New energy battery packaging and transporting container capable of being telescopically adjusted

The new energy battery packaging and transportation container, with its modular design and plug-in adjustable structure, solves the problem that fixed structures cannot adapt to products of different specifications. It achieves multi-directional telescopic adjustment and wide applicability, reducing transportation costs and storage space waste.

CN223606015UActive Publication Date: 2025-11-28HUBEI ZHIXIANG TECH CO LTD
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Patent Information

Application Number
CN202522215477.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-21
Publication Date
2025-11-28
Estimated Expiration
2035-10-21

AI Technical Summary

Technical Problem

Existing new energy battery packaging and transportation containers are mostly fixed structures, which cannot meet the needs of products of different specifications, resulting in high transportation costs and wasted storage space.

Method used

It adopts a modular design and plug-in adjustment structure, and through retractable and adjustable components such as columns, corner components, and connecting rods, it can quickly adjust the length and width dimensions to form a variety of frame platforms.

Benefits of technology

It achieves multi-directional scaling and adjustment of the framework platform, has a wide range of applications, is convenient and quick to operate, saves storage space, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a new energy battery packaging and transporting container capable of being adjusted in a telescopic mode, and relates to the field of packaging and transporting devices, the new energy battery packaging and transporting container comprises four stand column assemblies, two first corner assemblies and two second corner assemblies, and the four stand column assemblies are assembled on the two first corner assemblies and the two second corner assemblies respectively; one side of the short edge of the first corner assembly and one side of the short edge of the second corner assembly are connected together in a telescopic and adjustable mode through a short edge embedded part, and one side of the long edge of the first corner assembly and one side of the long edge of the second corner assembly are connected together in a telescopic and adjustable mode through a long edge outer side embedded pipe and a long edge inner side embedded pipe which are parallel. According to the utility model, through the modular design, a plurality of components are assembled together and then are connected in an inserting manner, the drawing type adjustment is realized, and then the telescopic frame platforms of various models are formed, so that the operation is convenient and rapid, and the application range is wider; and part of components can be replaced when the types deform, so that the assembling efficiency is improved, and the manufacturing cost is effectively reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of packing and transporting device, especially to a telescopic adjustable new energy battery packing and transporting container. BACKGROUND

[0002] At present, the new energy battery pack circulates the packing and transporting container, and is matched with the forklift sheet during use, is used for the storage and transfer of the new energy battery pack, and the existing packing and transporting container is mostly fixed structure, and the limiting structure size on the upper portion matched with the product is also fixed, that is, one specification packing and transporting container corresponds to one specification product.

[0003] Therefore, how to develop a new telescopic adjustable new energy battery packing and transporting container, through the modular design and the plug-in adjustment structure, the long and wide dimensions are quickly adjusted, the purpose of one equipment with multiple specifications is realized, and it becomes a technical problem to be solved by the technical personnel in the field. UTILITY MODEL CONTENT

[0004] The utility model discloses a telescopic adjustable new energy battery packing and transporting container, through the modular design and the plug-in adjustment structure, the long and wide dimensions are quickly adjusted, and the operation is convenient and fast, and the application range is wider.

[0005] To solve the above technical problem, the utility model adopts the following technical scheme:

[0006] The utility model discloses a telescopic adjustable new energy battery packing and transporting container, including four stand column assemblies, two corner assemblies one and two corner assemblies two, four stand column assemblies are assembled on two corner assemblies one and two corner assemblies two respectively, and the short side one side of corner assembly one and corner assembly two is connected together through telescopic adjustment of short side inlay spare, and the long side one side of corner assembly one and corner assembly two is connected together through telescopic adjustment of parallel long side outside inlay pipe, long side inside inlay pipe.

[0007] Preferably, the center of the frame platform is hinged with a connecting rod assembly, the opposite inner side surfaces of the corner assembly one and the corner assembly two are provided with four outside hinge pieces, and the outside hinge pieces are movably hinged together through the connecting rod assembly.

[0008] Preferably, the four edges of the frame platform are respectively provided with pry plate assembly one, pry plate assembly two or pry plate assembly three; the pry plate assembly one and pry plate assembly two are located below the short edges, and the pry plate assembly three is located below the long edges; the pry plate assembly one, pry plate assembly two and pry plate assembly three are matched with the lifting arm of the carrying forklift.

[0009] Preferably, the angle assembly two comprises a long edge outer sleeve, a short edge outer sleeve and a long edge inner sleeve, the long edge outer sleeve and the short edge outer sleeve are vertically distributed and connected at one end close to each other on the column assembly; the long edge inner sleeve is connected at the other end of the short edge outer sleeve, and the long edge inner sleeve and the inner end of the long edge outer sleeve are connected together through a long edge connector; the center of the long edge connector is connected with a short edge connector one; the side close to the center of the long edge inner sleeve is provided with an outer hinge for hinging with the connecting rod assembly.

[0010] The angle assembly one and the angle assembly two are symmetrical structures.

[0011] Preferably, it further comprises a long edge frame assembly and a center assembly, the short edges of the angle assembly one and the angle assembly two are connected together through the short edge frame assembly, the long edges of the angle assembly one and the angle assembly two and the long edge frame assembly in the middle are connected together through the long edge inner embedding assembly one and long edge inner embedding assembly two, and the center sleeve of the short edge frame assembly and the long edge frame assembly are connected together through the center assembly.

[0012] Preferably, the long edge frame assembly comprises parallel long edge frame outer sleeves and long edge frame inner sleeves, the centers of the long edge frame outer sleeves and the long edge frame inner sleeves are connected on the short edge middle sleeve, and each of the two sides of the long edge frame outer sleeves and the long edge frame inner sleeves is connected with a short edge connector two; the long edge frame outer sleeves and the long edge frame inner sleeves are connected together with the long edge outer sleeves and the long edge inner sleeves on the two sides through the long edge inner embedding assembly one and long edge inner embedding assembly two; each of the two long edge frame inner sleeves close to the center is provided with an inner hinge for hinging with the connecting rod assembly.

[0013] Preferably, the short edge frame assembly is designed as a T-shaped piece, comprising a side short edge connector and a side long edge sleeve, the side short edge connector is connected together with the short edge outer sleeve on the angle assembly one and angle assembly two through the short edge connector two; the side long edge sleeve is connected together with the center assembly through the long edge inner embedding tube; the two sides of the side long edge sleeve are provided with outer hinges for hinging with the connecting rod assembly.

[0014] Preferably, the center component is designed as a cross-shaped piece, comprising a center short-side embedded pipe and a center long-side embedded pipe, the center short-side embedded pipe being telescopically connected with the short-side middle sleeve on the long-side frame component, and the center long-side embedded pipe being telescopically connected with the side long-side sleeve on the short-side frame component through the long-side inner embedded pipe.

[0015] Preferably, in all the telescopically adjustable connecting components, a plurality of waist-shaped holes are arranged on the outer sleeve, and a plurality of circular through holes are arranged on the inner embedded pipe, one of the circular through holes being aligned with one of the waist-shaped holes after adjustment and being fixed in position by a bolt.

[0016] Preferably, the angle component one and the angle component two are selected as double I-shaped frames and are continued in the length direction, and the short-side frame component is designed as a T-shaped piece, the T-shaped short-side frame component comprising two short-side embedded sleeves, an adapter and a side long-side sleeve.

[0017] The center component comprises a center short-side embedded sleeve and a center long-side embedded sleeve, the center short-side embedded sleeve being telescopically connected with the short-side middle sleeve on the long-side frame component, and the center long-side embedded sleeve being telescopically connected with the side long-side sleeve.

[0018] The outer side of the connecting rod component is hinged with the outer hinge on the long-side inner sleeve and the side long-side sleeve, respectively, and the inner side of the connecting rod component is hinged with the inner hinge on the long-side frame inner sleeve and the center long-side embedded sleeve on the other side, respectively.

[0019] Compared with the prior art, the new energy battery packaging and transporting container has the following beneficial technical effects:

[0020] The new energy battery packaging and transporting container has the following beneficial technical effects:

[0021] 1) The length direction and the width direction of the container can be adjusted, four-way telescopic adjustment is realized, and the application range is greatly improved.

[0022] 2) The telescopic adjustment is controlled by a screw, and the operation is more flexible and convenient.

[0023] 3) When the shelf is empty, it can be adjusted to the minimum size state, greatly saving the storage space.

[0024] 4) The modular design is adopted, each component is prefabricated by a steel pipe or a steel plate, and four different types of frame platforms can be assembled by selecting components of different specifications, thereby effectively reducing the number of assembly parts and improving the assembly efficiency.

[0025] Specifically, when type one is assembled, the long side frame component, the short side frame component and the center component are omitted, only the stand column component, the corner component one, the corner component two and the independent embedded pipe are used, and after assembly, type one (small size) is formed, and the outer dimension can be adjusted from 1400 1150 to 1800 1400; when the long side frame component and the short side frame component are introduced, type two (medium size) or type three (large size) can be formed, wherein the outer dimension of type two can be adjusted from 1800 1400 to 2400 1800; the outer dimension of type three can be adjusted from 2330 1800 to 2800 2000; further, when the corner component is designed as a sun-shaped type, the long side frame component and the short side frame component are adjusted synchronously, and type four (heavy type) is formed after assembly, and the outer dimension can be adjusted from 2400 1100 to 3000 1500; the unit of the numerical value is mm.

[0026] In general, the utility model adopts the modular design, each component is prefabricated by a steel pipe or a steel plate, and four different types of frame platforms can be assembled by selecting components of different specifications, thereby effectively reducing the number of assembly parts and improving the assembly efficiency; at the same time, the integrated design and the telescopic adjustment structure are adopted, the adaptability and the versatility of the packaging and transportation container are improved, and the manufacturing cost is greatly reduced. BRIEF DESCRIPTION OF DRAWINGS

[0027] The utility model will be further described in combination with the drawings.

[0028] Figure 1 It is the explosion diagram of the new energy battery packaging and transportation container of the utility model telescopic adjustment;

[0029] Figure 2 It is the overall structure assembly drawing of type one of the utility model;

[0030] Figure 3 It is the front view of type one of the utility model;

[0031] Figure 4The utility model relates to a kind of of the utility model category one view from below Figure 1 (Contracted state);

[0032] Figure 5 The utility model relates to a kind of of the utility model category one view from below Figure 2 (Expanded state);

[0033] Figure 6 The utility model relates to a kind of of the utility model category three perspective view (category three);

[0034] Figure 7 The utility model relates to a kind of of the utility model category three view from below Figure 1 (Contracted state);

[0035] Figure 8 The utility model relates to a kind of of the utility model category three view from below Figure 2 (Expanded state);

[0036] Figure 9 The utility model relates to a kind of of the utility model category two view from below Figure 1 (Contracted state);

[0037] Figure 10 The utility model relates to a kind of of the utility model category two view from below Figure 2 (Expanded state);

[0038] Figure 11 The utility model relates to a kind of of the utility model category four explosion view;

[0039] Figure 12 The utility model relates to a kind of of the utility model category four view from below Figure 1 (Contracted state);

[0040] Figure 13 The utility model relates to a kind of of the utility model category four view from below Figure 2 (Expanded state).

[0041] Mark explanation: 1, column assembly;2, angle assembly one;3, angle assembly two;4, pry plate assembly one;5, pry plate assembly two;6, pry plate assembly three;7, connecting rod assembly;8, long side outer side embedded pipe;9. long side inner side embedded pipe;10, long side frame assembly;11, short side embedded part;12, center assembly;

[0042] 8', long side embedded assembly one;9', long side embedded assembly two;11', short side frame assembly;

[0043] 101, heightening angle assembly;

[0044] 301, long side outer sleeve pipe, 302, short side outer sleeve pipe;303, long side inner sleeve pipe;304, long side connecting piece;305, short side connecting piece one;

[0045] 701, outer side hinged part;702, inner side hinged part;

[0046] 1001, long side outer sleeve; 1002, short side middle sleeve; 1003, long side inner sleeve; 1004, short side connector two;

[0047] 1101, side short side connector; 1102, side long side sleeve; 1103, short side inner sleeve; 1104, adapter; 1201, center short side inner sleeve; 1202, center long side inner sleeve; 1203, center short side inner sleeve; 1204, center long side inner sleeve. DETAILED DESCRIPTION

[0048] In order to make the technical problems, technical schemes and beneficial effects of the utility model clearer and more apparent, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model.

[0049] Example 1, as shown in a structure: Figures 1-5

[0050] A telescopic adjustable new energy battery packaging and transporting container, comprising four column assemblies 1, two corner assemblies one 2 and two corner assemblies two 3, four column assemblies 1 are assembled on two corner assemblies one 2 and two corner assemblies two 3 respectively, the short side of corner assembly one 2 and corner assembly two 3 is connected together through a telescopic adjustable short side inner sleeve 11, and the long side of corner assembly one 2 and corner assembly two 3 is connected together through parallel long side outer inner sleeve 8 and long side inner inner sleeve 9. Specifically, the column assembly 1 is located at four corners and comprises a column body, a supporting base connected with the corner assembly and a heightening corner assembly 101, the column body is embedded and connected in the inner cavity of the heightening corner assembly 101 and the supporting base from top to bottom, the bottom of the heightening corner assembly 101 is sleeved above the supporting base and is fixed by locking, and the design of the supporting base realizes the connection and fixation of the long side outer sleeve 301 and the short side outer sleeve 302 on the corner assembly one 2 and the corner assembly two 3. The design of the supporting base not only ensures the ground clearance but also provides enough space for the installation of the pry plate assembly, facilitating the realization of subsequent forklift handling operations; the protruding column body forms a four-corner baffle at the top, facilitating the interception and blocking of articles.

[0051] Specifically, the center of the frame platform is hinged with a connecting rod assembly 7, four outer hinge pieces 701 are arranged on the opposite inner sides of the corner assembly one 2 and the corner assembly two 3, and the outer hinge pieces 701 are movably hinged together through the connecting rod assembly 7.

[0052] ​The category one is assembled by using only the column assembly, the angle assembly one, the angle assembly two and the independent embedded pipe, and is formed into a category one after splicing, which belongs to a small platform, and the outer dimension can be from 1400 1150 to 1800 1400; the length direction adjustment range is 1400-1800mm, and the width direction adjustment range is 1150-1400mm; the overall structure is simpler, the size is smaller, and the storage and carrying operation of the new energy battery pack of a smaller specification or a single piece is matched.

[0053] Specifically, the four edges of the bottom of the frame platform are respectively provided with pry plate assembly one 4, pry plate assembly two 5 or pry plate assembly three 6; the pry plate assembly one 4 and the pry plate assembly two 5 are located below the short edge, and the pry plate assembly three 6 is located below the long edge; the pry plate assembly one 4, the pry plate assembly two 5 and the pry plate assembly three 6 are matched with the lifting arm of the carrying forklift. The design of the pry plate assembly is matched with the fork arm of the forklift, which facilitates positioning during forklift carrying and ensures the stability of the carrying process. The pry plate assembly is located at the bottom, which includes a middle cubic sealing plate, two sides of horizontally placed h, G-shaped or U-shaped connecting plates, and is independently prefabricated as a single part matched with the frame platform, and appropriate shape, number or specification of single part is selected and assembled according to actual needs, and bolt or bolt assembly fastening connection is mostly used during assembly. The design of the pry plate assembly enables the frame platform to be hoisted, towed and transported as a complete device without reassembly on site. For example, when the entire platform needs to be transported to another location, the forklift can be directly inserted below the pry plate assembly, or a crane can be used to lift and quickly remove it. This greatly saves the time and cost of disassembly and reinstallation; at the same time, the pry plate assembly is located at the bottom of the four sides, which can greatly increase the contact area between the platform and the ground. This can evenly distribute the weight of the goods stored on the platform, prevent the platform from deforming due to excessive local pressure, or sinking into soft ground (such as mud, lawn).

[0054] Specifically, the corner component 2 3 includes a long outer sleeve 301, a short outer sleeve 302, and a long inner sleeve 303. The long outer sleeve 301 and the short outer sleeve 302 are vertically distributed and close to each other at one end, connected to the column component 1. The long inner sleeve 303 is connected to the other end of the short outer sleeve 302. The long inner sleeve 303 is connected to the inner end of the long outer sleeve 301 via a long connecting piece 304. The short outer sleeve 302... A short side connector 305 is connected to the center of the long side connector 304; the two long side outer sleeves 301 and long side inner sleeves 303 located on the same side are connected together in a telescopically adjustable manner through the long side outer inner tube 8 and the long side inner inner tube 9, respectively; an outer hinge 701 for hinged to the connecting rod assembly 7 is provided on the side of the long side inner sleeve 303 near the center; the corner assembly 2 and the corner assembly 3 are symmetrical structures and are placed at intervals at the four corners.

[0055] Specifically, the inner hinge 702 is configured as a multi-hinge point structure, wherein the outer hinge 701 is made of U-channel steel and has multiple hinge holes on its two opposite surfaces; when connected, it is placed horizontally with the open side facing the middle connecting rod assembly 7, which facilitates the connecting end of the connecting rod assembly 7 to be embedded in the groove and slide along the groove; in one specific embodiment, the connecting rod assembly 7 adopts a double-rod hinge to form an X-shaped cross, which rotates around the central hinge axis to open or close when in use, in order to adapt to the adjustment requirements of the assembly and realize the tensioning and positioning between adjacent assemblies, and prevent the embedded connector from detaching from the sleeve on the corresponding assembly.

[0056] Example 2, as Figures 6-8 The diagram shows a three-type structure.

[0057] Specifically, the four pillar components 1, two corner components 1 2, and two corner components 2 3 in the main structure are exactly the same as those in the small structure; in addition, it also includes a long frame component 10 and a central component 12. The short sides of corner components 1 2 and corner components 2 3 are connected together in a telescopically adjustable manner through short frame component 11'. The long sides of corner components 1 2 and corner components 2 3 are connected together with the central long frame component 10 through long side embedded component 1 8' and long side embedded component 2 9' in a telescopically adjustable manner. The short frame component 11' and the central sleeve of the long frame component 10 are connected together in a telescopically adjustable manner through the central component 12.

[0058] Specifically, the column assembly 1, two corner assembly one 2, corner assembly two 3, long side frame assembly 10 through the connecting rod assembly 7, long side inside embedded pipe 9, short side frame assembly 11' and center assembly 12 are assembled to form a telescopic frame platform, and the four peripheral bottom parts of the frame platform are respectively provided with pry plate assembly one 4 and pry plate assembly two 5. The design of the pry plate assembly is matched with the fork arm of the forklift, so as to facilitate positioning during forklift transportation and ensure the stability of the transportation process.

[0059] Specifically, the long side frame assembly 10 includes parallel long side frame outer sleeve pipe 1001 and long side frame inner sleeve pipe 1003, the centers of the long side frame outer sleeve pipe 1001 and the long side frame inner sleeve pipe 1003 are connected to the short side middle sleeve pipe 1002, and each side of the long side frame outer sleeve pipe 1001 and the long side frame inner sleeve pipe 1003 is connected with a short side connecting piece two 1004; the long side frame outer sleeve pipe 1001 and the long side frame inner sleeve pipe 1003 are telescopically and adjustably connected with the long side outer sleeve pipe 301 and the long side inner sleeve pipe 303 on both sides through the long side inside embedded assembly one 8' and the long side inside embedded assembly two 9'; each of the two long side frame inner sleeve pipes 1003 is provided with an inside hinge piece 702 for hinging with the connecting rod assembly 7 on the side close to the center.

[0060] Specifically, the short side frame assembly 11' is designed as a T-shaped piece, including a side short side connecting piece 1101 and a side long side sleeve pipe 1102, the side short side connecting piece 1101 is telescopically and adjustably connected with the short side outer sleeve pipe 302 on the corner assembly one 2 and the corner assembly two 3; the side long side sleeve pipe 1102 is telescopically and adjustably connected with the center assembly 12 through the long side inside embedded pipe 9; and each side of the side long side sleeve pipe 1102 is provided with an outside hinge piece 701 for hinging with the connecting rod assembly 7.

[0061] The center assembly 12 is designed as a cross-shaped piece, including a center short side embedded pipe and a center long side embedded pipe, the center short side embedded pipe is telescopically and adjustably connected with the short side middle sleeve pipe 1002 on the long side frame assembly 10; the center long side embedded pipe is telescopically and adjustably connected with the side long side sleeve pipe on the short side frame assembly 11' through the long side inside embedded pipe 9; and a plurality of inside hinge pieces 702 for hinging with the connecting rod assembly 7 are arranged on the upper and lower sides of the center long side embedded pipe.

[0062] The inner side hinge 702 is provided as a multi-hinge point structure, wherein the outer side hinge 701 and the inner side hinge 702 are both made of U-shaped channel steel, and a plurality of hinge holes are formed on the opposite two faces; when connected, the horizontal placement faces the middle connecting rod assembly 7 on the opening side, so that the connecting end of the connecting rod assembly 7 is embedded in the slot and moves along the slot; in one specific embodiment, the connecting rod assembly 7 is formed in an X-cross shape by double-rod hinge, and is rotated around the hinge shaft in the center to open or close during use, so as to adapt to the assembly adjustment requirement and realize the tension positioning between adjacent assemblies, thereby avoiding the disengagement of the embedded connecting member from the sleeve member on the corresponding assembly.

[0063] Specifically, the outer dimensions of this type three (large) can be adjusted from 2330 1800 to 2800 2000, and the length direction adjustment range is 2330-2800 mm, and the width direction adjustment range is 1800-2000 mm, wherein the specifications of the long side embedded assembly one 8 (the cross-sectional specification is 54 50 2, the total length is 2110 mm, and a single rod is connected on the long side frame assembly 10), the long side embedded assembly two 9 (the cross-sectional specification is 54 50 2, the length is 1000 mm, and two rods are symmetrically arranged), and the connecting rod assembly 7 (large) are all selected to be large, so as to meet the requirement of large size adjustment.

[0064] Embodiment 3, as Figures 9-10 shown is a type two structure

[0065] Compared with embodiment 2, the components of the two are basically the same, the frame platform surrounded by the four column assemblies 1, the two corner assemblies one 2, the corner assembly two 3, the connecting rod assembly 7, the long side frame assembly 10, the short side frame assembly 11' and the center assembly 12 is a medium structure; the main difference lies in that the specifications of the long side embedded assembly one 8 (the cross-sectional specification is 53 50 2, the total length is 1590 mm, and a single rod is connected on the long side frame assembly 10), the long side embedded assembly two 9 (the cross-sectional specification is 53 50 2, the length is 750 mm, and two rods are symmetrically arranged), and the connecting rod assembly 7 (medium) are selected to be smaller, so as to meet the requirement of small size adjustment.

[0066] Specifically, the outer dimensions of this type two can be adjusted from 1800 1400 to 2400 1800, and the length direction adjustment range is 1800-2400 mm, and the width direction adjustment range is 1400-1800 mm.

[0067] Embodiment 4, as shown in the structure of the fourth kind Figures 11-13

[0068] Specifically, in one embodiment of a heavy structure, the corner assembly one 2 and the corner assembly two 3 are selected as a double-day-shaped frame and continue in the length direction, and the short side frame assembly 11' is designed as a dry-shaped frame, which includes two short side inner nested tubes 1103 connected together, an adapter 1104, and a side long side sleeve 1102; the center assembly 12 is synchronously adjusted, including a center short side inner nested tube 1203 and a center long side inner nested tube 1204 connected together; the center short side inner nested tube 1203 is connected to the short side middle sleeve 1002 on the long side frame assembly 10 in an extendable and adjustable manner, and the center long side inner nested tube 1204 is connected to the side long side sleeve 1102 in an extendable and adjustable manner; the connecting rod assembly 7 is selected as a heavy type, and the outer side thereof is respectively hinged to the outer side hinge 701 on the long side inner sleeve 303 and the side long side sleeve 1102, and the inner side thereof is respectively hinged to the inner side hinge 702 on the long side frame inner sleeve 1003 and the center long side inner nested tube 1204 on the other side.

[0069] Through the adjustment of the corner assembly, the short side frame assembly 11', and the center assembly 12, and the corresponding selection of the connecting rod assembly 7, the length direction size is effectively increased, and after splicing, the fourth kind (heavy type) is formed, and the outer dimension can be adjusted from 2400 1100 to 3000 1500, and specifically, the length direction adjustment range is 2400-3000 mm, and the width direction adjustment range is 1100-1500 mm. The packaging and transportation requirements of longer products are met.

[0070] In the above four embodiments, in all extendable and adjustable connecting assemblies, a plurality of waist-shaped holes are provided on the sleeve on the outer side, a plurality of circular through holes are provided on the embedded part on the inner side, one of the circular through holes is aligned with one of the waist-shaped holes after adjustment, and is fixed in place by a bolt.

[0071] ​The categories can be directly converted to effectively reduce the input components, for example, category one is used as the component with the least category, only using the stand component, corner component one, corner component two and independent embedded pipe (long side outer embedded pipe 8, long side inner embedded pipe 9, short side embedded part 11) can be realized; when category two needs to be assembled, the embedded pipe can be directly replaced, and long side frame component 10, short side frame component 11' and center component 12 and corresponding medium size long side embedded component one 8', long side embedded component two 9' and connecting rod component 7 can be used; when category three needs to be changed, the long side embedded component one 8', long side embedded component two 9' and connecting rod component 7 in category two are replaced by large size; further, when category four is changed, the long side frame component 10 is unchanged, the corner component one 2 and the corner component two 3 of the double-day type frame are selected, the short side frame component 11' and the center component 12 are selected, and the heavy connecting rod component 7 is matched, so that the assembly of category four can be realized.

[0072] In general, the utility model discloses a modular design and development of the assembly component, forms different components of multiple specifications, and the square frame platform of category one, category two, category three and category four is assembled by selecting reasonable number and specification components, to be suitable for different specifications new energy battery package packaging, storage and transportation;After each category is assembled, the length direction and width direction can be directly adjusted without adding any components, realizing four-way expansion of the structure, effectively improving the application range of a single platform, reducing the storage space requirement, and the expansion adjustment adopts screw control, and the operation is more flexible and convenient.

[0073] It should be noted that, in this text, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the term "includes" "contains" or any other variant thereof is intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.

[0074] The above-described embodiments are only descriptions of the preferred modes of the utility model, and do not limit the scope of the utility model, and various modifications and improvements of the technical solutions of the utility model made by those skilled in the art without departing from the design spirit of the utility model shall fall within the protection scope determined by the claims of the utility model.

Claims

1. A retractable and adjustable packaging and transport container for new energy batteries, characterized in that: It includes four column components (1), two corner components one (2) and two corner components two (3). The four column components (1) are respectively assembled on the two corner components one (2) and the two corner components two (3). The short side of the corner components one (2) and the corner components two (3) are connected together in a telescopically adjustable manner through the short side insert (11). The long side of the corner components one (2) and the corner components two (3) are connected together in a telescopically adjustable manner through the parallel long side outer insert tube (8) and the long side inner insert tube (9) to form a frame platform.

2. The retractable and adjustable new energy battery packaging and transportation container according to claim 1, characterized in that: The frame platform is hinged at the center with a connecting rod assembly (7), and four outer hinge pieces (701) are provided on the inner surfaces of the corner assembly one (2) and the corner assembly two (3) respectively. The outer hinge pieces (701) are movably hinged together by the connecting rod assembly (7).

3. The retractable and adjustable new energy battery packaging and transportation container according to claim 2, characterized in that: The four sides of the frame platform are respectively provided with a skid assembly one (4), a skid assembly two (5) or a skid assembly three (6); the skid assembly one (4) and the skid assembly two (5) are located below the short side, and the skid assembly three (6) is located below the long side; the skid assembly one (4), the skid assembly two (5) and the skid assembly three (6) cooperate with the lifting arm of the pallet truck.

4. The retractable and adjustable new energy battery packaging and transportation container according to claim 3, characterized in that: The corner component 2 (3) includes a long outer sleeve (301), a short outer sleeve (302), and a long inner sleeve (303). The long outer sleeve (301) and the short outer sleeve (302) are vertically distributed and close to each other at one end, which is connected to the column component (1). The long inner sleeve (303) is connected to the other end of the short outer sleeve (302). The long inner sleeve (303) and the inner end of the long outer sleeve (301) are connected together by a long connector (304). The short outer sleeve (302) and the center of the long connector (304) are connected by a short connector (305). The long inner sleeve (303) is provided with an outer hinge (701) on the side near the center for hinge connection with the connecting rod assembly (7). The first corner component (2) and the second corner component (3) are symmetrical structures.

5. The retractable and adjustable new energy battery packaging and transportation container according to claim 4, characterized in that: It also includes a long border component (10) and a center component (12). The short sides of the first corner component (2) and the second corner component (3) are connected together in a telescopically adjustable manner through the short border component (11'). The long sides of the first corner component (2) and the second corner component (3) are connected together with the middle long border component (10) in a telescopically adjustable manner through the first long side embedded component (8') and the second long side embedded component (9'). The short border component (11') and the center sleeve of the long border component (10) are connected together in a telescopically adjustable manner through the center component (12).

6. The retractable and adjustable new energy battery packaging and transportation container according to claim 5, characterized in that: The long frame assembly (10) includes a parallel long frame outer sleeve (1001) and a long frame inner sleeve (1003). The center of the long frame outer sleeve (1001) and the long frame inner sleeve (1003) is connected to the short side middle sleeve (1002). A short side connector (1004) is connected to each side of the long frame outer sleeve (1001) and the long frame inner sleeve (1003). The long frame outer sleeve (1001) and the long frame inner sleeve (1003) are telescopically and adjustablely connected to the long frame outer sleeve (301) and the long frame inner sleeve (303) on both sides through the long side embedded component one (8') and the long side embedded component two (9'). Each of the two long frame inner sleeves (1003) has an inner hinge (702) on its side near the center for hinged to the connecting rod assembly (7).

7. The retractable and adjustable new energy battery packaging and transportation container according to claim 6, characterized in that: The short frame component (11') is designed as a T-shaped component, including a short side connector (1101) and a long side sleeve (1102). The short side connector (1101) is telescopically and adjustably connected to the short side outer sleeve (302) on the first corner component (2) and the second corner component (3). The long side sleeve (1102) is telescopically and adjustably connected to the center component (12) through the inner tube (9) on the long side. The long side sleeve (1102) is provided with outer hinge members (701) on both sides for hinged to the connecting rod assembly (7).

8. The retractable and adjustable new energy battery packaging and transportation container according to claim 7, characterized in that: The central component (12) is designed as a cross-shaped piece, including a central short side inset tube (1201) and a central long side inset tube (1202). The central short side inset tube (1201) is telescopically and adjustablely connected to the short side middle sleeve (1002) on the long side component (10). The central long side inset tube (1202) is telescopically and adjustablely connected to the side long side sleeve on the short side component (11') through the long side inner inset tube (9). Multiple inner hinge pieces (702) for hinged to the connecting rod assembly (7) are provided on the upper and lower sides of the central long side embedded tube.

9. The retractable and adjustable new energy battery packaging and transport container according to claim 4 or 8, characterized in that: In all the telescopic and adjustable connecting components, the outer sleeve has multiple oblong holes, and the inner insert has multiple circular through holes. After adjustment, one of the circular through holes is aligned with one oblong hole and the bolt is used to tighten the position.

10. The retractable and adjustable new energy battery packaging and transportation container according to claim 5, characterized in that: The corner component one (2) and corner component two (3) are selected with a double-sun-shaped frame and continue along the length direction. The short frame component (11') is designed as a "gan" shape. The short frame component (11') of the "gan" shape includes two short inner nested tubes (1103) connected together, an adapter (1104) and a side long sleeve (1102). The central component (12) includes a central short-side inner nested tube (1203) and a central long-side inner nested tube (1204) connected together; the central short-side inner nested tube (1203) is telescopically and adjustably connected to the short-side middle sleeve (1002) on the long-side component (10), and the central long-side inner nested tube (1204) is telescopically and adjustably connected to the side long-side sleeve (1102); The outer side of the connecting rod assembly (7) is hinged to the outer hinge (701) on the long side inner sleeve (303) and the side long side sleeve (1102), respectively. The inner side of the connecting rod assembly (7) is hinged to the inner hinge (702) on the long side inner sleeve (1003) and the center long side inner nested tube (1204) on the other side.