Assembled pallet

By designing modular pallets and utilizing the limiting structure of receiving slots and protruding beams to achieve detachable connection of pallets, the problems of low pallet utilization and high production costs are solved, enabling flexible assembly and efficient utilization.

CN223751471UActive Publication Date: 2026-01-02ZHEJIANG SUNWODA ELECTRONIC CO LTD
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Patent Information

Application Number
CN202520051688.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2026-01-02
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

The fixed dimensions of existing pallets result in low utilization rates, low utilization rates of truck cargo compartments, high design and production costs, and low manufacturing efficiency.

Method used

Design an assembly pallet by setting a receiving groove on a first pallet and a protruding beam on a second pallet, and using a limiting structure and a disassembly structure to achieve a detachable connection between the first and second pallets, forming assembly pallets of different sizes.

Benefits of technology

It enables free assembly according to different truck box sizes, avoiding space waste, reducing production costs, improving manufacturing efficiency, and increasing the utilization rate of truck box loading.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an assembled pallet. The assembled pallet comprises a first pallet body, a second pallet body and limiting structures, a containing groove is formed in the first pallet body, a protruding beam matched with the containing groove in an inserted mode is arranged on the second pallet body, and the first pallet body is detachably connected to the second pallet body through mutual matching of the first limiting structure on the containing groove and the second limiting structure on the protruding beam. The assembled pallets of different sizes are formed through free assembly of the first pallet and the second pallet, free assembly can be carried out according to the sizes of different boxcars to adapt to the sizes of the different boxcars, waste of the space of the boxcars is avoided, resource waste is avoided, the utilization rate of boxcar boxing is increased, and the production cost is reduced. And the transportation cost of enterprises is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the packaging technical field, specifically relates to an assembled pallet. BACKGROUND

[0002] In the 3C (Computer, Communication and Consumer) battery industry, the pallet is a widely used loading device for transporting and storing 3C battery products. In the traditional pallet design, the size of the pallet is usually fixed, and cannot be freely assembled according to the size of different truck compartments to adapt to the size of different truck compartments. This results in low utilization of the pallet when loading goods, and the space of the truck cannot be fully utilized, resulting in waste of truck space, affecting the utilization of the truck compartment, and causing resource waste. In addition, the traditional pallet needs to be designed and produced according to different sizes of the pallet, and the limiting groove and tray structure need to be designed separately for each size of the battery, which increases the design and production costs and reduces the manufacturing efficiency. Therefore, a new pallet structure is needed, which can be compatible with different truck compartment sizes, improve the utilization of the truck loading, and promote the standardization of the pallet, which only needs to produce fixed modules, which is beneficial to reduce the production cost and improve the manufacturing efficiency. CONTENT OF THE UTILITY MODEL

[0003] The utility model aims at providing an assembled pallet, which can solve the technical problems of low utilization of the pallet, low utilization of the truck compartment, high design and production costs of the pallet, and low manufacturing efficiency of the pallet caused by the fixed size of the existing pallet.

[0004] In order to solve the above problems, the utility model provides an assembled pallet, which has a first direction, a second direction and a third direction intersecting with each other, and comprises: a first pallet, which is provided with a containing groove extending along the first direction; a second pallet, which is detachably connected to the first pallet, and is provided with a protruding beam extending along the first direction, the protruding beam being inserted and matched with the containing groove; and a limiting structure, which comprises a first limiting structure and a second limiting structure matched with each other, the first limiting structure and the second limiting structure being arranged on the containing groove and the protruding beam respectively, and the limiting structure being used for fixedly connecting the first pallet and the second pallet.

[0005] In some embodiments, the first limiting structure comprises a limiting plate, the two sides of the limiting plate in the second direction are respectively provided with an elastic member and a first limiting part, the second limiting structure comprises a second limiting part arranged on the protruding beam, and the second limiting part and the first limiting part are matched with each other to fix the first pallet and the second pallet.

[0006] In some embodiments, the accommodating groove has a first inner wall in the second direction, and the protruding beam has a first outer wall in the second direction; the limiting plate comprises a first limiting plate, the elastic member on the first limiting plate is located between the first limiting plate and the first inner wall, the first limiting part on the first limiting plate is located on the surface of the side of the first limiting plate away from the first inner wall, the second limiting part is arranged on the first outer wall, and the first limiting part on the first limiting plate and the second limiting part on the first outer wall are matched with each other to fix the first pallet and the second pallet.

[0007] In some embodiments, the assembled pallet further comprises a disassembly structure arranged on the first pallet and used for splitting the first pallet and the second pallet; the disassembly structure comprises a pull rod and a first stopper arranged on the pull rod, the pull rod is slidably connected to the first pallet in the second direction, and the first stopper abuts against the side of the first limiting plate away from the first inner wall.

[0008] In some embodiments, the accommodating groove further has a second inner wall in the second direction, and the protruding beam further has a second outer wall in the second direction; the limiting plate further comprises a second limiting plate, the elastic member on the second limiting plate is located between the second limiting plate and the second inner wall, the first limiting part on the second limiting plate is located on the surface of the side of the second limiting plate away from the second inner wall, the second limiting part is further arranged on the second outer wall, and the first limiting part on the second limiting plate and the second limiting part on the second outer wall are matched with each other to fix the first pallet and the second pallet.

[0009] In some embodiments, the disassembly structure further comprises a first rotating shaft, a second rotating shaft and a second stopper, the first rotating shaft is fixed in the accommodating groove, the second rotating shaft is fixed on the pull rod, the extension direction of the second rotating shaft is the same as that of the first rotating shaft, the second stopper is rotatably sleeved on the outer wall of the first rotating shaft and rotatably sleeved on the outer wall of the second rotating shaft, and the end of the second stopper away from the second rotating shaft abuts against the side of the second limiting plate away from the second inner wall.

[0010] In some embodiments, the first rotating shaft extends in a third direction, and the two ends of the first rotating shaft are respectively fixed on the inner walls of the two sides of the accommodating groove in the third direction.

[0011] In some embodiments, the accommodating groove has a groove bottom and a groove top in the first direction; the first rotating shaft extends in the first direction, one end of the first rotating shaft is fixed on the groove bottom of the accommodating groove, and the other end of the first rotating shaft is fixed on the inner wall of one side of the accommodating groove in the third direction through a connecting shaft.

[0012] In some embodiments, the first limiting part and the second limiting part are both limiting protrusions; or one of the first limiting part and the second limiting part is a limiting protrusion, and the other of the first limiting part and the second limiting part is a limiting groove.

[0013] In some embodiments, the accommodating groove has a groove bottom and a groove top in the first direction, and the first limiting part and the second limiting part are both limiting protrusions; the first limiting part gradually increases in size in the second direction from the groove top to the groove bottom, and the second limiting part gradually decreases in size in the second direction from the groove top to the groove bottom.

[0014] In some embodiments, the first limiting structure comprises a first magnet, and the second limiting structure comprises a second magnet magnetically attracted to the first magnet.

[0015] In some embodiments, the first limiting structure comprises a first fixed hole penetrating the accommodating groove in the second direction, the second limiting structure comprises a second fixed hole penetrating the protruding beam in the second direction, and the limiting structure further comprises a first fastener and a second fastener, the first fastener passing through the first fixed hole and the second fixed hole to cooperate with the second fastener to fix the first pallet and the second pallet.

[0016] In some embodiments, the second pallet is provided with an accommodating groove away from one end of the protruding beam, and the assembled pallet comprises a plurality of second pallets, and the accommodating groove of any one second pallet is inserted and matched with the protruding beam of the second pallet adjacent thereto.

[0017] The application sets the accommodating groove on the first pallet and the protruding beam inserted and matched with the accommodating groove on the second pallet, and the first limiting structure on the accommodating groove and the second limiting structure on the protruding beam are matched with each other to make the first pallet detachably connected to the second pallet, so that the assembled pallet of different sizes is formed through the free assembly between the first pallet and the second pallet, and the size of the assembled pallet can be freely assembled according to the size of different truck compartments to adapt to the size of different truck compartments, avoid wasting truck space, avoid causing resource waste, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises.

[0018] The application only needs to design and produce the first pallet and the second pallet, and the demand for the assembled pallet of different sizes can be met through the free assembly of the first pallet detachably connected to the second pallet, which reduces the production cost, improves the manufacturing efficiency, and is beneficial to improving the standardized design of the first pallet and the second pallet. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the application, the drawings needed in the embodiment description will be briefly introduced below, and obviously, the drawings in the following description can obtain other drawings according to the drawings without creative labor for those skilled in the art.

[0020] Figure 1 is a structure schematic view of the first pallet and the second pallet of the embodiment 1 of the application before assembly;

[0021] Figure 2 is a structure schematic diagram of the first stack board and the second stack board of the embodiment 1 of the present application after assembly;

[0022] Figure 3 is a sectional view of the first stack board and the second stack board of the embodiment 1 of the present application before assembly;

[0023] Figure 4 is a sectional view of the first stack board and the second stack board of the embodiment 1 of the present application after assembly;

[0024] Figure 5 is Figure 3 an enlarged view at A in FIG. 1;

[0025] Figure 6 is Figure 3 an enlarged view at B in FIG. 1;

[0026] Figure 7 is an enlarged schematic diagram of the disassembled structure of the embodiment 1 of the present application Figure 1 ;

[0027] Figure 8 is Figure 7 an enlarged schematic diagram of the pull rod of the embodiment 1 of the present application;

[0028] Figure 9 is an enlarged schematic diagram of the disassembled structure of the embodiment 1 of the present application Figure 2 ;

[0029] Figure 10 is Figure 9 an enlarged schematic diagram of the pull rod of the embodiment 1 of the present application;

[0030] Figure 11 is a structure schematic diagram of the first stack board and the second stack board of the embodiment 2 of the present application before assembly;

[0031] Figure 12 is a structure schematic diagram of the first stack board and the second stack board of the embodiment 2 of the present application after assembly;

[0032] Figure 13 is a sectional view of the first stack board and the second stack board of the embodiment 2 of the present application before assembly;

[0033] Figure 14 is a sectional view of the first stack board and the second stack board of the embodiment 2 of the present application after assembly;

[0034] Figure 15 is a structure schematic diagram of the first stack board and the second stack board of the embodiment 3 of the present application before assembly;

[0035] Figure 16 is a structure schematic diagram of the first stack board and the second stack board of the embodiment 3 of the present application after assembly;

[0036] Figure 17is a sectional view of the first stack board and the second stack board before assembly of Embodiment 3 of the present application;

[0037] Figure 18 is a sectional view of the first stack board and the second stack board after assembly of Embodiment 3 of the present application;

[0038] Figure 19 is a structural schematic view of the first stack board and the second stack board before assembly of Embodiment 4 of the present application;

[0039] Figure 20 is a structural schematic view of the first stack board and the second stack board after assembly of Embodiment 4 of the present application;

[0040] Figure 21 is a sectional view of the first stack board and the second stack board before assembly of Embodiment 4 of the present application;

[0041] Figure 22 is a sectional view of the first stack board and the second stack board after assembly of Embodiment 4 of the present application;

[0042] Figure 23 is Figure 21 an enlarged view at C in

[0043] Figure 24 is Figure 21 an enlarged view at D in

[0044] Figure 25 is Figure 22 an enlarged view at E in

[0045] Figure 26 is a structure of the first stack board and the second stack board split apart of Embodiment 4 of the present application Figure 1 ;

[0046] Figure 27 is a structure of the first stack board and the second stack board split apart of Embodiment 4 of the present application Figure 2 ;

[0047] Figure 28 is a structure of the first stack board and the second stack board split apart of Embodiment 4 of the present application Figure 3 ;

[0048] Figure 29 is a structure of the first stack board and the second stack board split apart of Embodiment 4 of the present application Figure 4 .

[0049] BRIEF DESCRIPTION OF REFERENCE NUMERALS:

[0050] 100, assembled stack board;

[0051] 1, first stack board; 2, second stack board; 3, limiting structure; 4, accommodating groove; 5, protruding beam; 6, disassembly structure;

[0052] 11, first beam body; 12, second beam body;

[0053] 21, third beam body; 22, fourth beam body;

[0054] 31, first limiting structure; 311, limiting plate; 312, elastic piece; 313, first limiting part; 3111, first limiting plate; 3112, second limiting plate; 3131, first guide edge; 3132, first abutting edge;

[0055] 32, second limiting structure; 321, second limiting part; 3211, second guide edge; 3212, second abutting edge;

[0056] 41, first inner wall; 42, second inner wall; 43, groove bottom; 44, groove top;

[0057] 51, first outer wall; 52, second outer wall;

[0058] 61, pull rod; 62, first stop block; 63, first rotation shaft; 64, second rotation shaft; 65, second stop block; 66, connecting shaft;

[0059] 314, first magnet; 322, second magnet; 45, recess;

[0060] 315, first fixing hole; 323, second fixing hole; 33, first fastener; 34, second fastener;

[0061] 316, operating rod; 317, locking piece; 318, unlocking ring; 319, limiting block;

[0062] 324, clamping hook; 325, elastic structure; 53, clamping hook mounting groove. DETAILED DESCRIPTION

[0063] The preferred embodiments of the present application are described in detail below with reference to the accompanying drawings, to give a complete introduction of the technical content of the present application to those skilled in the art, to prove by example that the present application can be implemented, to make the technical content disclosed by the present application more clear, and to make those skilled in the art more easily understand how to implement the present application. However, the present application can be embodied in many different forms of embodiments, and the protection scope of the present application is not limited to the embodiments mentioned in the text. The description of the following embodiments is not used to limit the scope of the present application.

[0064] The direction terms mentioned in the present application, such as "up", "down", "front", "back", "left", "right", "inner", "outer", "side surface", etc., are only the directions in the drawings. The direction terms used in the text are used to explain and describe the present application, and are not used to limit the protection scope of the present application.

[0065] In the drawings, components of the same structure are denoted by the same reference numerals, and components similar in structure or function are denoted by similar reference numerals. In addition, in order to facilitate understanding and description, the size and thickness of each component shown in the drawings are arbitrarily shown, and the size and thickness of each component are not limited.

[0066] Embodiment 1

[0067] As shown in Figures 1-10 , the embodiment of the present application provides an assembled pallet 100. The assembled pallet 100 has a first direction M, a second direction N and a third direction P. In this embodiment, the first direction M, the second direction N and the third direction P are perpendicular to each other.

[0068] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , the assembled pallet 100 comprises a first pallet 1, a second pallet 2 and a limiting structure 3.

[0069] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , the first pallet 1 is provided with a receiving groove 4 extending along the first direction M. Specifically, the first pallet 1 comprises a first beam body 11 and a second beam body 12 connected to each other. The first beam body 11 extends along the first direction M, and the second beam body 12 extends along the second direction N. The first beam body 11 is provided with the receiving groove 4 extending along the first direction M.

[0070] As shown in Figure 3 , Figure 5 and Figure 6 , the receiving groove 4 has a first inner wall 41 and a second inner wall 42 in the second direction N. The receiving groove 4 has a groove bottom 43 and a groove top 44 in the first direction M.

[0071] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , the second pallet 2 is detachably connected to the first pallet 1. The second pallet 2 is provided with a protruding beam 5 extending along the first direction M. Specifically, the second pallet 2 comprises a third beam body 21 and a fourth beam body 22 connected to each other. The third beam body 21 extends along the first direction M, and the fourth beam body 22 extends along the second direction N. The third beam body 21 is provided with the protruding beam 5, which is located on the side of the third beam body 21 away from the fourth beam body 22, and the protruding beam 5 is inserted and matched with the receiving groove 4.

[0072] As shown in Figure 3 , Figure 5 and Figure 6As shown, the protruding beam 5 has a first outer wall 51 and a second outer wall 52 in the second direction N.

[0073] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , the limiting structure 3 is used to fix the first pallet 1 and the second pallet 2. The limiting structure 3 includes a first limiting structure 31 and a second limiting structure 32 which cooperate with each other. The first limiting structure 31 and the second limiting structure 32 are respectively arranged in the accommodating groove 4 of the first beam body 11 and the protruding beam 5.

[0074] As shown in Figure 3 , Figure 4 , Figure 7 and Figure 9 , the first limiting structure 31 includes a limiting plate 311, and the two sides of the limiting plate 311 in the second direction N are respectively provided with an elastic member 312 and a first limiting part 313. One end of the elastic member 312 is fixed to the limiting plate 311, and the other end is fixed to the accommodating groove 4, so that the first limiting part 313 can move in the second direction N through the elastic member 312. In this embodiment, the elastic member 312 is a spring.

[0075] As shown in Figure 1 , Figure 3 and Figure 4 , the second limiting structure 32 includes a second limiting part 321 arranged on the protruding beam 5, and the second limiting part 321 cooperates with the first limiting part 313 to fix the first pallet 1 and the second pallet 2.

[0076] As shown in Figure 5 and Figure 6As shown, the limiting plate 311 comprises a first limiting plate 3111, the elastic member 312 on the first limiting plate 3111 is located between the first limiting plate 3111 and the first inner wall 41, and the first limiting portion 313 on the first limiting plate 3111 is located on the surface of the side of the first limiting plate 3111 away from the first inner wall 41. The second limiting portion 321 is arranged on the first outer wall 51. The first limiting portion 313 on the first limiting plate 3111 and the second limiting portion 321 on the first outer wall 51 cooperate to fix the first pallet 1 and the second pallet 2. When the first pallet 1 and the second pallet 2 are assembled, the protruding beam 5 on the second pallet 2 is inserted into the accommodating groove 4 of the first pallet 1, the second limiting portion 321 on the first outer wall 51 of the protruding beam 5 presses against the first limiting portion 313 on the first limiting plate 3111, thereby applying pressure to the first limiting plate 3111. When the pressure applied to the first limiting plate 3111 is greater than the elastic force of the elastic member 312 on the first limiting plate 3111, the elastic member 312 is compressed, thereby enabling the protruding beam 5 to advance along the first direction M towards the groove bottom 43 of the accommodating groove 4, and when the second pallet 2 advances to the designated position, the second limiting portion 321 on the first outer wall 51 of the protruding beam 5 and the first limiting portion 313 on the first limiting plate 3111 cooperate to fix the first pallet 1 and the second pallet 2.

[0077] As shown in Figures 1-4 , Figures 7-10 , the assembled pallet 100 further comprises a disassembly structure 6. The disassembly structure 6 is arranged on the first pallet 1 and is used to disassemble the first pallet 1 and the second pallet 2. The disassembly structure 6 comprises a pull rod 61 and a first stop block 62 arranged on the pull rod 61, the pull rod 61 is slidably connected to the first pallet 1 along the second direction N, and the first stop block 62 abuts against the side of the first limiting plate 3111 away from the first inner wall 41. When it is necessary to disassemble the first pallet 1 and the second pallet 2, the pull rod 61 is pulled, the pull rod 61 drives the first stop block 62 to move, the first stop block 62 applies pressure to the first limiting plate 3111. When the pressure applied to the first limiting plate 3111 is greater than the elastic force of the elastic member 312 on the first limiting plate 3111, the elastic member 312 is compressed, thereby enabling the second limiting portion 321 on the first outer wall 51 of the protruding beam 5 and the first limiting portion 313 on the first limiting plate 3111 to be separated, enabling the protruding beam 5 to advance along the first direction M towards the groove top 44 of the accommodating groove 4 to exit the accommodating groove 4, and finally realizing the separation of the first pallet 1 and the second pallet 2.

[0078] As shown in Figure 5 and Figure 6As shown, the limiting plate 311 further comprises a second limiting plate 3112, the elastic member 312 on the second limiting plate 3112 is located between the second limiting plate 3112 and the second inner wall 42, and the first limiting part 313 on the second limiting plate 3112 is located on the surface of the side of the second limiting plate 3112 away from the second inner wall 42. The second limiting part 321 is also arranged on the second outer wall 52, and the first limiting part 313 on the second limiting plate 3112 cooperates with the second limiting part 321 on the second outer wall 52 to fix the first pallet 1 and the second pallet 2. When the first pallet 1 and the second pallet 2 are assembled, the protruding beam 5 on the second pallet 2 is inserted into the accommodating groove 4 of the first pallet 1, and the second limiting part 321 on the second outer wall 52 of the protruding beam 5 presses against the first limiting part 313 on the second limiting plate 3112, thereby applying pressure to the second limiting plate 3112. When the pressure applied to the second limiting plate 3112 is greater than the elastic force of the elastic member 312 on the second limiting plate 3112, the elastic member 312 is compressed, thereby enabling the protruding beam 5 to advance along the first direction M towards the groove bottom 43 of the accommodating groove 4, and when the second pallet 2 advances to the designated position, the second limiting part 321 on the second outer wall 52 of the protruding beam 5 and the first limiting part 313 on the second limiting plate 3112 cooperate to fix the first pallet 1 and the second pallet 2.

[0079] As shown in Figures 1-4 , Figures 7-10 The disassembly structure 6 further comprises a first rotating shaft 63, a second rotating shaft 64, and a second stop block 65. The first rotating shaft 63 is fixed in the accommodating groove 4, the second rotating shaft 64 is fixed on the pull rod 61, the extension direction of the second rotating shaft 64 is the same as that of the first rotating shaft 63, the second stop block 65 is rotatably sleeved on the outer wall of the first rotating shaft 63 and the outer wall of the second rotating shaft 64, and the end of the second stop block 65 away from the second rotating shaft 64 abuts against the side of the second limiting plate 3112 away from the second inner wall 42. When it is necessary to disassemble the first pallet 1 and the second pallet 2, the pull rod 61 is pulled, the pull rod 61 drives the second stop block 65 to rotate around the first rotating shaft 63 through the second rotating shaft 64, so that the end of the second stop block 65 away from the second rotating shaft 64 presses against the second limiting plate 3112, and the second stop block 65 applies pressure to the second limiting plate 3112. When the pressure applied to the second limiting plate 3112 is greater than the elastic force of the elastic member 312 on the second limiting plate 3112, the elastic member 312 on the second limiting plate 3112 is compressed, thereby enabling the second limiting part 321 on the second outer wall 52 of the protruding beam 5 and the first limiting part 313 on the second limiting plate 3112 to be separated, enabling the protruding beam 5 to advance along the first direction M towards the groove top 44 of the accommodating groove 4 to exit the accommodating groove 4, and finally realizing the separation of the first pallet 1 and the second pallet 2.

[0080] In some embodiments, as Figure 7 andFigure 8 As shown, the first rotating shaft 63 extends along the third direction P, and the two ends of the first rotating shaft 63 are respectively fixed to the inner walls of the receiving groove 4 on both sides of the third direction P.

[0081] In other embodiments, such as Figure 9 and Figure 10 As shown, the first rotating shaft 63 extends along the first direction M. One end of the first rotating shaft 63 is fixed to the bottom 43 of the receiving groove 4, and the other end of the first rotating shaft 63 is fixed to the inner wall of the receiving groove 4 on the third direction P through the connecting shaft 66.

[0082] like Figure 5 and Figure 6 As shown, in this embodiment, both the first limiting part 313 and the second limiting part 321 are limiting protrusions. The size of the first limiting part 313 in the second direction N gradually increases from the top of the groove 44 to the bottom of the groove 43, and the size of the second limiting part 321 in the second direction N gradually decreases from the top of the groove 44 to the bottom of the groove 43. Specifically, in the plane formed by the first direction M and the second direction N, the projection of the first limiting part 313 includes a connected first guide edge 3131 and a first abutting edge 3132. The end of the first guide edge 3131 away from the first abutting edge 3132 and the end of the first abutting edge 3132 away from the first guide edge 3131 are both connected to the limiting plate 311. The first guide edge 3131 is located on the side of the first abutting edge 3132 closer to the top of the groove 44, and the included angle between the first guide edge 3131 and the limiting plate 311 is α, where α < 90°. In the plane formed by the first direction M and the second direction N, the projection of the second limiting part 321 has a connected second guide edge 3211 and abutting edge 3212. The end of the second guide edge 3211 away from the second abutting edge 3212 and the end of the second abutting edge 3212 away from the second guide edge 3211 are both connected to the protruding beam 5. The second guide edge 3211 is located on the side of the second abutting edge 3212 away from the third beam 21. The angle between the second guide edge 3211 and the protruding beam 5 is β, where α = β < 90°. Therefore, the first guide edge 3131 and the second guide edge 3211 can be used to improve the insertion accuracy between the first limiting part 313 and the second limiting part 321, and the first abutting edge 3132 and the second abutting edge 3212 can be used to improve the stability and safety of the connection between the first limiting part 313 and the second limiting part 321, effectively preventing the first pallet 1 and the second pallet 2 from accidentally falling off or loosening during use. In this embodiment, α = β = 45°.

[0083] In other embodiments, one of the first limiting part 313 and the second limiting part 321 is a limiting protrusion, and the other of the first limiting part 313 and the second limiting part 321 is a limiting groove. For example, a circular protrusion is arranged on the inner wall of the accommodating groove 4, a circular limiting groove is arranged on the protruding beam 5, or a square protrusion is arranged on the inner wall of the accommodating groove 4, a square limiting groove is arranged on the protruding beam 5, and the like.

[0084] As shown in Figure 3 and Figure 4 , the first beam body 11 of the first pallet 1 is provided with the accommodating groove 4 at both ends in the first direction M. In this way, the second pallet 2 can be assembled at both ends of the first beam body 11, and different sizes of the assembled pallet 100 can be formed through the free assembly between the first pallet 1 and the second pallet 2, so that the size of the assembled pallet 100 can be freely assembled according to the size of the different truck compartments, so as to avoid wasting the truck space, avoid causing resource waste, improve the utilization rate of the truck packing, and reduce the transportation cost of the enterprise.

[0085] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , the third beam body 21 of the second pallet 2 is provided with the accommodating groove 4 at the end away from the protruding beam 5. In this way, the assembled pallet 100 can include a plurality of second pallets 2, and the accommodating groove 4 of any one of the second pallets 2 is inserted and matched with the protruding beam 5 of the adjacent second pallet 2. In this way, a plurality of second pallets 2 can be assembled at at least one end of the first pallet 1, and different sizes of the assembled pallet 100 can be formed through the free assembly between the first pallet 1 and the second pallet 2, so that the size of the assembled pallet 100 can be freely assembled according to the size of the different truck compartments, so as to avoid wasting the truck space, avoid causing resource waste, improve the utilization rate of the truck packing, and reduce the transportation cost of the enterprise.

[0086] In summary, in the use process of the assembled pallet 100, a first pallet 1 and a plurality of second pallets 2 are selected, the protruding beam 5 on the second pallet 2 is inserted into the accommodating groove 4 of the first pallet 1, the second limiting portion 321 on the protruding beam 5 abuts against the first limiting portion 313 on the limiting plate 311, and then the limiting plate 311 is subjected to pressure, when the pressure applied to the limiting plate 311 is greater than the elastic force of the elastic member 312 on the limiting plate 311, the elastic member 312 on the limiting plate 311 is compressed, and then the protruding beam 5 can advance along the first direction M towards the groove bottom 43 of the accommodating groove 4, when the second pallet 2 advances to the specified position, the second limiting portion 321 on the protruding beam 5 and the first limiting portion 313 on the limiting plate 311 cooperate to fixedly connect the first pallet 1 and the second pallet 2. Similarly, the protruding beam 5 on one second pallet 2 is inserted into the accommodating groove 4 of another second pallet 2 to fixedly connect two adjacent second pallets 2. Different sizes of assembled pallets are formed through the free assembly between the first pallet 1 and the second pallet 2, and then different sizes of assembled pallets can be freely assembled according to the size of different truck compartments to adapt to the size of different truck compartments, avoid wasting truck space, avoid causing resource waste, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises. The embodiment of the application only needs to design and produce the first pallet 1 and the second pallet 2, and the first pallet 1 can be detachably connected to the second pallet 2 for free assembly to meet the demand of different sizes of assembled pallets, reduce the production cost, improve the manufacturing efficiency, and be beneficial to improving the standardized design of the first pallet 1 and the second pallet 2.

[0087] In summary, in the use process of the assembled pallet 100, the pull rod 61 is pulled, the first stop block 62 is driven to move, the first stop block 62 applies pressure to the first limiting plate 3111, when the pressure applied to the first limiting plate 3111 is greater than the elastic force of the elastic element 312 on the first limiting plate 3111, the elastic element 312 is compressed, and then the second limiting part 321 on the first outer wall 51 of the protruding beam 5 and the first limiting part 313 on the first limiting plate 3111 are separated; the pull rod 61 drives the second stop block 65 to rotate around the first rotation shaft 63 through the second rotation shaft 64, so that the end of the second stop block 65 away from the second rotation shaft 64 abuts against the second limiting plate 3112, the second stop block 65 applies pressure to the second limiting plate 3112, when the pressure applied to the second limiting plate 3112 is greater than the elastic force of the elastic element 312 on the second limiting plate 3112, the elastic element 312 on the second limiting plate 3112 is compressed, and then the second limiting part 321 on the second outer wall 52 of the protruding beam 5 and the first limiting part 313 on the second limiting plate 3112 are separated, so that the protruding beam 5 can advance in the first direction M towards the groove top 44 of the accommodating groove 4 to exit the accommodating groove 4; finally, the separation of the first pallet 1 and the second pallet 2 is realized, and the disassembly of two adjacent second pallets 2 can also be realized, and then the first pallet 1 and the second pallet 2 can be reused, and the utilization rate of the assembled pallet 100 is improved.

[0088] Embodiment 2

[0089] As shown in Figures 11-14 , the embodiment of the application provides an assembled pallet 100. The assembled pallet 100 has intersecting first direction M, second direction N and third direction P. In this embodiment, the first direction M, the second direction N and the third direction P are perpendicular to each other.

[0090] As shown in Figure 11 , Figure 12 , Figure 13 and Figure 14 , the assembled pallet 100 comprises a first pallet 1, a second pallet 2 and a limiting structure 3.

[0091] As shown in Figure 11 , Figure 12 , Figure 13 and Figure 14 , the first pallet 1 is provided with an accommodating groove 4 extending in the first direction M. Specifically, the first pallet 1 comprises a first beam body 11 and a second beam body 12 connected to each other. The first beam body 11 extends in the first direction M, and the second beam body 12 extends in the second direction N. The first beam body 11 is provided with the accommodating groove 4 extending in the first direction M.

[0092] As shown in Figure 13As shown, the accommodating groove 4 has a first inner wall 41 and a second inner wall 42 in the second direction N. The accommodating groove 4 has a groove bottom 43 and a groove top 44 in the first direction M.

[0093] As shown in Figure 11 , Figure 12 , Figure 13 and Figure 14 , the second pallet 2 is detachably connected to the first pallet 1. The second pallet 2 is provided with a protruding beam 5 extending along the first direction M. Specifically, the second pallet 2 comprises a third beam body 21 and a fourth beam body 22 connected to each other. The third beam body 21 extends along the first direction M, and the fourth beam body 22 extends along the second direction N. The third beam body 21 is provided with the protruding beam 5, which is located on the side of the third beam body 21 away from the fourth beam body 22, and the protruding beam 5 is in plug-in cooperation with the accommodating groove 4.

[0094] As shown in Figure 13 , the protruding beam 5 has a first outer wall 51 and a second outer wall 52 in the second direction N.

[0095] As shown in Figure 11 , Figure 12 , Figure 13 and Figure 14 , the limiting structure 3 is used for fixedly connecting the first pallet 1 and the second pallet 2. The limiting structure 3 comprises a first limiting structure 31 and a second limiting structure 32 cooperating with each other. The first limiting structure 31 and the second limiting structure 32 are respectively arranged on the accommodating groove 4 and the protruding beam 5 of the first beam body 11.

[0096] As shown in Figure 11 , Figure 13 and Figure 14 , the first limiting structure 31 comprises a first magnet 314, and the second limiting structure 32 comprises a second magnet 322 magnetically attracted to the first magnet 314. In the embodiment, the first magnet 314 is arranged on the first inner wall 41 and the second inner wall 42, and the second magnet 322 is arranged on the first outer wall 51 and the second outer wall 52. The first magnet 314 on the first inner wall 41 and the second magnet 322 on the first outer wall 51 are magnetically attracted to each other, and the first magnet 314 on the second inner wall 42 and the second magnet 322 on the second outer wall 52 are magnetically attracted to each other, thereby fixing the first pallet 1 and the second pallet 2. In other embodiments, the first magnet 314 can be arranged only on the first inner wall 41, and the second magnet 322 can be arranged only on the first outer wall 51. The first magnet 314 on the first inner wall 41 and the second magnet 322 on the first outer wall 51 are magnetically attracted to each other to fix the first pallet 1 and the second pallet 2. The first magnet 314 can also be arranged only on the second inner wall 42, and the second magnet 322 can be arranged only on the second outer wall 52. The first magnet 314 on the second inner wall 42 and the second magnet 322 on the second outer wall 52 are magnetically attracted to each other to fix the first pallet 1 and the second pallet 2.

[0097] As shown in Figure 11 , Figure 13 and Figure 14 , the first magnet 314 is embedded in the first inner wall 41 and the second inner wall 42, that is, the first inner wall 41 and the second inner wall 42 are provided with a recess 45, and the first magnet 314 is embedded in the recess, so that the first magnet 314 does not protrude from the first inner wall 41 and the second inner wall 42, so that the first inner wall 41 and the second inner wall 42 are flat, which is more conducive to the insertion fit between the protruding beam 5 and the accommodating groove 4. In other embodiments, the first magnet 314 can also be arranged not to be embedded in the first inner wall 41 and the second inner wall 42 according to actual conditions.

[0098] As shown in Figure 13 , Figure 14 , the first beam body 11 of the first pallet 1 is provided with an accommodating groove 4 at both ends in the first direction M. Thereby, the second pallet 2 can be assembled at both ends of the first beam body 11, and then different sizes of assembled pallets 100 can be formed through the free assembly between the first pallet 1 and the second pallet 2, so that the size of the assembled pallets 100 can be freely assembled according to the size of different truck compartments, so as to avoid wasting truck space and causing resource waste, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises.

[0099] As shown in Figure 11 , Figure 12 , Figure 13 and Figure 14 , the third beam body 21 of the second pallet 2 is provided with an accommodating groove 4 at an end away from the protruding beam 5, and the first inner wall 41 and the second inner wall 42 of the accommodating groove 4 of the third beam body 21 are also provided with a first magnet 314. Thereby, the assembled pallet 100 can include a plurality of second pallets 2, and the accommodating groove 4 of any one of the second pallets 2 and the protruding beam 5 of the adjacent second pallet 2 are inserted and fitted. Thereby, a plurality of second pallets 2 can be assembled at at least one end of the first pallet 1, and then different sizes of assembled pallets 100 can be formed through the free assembly between the first pallet 1 and the second pallet 2, so that the size of the assembled pallets 100 can be freely assembled according to the size of different truck compartments, so as to avoid wasting truck space and causing resource waste, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises.

[0100] In summary, in the use process of the assembled pallet 100, a first pallet 1 and a plurality of second pallets 2 are selected, the protruding beam 5 on the second pallet 2 is inserted into the accommodating groove 4 of the first pallet 1, the first magnet 314 on the first inner wall 41 and the second magnet 322 on the first outer wall 51 are magnetically attracted to each other, the first magnet 314 on the second inner wall 42 and the second magnet 322 on the second outer wall 52 are magnetically attracted to each other, thereby fixedly connecting the first pallet 1 and the second pallet 2. Similarly, the protruding beam 5 on one second pallet 2 is inserted into the accommodating groove 4 of another second pallet 2 to fix two adjacent second pallets 2. Different sizes of assembled pallets are formed through the free assembly between the first pallet 1 and the second pallet 2, thereby the size of the assembled pallet can be freely assembled according to the size of different truck compartments to adapt to the size of different truck compartments, avoid wasting truck space, avoid causing resource waste, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises. The embodiment of the application only needs to design and produce the first pallet 1 and the second pallet 2, and the first pallet 1 can be detachably connected to the second pallet 2 for free assembly to meet the demand of different sizes of assembled pallets, thereby reducing the production cost, improving the manufacturing efficiency, and being beneficial to improving the standardized design of the first pallet 1 and the second pallet 2.

[0101] In summary, in the use process of the assembled pallet 100, the second pallet 2 is pulled with force, when the pulling force applied to the second pallet 2 is greater than the magnetic force between the first magnet 314 and the second magnet 322, the first magnet 314 and the second magnet 322 are separated, thereby the protruding beam 5 can advance along the first direction M towards the groove top 44 of the accommodating groove 4 to exit the accommodating groove 4, finally realizing the separation of the first pallet 1 and the second pallet 2, and the disassembly between two adjacent second pallets 2 can also be realized, thereby the first pallet 1 and the second pallet 2 can be reused, and the utilization rate of the assembled pallet 100 is improved.

[0102] Embodiment 3

[0103] As shown in Figures 15-18 , the embodiment of the application provides an assembled pallet 100. The assembled pallet 100 has intersecting first direction M, second direction N and third direction P. In this embodiment, the first direction M, the second direction N and the third direction P are perpendicular to each other.

[0104] As shown in Figure 15 , Figure 16 , Figure 17 and Figure 18 , the assembled pallet 100 comprises a first pallet 1, a second pallet 2 and a limiting structure 3.

[0105] As shown in Figure 15 , Figure 16 , Figure 17 and Figure 18As shown in the drawings, the first stacker 1 is provided with a receiving groove 4 extending along the first direction M. Specifically, the first stacker 1 comprises a first beam body 11 and a second beam body 12 connected with each other. The first beam body 11 extends along the first direction M, and the second beam body 12 extends along the second direction N. The first beam body 11 is provided with the receiving groove 4 extending along the first direction M.

[0106] As shown in the drawings, Figure 17 the receiving groove 4 has a first inner wall 41 and a second inner wall 42 along the second direction N. The receiving groove 4 has a groove bottom 43 and a groove top 44 along the first direction M.

[0107] As shown in the drawings, Figure 15 , Figure 16 , Figure 17 and Figure 18 the second stacker 2 is detachably connected to the first stacker 1. The second stacker 2 is provided with a protruding beam 5 extending along the first direction M. Specifically, the second stacker 2 comprises a third beam body 21 and a fourth beam body 22 connected with each other. The third beam body 21 extends along the first direction M, and the fourth beam body 22 extends along the second direction N. The third beam body 21 is provided with the protruding beam 5, which is located on the side of the third beam body 21 away from the fourth beam body 22, and the protruding beam 5 is inserted and matched with the receiving groove 4.

[0108] As shown in the drawings, Figure 17 the protruding beam 5 has a first outer wall 51 and a second outer wall 52 along the second direction N.

[0109] As shown in the drawings, Figure 15 , Figure 16 , Figure 17 and Figure 18 the limiting structure 3 is used for fixedly connecting the first stacker 1 and the second stacker 2. The limiting structure 3 comprises a first limiting structure 31 and a second limiting structure 32 matched with each other. The first limiting structure 31 and the second limiting structure 32 are respectively arranged on the receiving groove 4 of the first beam body 11 and the protruding beam 5.

[0110] As shown in the drawings, Figure 15 , Figure 17 and Figure 18 the first limiting structure 31 comprises a first fixing hole 315 penetrating through the receiving groove 4 of the first beam body 11 along the second direction N. The second limiting structure 32 comprises a second fixing hole 323 penetrating through the protruding beam 5 along the second direction N. The limiting structure 3 further comprises a first fastener 33 and a second fastener 34. The first fastener 33 passes through the first fixing hole 315 and the second fixing hole 323 to cooperate with the second fastener 34 to fix the first stacker 1 and the second stacker 2. In the embodiment, the first fastener 33 is a bolt, and the second fastener 34 is a nut.

[0111] As shown in the drawings, Figure 17 and Figure 18As shown, the first beam body 11 of the first stack board 1 is provided with a receiving groove 4 at both ends in the first direction M. Thus, the second stack board 2 can be assembled at both ends of the first beam body 11, and different sizes of the assembled stack board 100 can be formed by free assembly between the first stack board 1 and the second stack board 2, so that the size of the assembled stack board 100 can be freely assembled to adapt to the size of the different truck compartments, so as to avoid wasting truck space, avoid wasting resources, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises.

[0112] As shown in Figure 15 , Figure 16 , Figure 17 and Figure 18 , the third beam body 21 of the second stack board 2 is provided with a receiving groove 4 at one end away from the protruding beam 5, and the third beam body 21 is provided with a first fixing hole 315 penetrating in the second direction N. Thus, the assembled stack board 100 can include a plurality of second stack boards 2, and the receiving groove 4 of any one of the second stack boards 2 and the protruding beam 5 of the second stack board 2 adjacent thereto are inserted and matched. Thus, a plurality of second stack boards 2 can be assembled at at least one end of the first stack board 1, and different sizes of the assembled stack board 100 can be formed by free assembly between the first stack board 1 and the second stack board 2, so that the size of the assembled stack board 100 can be freely assembled to adapt to the size of the different truck compartments, so as to avoid wasting truck space, avoid wasting resources, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises.

[0113] In summary, in the use process of the assembled stack board 100 of the embodiment of the present application, a first stack board 1 and a plurality of second stack boards 2 are selected, the protruding beam 5 on the second stack board 2 is inserted into the receiving groove 4 of the first stack board 1, and the first fastener 33 penetrates through the first fixing hole 315 and the second fixing hole 323 to cooperate with the second fastener 34 to fixedly connect the first stack board 1 and the second stack board 2. Similarly, the protruding beam 5 on one second stack board 2 is inserted into the receiving groove 4 of another second stack board 2 to fix two adjacent second stack boards 2. Different sizes of the assembled stack board can be formed by free assembly between the first stack board 1 and the second stack board 2, so that the size of the assembled stack board 100 can be freely assembled to adapt to the size of the different truck compartments, so as to avoid wasting truck space, avoid wasting resources, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises. The embodiment of the present application only needs to design and produce the first stack board 1 and the second stack board 2, and the first stack board 1 can be detachably connected to the second stack board 2 for free assembly, so as to meet the demand of different sizes of the assembled stack board, reduce the production cost, improve the manufacturing efficiency, and be beneficial to improving the standardized design of the first stack board 1 and the second stack board 2.

[0114] In summary, in the use process of the assembled pallet 100, by removing the second fastener 34 and pulling out the first fastener 33, the first magnet 314 and the second magnet 322 are separated, and then the protruding beam 5 can advance along the first direction M towards the groove top 44 of the accommodating groove 4 to exit the accommodating groove 4, so as to realize the separation of the first pallet 1 and the second pallet 2, and the disassembly of two adjacent second pallets 2, and then the first pallet 1 and the second pallet 2 can be reused, and the utilization rate of the assembled pallet 100 is improved.

[0115] Embodiment 4

[0116] As shown in Figures 19-29 , the embodiment of the application provides an assembled pallet 100. The assembled pallet 100 has intersecting first direction M, second direction N and third direction P. In this embodiment, the first direction M, the second direction N and the third direction P are perpendicular to each other.

[0117] As shown in Figure 19 , Figure 20 , Figure 21 and Figure 22 , the assembled pallet 100 comprises a first pallet 1, a second pallet 2 and a limiting structure 3.

[0118] As shown in Figure 19 , Figure 20 , Figure 21 and Figure 22 , the first pallet 1 is provided with an accommodating groove 4 extending along the first direction M. Specifically, the first pallet 1 comprises a first beam body 11 and a second beam body 12 connected to each other. The first beam body 11 extends along the first direction M, and the second beam body 12 extends along the second direction N. The first beam body 11 is provided with the accommodating groove 4 extending along the first direction M.

[0119] As shown in Figure 21 , the accommodating groove 4 has a first inner wall 41 and a second inner wall 42 in the second direction N. The accommodating groove 4 has a groove bottom 43 and a groove top 44 in the first direction M.

[0120] As shown in Figure 19 , Figure 20 , Figure 21 and Figure 22 , the second pallet 2 is detachably connected to the first pallet 1. The second pallet 2 is provided with a protruding beam 5 extending along the first direction M. Specifically, the second pallet 2 comprises a third beam body 21 and a fourth beam body 22 connected to each other. The third beam body 21 extends along the first direction M, and the fourth beam body 22 extends along the second direction N. The third beam body 21 is provided with the protruding beam 5, and the protruding beam 5 is located on the side of the third beam body 21 away from the fourth beam body 22. The protruding beam 5 is in plug-in cooperation with the accommodating groove 4.

[0121] AsFigure 21 As shown in the figures, the protruding beam 5 has a first outer wall 51 and a second outer wall 52 in the second direction N.

[0122] As shown in the figures, Figure 19 , Figure 20 , Figure 21 and Figure 22 The limiting structure 3 is used to fix and connect the first pallet 1 and the second pallet 2. The limiting structure 3 includes a first limiting structure 31 and a second limiting structure 32 which cooperate with each other. The first limiting structure 31 and the second limiting structure 32 are respectively arranged in the accommodating groove 4 of the first beam body 11 and the protruding beam 5.

[0123] As shown in the figures, Figure 23 and Figure 25 The first limiting structure 31 includes an operating rod 316, a locking piece 317, an unlocking ring 318 and a limiting block 319.

[0124] The operating rod 316 is slidably connected to the groove wall of the accommodating groove 4 in the second direction N. The first end of the operating rod 316 is located in the accommodating groove 4, and the second end of the operating rod 316 passes through the groove wall of the accommodating groove 4 to the outside of the accommodating groove 4.

[0125] The locking piece 317 is located in the accommodating groove 4. The locking piece 317 is fixedly connected to the first end of the operating rod 316, that is, the locking piece 317 is fixedly connected to the end of the operating rod 316 located in the accommodating groove 4. The surface of the side of the locking piece 317 away from the unlocking ring 318 is curved, and the surface of the side of the locking piece 317 close to the unlocking ring 318 is flat.

[0126] The limiting block 319 is located in the accommodating groove 4. The limiting block 319 is fixedly connected to the outer wall of the operating rod 316.

[0127] The unlocking ring 318 is located in the accommodating groove 4. The unlocking ring 318 is slidably arranged on the outer wall of the operating rod 316 and located between the limiting block 319 and the locking piece 317. The surfaces of the two sides of the unlocking ring 318 in the second direction N are both curved.

[0128] As shown in the figures, Figure 24 and Figure 25 The protruding beam 5 is provided with a hook mounting groove 53 on at least one side thereof in the second direction N. The second limiting structure 32 includes a hook 324 and an elastic structure 325. The hook 324 is telescopically mounted on the groove wall of the hook mounting groove 53 through the elastic structure 325 in the first direction M.

[0129] As shown in the figures, Figure 21 and Figure 22As shown, the first beam body 11 of the first stack board 1 is provided with a receiving groove 4 at both ends in the first direction M. Thus, the second stack board 2 can be assembled at both ends of the first beam body 11, and different sizes of the assembled stack board 100 can be formed through the free assembly between the first stack board 1 and the second stack board 2, so that the size of the assembled stack board can be freely assembled to adapt to the size of different truck compartments, so as to avoid wasting truck space, avoid wasting resources, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises.

[0130] As shown in Figure 19 , Figure 20 , Figure 21 and Figure 22 , the third beam body 21 of the second stack board 2 is provided with a receiving groove 4 at one end away from the protruding beam 5, so that the assembled stack board 100 can include a plurality of second stack boards 2, and the receiving groove 4 of any one of the second stack boards 2 and the protruding beam 5 of the second stack board 2 adjacent thereto are inserted and matched. Thus, a plurality of second stack boards 2 can be assembled at least one end of the first stack board 1, and different sizes of the assembled stack board 100 can be formed through the free assembly between the first stack board 1 and the second stack board 2, so that the size of the assembled stack board can be freely assembled to adapt to the size of different truck compartments, so as to avoid wasting truck space, avoid wasting resources, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises.

[0131] As shown in Figure 25 , in the use process of the assembled stack board 100 of the embodiment of the application, a first stack board 1 and a plurality of second stack boards 2 are selected, the protruding beam 5 on the second stack board 2 is inserted into the receiving groove 4 of the first stack board 1, and then the operating rod 316 is moved along the second direction N towards the receiving groove 4 until the surface of the catch 324 close to the bottom side of the catch mounting groove 53 abuts against the surface of the locking piece 317 close to the unlocking ring 318 to fixedly connect the first stack board 1 and the second stack board 2. Similarly, the protruding beam 5 on one of the second stack boards 2 is inserted into the receiving groove 4 of another second stack board 2 to fix two adjacent second stack boards 2. Through the free assembly between the first stack board 1 and the second stack board 2, different sizes of the assembled stack board can be formed, so that the size of the assembled stack board can be freely assembled to adapt to the size of different truck compartments, so as to avoid wasting truck space, avoid wasting resources, improve the utilization rate of truck packing, and reduce the transportation cost of enterprises. The embodiment of the application only needs to design and produce the first stack board 1 and the second stack board 2, and the first stack board 1 can be freely assembled to the second stack board 2 through detachable connection to meet the demand of different sizes of the assembled stack board, reduce the production cost, improve the manufacturing efficiency, and be conducive to improving the standardized design of the first stack board 1 and the second stack board 2.

[0132] In the disassembly process of the assembled stack board 100 of the embodiment of the application, as shown in Figure 26As shown, the operating lever 316 is moved along the second direction N towards the accommodating groove 4, the clamping hook 324 pushes the unlocking ring 318 to move away from the locking piece 317, and the limiting block 319 is used to limit the unlocking ring 318; as shown Figure 27 As shown, the operating lever 316 is continuously moved along the second direction N towards the accommodating groove 4, and the clamping hook 324 is located between the unlocking ring 318 and the limiting block 319 through the expansion and contraction of the elastic structure 325; as shown Figure 28 As shown, the operating lever 316 is moved along the second direction N away from the accommodating groove 4, the clamping hook 324 pushes the unlocking ring 318 to move towards the locking piece 317 until the unlocking ring 318 abuts against the locking piece 317; as shown Figure 29 As shown, the operating lever 316 is continuously moved along the second direction N away from the accommodating groove 4, the clamping hook 324 is moved to the side away from the unlocking ring 318 through the expansion and contraction of the elastic structure 325, thereby separating the first limiting structure 31 and the second limiting structure 32, and the protruding beam 5 can advance along the first direction M towards the groove top 44 of the accommodating groove 4 to exit the accommodating groove 4, finally realizing the separation of the first stack board 1 and the second stack board 2, and the same can also realize the disassembly of two adjacent second stack boards 2, thereby the first stack board 1 and the second stack board 2 can be reused, and the utilization rate of the assembled stack board 100 is improved.

[0133] The above provides a detailed introduction to an assembled stack board, and the principle and implementation mode of the present application are described by applying specific examples; the above example is only used to help understand the core idea of the present application; meanwhile, for those skilled in the art, according to the idea of the present application, the specific implementation mode and application range will be changed, and the above description should not be understood as limiting the present application.

Claims

1. An assembled pallet, characterized by The assembled pallet has intersecting first direction (M), second direction (N) and third direction (P), and comprises: The first pallet (1) is provided with a receiving groove (4) extending along the first direction (M); The second pallet (2) is detachably connected to the first pallet (1), and the second pallet (2) is provided with a protruding beam (5) extending along the first direction (M), and the protruding beam (5) is inserted and matched with the receiving groove (4); and The limiting structure (3) comprises a first limiting structure (31) and a second limiting structure (32) matched with each other, and the first limiting structure (31) and the second limiting structure (32) are arranged on the receiving groove (4) and the protruding beam (5) respectively, and the limiting structure (3) is used for fixedly connecting the first pallet (1) and the second pallet (2).

2. The assembled pallet of claim 1, wherein, The first limiting structure (31) comprises a limiting plate (311), and the limiting plate (311) is provided with an elastic element (312) and a first limiting portion (313) on both sides in the second direction (N) respectively, the second limiting structure (32) comprises a second limiting portion (321) arranged on the protruding beam (5), and the second limiting portion (321) and the first limiting portion (313) are matched with each other to fix the first pallet (1) and the second pallet (2).

3. The assembled pallet of claim 2, wherein, The receiving groove (4) has a first inner wall (41) in the second direction (N), and the protruding beam (5) has a first outer wall (51) in the second direction (N); The limiting plate (311) comprises a first limiting plate (3111), the elastic element (312) on the first limiting plate (3111) is located between the first limiting plate (3111) and the first inner wall (41), the first limiting portion (313) on the first limiting plate (3111) is located on the surface of the side of the first limiting plate (3111) away from the first inner wall (41), the second limiting portion (321) is arranged on the first outer wall (51), and the first limiting portion (313) on the first limiting plate (3111) and the second limiting portion (321) on the first outer wall (51) are matched with each other to fix the first pallet (1) and the second pallet (2).

4. The assembled pallet of claim 3, wherein, The assembled pallet further comprises a disassembling structure (6) arranged on the first pallet (1) and used for disassembling the first pallet (1) and the second pallet (2); The disassembling structure (6) comprises a pull rod (61) and a first stop block (62) arranged on the pull rod (61), the pull rod (61) is slidably connected to the first pallet (1) in the second direction (N), and the first stop block (62) abuts against the side of the first limiting plate (3111) away from the first inner wall (41).

5. The assembled pallet of claim 4, wherein, The receiving groove (4) further has a second inner wall (42) in the second direction (N), and the protruding beam (5) further has a second outer wall (52) in the second direction (N); The limiting plate (311) further comprises a second limiting plate (3112), the elastic element (312) on the second limiting plate (3112) is located between the second limiting plate (3112) and the second inner wall (42), the first limiting part (313) on the second limiting plate (3112) is located on the surface of the side of the second limiting plate (3112) away from the second inner wall (42), the second limiting part (321) is further arranged on the second outer wall (52), and the first limiting part (313) on the second limiting plate (3112) and the second limiting part (321) on the second outer wall (52) are matched with each other to fix the first pallet (1) and the second pallet (2).

6. The assembled pallet of claim 5, wherein, The dismounting structure (6) further comprises a first rotating shaft (63), a second rotating shaft (64) and a second stop block (65), the first rotating shaft (63) is fixed in the accommodating groove (4), the second rotating shaft (64) is fixed on the pull rod (61), the extension direction of the second rotating shaft (64) is the same as that of the first rotating shaft (63), the second stop block (65) is rotatably sleeved on the outer wall of the first rotating shaft (63) and rotatably sleeved on the outer wall of the second rotating shaft (64), and one end of the second stop block (65) away from the second rotating shaft (64) abuts against the side of the second limiting plate (3112) away from the second inner wall (42).

7. The assembled pallet of claim 6, wherein, The first rotating shaft (63) extends along the third direction (P), and both ends of the first rotating shaft (63) are fixed on the inner walls of both sides of the accommodating groove (4) in the third direction (P).

8. The assembled pallet of claim 6, wherein, The accommodating groove (4) has a groove bottom (43) and a groove top (44) in the first direction (M), the first rotating shaft (63) extends along the first direction (M), one end of the first rotating shaft (63) is fixed on the groove bottom (43) of the accommodating groove (4), and the other end of the first rotating shaft (63) is fixed on the inner wall of one side of the accommodating groove (4) in the third direction (P) through a connecting shaft (66).

9. The assembled pallet of claim 2, wherein, The first limiting part (313) and the second limiting part (321) are limiting protrusions; or One of the first limiting part (313) and the second limiting part (321) is a limiting protrusion, and the other is a limiting groove.

10. The assembled pallet of claim 9, wherein, The first limiting part (313) and the second limiting part (321) are limiting protrusions; The size of the first limiting part (313) in the second direction (N) gradually increases from the groove top (44) to the groove bottom (43), and the size of the second limiting part (321) in the second direction (N) gradually decreases from the groove top (44) to the groove bottom (43).

11. The assembled pallet of claim 1, wherein, The first limiting structure (31) comprises a first magnet (314), and the second limiting structure (32) comprises a second magnet (322) magnetically adhered to the first magnet (314).

12. The assembled pallet of claim 1, wherein, The first limiting structure (31) comprises a first fixed hole (315) penetrating the accommodating groove (4) along the second direction (N), and the second limiting structure (32) comprises a second fixed hole (323) penetrating the protruding beam (5) along the second direction (N), and the limiting structure (3) further comprises a first fastener (33) and a second fastener (34), the first fastener (33) penetrates the first fixed hole (315) and the second fixed hole (323) and cooperates with the second fastener (34) to fix the first pallet (1) and the second pallet (2).

13. The assembled pallet of claim 1, wherein, The first limiting structure (31) comprises an operating rod (316), a locking piece (317), an unlocking ring (318) and a limiting block (319), the locking piece (317), the unlocking ring (318) and the limiting block (319) are located in the accommodating groove (4), the operating rod (316) is slidably connected to the groove wall of the accommodating groove (4) along the second direction (N), the first end of the operating rod (316) is located in the accommodating groove (4), the second end of the operating rod (316) penetrates the groove wall of the accommodating groove (4) to the outside of the accommodating groove (4), the locking piece (317) is fixedly connected to the first end of the operating rod (316), the limiting block (319) is fixedly connected to the outer wall of the operating rod (316), and the unlocking ring (318) is slidably arranged on the outer wall of the operating rod (316) and located between the limiting block (319) and the locking piece (317). The surface of the side of the locking piece (317) away from the unlocking ring (318) is a curved surface, the surface of the side of the locking piece (317) close to the unlocking ring (318) is a flat surface, and the surfaces of the two sides of the unlocking ring (318) in the second direction (N) are curved surfaces. The protruding beam (5) is provided with a hook mounting groove (53) on at least one side thereof in the second direction (N), the second limiting structure (32) comprises a hook (324) and an elastic structure (325), and the hook (324) is telescopically mounted on the groove wall of the hook mounting groove (53) through the elastic structure (325) along the first direction (M).

14. The assembled pallet according to any one of claims 1-13, wherein, The second pallet (2) is provided with the accommodating groove (4) at one end thereof away from the protruding beam (5), and the assembled pallet comprises a plurality of the second pallets (2), and the accommodating groove (4) of any one of the second pallets (2) is in plug-in cooperation with the protruding beam (5) of the second pallet (2) adjacent thereto.