CN102452536A - Collapsible container and assembly mechanisms - Google Patents

Collapsible container and assembly mechanisms Download PDF

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Publication number
CN102452536A
CN102452536A CN2010105183195A CN201010518319A CN102452536A CN 102452536 A CN102452536 A CN 102452536A CN 2010105183195 A CN2010105183195 A CN 2010105183195A CN 201010518319 A CN201010518319 A CN 201010518319A CN 102452536 A CN102452536 A CN 102452536A
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CN
China
Prior art keywords
wall
lever
throw
assembling mechanism
link
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Granted
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CN2010105183195A
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Chinese (zh)
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CN102452536B (en
Inventor
亚瑟·文森特·马吕斯·梅杰斯
罗伯特·安托纽斯·布斯克莫伦
简·科内利斯·莱特瑞克
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HOLLAND CONTAINER INNOVATIONS BV
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HOLLAND CONTAINER INNOVATIONS BV
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Priority to CN201010518319.5A priority Critical patent/CN102452536B/en
Priority to PCT/NL2011/050711 priority patent/WO2012057616A1/en
Priority to US13/881,005 priority patent/US9022242B2/en
Priority to DE112011103611.6T priority patent/DE112011103611B4/en
Priority to NL2007607A priority patent/NL2007607C2/en
Publication of CN102452536A publication Critical patent/CN102452536A/en
Application granted granted Critical
Publication of CN102452536B publication Critical patent/CN102452536B/en
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Abstract

The invention discloses a collapsible container. The container comprises at least one wall which can rotate around a rotation axis and assembly mechanisms connected with the walls, wherein each assembly mechanism comprises a lever arm and a connecting piece; the lever arm is connected to the walls by pivots in a first position; the connecting piece is used for transferring the force acting on the lever arm to the walls in a second position; the assembly mechanisms can move from the containing position to the expansion position; and the forces can act on the lever arms of the assembly mechanisms and are transferred to the walls, thus moving the walls from the containing position to the erect position. Besides, the invention also discloses the assembly mechanisms used for the container.

Description

Foldable container and assembling mechanism
Technical field
The present invention relates to a kind of Foldable container with assembling mechanism, and the assembling mechanism that is used for this Foldable container.
Background technology
Be widely used in the disclosed container type of patent documentation NL1017159 and US4099640 land route, sea route and the dead circuit goods transport in the world.Because international trade and distribution thereof is unbalanced, usually need empty container be transported to Quantity production from the big market of consumption and makes the area.For reducing the cost of transportation empty container, researched and developed Foldable container.This freight container can be converted into folding after emptying or receiving state, and its institute takes up space and is significantly less than assembled state and takes up space in this state, thereby has improved the conveying efficiency of empty container.
The assembly and disassembly of Foldable container must be carried out with safe and reliable mode.The size of freight container and weight usually need be used for example heavy lift such as crotch cargo crane, thereby make complicated operationization, add the burden of re-assemble/dismounting.Also researched and developed such system, wherein the deadweight of the wall of large collapsible formula freight container can come balance by biasing member, to assist assembled by hand and control.Patent documentation EP2036835 discloses an example of this system.Yet,, still need the wall of operator's assembled container in freight container even if the scene has this bias system.See that from the health and safety angle this form is worthless, and also make assembling process become more complicated.
Summary of the invention
According to the present invention; A kind of Foldable container is provided; It comprises the wall that at least one can rotate around S. A., and with said wall bonded assembly assembling mechanism, this assembling mechanism is included in the throw of lever of primary importance pivotal joint to said wall; And link, be used for the power that acts on the throw of lever is passed to said wall in the second place.
Assembling mechanism can be positioned at a side of wall, and this side is positioned at the outside of freight container in assembled state.
On the said second place, the power that acts on the throw of lever is passed to said wall through said link, and the said second place can be away from the S. A. of said wall, to obtain the favorable mechanical performance.
The first end of said link may be operably coupled to said throw of lever, and the second end of said link operationally is connected to said wall at said second place place.
Said assembling mechanism also can further comprise housing, and one of them in said first and second ends of said link may be operably coupled to throw of lever or wall through this housing.
Said housing further comprises a passage, and said first or the second end of said link can be maintained slidingly retained in this passage, thereby makes said mechanism get into expanded position by for example reception position.
Said first or the second end of said link remains in the passage simultaneously sliding type and pivoted.
Said housing also can further comprise biasing member, and this biasing member is operationally towards said first or the second end biasing of reception position to said link.Said biasing member can be a spring.
Said housing also can further comprise retainer, and when said assembling mechanism was positioned at expanded position, said first or the second end of said link can be near this retainers.
Another of said link first or the second end can pivotal joint to another throw of lever or said walls.
Said link comprises a roughly bar of rigidity.
Said link can also comprise hinge-rod, and this hinge has defined two parts, promptly has the first of first end and has the second portion of the second end.
The first end of said hinge-rod can pivotal joint to said throw of lever, and the second end of said hinge-rod can pivot in the second place and be connected to said wall.
Said link can comprise rope, and this rope can have elasticity.
The first end of said elastic rope can be fixedly attached to said throw of lever, and the second end of said elastic rope can be connected to said wall at said second place head lamp brush guard pivot.
The wall of Foldable container can comprise at least one groove, and said assembling mechanism can be accommodated in this groove basically.
Said Foldable container also can further comprise bias mechanism, is used for the deadweight of the said wall of balance.
Said bias mechanism can comprise torsion bar, and this torsion bar can be installed in the hinge at the S. A. place of wall or in abutting connection with hinge.
Said Foldable container can be used as cargotainer.
According to a further aspect in the invention, assembling mechanism is provided also, this assembling mechanism is suitable for the described Foldable container of first aspect present invention to be used.
According to a further aspect in the invention; Assembling mechanism on a kind of wall that is used to be installed in Foldable container is provided; This assembling mechanism comprises throw of lever; Be used for being connected to a wall of Foldable container at the primary importance head lamp brush guard pivot, and link, when using, this link is passed on the wall of Foldable container in the power that will act on the second place on the said throw of lever.
According to a further aspect in the invention, a kind of method of assembling Foldable container is provided, this freight container comprises that at least one can be along the wall of S. A. rotation, and with wall bonded assembly assembling mechanism, this method comprises:
On primary importance, said assembling mechanism is applied hoisting force, this primary importance is separated with wall; And
On the second place, through said assembling mechanism this hoisting force is passed to wall, this second place is separated with S. A., so that make wall turn round action.
Said method may further include the deadweight of the said wall of balance in assembling process.
The deadweight of said wall can be through said bias mechanism balance.
Description of drawings
For understanding the present invention better, and illustrate clearly how the present invention realizes effect, will combine specific embodiment in figure below, to use Reference numeral, wherein:
Fig. 1 a is the lateral plan of wall with Foldable container of assembling mechanism to 1g, this illustrated said freight container (Fig. 1 is a) to the process of deployed condition (Fig. 1 g) by the receiving state among Fig. 1 a;
Fig. 2 has illustrated a kind of distortion of assembling mechanism shown in Figure 1;
Fig. 3 has illustrated an alternate embodiments of said assembling mechanism;
Fig. 4 has illustrated another alternate embodiments of said assembling mechanism;
Fig. 5 has illustrated another alternate embodiments of said assembling mechanism;
Fig. 6 has illustrated the part stack-mounted wall of Foldable container, and this wall has assembling mechanism and bias mechanism.
The specific embodiment
To 1b, Foldable container comprises that at least one can be along the wall 2 of S. A. A rotation referring to Fig. 1 a.Preferably this wall also further comprises additional wall, base portion and top; For clarity sake, these characteristics have been omitted among the figure.The said S. A. A of said wall 2 is defined by pivot, and this pivot roughly overlaps with the bottom margin of said wall 2, and can comprise like hinge 4.
The said wall 2 of freight container has formed and has comprised the bottom and corresponding top that is roughly rectangle, and the part of end wall and microscler sidewall, and the length of this sidewall is greater than the width of this end wall.The assembly and disassembly of freight container are roughly described in patent documentation NL1017159.The present invention is relevant with each wall 2 independent mode that raise or reduce of freight container.The present invention especially rising with said microscler sidewall is relevant with reduction.
Said wall 2 is carrying additional assembling mechanism 6, and this additional assembling mechanism 6 comprises throw of lever 8, link 10 and housing 12.Although only specifically describe and illustrated and on microscler sidewall of freight container, can use nearly three kinds of assembling mechanisms 6 by an assembling mechanism.The said throw of lever 8 of said assembling mechanism 6 comprises rigid posts, this rigid posts can by metal for example steel process.The first end 9 of said throw of lever 8 pivots through hinge 14 and is connected to wall 2.Said hinge 14 is positioned at the primary importance on the said wall 2, and this primary importance is rotated the hinge 4 that is centered near the bottom margin and the wall 2 of said wall 2.Shown in Fig. 1 a, when assembling mechanism 6 was positioned at receiving state, said assembling mechanism 6 extended along wall 2 in the assembled shaft direction, and this assembled shaft is approximately perpendicular to the S. A. of wall 2.Make said throw of lever in plane, rotate at the said hinge 14 between said throw of lever 8 and the said wall 2 by the assembled shaft definition.
The said link 10 of said assembling mechanism 6 comprises the roughly bar of rigidity, and this rigid rod has first end 16 and the second end 18.Along the length direction of said throw of lever 8 and on general position intermediate, the said first end 16 of said link 10 pivots through hinge 20 and is connected to said throw of lever 8.The said the second end 18 of said link 10 is contained in the housing 12 slidably and pivotally.Said housing 12 is fixedly connected to wall 2 on the said second place, the said second place is away from said primary importance, and said throw of lever 8 is connected to said wall 2 at said primary importance head lamp brush guard pivot.Said housing 12 comprises passage or track 22, and the slider 24 that is positioned at the second end 18 of said link 10 can slide along said passage 22.Said passage 22 comprises first and second end stop 26 and 28, is used for stopping in the end of passage 22 motion of slider 24.
Fig. 1 has illustrated to be positioned at the wall 2 of the rotatable freight container of receiving state, and said assembling mechanism 6 also is positioned at receiving state.When said assembling mechanism 6 was positioned at receiving state, said throw of lever 8 all roughly alignd with said wall 2 with said link 10, and said slider 24 is positioned at first end stops, 26 places or is adjacent.For launching assembling mechanism, said throw of lever 8 rises, and pivots around hinge 14 at its first end 9 places.After throw of lever 8 rose, said link 10 was in its first and second end 16 and the rotation of 18 places, and said slider 24 first end 9 towards said throw of lever 8 in said passage 22 slides.When said assembling mechanism 6 was positioned at complete expanded position, said slider 24 left said wall 2 near said second end stops 28 of said passage 22 to prevent said throw of lever 8 to be further rotated.Fig. 1 c has illustrated this position.
After said assembling mechanism 6 is positioned at abundant expanded position, acts on power (shown in F direction among Fig. 1 c) further on the said throw of lever 8, that leave said wall 2 said wall 2 is rotated towards expanded position.The power that acts on said throw of lever 8 is transmitted to said wall 2 through said link 10, slider 24, end stop 28 and housing 12.Be preferably in position away from the S. A. A of said wall 2 to granting power on the said wall, to produce gyroscopic movement.The transformation of Fig. 1 d signal wall 2 continues to apply power F, and Fig. 1 e has illustrated to be in the wall 2 of deployed condition.
After said wall 2 launches, go back to its reception position through said link 10 with said throw of lever 8, said assembling mechanism 6 can be back to its reception position, and is of Fig. 1 g.Said slider 24 slides along the passage shown in Fig. 1 f 22, returns the position in abutting connection with said first end stops 26, and said link 10 roughly aligns with said wall 2 with said throw of lever 8 again in this position, shown in Fig. 1 g.
It is big more to act on the distance that power F on the throw of lever 8 is passed between the S. A. A of position and said wall 2 of said wall 2, and the revolution movement range on the wall 2 is big more.Therefore, the general size of said assembling mechanism 6 covers the whole height of said wall 2, wherein, and the said housing 12 the longest top edge that extend near said wall 2.
Known container wall comprises grooved ripple or other depressions of extending along a dimension of wall.According to an embodiment of the present, said assembling mechanism is positioned at a this groove or sawtooth, makes that when reception position, said assembling mechanism does not extend out to outside said groove or the sawtooth.Like this, using or during delivery container, can protect said assembling mechanism to avoid accidental damage, and the exterior contour of freight container does not change when taking in expanded position.
Referring to Fig. 2, the biasing member of spring 30 forms can be included in the passage 22 in the housing 12 of said assembling mechanism 6.Said spring 30 is contained in the passage 22 fully, towards 26 pairs of slider 24 biasings of first end stops of said housing 12, and thus towards reception position to said assembling mechanism 6 biasings.Like this, when not using, said spring 30 remains on reception position with said assembling mechanism 6.Said spring 30 also impels said assembling mechanism 6 after use, to return reception position.
Fig. 3 has illustrated to comprise an alternate embodiments of the freight container of wall 102 and assembling mechanism 106.Said wall 102 pivots around axle A at hinge 104 places.Said assembling mechanism 106 comprises throw of lever 108, link 110 and housing 112.The first end 109 of said throw of lever 108 is through hinge 114 pivotal joints to said wall 102.Described in previous embodiment, said hinge 114 is positioned at the primary importance on the said wall 102, and this primary importance is near the bottom margin and the hinge 104 of said wall 102, and said wall 102 is around said hinge 104 rotations.When said assembling mechanism 106 was positioned at reception position, said assembling mechanism 106 extended along said wall 102 in the direction of assembled shaft, and said assembled shaft is approximately perpendicular to the S. A. of said wall 102.Said hinge 114 between said throw of lever 108 and said wall 102 makes said throw of lever pivoting action in the plane that said assembled shaft defines.
The said link 110 of said assembling mechanism 106 also comprises the roughly bar of rigidity, and said rigid rod has first end 116 and the second end 118.According to embodiment shown in Figure 3, be contained in the housing 112 said first end 116 sliding-pivots of said link 110, said housing 112 is fixedly connected to said throw of lever 108.Said housing further forms with said throw of lever 108 integral types as a part of said throw of lever 108.Said housing 112 comprises passage 122 (meaning not shown in the figures), and the slider 124 that forms on the first end of said link 110 can slide in said passage 122.Can have end stops on (not signal) or the said throw of lever 108 in the said housing 112, in case slider skids off desirable attachment point.Biasing member with spring 130 forms is positioned at housing 112, is used for 109 pairs of said slider 124 biasings of first end towards said throw of lever 108.The said the second end 118 of said link 110 is through hinge 140, and at second place pivotal joint to the wall 102 that is positioned on the said wall 102, the said second place is away from said primary importance.Of previous embodiment; Said assembling mechanism is movable to expanded position from reception position; When said reception position; Said throw of lever 108 roughly aligns with said wall 102 with said link 110, and when said expanded position, the power that acts on the throw of lever 108 is delivered on the wall 102 through link 110.This power has produced the revolution action through said assembling mechanism 106, makes said wall 102 rotate to its expanded position.During said assembling mechanism 106, said spring 130 is used for towards reception position said assembling mechanism 106 biasings when not using.
Fig. 4 has illustrated to comprise another alternate embodiments wall 202 and freight container assembling mechanism 206.Said wall 202 rotates around axle A at hinge 204 places.Said assembling mechanism 206 comprises throw of lever 208, link 210 and housing 212.The first end 209 of said throw of lever 208 is through hinge 214 pivotal joints to said wall 202.Of previous embodiment, said hinge 214 is positioned at the primary importance on the said wall 202, and this primary importance is near the bottom margin and the said hinge 204 of said wall 202, and said wall 202 is around said hinge 204 rotations.When said assembling mechanism 206 was positioned at reception position, said wall 202 extended said assembling mechanism 206 in assembled shaft direction upper edge, and this assembled shaft direction is approximately perpendicular to the S. A. of said wall 202.Said hinge 214 between said throw of lever 208 and the said wall 202 makes said throw of lever pivoting action in the plane that said assembled shaft defines.
Said link 210 comprises flexible rope, and this flexible rope has first end 216 and the second end 218.The said first end 216 of said connecting rope 210 is crossed the free end 211 of said throw of lever 208, and is contained in slidably in the housing 212, and said housing 212 is fixedly attached to said throw of lever 208.Alternatively, said housing 212 can also be as the part of said throw of lever 208, one-body molded with said throw of lever 208.Said housing 212 comprises passage 222 (not shown), and the slider 224 on the said first end 216 of said link 210 can slide in said passage 222.Be formed with end stops (not shown) in the housing 212 or on the throw of lever 208, slip over desirable attachment point, for example, prevent that slider 224 from skidding off housing 212, thereby cross the free end 211 of said throw of lever 208 to prevent said slider.Biasing member with spring 230 forms is contained in the housing 212, towards 209 pairs of said slider 224 biasings of first end of said throw of lever 208.To wall 202, the said second place is away from said primary importance through hinge 240 pivotal joints for the second place of the second end 218 of said connecting rope 110 on said wall 202.Of previous embodiment; Said assembling mechanism can move to expanded position from reception position; When said reception position; Said throw of lever 208 roughly aligns with said wall 202 with said connecting rope 210 (said connecting rope 210 is for roughly fully being contained in the housing 212 on the throw of lever 208), and when said expanded position, the power that acts on the said throw of lever 208 is passed on the said wall 202 through said connecting rope 210.This power has produced the revolution action through said assembling mechanism 206, makes said wall 202 rotate to its expanded position.During said assembling mechanism 206, said spring 230 is used for towards reception position said assembling mechanism 206 biasings when not using
In an alternate embodiments, (not signal) said connecting rope 210 can be elastic rope.At this moment, said assemble mechanism 206 does not comprise spring 230 or slider 224, and the first end 216 of said connecting rope 210 is fixedly attached to the end of said housing 212 in abutting connection with the first end 209 of said throw of lever 208.In this embodiment; The elongation that rope produces because of application force makes said assemble mechanism 206 turn to expanded position; Said throw of lever 208 rotates along its hinge 214; And said connecting rope 210 extends to realize and should rotate that the free end 211 that said rope 210 is crossed said throw of lever 208 arrives hinge 240 places, and said rope 210 is through these hinge 240 pivotal joints to said wall 202.When not in use; The elasticity of said rope 210 makes rope 210 return to the length when not stressing; And therefore make said assemble mechanism 206 be back to its reception position, wherein, said rope 210 almost all is contained in the said housing 212; So said throw of lever 208 roughly aligns with said wall 202 with said rope 210.
Referring to Fig. 5, another alternate embodiments of freight container comprises wall 302 and assemble mechanism 306.Said wall 302 rotates around axle A at hinge 304 places.Said assemble mechanism 305 comprises throw of lever 308 and link 310.The first end 309 of said throw of lever 308 is through hinge 314 pivotal joints to said wall 302.Of previous embodiment, said hinge 314 is positioned at the primary importance on the said wall 302, and this primary importance is near the bottom margin and the hinge 304 of said wall 302, and said wall 302 is around hinge 304 rotations.When said assemble mechanism 306 was positioned at reception position, said wall 302 extended said assemble mechanism 306 in assembled shaft direction upper edge, and said assembled shaft is approximately perpendicular to the S. A. of said wall 302.Said hinge 314 between said throw of lever 308 and said wall 302 rotates in the plane that said assembled shaft defines.
Said link 310 comprises hinge-rod, and said hinge-rod has first 350 and second portion 352, and these two parts are connected by hinge 354.Said first 350 comprises first end 316, and this first end 316 passes through hinge 320 pivotal joints to throw of lever 308.Said hinge 320 is positioned on the throw of lever 308 zone near free end 311 rather than its first end 309 of said throw of lever 308.The second portion 352 of said link 310 comprises the second end 318, and this second end 318 pivots through hinge 340 and is connected to said wall 302.Said hinge 340 is positioned at the second place on the said wall 302, and this second place is away from said primary importance.Said assemble mechanism 306 can move to expanded position by reception position.At said reception position, first and second parts 350 and 352 of said throw of lever 308 and said link 310 are all roughly alignd with said wall 302.Said hinge 354 between first and second parts 350 and 352 of said link is positioned at the position near the first end 309 of said throw of lever 308.When said assemble mechanism 306 is positioned at abundant expanded position; Said regulations and parameters arm 308 is rotated away from said wall 302; First and second parts 350 and 352 up to said link 310 are in alignment with each other, and make distance maximization between free end 311 and the said wall 302 of said throw of lever 308.Fig. 5 illustrated said assemble mechanism 306 take in and expanded position between transition.
The embodiment of preferably above-mentioned assemble mechanism is contained in groove or the depression, shown in first embodiment.Assemble mechanism is placed in groove or the depression, can protect assemble mechanism to avoid damaging in addition, and guarantee that the exterior contour of freight container is not affected because of the existence of assemble mechanism.
In addition, although only described an independent wall of Foldable container, also can have four folding walls according to Foldable container of the present invention, each wall is rotatable at place, an end, and each wall comprises the assemble mechanism that at least one is said.
Though said assemble mechanism can be installed in any suitable place on the container wall, the Foldable container wall is typically designed to inwardly folding, so that when receiving state, occupy minimum space.Therefore, it is contemplated that the assemble mechanism with each wall of freight container is installed in the outside face of wall.
The advantage of freight container of the present invention is, single or minority operator is the folded wall of assembled container easily.The operator can stay the outside of freight container in assembling process.Assembling mechanism is given the wall that combines with it as handle with transmission of torque, and wall is erected from the freight container outside.Unloading equally of wall can realize through utilizing assembling mechanism of the present invention.
Freight container of the present invention also can combine the spring balancing system of prior art, with the roughly deadweight of balance container wall, thereby reduces the size of the power of the throw of lever must be applied to assembling mechanism, to hold up relevant container wall.Such balanced system is as shown in Figure 6, and its mesospore 2 is in partly expanded position, and assembling mechanism 6 is in complete expanded position.Torsion bar 300 is installed in the hinge 4, and its mesospore rotates around hinge 4.Torsion bar 300 roughly balance the deadweight of wall 2, the assembled by hand of assisting wall 2 with unload.
Foldable container can be provided with the assembling mechanism that has been formed in the required wall, also can be retrofitted on the existing container wall according to assembling mechanism of the present invention equally.Assembling mechanism can be made independently, and is installed in the suitable groove of existing container wall.
For fear of unnecessary in the text repetition, characteristics more of the present invention only are combined in one or more aspects of the embodiment of the invention and describe.But, should understand, under the feasible technically situation, the characteristic of describing in conjunction with the embodiment of the invention or any aspect can be used for the embodiment of the invention or any aspect.

Claims (10)

1. Foldable container comprises:
The wall that at least one can rotate around S. A.; And
With said wall bonded assembly assembling mechanism; This assembling mechanism comprises throw of lever and link; Said throw of lever is at primary importance place and said wall pivotal joint, and said link can be operated, be passed to said wall with the power that will act on the throw of lever at second place place.
2. Foldable container according to claim 1 is characterized in that: the said second place is away from the S. A. of said wall.
3. Foldable container according to claim 1 and 2 is characterized in that: the first end of said link may be operably coupled to said throw of lever, and the second end of said link operationally is connected to said wall at said second place place.
4. according to any described Foldable container of claim 1 to 3; It is characterized in that: said assembling mechanism also can further comprise housing, and the said first end of said link and one of them in the second end may be operably coupled to said throw of lever or said wall through this housing.
5. Foldable container according to claim 4 is characterized in that: said housing comprises a passage, and the said first end or the second end of said link remain in this passage slidably.
6. according to claim 4 or 5 described Foldable containers, it is characterized in that: said housing also comprises biasing member, this biasing member can by operation, with the said first end of said link or the second end bias voltage to reception position.
7. according to any described Foldable container of aforementioned claim, it is characterized in that: said wall comprises at least one groove, and said assembling mechanism is accommodated in this groove basically.
8. according to any described Foldable container of aforementioned claim, it is characterized in that, also comprise: the bias mechanism that is used for the deadweight of the said wall of balance.
9. Foldable container according to claim 8 is characterized in that: said bias mechanism comprises torsion bar.
10. assembling mechanism, it is characterized in that: said assembling mechanism is used for according to any described Foldable container of claim 1 to 9.
CN201010518319.5A 2010-10-25 2010-10-25 Foldable container and assembling mechanism Expired - Fee Related CN102452536B (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
CN201010518319.5A CN102452536B (en) 2010-10-25 2010-10-25 Foldable container and assembling mechanism
PCT/NL2011/050711 WO2012057616A1 (en) 2010-10-25 2011-10-18 Collapsible container, assembly mechanism and method of assembling a collapsible container
US13/881,005 US9022242B2 (en) 2010-10-25 2011-10-18 Collapsible container, assembly mechanism and method of assembling a collapsible container
DE112011103611.6T DE112011103611B4 (en) 2010-10-25 2011-10-18 Folding container and method for building a folding transport container
NL2007607A NL2007607C2 (en) 2010-10-25 2011-10-18 Collapsible container and assembly mechanism.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201010518319.5A CN102452536B (en) 2010-10-25 2010-10-25 Foldable container and assembling mechanism

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CN102452536A true CN102452536A (en) 2012-05-16
CN102452536B CN102452536B (en) 2016-05-25

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Cited By (2)

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Publication number Priority date Publication date Assignee Title
CN113329955A (en) * 2019-01-23 2021-08-31 韩国托盘共用公司株式会社 Folding container
CN115426925A (en) * 2020-12-18 2022-12-02 皇家飞利浦有限公司 Kitchen appliance with lid

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DE3317221A1 (en) * 1983-05-11 1984-11-15 Leonhard 8265 Neuötting Schlicker Large-volume container
US4646928A (en) * 1985-01-10 1987-03-03 Nisso Sangyo Co., Ltd. Folding container
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CN201545684U (en) * 2009-09-29 2010-08-11 胡胜录 Multi-lever labor-saving device
CN201923531U (en) * 2010-10-25 2011-08-10 荷兰集装箱创新有限公司 Foldable container and assembling mechanism

Cited By (5)

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CN113329955A (en) * 2019-01-23 2021-08-31 韩国托盘共用公司株式会社 Folding container
CN113329955B (en) * 2019-01-23 2022-07-19 韩国托盘共用公司株式会社 Folding container
CN115426925A (en) * 2020-12-18 2022-12-02 皇家飞利浦有限公司 Kitchen appliance with lid
CN115426925B (en) * 2020-12-18 2023-10-17 皇家飞利浦有限公司 Kitchen appliance with cover
US11851931B2 (en) 2020-12-18 2023-12-26 Versuni Holding B.V. Kitchen appliance with lid

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