Pallet structure
By designing a pallet structure with avoidance space and supporting components, the problems of unstable bottom support and connection during equipment transportation are solved, and the stability and safety of the equipment are improved.
Patent Information
- Application Number
- CN202422656884.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-31
AI Technical Summary
During the transportation of equipment such as server cabinets, the cabinets are prone to bottoming out, and problems may occur in the height matching and connection between the inclined boards and pallets, increasing the difficulty and risk of pushing.
A pallet structure is designed, including a first pallet assembly and a support assembly. The side of the first pallet assembly is recessed to form an avoidance space for the adjustment feet of the avoidance equipment. The support assembly is used to enhance the supporting strength of the pallet and ensure stable connection through connecting parts and positioning components.
It effectively avoids equipment bottoming, improves stability and safety during transportation, reduces the need for manual pushing force, and enhances the reliability and safety of the pallet structure.
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Figure CN223356186U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of pallet technology, and in particular to a pallet structure. Background Art
[0002] During the transport of server cabinets, pallets provide stable support and facilitate handling with tools such as forklifts, improving transportation efficiency. Placing the cabinet on the pallet requires the use of ramps, which are used to push the cabinet onto or off the pallet. However, when using the ramps to push the cabinet onto the pallet, the cabinet can easily fall off the bottom, compromising its integrity. Furthermore, height mismatch and connection issues between the ramp and the pallet can easily occur, increasing the difficulty and risk of the push. Utility Model Content
[0003] The purpose of the embodiments of the present application is to provide a pallet structure.
[0004] To solve the above technical problems, the embodiments of the present application provide the following technical solutions:
[0005] The present application provides a pallet structure, comprising:
[0006] a first pallet assembly, wherein a first side of the first pallet assembly is recessed inwardly to form an escape space, the escape space extending from a bearing surface to a bottom surface of the first pallet assembly, the escape space being used to escape an adjustment foot of an object to be supported;
[0007] A support assembly is connected to the first pallet assembly, and the support assembly is used to ensure the support strength of the first pallet assembly.
[0008] In some embodiments, the two first pallet assemblies are arranged opposite to each other, and the openings of the avoidance space formed by the two first pallet assemblies face opposite directions; and the two first pallet assemblies are connected by the support assembly.
[0009] In some embodiments, further comprising:
[0010] The second pallet assembly is located between the two first pallet assemblies, and the second pallet assembly is connected to the first sides of the two first pallet assemblies.
[0011] In some embodiments, the support assembly comprises:
[0012] Connectors, respectively connected to the two first pallet assemblies;
[0013] A positioning portion is provided on the first pallet assembly, and the positioning portion is used to cooperate with the connecting member to position the connecting member.
[0014] In some embodiments, the first pallet assembly has a positioning groove adapted to the connector, the connector is received in the positioning groove and connected to the second side of the first pallet assembly, and the positioning groove forms the positioning portion.
[0015] In some embodiments, the first pallet assembly has a positioning hole, the connector is configured with a protrusion that fits into the positioning hole, and the positioning hole forms the positioning portion.
[0016] In some embodiments, further comprising:
[0017] a stop assembly connected to the first pallet assembly, the stop assembly being used to limit the movement of the object to be supported;
[0018] The first pallet assembly has a plurality of mounting positions, and the stop assembly is connected to the mounting positions at different positions to adapt to objects to be supported of different sizes.
[0019] In some embodiments, the first pallet assembly comprises:
[0020] A first pallet, wherein the first pallet has the bearing surface, and a first side of the first pallet is inwardly recessed to form a first avoidance groove;
[0021] The second pallet has the bottom surface, the first side of the second pallet is recessed inward to form a second avoidance groove, and the second pallet is spaced apart from and arranged in parallel with the first pallet.
[0022] In some embodiments, the first pallet assembly comprises:
[0023] A shock absorbing member is located between the first pallet and the second pallet; the shock absorbing member has an avoidance channel, and the avoidance channel, the first avoidance groove, and the second avoidance groove together constitute the avoidance space;
[0024] The plurality of shock-absorbing members are arranged at intervals, and two adjacent shock-absorbing members form an accommodating channel.
[0025] In some embodiments, further comprising:
[0026] An adjustment mechanism is connected to the first pallet assembly, and the adjustment mechanism is used to adjust the inclination angle of the bearing surface. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The above and other objects, features and advantages of the exemplary embodiments of the present application will become readily understood by reading the detailed description below with reference to the accompanying drawings. In the accompanying drawings, several embodiments of the present application are shown in an exemplary and non-limiting manner, and the same or corresponding reference numerals represent the same or corresponding parts, wherein:
[0028] Figure 1 The structure diagram of the pallet structure and the object to be supported according to one embodiment of the present application is schematically shown;
[0029] Figure 2 Schematically shows a structural diagram of a pallet structure and an object to be supported according to another embodiment of the present application; Figure 3 Schematically shows Figure 2 A partial enlarged view of point C in the middle;
[0030] Figure 4 Schematically showing the structure of the first pallet assembly and the second pallet assembly of the pallet structure of the present application;
[0031] Figure 5 Schematically shows a structural diagram of a first pallet assembly of the pallet structure of the present application;
[0032] Figure 6 Schematically shows a structural diagram of the second pallet assembly of the pallet structure of the present application;
[0033] Figure 7 The structural diagram of the connecting piece of the pallet structure of the present application is schematically shown.
[0034] Description of Figure Numbers:
[0035] 1. First pallet assembly; 11. Avoidance space; 12. First pallet; 13. Second pallet; 14. Shock absorber; 15. Slot; 16. Accommodation channel; 2. Support assembly; 21. Connector; 211. Protrusion; 22. Positioning portion; 221. Positioning slot; 222. Positioning hole; 3. Second pallet assembly; 31. Third pallet; 32. Fourth pallet; 33. Shock absorber; 34. Clamping portion; 4. Stop assembly; 5. Object to be supported; 51. Adjustment foot. DETAILED DESCRIPTION
[0036] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.
[0037] It should be noted that, unless otherwise specified, the technical or scientific terms used in this application should have the common meanings understood by those skilled in the art to which this application belongs.
[0038] like Figures 1 to 4 As shown, the present application provides a pallet structure, comprising:
[0039] A first pallet assembly 1, wherein a first side of the first pallet assembly 1 is recessed inward to form an escape space 11, the escape space 11 extending from the bearing surface to the bottom surface of the first pallet assembly 1, the escape space 11 being used to escape the adjustment foot 51 of the object to be supported 5;
[0040] The support assembly 2 is connected to the first pallet assembly 1 , and the support assembly 2 is used to ensure the supporting strength of the first pallet assembly 1 .
[0041] The object to be supported 5 of the present application is a device having an adjustment foot 51, which can adjust the bottom height of the object to be supported 5. The object to be supported 5 can be a server cabinet, a large household appliance, industrial equipment, a laboratory instrument, etc.
[0042] The first pallet assembly 1 is used to provide a stable placement platform for the object to be supported 5, ensuring the stability of the object to be supported 5 during transportation and storage. The bearing surface of the first pallet assembly 1 can be provided with an anti-slip layer to enhance the friction between the object to be supported 5 and the bearing surface, prevent the object to be supported 5 from sliding during transportation, and ensure the stability of the support. The bottom surface of the first pallet assembly 1 can be provided with an anti-slip layer to increase the friction between the first pallet assembly 1 and the ground, prevent the first pallet assembly 1 from sliding during use, and ensure the stability of the support. The bearing surface can be processed by engraving, embossing, etc. to form an anti-slip layer; or, an anti-slip coating (such as epoxy resin anti-slip coating, polyurethane anti-slip coating, etc.) can be coated on the surface of the bearing surface to form an anti-slip layer. The material of the first pallet assembly 1 can be specifically selected according to the weight of the object to be supported 5. For example, wood, metal, plastic, etc. can be used.
[0043] The first pallet assembly 1 can be formed with the escape spaces 11 by molding or machining. The edges of the escape spaces 11 can be chamfered or rounded, and the sides of the escape spaces 11 can be provided with an elastic layer, such as a rubber or silicone layer, applied by gluing, to prevent collision with the adjustment legs 51 during the pushing of the pallet structure, thereby damaging the adjustment legs 51 and ensuring the integrity of the adjustment legs 51. The number of escape spaces 11 can be designed based on the layout of the adjustment legs 51 of the supported object 5, so that the escape spaces 11 can accommodate all the adjustment legs 51 of the supported object 5. The escape spaces 11 can be strip-shaped, so that one escape space 11 can accommodate at least one adjustment leg 51. For example, if the supported object 5 is a server cabinet with four adjustment legs 51 arranged in a rectangular shape at the four corners of the server cabinet, the first pallet assembly 1 can have two spaced-apart escape spaces 11, each for accommodating two adjustment legs 51.
[0044] During use, the adjustment feet 51 are first adjusted to raise the bottom of the object 5 to be supported. The first pallet assembly 1 is then pushed to the bottom of the object 5 to be supported. The adjustment feet 51 are then adjusted to lower the bottom of the object 5 to support the object 5. When the object 5 is heavy, the adjustment feet 51 and the first pallet assembly 1 can be used together to support the object 5, protecting the integrity of the first pallet assembly 1 and extending its service life. After use, the first pallet assembly 1 is removed. The support assembly 2 enhances the overall stability of the first pallet assembly 1, ensuring that it does not deform or collapse when supporting the object 5. The support assembly 2 may include reinforcing ribs, which may be located on the sides of the escape space 11; and / or the ribs may be located near the escape space 11 on the load-bearing surface to enhance the structural strength around the escape space 11 and thereby distribute pressure. Reinforcing ribs may also be located on the sides of the first pallet assembly 1 or on the edges of the load-bearing surface to prevent deformation or damage. The reinforcing ribs can be connected to the first pallet assembly 1 by welding, bolting, or riveting. The reinforcing ribs can be linear, T-shaped, or grid-shaped. The reinforcing ribs can be made of a metal material with high strength and rigidity, such as steel or aluminum alloy, to enable the first pallet assembly 1 to withstand greater pressure and weight.
[0045] The pallet structure of the present application avoids the adjustment feet 51 of the object to be supported 5 through the avoidance space 11 of the first pallet component 1, and pushes the first pallet component 1 to the bottom of the object to be supported 5 during use, which not only saves time and effort, but also abandons the traditional inclined board, eliminates the situation where the object to be supported 5 is supported on the bottom during the pushing process, and ensures the integrity of the object to be supported 5; the load-bearing surface of the first pallet component 1 is used to support the object to be supported 5, and the support component 2 is used to ensure the supporting strength of the first pallet component 1, which improves the reliability and safety of the first pallet component 1 during use, and thus provides reliable protection for the integrity of the object to be supported 5.
[0046] When there are multiple adjustment feet 51 of the object 5 to be supported, in order to ensure the supporting strength of the first pallet assembly 1, as shown in FIG. Figure 3 As shown, in some embodiments, the two first pallet assemblies 1 are arranged opposite to each other, and the openings of the avoidance space 11 formed by the two first pallet assemblies 1 face opposite directions; the two first pallet assemblies 1 are connected by the support assembly 2.
[0047] The number of escape spaces 11 in each first pallet assembly 1 can be specifically designed based on the number of adjustable feet 51 of the supported object 5. For example, when there are two adjustable feet 51, each first pallet assembly 1 can be configured with one escape space 11. When there are four adjustable feet 51 of the supported object 5, each first pallet assembly 1 can be configured with two escape spaces 11, so that each escape space 11 can escape one adjustable foot 51, achieving the desired escape while maintaining the support strength of the first pallet assembly 1.
[0048] The two first pallet assemblies 1 are respectively used to push the object 5 to be supported from both sides to the bottom of the object 5. The first sides of the two first pallet assemblies 1 can be connected. For example, the first sides of the two first pallet assemblies 1 can be configured with mutually cooperating assembly portions to achieve a snap-on or plug-in connection. Alternatively, the first sides of the two first pallet assemblies 1 can be spaced apart, and the support assembly 2 can be connected to the two first pallet assemblies 1 by bolts or welding.
[0049] like Figure 2 、 Figure 4 and Figure 5 As shown, in some embodiments, it also includes:
[0050] The second pallet assembly 3 is located between the two first pallet assemblies 1 , and the second pallet assembly 3 is connected to the first sides of the two first pallet assemblies 1 .
[0051] The thickness of the second pallet assembly 3 is the same as that of the first pallet assembly 1 . The second pallet assembly 3 and the two first pallet assemblies 1 together form a horizontal bearing surface, achieving more stable support while ensuring the consistency and stability of the overall structure.
[0052] The structure of the second pallet assembly 3 can be the same as or different from that of the first pallet assembly 1. For example, when the first pallet assembly 1 includes a first pallet 12, a second pallet 13, and a shock absorber 14, if the structure of the second pallet assembly 3 differs from that of the first pallet assembly 1, the second pallet assembly 13 can include a third pallet 31 and a fourth pallet 32. The third pallet 31 has a load-bearing surface, and the fourth pallet 32 has a bottom surface. The third pallet 31 and the fourth pallet 32 are arranged in parallel, with the third pallet 31 facing the first pallet 12 and the fourth pallet 32 facing the second pallet 13, so that the third pallet 31 and the two first pallets 12 together form a horizontal load-bearing surface. The third and fourth pallets 31, 32 can be connected by welding or bolts; alternatively, the third and fourth pallets 31, 32 can be connected by a support assembly 2. The parallel arrangement of the third and fourth pallets 31, 32 supports each other, increasing the strength and rigidity of the entire second pallet assembly 13. When carrying heavy objects, it can effectively disperse the pressure and reduce the risk of deformation and damage.
[0053] When the structure of the second pallet assembly 3 is the same as that of the first pallet assembly 1, the second pallet 13 assembly may further include a shock absorber 33. The shock absorber 33 is located between the third pallet 31 and the fourth pallet 32. The shock absorber 33 is opposite to the shock absorbing member 14. The shock absorber 33 can effectively absorb shock and vibration and protect the object to be supported 5. The specific selection and connection method of the shock absorber 33 can refer to the shock absorbing member 14. A clamping portion 34 may be provided on the first side of the second pallet assembly 3 opposite to the first pallet assembly 1, and a card slot 15 adapted to the clamping portion 34 may be provided on the first side of the first pallet assembly 1 so that the second pallet assembly 3 is clamped to the first pallet assembly 1. The clamping portion 34 may be integrally formed with the second pallet assembly 3; or, the clamping portion 34 may be connected to the second pallet assembly 3 by bolts. The clamping portion 34 may be provided on the third pallet 31, and the clamping portion 34 may be provided on the fourth pallet 34. The position of the card slot 15 may be specifically designed according to the position of the clamping portion 34. Or,
[0054] The first side of the second pallet assembly 3 can be bonded or embedded with a first magnetic member, and the first side of the first pallet assembly 1 can be bonded or embedded with a second magnetic member. The first pallet assembly 1 and the second pallet assembly 3 are firmly connected by the magnetic force generated by the two magnetic members. The first magnetic member can be a permanent magnet, and the second magnetic member can be iron or other soft magnetic materials; or, both magnetic members can be permanent magnets. The first magnetic member can be set on the third pallet 31, and the first magnetic member can be set on the fourth pallet 32. The position of the second magnetic member can be specifically designed based on the position of the first magnetic member.
[0055] The connecting assembly can be connected to the second pallet assembly 3 by means of bolts or plugging; or the connecting assembly can be in contact with the second pallet assembly 3. Figures 4 to 6 As shown, in some embodiments, the support assembly 2 includes:
[0056] Connectors 21, connected to the two first pallet assemblies 1 respectively;
[0057] The positioning portion 22 is provided on the first pallet assembly 1 , and the positioning portion 22 is used to cooperate with the connecting member 21 to position the connecting member 21 .
[0058] The positioning portion 22 can be a snap fastener, which can be set on the bearing surface of the first pallet assembly 1. The snap fastener on the bearing surface can assist in fixing the stop assembly 4 to ensure that the object 5 to be supported is more stable during transportation. The snap fastener can be set on the third side of the first pallet assembly 1. Setting the snap fastener on the third side is more convenient for operation, and can achieve quick assembly and disassembly. The snap fastener can be set on the fourth side of the first pallet assembly 1. Setting the snap fastener on the fourth side is more convenient for operation, and can achieve quick assembly and disassembly. The snap fastener can be set individually at any of the above positions, or in combination at multiple positions. The first side and the second side of the first pallet assembly 1 are opposite to each other, and the third side and the fourth side of the first pallet assembly 1 are opposite to each other.
[0059] The fasteners can be integrally formed or welded with the first pallet assembly 1. The connector 21 can be configured with grooves that mate with the fasteners. The fasteners position the connector 21, ensuring precise alignment during installation and preventing displacement during use. This ensures the connector 21 remains in the correct position, thereby maintaining overall structural stability. The connector 21 can be connected to the first pallet assembly 1 via pins or bolts.
[0060] The connecting member 21 may be in the shape of a strip. To ensure the stability of the connection, both ends of the connecting member 21 along the length direction may be bent at a preset angle (eg, 90°) to form a side blocking portion. Figures 3 to 6 As shown, in some embodiments, the first pallet assembly 1 has a positioning groove 221 adapted to the connector 21 , the connector 21 is accommodated in the positioning groove 221 and connected to the second side of the first pallet assembly 1 , and the positioning groove 221 forms the positioning portion 22 .
[0061] The positioning groove 221 can extend from the first side to the second side of the first pallet assembly 1, and the positioning grooves 221 of the two first pallet assemblies 1 are connected. The connector 21 is accommodated in the positioning groove 221 to achieve positioning of the connector 21. The two side stops of the connector 21 can respectively fit and connect with the second sides of the two first pallet assemblies 1. This not only increases the contact area between the connector 21 and the first pallet assembly 1, but also limits the movement of the connector 21 in the direction relative to the two first pallet assemblies 1, thereby improving the connection strength.
[0062] The second pallet assembly 3 may be provided with a positioning groove 221 , which is communicated with the positioning grooves 221 of the two first pallet assemblies 1 , and the connector 21 may be accommodated in the positioning grooves 221 of the three pallet assemblies to ensure a good positioning effect.
[0063] like Figures 4 to 6As shown, in some embodiments, the first pallet assembly 1 has a positioning hole 222 , the connector 21 is configured with a protrusion 211 adapted to the positioning hole 222 , and the positioning hole 222 forms the positioning portion 22 .
[0064] The number of positioning holes 222 can be one or more. When there are more than one positioning holes 222, the number of positioning holes 222 can be two, three, or even more. The raised portion 211 is used to cooperate with the positioning holes 222 to achieve precise positioning. The raised portion 211 can be a pin or a boss, and the raised portion 211 can be welded to the connector 21 or integrally formed.
[0065] The second pallet assembly 3 may also be provided with a positioning hole 222, and the connector 21 has a protrusion 211 adapted to fit within the positioning hole 222 of the second pallet assembly 3. The positioning hole 222 not only improves positioning accuracy but also reduces stress concentration, thereby improving the stability and durability of the overall structure.
[0066] like Figures 1 to 4 As shown, in some embodiments, it also includes:
[0067] a stop assembly 4 connected to the first pallet assembly 1, the stop assembly 4 being used to limit the movement of the object to be supported 5;
[0068] The first pallet assembly 1 has a plurality of mounting positions, and the stop assembly 4 is connected to the mounting positions at different positions to adapt to the objects to be supported 5 of different sizes.
[0069] The stop assembly 4 is connected to the load-bearing surface of the first pallet assembly 1. The stop assembly 4 can include multiple spaced-apart stop members to restrict the movement of the supported object in different directions. For example, the stop assembly 4 can include two opposing stop members, with the supported object 5 positioned between the two stop members to restrict the movement of the supported object 5 in the direction opposite the two stop members. Alternatively, the stop assembly 4 can include four stop members arranged in a matrix to restrict the movement of the supported object 5 in all directions parallel to the load-bearing surface. The stop members can be in the form of blocks, plates, or other shapes.
[0070] The bearing surface of the first pallet assembly 1 may have a plurality of threaded holes, which form mounting positions, and the stop assembly 4 may be threadedly connected to the bearing surface through the threaded holes; or, the bearing surface of the first pallet assembly 1 may have a plurality of slots, which form mounting positions, and the stop assembly 4 may be plugged into the bearing surface through the slots.
[0071] When the size of the object 5 to be supported is small, the stop assembly 4 can be installed at a mounting position close to the edge of the object 5 to be supported to ensure that the stop assembly 4 can effectively limit the movement of the object 5 to be supported; when the size of the object 5 to be supported is large, the stop assembly 4 can be installed at a mounting position away from the edge of the object 5 to be supported to increase the distance between the stop assembly 4 and the object 5 to be supported, thereby improving the limiting effect.
[0072] During use, first adjust the adjusting foot 51 to raise the bottom of the object 5 to be supported, then push the second pallet assembly 3 to the bottom of the object 5 to be supported, and then push the two first pallet assemblies 1 respectively so that the two first pallet assemblies 1 fit the second pallet assembly 3 respectively; then cooperate the connecting piece 21 with the positioning portion 22 to realize the positioning of the connecting piece 21, and fix the connecting piece 21 to the two first pallet assemblies 1 by bolts; then adjust the adjusting foot 51 to lower the bottom of the object 5 to be supported, so that the bearing surfaces of the second pallet assembly 3 and the two first pallet assemblies 1 jointly support the object 5 to be supported; finally, connect the stop assembly 4. After use, follow the reverse steps to move the pallet structure out. Figure 5 As shown, in some embodiments, the first pallet assembly 1 includes:
[0073] A first stacking plate 12, wherein the first stacking plate 12 has the bearing surface, and a first side of the first stacking plate 12 is recessed inward to form a first avoidance groove;
[0074] The second stack 13 has the bottom surface, and a first side of the second stack 13 is recessed inward to form a second avoidance groove. The second stack 13 is spaced apart from and arranged in parallel with the first stack 12 .
[0075] The first and second pallets 12, 13 can be connected by welding or bolts; alternatively, the first and second pallets 12, 13 can be connected by a support assembly 2. In this case, the support assembly 2 is spaced from both the first and second escape slots, so that the first and second escape slots face each other to form an escape space 11. The parallel arrangement of the first and second pallets 12, 13 supports each other, increasing the strength and rigidity of the entire first pallet assembly 1. This effectively distributes pressure when carrying heavy objects, reducing the risk of deformation and damage.
[0076] like Figure 5 As shown, in some embodiments, the first pallet assembly 1 includes:
[0077] A shock absorber 14 is located between the first pallet 12 and the second pallet 13; the shock absorber 14 has an escape channel, and the escape channel, the first escape groove, and the second escape groove together constitute the escape space 11;
[0078] The plurality of shock-absorbing members 14 are arranged at intervals, and two adjacent shock-absorbing members 14 form an accommodating channel 16 .
[0079] Shock absorber 14 effectively absorbs shock and vibration, protecting supported object 5. Shock absorber 14 can be made of a material with excellent elasticity and shock absorption properties, such as rubber, silicone, or polyurethane. Shock absorber 14 can be connected to first pallet 12 and second pallet 13 by bonding or snapping. The escape channel of shock absorber 14 directly faces the first escape groove and the second escape groove, respectively, to form escape space 11.
[0080] The accommodating channel 16 is used to accommodate the forklift arm of the forklift. When it is necessary to move the object to be supported 5 placed on the first pallet assembly 1, the forklift arm of the forklift can be extended into the accommodating channel 16 to smoothly lift the object to be supported 5 on the entire first pallet assembly 1 and move it, thereby improving the transportation efficiency and convenience of operation.
[0081] When the present application includes two first pallet assemblies 1 and one second pallet assembly 3, the second pallet assembly 3 may include a third pallet 31, a fourth pallet 32 and multiple shock-absorbing members 33. The multiple shock-absorbing members 33 are arranged at intervals, and two adjacent shock-absorbing members 33 can form an accommodating channel 16. The accommodating channel 16 of the second pallet assembly 3 can be directly opposite to the accommodating channels 16 of the two first pallet assemblies 1 to facilitate the forklift arm of the forklift to be inserted into the accommodating channels 16 of the three pallet assemblies at the same time, thereby achieving stable transportation of the overall structure, improving transportation efficiency and convenience of operation, and ensuring the safety and stability of the object 5 to be supported during transportation.
[0082] In order to make the bearing surface smoother, the positioning groove 221 and the positioning hole 222 may be in communication with the accommodating channel 16 .
[0083] In some embodiments, further comprising:
[0084] An adjustment mechanism is connected to the first pallet assembly 1 , and the adjustment mechanism is used to adjust the inclination angle of the bearing surface.
[0085] The linear adjustment mechanism can be a motor or a hydraulic cylinder. The adjustment mechanism is located between the first pallet 12 and the second pallet 13 and close to the third side. The adjustment mechanism can be hinged to the first pallet 12 to adapt to the angle change. The adjustment mechanism can be clamped or bolted to the second pallet 13. When the first pallet assembly 1 includes a shock absorber 14, since the shock absorber 14 can produce a certain deformation when subjected to external force, by driving the adjustment mechanism, the shock absorber 14 will produce different degrees of compression or extension, thereby adjusting the inclination angle of the bearing surface of the first pallet 12. Or,
[0086] The support assembly 2 can be located between the first stacker 12 and the second stacker 13, the first stacker 12 can be hinged or rotatably connected to the support assembly 2, and the second stacker 13 can be clipped or bolted to the support assembly 2; the support assembly 2 can be located on the fourth side of the first stacker 12, and the first stacker 12 can be driven to rotate by the driving adjustment mechanism to adjust the inclination angle of the bearing surface of the first stacker 12.
[0087] When the object 5 to be supported needs to be pushed down or pushed to another platform, the inclination angle of the bearing surface of the first stacking plate 12 is adjusted by the adjustment mechanism, so that the object can slide more smoothly under the action of gravity, greatly reducing the force required for manual pushing and improving the pushing efficiency.
[0088] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims.
Claims
1. A pallet structure, characterized in that: include: a first pallet assembly, wherein a first side of the first pallet assembly is recessed inwardly to form an escape space, the escape space extending from a bearing surface to a bottom surface of the first pallet assembly, the escape space being used to escape an adjustment foot of an object to be supported; A support assembly is connected to the first pallet assembly, and the support assembly is used to ensure the support strength of the first pallet assembly.
2. The pallet structure according to claim 1, characterized in that: The two first pallet assemblies are arranged opposite to each other, and the openings of the avoidance space formed by the two first pallet assemblies face opposite directions; the two first pallet assemblies are connected by the supporting assembly.
3. The pallet structure according to claim 2, characterized in that: Also includes: The second pallet assembly is located between the two first pallet assemblies, and the second pallet assembly is connected to the first sides of the two first pallet assemblies.
4. The pallet structure according to claim 2, characterized in that: The support assembly comprises: Connectors, respectively connected to the two first pallet assemblies; A positioning portion is provided on the first pallet assembly, and the positioning portion is used to cooperate with the connecting member to position the connecting member.
5. The pallet structure according to claim 4, characterized in that: The first pallet assembly has a positioning groove adapted to the connecting member. The connecting member is accommodated in the positioning groove and connected to the second side of the first pallet assembly. The positioning groove forms the positioning portion.
6. The pallet structure according to claim 4, characterized in that: The first pallet assembly has a positioning hole, the connector is provided with a protrusion adapted to the positioning hole, and the positioning hole forms the positioning portion.
7. The pallet structure according to claim 1, characterized in that: Also includes; a stop assembly connected to the first pallet assembly, the stop assembly being used to limit the movement of the object to be supported; The first pallet assembly has a plurality of mounting positions, and the stop assembly is connected to the mounting positions at different positions to adapt to objects to be supported of different sizes.
8. The pallet structure according to claim 1, characterized in that: The first pallet assembly comprises: A first pallet, wherein the first pallet has the bearing surface, and a first side of the first pallet is inwardly recessed to form a first avoidance groove; The second pallet has the bottom surface, the first side of the second pallet is recessed inward to form a second avoidance groove, and the second pallet is spaced apart from and arranged in parallel with the first pallet.
9. The pallet structure according to claim 8, characterized in that: The first pallet assembly comprises: A shock absorbing member is located between the first pallet and the second pallet; the shock absorbing member has an avoidance channel, and the avoidance channel, the first avoidance groove, and the second avoidance groove together constitute the avoidance space; The plurality of shock-absorbing members are arranged at intervals, and two adjacent shock-absorbing members form an accommodating channel.
10. The pallet structure according to claim 1, wherein: Also includes: An adjustment mechanism is connected to the first pallet assembly, and the adjustment mechanism is used to adjust the inclination angle of the bearing surface.