontal section along the line AA of Fig. 5 , in the upper roller 201 and guide member 211 and stop profile 212 are shown in detail.
  • the lifting device 55 can be dismantled after the lowering of the extension element 20 and stowed in a niche of the base container.
  • the loads of the extension element 20 are advantageously taken up by the stop 212, on which both lower and upper rollers 201,202 are supported.
  • the extension element 20 when the extension element 20 is extended and lowered, the operating loads can be absorbed by a tension strut 101 between the base container 1 and the extension element 20, as in FIG Fig. 5 shown.
  • the tension struts 101 may be designed in an advantageous embodiment as ropes, which are permanently attached (both with retracted and extended extension element as well as in the transition phase) at the diagonally opposite attachment points between an extension element 20 and the base container 1. When retracted extension element find the ropes 101 in a niche between the side wall 27 of an extension element and the base container 1 place.
  • the Fig. 8 a) to d) show in four snapshots the process of lowering an extension element for in the Fig. 5 to 7 illustrated embodiment of the container according to the invention.
  • the areas around the upper guide element 211 and the lower stop 212 are additionally shown enlarged.
  • the extension element 20 When extending from the base container 1, the extension element 20 rolls on bottom rollers 21, arranged on the bottom wall 25. The bottom rollers 21 roll on the bottom wall 15 of the larger extension element 10 (FIG. Fig. 1 ), which is still completely in the base container 1.
  • the extension member 20 by means of the roller 123 in the guide rail 180, mounted on the folded side wall 5 out where it is rotatably mounted about a horizontal axis D. The folded-up side wall 5 is in a horizontal position during extension.
  • Fig. 8a shows the situation with almost completely extended extension element 20.
  • the last of the bottom rollers 21 has reached the outermost edge of the bottom wall 21.
  • the load transfer takes place through the above arranged on the base container 1 guide element 211.
  • the upper, arranged on the extension member 20 roller 201 is now on the horizontal leg of the guide member 211 on.
  • extension element 20 is extended even further ( Fig. 8b Due to the torque induced by the weight force of the extension member (center of gravity S) (with respect to the pivot point D), the upper roller 201 rolls on the ramp of the guide member 211 until the lower, arranged on the extension member 20 roller 202 abuts the vertical stop 212 of the base container 1.
  • the extension element is now in a stable, statically fixed position (geometrically clamped), in which the pair of rollers 201,202 generates a magnitude equal amount of counter-torque to the torque induced by the force of gravity.
  • This stable position in Fig. 8b ) is shown, forms the starting position for the lowering of the extension element.
  • the folded-up side wall 5 is still in a horizontal position.
  • a single roller 201, 202 may also be replaced by a group of rollers (e.g., two or three rollers disposed on a common frame).
  • a rollable element e.g. a bolt having a rectangular cross-section may be used, one of its surfaces being slidably formed (e.g., by means of a lubricious coating).
  • the described lowering movement is completely reversible.
  • the extension member 20 is raised until it is the stable position according to Fig. 8b ) reached. From this position, the extension element 20 can be retracted into the base container 1.
  • the additional surface elements may also be attached to the roof wall 4, 5 of an extension element 10, 20 in a foldable manner
  • the additional surface elements may be integrated in the side walls of an extension element, in such a way that the side walls are double-walled and the additional surface element between the two walls of the side wall is arranged. If necessary, the additional surface elements can be moved out, for example by means of spring force. This is on the Fig. 8a to Fig. 8d ).
  • the additional surface elements can be double-walled.
  • 10,20 seals in particular contact seals, may be present on the additional surface elements or on base containers or extension elements.
  • additional surface elements 18,28 can also be structurally separated from the container elements transported as separate components, and inserted as needed.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)
  • Rigid Containers With Two Or More Constituent Elements (AREA)

Claims (14)

  1. Conteneur, en particulier servant d'espace de travail, de volume variable, comprenant :
    - un conteneur de base (1) avec une paroi de plancher (2) et une paroi de toit (3) et au moins une paroi latérale (4, 5) pouvant être rabattue autour d'un axe horizontal (41; 51), ainsi
    - qu'au moins un élément d'élargissement (10 ; 20) déployable hors du conteneur de base (1), qui présente une paroi de plancher (15, 25), un côté ouvert vers le conteneur de base (1) ainsi qu'une paroi avant (16, 26) opposée au côté ouvert, le ou les éléments d'élargissement (10, 20) étant ouverts vers le haut, et dans l'état déployé, la paroi de toit d'un élément d'élargissement étant formée par une paroi latérale (4, 5) du conteneur de base (1), ouverte par pivotement,
    - un dispositif de levage (55) associé à un élément d'élargissement (10, 20), avec lequel l'élément d'élargissement (10, 20) peut être abaissé de telle sorte qu'après le déploiement de l'élément d'élargissement (10, 20), les parois de plancher (15, 25, 2) de l'élément d'élargissement (10, 20) et du conteneur de base (1) se situent à la même hauteur, et avec lequel un élément d'élargissement (10, 20) peut être soulevé de telle sorte que l'élément d'élargissement (10, 20) puisse être rentré à nouveau dans le conteneur de base (1) après son abaissement,
    caractérisé en ce que des voies de guidage (80, 180) sont disposées au niveau de la ou des parois latérales rabattables (4, 5), dans lesquelles est guidé un élément d'élargissement (10, 20) lors du déploiement hors du conteneur de base (1) ou de sa rentrée dans celui-ci, le dispositif de levage (55) venant en prise avec la paroi latérale rabattable (4, 5) pour abaisser et soulever un élément d'élargissement (10, 20).
  2. Conteneur selon la revendication 1, caractérisé en ce que le conteneur présente exactement deux parois latérales rabattables (4, 5) et exactement deux éléments d'élargissement (10, 20) déployables dans des directions opposées hors du conteneur de base, les dimensions des éléments d'élargissement (10, 20) étant sélectionnées de telle sorte que l'un des éléments d'élargissement (20) puisse être rentré dans l'autre élément d'élargissement (10), et un dispositif de levage (55) étant associé à chaque élément d'élargissement, lequel dispositif de levage est disposé et agit entre une paroi latérale ouverte par pivotement (4, 5) et le conteneur de base (1).
  3. Conteneur selon la revendication 1 ou 2, caractérisé en ce qu'un dispositif de compensation (57) est prévu, lequel, lors d'une variation de position verticale de l'extrémité située à l'extérieur d'un élément d'élargissement (10, 20), permet une variation de position verticale de préférence de même ampleur de l'extrémité de l'élément d'élargissement (10, 20) située à l'intérieur, adjacente au conteneur de base (1).
  4. Conteneur selon l'une quelconque des revendications précédentes, caractérisé en ce que le dispositif de levage (55) est réalisé sous forme de support de longueur variable.
  5. Conteneur selon l'une quelconque des revendications précédentes, caractérisé en ce que les voies de guidage (80) sont divisées en deux portions (80a, 80b) connectées par le biais d'une charnière (85), la portion située à l'extérieur (80b) du rail de guidage (80) - dans l'état rabattu vers le haut de la paroi latérale rabattable (4, 5) - étant connectée rigidement à la paroi latérale rabattable (4, 5) et la portion (80a) du rail de guidage (80) située à l'intérieur à côté du conteneur de base (1) pouvant être rabattue vers le bas depuis la paroi latérale rabattable (4, 5).
  6. Conteneur selon la revendication 5, caractérisé en ce que le dispositif de compensation comprend un élément (57) en forme de barre transmettant les forces de traction, lequel est guidé par le biais de poulies de renvoi (U1, U2) prévues sur le conteneur de base (1) et dont une extrémité (B2) est connectée à la portion rabattable (80a) d'un rail de guidage (80) et dont l'autre extrémité (B1) est connectée à l'extrémité située à l'extérieur de la paroi latérale rabattable (4, 5) ou à la portion (80b) d'un rail de guidage (80) connectée rigidement à celle-ci.
  7. Conteneur selon l'une quelconque des revendications précédentes 1 à 4, caractérisé en ce qu'un élément d'élargissement (10, 20) est guidé dans une voie de guidage (180) sur la paroi latérale rabattable (4, 5) exactement en un emplacement, où il peut tourner autour d'un axe de pivotement horizontal (D).
  8. Conteneur selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément d'élargissement présente, sur sa paroi de plancher (15, 25), des rouleaux de plancher (21).
  9. Conteneur selon l'une quelconque des revendications 1 à 4 ou 7 à 8,
    caractérisé par les caractéristiques suivantes :
    - un élément d'élargissement (10, 20) présente, sur son extrémité située à l'intérieur, plusieurs éléments supérieurs (201) et plusieurs éléments inférieurs (202) pouvant glisser ou rouler,
    - le conteneur de base (1) présente, sur son extrémité adjacente à l'élément d'élargissement (10, 20), plusieurs éléments de guidage (211) associés aux éléments supérieurs (201) pouvant glisser ou rouler, avec des rampes descendant vers l'élément d'élargissement (10, 20),
    - le conteneur de base (1) présente, à son extrémité adjacente à l'élément d'élargissement (10, 20) plusieurs butées inférieures (212) associées aux éléments inférieurs (202) pouvant glisser ou rouler,
    - lorsque l'élément d'élargissement (10, 20) est complètement déployé, l'élément d'élargissement (10, 20) adopte une position de départ statiquement fixe pour abaisser l'élément d'élargissement (10, 20), dans laquelle les éléments inférieurs (202) pouvant glisser ou rouler butent contre une butée inférieure (212) et les éléments supérieurs (201) pouvant glisser ou rouler s'appliquent sur la rampe d'un élément de guidage (211).
  10. Conteneur selon l'une quelconque des revendications précédentes, caractérisé en ce que des tirants en diagonale (101) sont prévus entre le conteneur de base (1) et des éléments d'élargissement (20, 30).
  11. Conteneur selon l'une quelconque des revendications précédentes, caractérisé en ce que des éléments de surface supplémentaires (18, 28, 128) sont prévus, lesquels permettent de fermer les ouvertures (95) formées du fait de l'abaissement des éléments d'élargissement (10, 20) entre la paroi latérale (17, 27) d'un élément d'élargissement (10, 20) et une paroi latérale rabattable (4, 5), de sorte que l'on obtienne un espace interne complètement fermé vers l'extérieur.
  12. Conteneur selon l'une quelconque des revendications précédentes, caractérisé en ce que le dispositif de levage (55) est disposé et agit entre la paroi latérale rabattable (4, 5) et le conteur de base (1).
  13. Conteneur selon l'une quelconque des revendications 1 à 8, caractérisé en ce que le dispositif de levage (55) est disposé et agit entre la paroi latérale rabattable (4, 5) et le support sur lequel se trouve le conteneur.
  14. Conteneur selon l'une quelconque des revendications précédentes, caractérisé en ce qu'un support de longueur variable (56), qui est disposé et agit entre le conteneur de base (1) et la paroi latérale rabattable (4, 5) est prévu, pour le pivotement vers l'extérieur et vers l'intérieur d'une paroi latérale rabattable (4, 5) entre une position verticale et une position horizontale.
EP04023523A 2003-12-03 2004-10-02 Conteneur extensible Not-in-force EP1538271B1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE10356454 2003-12-03
DE10356454 2003-12-03
DE102004007297A DE102004007297B4 (de) 2003-12-03 2004-02-14 Erweiterbarer Container
DE102004007297 2004-02-14

Publications (3)

Publication Number Publication Date
EP1538271A2 EP1538271A2 (fr) 2005-06-08
EP1538271A3 EP1538271A3 (fr) 2009-07-29
EP1538271B1 true EP1538271B1 (fr) 2012-07-04

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP04023523A Not-in-force EP1538271B1 (fr) 2003-12-03 2004-10-02 Conteneur extensible

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US (3) US7658037B2 (fr)
EP (1) EP1538271B1 (fr)

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Also Published As

Publication number Publication date
US7921608B2 (en) 2011-04-12
US20100050540A1 (en) 2010-03-04
US7658037B2 (en) 2010-02-09
US8117670B2 (en) 2012-02-21
EP1538271A3 (fr) 2009-07-29
US20050120639A1 (en) 2005-06-09
EP1538271A2 (fr) 2005-06-08
US20100050539A1 (en) 2010-03-04

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