Tray and warehousing system
By designing installation holes and communication channels on the pallets and using adjusting parts to control the communication or partition of the channels, the problems of cylindrical cargo standing and ordinary cargo placement are solved, transportation efficiency and safety are improved, and the structural stability of the pallet is enhanced.
Patent Information
- Application Number
- CN202510697478.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-28
- Publication Date
- 2025-08-08
AI Technical Summary
Existing pallets cannot effectively respond to complex and diverse cargo needs, especially vertical and ordinary cylindrical cargo, resulting in low transportation efficiency and safety hazards.
A pallet is designed to enable the communication or partition between the installation hole and the passage by opening a first mounting hole and a communication channel on the plate body and moving the adjustment member in the communication channel, so as to realize the communication or partition between the installation hole and the passage, and to adapt to the vertical placement of cylindrical goods and the placement of ordinary goods.
It realizes the stable vertical placement of cylindrical goods and the effective placement of ordinary goods, improves transportation efficiency, reduces safety hazards, and enhances the structural stability and service life of the pallet.
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Figure CN120440437A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of pallet technology, and in particular to a pallet and a storage system. Background Art
[0002] The warehousing system is a new product of warehouse automation. With the development of society and the advancement of science and technology, the types of materials in warehouses are diverse, with different shapes, structures and sizes. Ordinary pallets cannot effectively cope with the complex and diverse goods and actual needs. For example, cylindrical goods that need to be placed upright and ordinary cylindrical goods cannot be placed together on ordinary pallets and can only be transported manually. This leads to low work efficiency when transporting upright cylindrical goods and ordinary cylindrical goods, and there are greater safety hazards. Summary of the Invention
[0003] Based on this, it is necessary to provide a pallet and storage system to solve the above problems.
[0004] A pallet, comprising:
[0005] base;
[0006] A disc body is coupled to the base, wherein a plurality of communication channels extending along a first direction are formed inside the disc body, and the communication channels are parallel to each other and spaced apart; a plurality of first mounting holes are formed on a side of the disc body facing away from the base, and all of the first mounting holes are arranged in at least one row along a second direction intersecting the first direction; all of the first mounting holes in the same row are spaced apart along the first direction and together form a first mounting hole group; each of the first mounting hole groups is arranged in a one-to-one correspondence with each of the communication channels, and all of the first mounting holes in each of the first mounting hole groups are connected to the corresponding communication channels;
[0007] A plurality of adjusting members, each of which is movably coupled to one of the communicating channels;
[0008] In which, the adjusting member has a first position and a second position during the movement in the connecting channel. When the adjusting member moves to the first position, the adjusting member is located below the first mounting hole and isolates the connecting channel from all the first mounting holes corresponding to it; when the adjusting member is located at the second position, the adjusting member avoids the first mounting hole, and the connecting channel is connected to all the first mounting holes corresponding to it.
[0009] In one embodiment, the base includes a plurality of base bodies, all of which are spaced apart from each other along the second direction and are coupled to the bottom side of the disk body;
[0010] Wherein, each of the base bodies extends along the first direction, and each of the base bodies is disposed below each of the first mounting hole groups in a one-to-one correspondence.
[0011] In one embodiment, all the seats are evenly spaced along the second direction, and the two seats at the first and last positions are respectively connected to opposite ends of the bottom side of the disk along the second direction.
[0012] In one embodiment, a plurality of connecting holes are provided on the base, each connecting hole is arranged in one-to-one correspondence with each first mounting hole, each connecting hole is connected to the corresponding first mounting hole and the connecting channel, and each connecting hole extends in the same direction as the corresponding first mounting hole.
[0013] In one embodiment, the tray includes three adjusting members; the base includes three seat bodies; nine first mounting holes are provided on the side of the tray body facing away from the base, and the nine first mounting holes are together constructed to form three first mounting hole groups; three connecting channels extending through the tray body along the first direction are formed inside the tray body.
[0014] In one embodiment, the tray further includes a connecting member, and the connecting member is used to connect any two of the three adjusting members;
[0015] Wherein, the two adjusting members connected by the connecting member are movably matched in any two adjacent connecting channels among the three connecting channels, and the connecting member is exposed in the connecting channels.
[0016] In one embodiment, the tray further includes a fixing member and a matching member, wherein either the fixing member or the matching member is connected to the adjusting member, and the other is connected to the tray body, and the fixing member and the matching member are detachably fixed and matched.
[0017] In one embodiment, a plurality of support holes are formed on a side of the disk body facing away from the base, and all of the support holes are arranged in at least one row along the second direction; all of the support holes in the same row are spaced apart along the first direction and together form a support hole group;
[0018] The tray further comprises a plurality of supporting components, each of which is disposed in a one-to-one correspondence within each of the supporting holes, and each of the supporting components can be extended out of or received in the corresponding supporting hole.
[0019] In one embodiment, the support assembly includes a first support member and a second support member, the first support member and the second support member are disposed side by side in the support hole, the first support member has a first end close to the second support member and a second end facing away from the second support member; the second support member has a third end close to the first support member and a fourth end facing away from the first support member;
[0020] The first end structure forms a first rotation fulcrum, and the first support member can be controlled to rotate around the first rotation fulcrum until the second end extends out of the support hole or is received in the support hole; the three-end structure forms a second rotation fulcrum, and the second support member can be controlled to rotate around the second rotation fulcrum until the fourth end extends out of the support hole or is received in the support hole;
[0021] When the second end and the fourth end both extend out of the support hole, the first support member and the second support member, both of which are away from the side of the support hole, jointly form a support space.
[0022] In one embodiment, the support assembly further includes a third support member, wherein a first receiving groove is formed in a recess on a side of the first support member facing the support hole, and the first receiving groove extends along the longitudinal direction of the first support member and passes through the second end; the third support member has a fifth end and a sixth end that are oppositely arranged along its longitudinal direction, and the fifth end is movably engaged in the first receiving groove, and the sixth end is engaged in the support hole, and is configured to form a third rotation fulcrum;
[0023] wherein, when the first support member is controlled to rotate around the first rotation fulcrum until the second end extends out of the support hole, the third support member is driven by the first support member to rotate around the third rotation fulcrum until the fifth end moves along the first accommodating groove from the first end to the second end to a first preset position, so as to form a support structure together with the first support member; when the first support member is controlled to rotate around the first rotation fulcrum until the second end is received in the support hole, the third support member is driven by the first support member to rotate around the third rotation fulcrum until the fifth end moves along the first accommodating groove from the second end to the first end to a second preset position, and the third support member is received in the first accommodating groove.
[0024] In one embodiment, the support assembly further includes a fourth support member, wherein a second receiving groove is formed in a recess on a side of the second support member facing the support hole, and the second receiving groove extends along the longitudinal direction of the second support portion and passes through the fourth end; the fourth support member has a seventh end and an eighth end that are oppositely arranged along its longitudinal direction, and the seventh end is movably engaged in the second receiving groove, and the eighth end is engaged in the support hole, and is configured to form a fourth rotation fulcrum;
[0025] In which, when the second support member is controlled to rotate around the second rotation fulcrum until the fourth end extends out of the support hole, the fourth support member rotates around the fourth rotation fulcrum driven by the second support member, until the seventh end moves along the second accommodating groove from the third end to the fourth end to a third preset position, so as to form a support structure together with the second support member; when the second support member is controlled to rotate around the second rotation fulcrum until the fourth end is received in the support hole, the fourth support member rotates around the fourth rotation fulcrum driven by the second support member, until the seventh end moves along the second accommodating groove from the fourth end to the third end to a fourth preset position, and the fourth support member is received in the second accommodating groove.
[0026] In one embodiment, the support assembly further includes a movable member and an elastic member, the third support member is provided with a second mounting hole extending therethrough, a movable member is provided at each of two openings of the second mounting hole, and both movable members have at least a portion movably disposed through the corresponding opening; the elastic member is deformably coupled between the two movable members;
[0027] Among them, when the third support member moves along the first accommodating groove between the first preset position and the second preset position under the drive of the first support member, the elastic member is deformed and compressed, and provides a thrust to the two movable members to move toward the outside of the opening, so that the two movable members at least partially extend out of the corresponding opening and respectively abut against the inner walls on both sides opposite to each other of the first accommodating groove.
[0028] In one embodiment, first limiting holes are respectively formed on two opposite inner walls of the first receiving groove;
[0029] Among them, when the third support member moves along the first accommodating groove to the first preset position under the drive of the first support member, the elastic member is deformed and compressed, and provides a thrust to the two movable members to move toward the outside of the opening, so that the two movable members at least partially extend out of the corresponding opening and are respectively embedded in the two first limiting holes.
[0030] In one embodiment, the fourth support member is provided with a third mounting hole extending therethrough, and a movable member is provided at each of two openings of the third mounting hole, and both movable members have at least a portion movably disposed through the corresponding opening; the elastic member is deformably coupled between the two movable members;
[0031] Among them, when the fourth support member moves between the third preset position and the fourth preset position along the second accommodating groove under the drive of the second support member, the elastic member is deformed and compressed, and provides a thrust to the two movable members to move toward the outside of the opening, so that the two movable members at least partially extend out of the corresponding opening and respectively abut against the inner walls on both sides opposite to each other of the second accommodating groove.
[0032] In one embodiment, the inner walls on both sides of the second receiving groove are respectively provided with second limiting holes;
[0033] Among them, when the fourth support member moves to the third preset position along the second accommodating groove under the drive of the second support member, the elastic member is deformed and compressed, and provides a thrust to the two movable members to move toward the outside of the opening, so that the two movable members at least partially extend out of the corresponding opening and are respectively embedded in the two second limiting holes.
[0034] In one embodiment, the movable part includes a movable section and a limiting section connected to each other, the connection between the movable section and the limiting section is constructed to form a step surface, and the movable section can be movably inserted into the corresponding opening, and the step surface abuts against the hole wall of the second mounting hole.
[0035] A storage system includes the pallet in the aforementioned embodiment.
[0036] The above-mentioned pallet and storage system comprises a base, a tray body, and several adjustment members. A first mounting hole is provided in the tray body, and cylindrical cargo is placed in the first mounting hole to enable upright storage of cylindrical cargo. Furthermore, a communication channel is provided in the tray body that communicates with the first mounting hole, and the adjustment members move within the communication channel to connect or block the first mounting hole and the communication channel. Thus, when the first mounting hole and the communication channel are connected, cylindrical cargo can be stored upright; when the first mounting hole and the communication channel are blocked, ordinary cargo (such as cubical cargo) can be stored. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] Figure 1 This is a schematic diagram of the structure of the tray in this application.
[0038] Figure 2 This is a structural diagram of the matching of the adjusting part, connecting part and fixing part in this application.
[0039] Figure 3 This is a schematic diagram of the structure of the support assembly in this application.
[0040] Figure 4 This is a schematic structural diagram of the first support member or the second support member in this application.
[0041] Figure 5 This is a structural diagram of the third support member or the fourth support member and the movable member in this application.
[0042] Figure 6 It is a structural diagram of the matching of the third support member or the fourth support member, the movable member and the elastic member in this application.
[0043] Figure 7 This is a structural diagram of a pallet in this application with cylindrical goods placed vertically.
[0044] Figure 8 This is a structural diagram of a pallet with ordinary goods placed in this application.
[0045] Figure 9 This is a structural diagram of a pallet in this application with cylindrical goods placed horizontally.
[0046] Reference numerals
[0047] Tray 100;
[0048] Base 10; Base body 101;
[0049] Disk body 11; communicating channel 111; first mounting hole 112; supporting hole 113;
[0050] Adjusting member 12; connecting member 13; fixing member 14; matching member 15;
[0051] Support assembly 16;
[0052] First support member 161; first receiving groove 1611; first limiting hole 1612;
[0053] Second support member 162; second receiving groove 1621; second limiting hole 1622;
[0054] Third support member 163; second mounting hole 1631;
[0055] Fourth support member 164; third mounting hole 1641;
[0056] First rotation fulcrum 165; second rotation fulcrum 166; third rotation fulcrum 167; fourth rotation fulcrum 168;
[0057] Movable member 17; Elastic member 18. DETAILED DESCRIPTION
[0058] To make the above-mentioned objects, features, and advantages of the present application more clearly understood, the specific embodiments of the present application are described in detail below with reference to the accompanying drawings. The following description sets forth many specific details to facilitate a full understanding of the present application. However, the present application can be implemented in many other ways than those described herein, and those skilled in the art can make similar improvements without violating the scope of the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.
[0059] In the description of this application, it should be understood that if the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. appear, the orientation or position relationship indicated by these terms is based on the orientation or position relationship shown in the accompanying drawings, which is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.
[0060] In addition, if the terms "first" or "second" appear, these terms are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of technical features indicated. Therefore, a feature specified as "first" or "second" may explicitly or implicitly include at least one of such features. In the description of this application, if the term "plurality" appears, "plurality" means a number, such as two, three, etc., unless otherwise specifically defined.
[0061] In this application, unless otherwise specified or limited, the terms "mounted," "connected," "connected," "fixed," etc., should be interpreted broadly. For example, these terms may refer to fixed connections, removable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediary; and internal communication between two components or interaction between two components, unless otherwise specified. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.
[0062] In this application, unless otherwise expressly specified or limited, if a first feature is described as being "above" or "below" a second feature, or similar descriptions, this may mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. Furthermore, when a first feature is described as being "above," "above," or "above" a second feature, it may mean that the first feature is directly above or diagonally above the second feature, or simply means that the first feature is at a higher level than the second feature. When a first feature is described as being "below," "below," or "below" a second feature, it may mean that the first feature is directly below or diagonally below the second feature, or simply means that the first feature is at a lower level than the second feature.
[0063] It should be noted that if an element is referred to as being "fixed to" or "disposed on" another element, it may be directly on the other element or there may be an intermediate element. If an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. If any, the terms "vertical", "horizontal", "upper", "lower", "left", "right" and similar expressions used in this application are for illustrative purposes only and do not represent the only embodiment.
[0064] The warehousing system is a new product of warehouse automation. With the development of society and the advancement of science and technology, the types of materials in warehouses are diverse, with different shapes, structures and sizes. Ordinary pallets cannot effectively cope with the complex and diverse goods and actual needs. For example, cylindrical goods that need to be placed vertically and ordinary cylindrical goods cannot be placed on ordinary pallets in a centralized manner. They can only be transported manually, resulting in low work efficiency when transporting vertically placed cylindrical goods and ordinary cylindrical goods, and greater safety hazards.
[0065] Based on this, to solve the above problem, please refer to Figures 1 to 9 In one or more embodiments of the present application, a pallet 100 is provided. The pallet 100 includes a base 10, a tray body 11, and a plurality of adjusting members 12. A first mounting hole 112 is provided on the tray body 11, and cylindrical cargo is placed in the first mounting hole 112 to achieve vertical placement of cylindrical cargo. Furthermore, a connecting channel 111 is provided in the tray body 11 to communicate with the first mounting hole 112, and the adjusting member 12 is moved in the connecting channel 111 to achieve connection or isolation between the first mounting hole 112 and the connecting channel 111. In this way, when the first mounting hole 112 is connected to the connecting channel 111, cylindrical cargo can be placed vertically; when the first mounting hole 112 is isolated from the connecting channel 111, ordinary cargo (such as cubic cargo) can be placed.
[0066] Specifically, see Figure 1The pallet 100 includes a base 10, a tray 11, and several adjustment members 12. The tray 11 is attached to the base 10, providing support for the tray 11 and the cargo placed on it. Several first mounting holes 112 are defined on the side of the tray 11 facing away from the base 10. These first mounting holes 112 are designed to accommodate cylindrical cargo. All first mounting holes 112 are arranged in at least two rows along a second direction intersecting the first direction, enhancing the aesthetics of cargo placement.
[0067] Furthermore, the disk body 11 is internally formed with a plurality of communication channels 111 extending along a first direction. Each communication channel 111 is parallel to and spaced apart from one another. All first mounting holes 112 in the same row are spaced apart along the first direction and collectively form a first mounting hole group. Each first mounting hole group corresponds to a communication channel 111, and all first mounting holes 112 within each first mounting hole group communicate with the corresponding communication channel 111.
[0068] It is understood that by connecting the communication channel 111 with the first mounting hole 112, the communication channel 111 can be used to increase the depth of the first mounting hole 112. Thus, when a cylindrical object is placed in the first mounting hole 112, the end of the cylindrical object that extends into the first mounting hole 112 will extend further into the communication channel 111 until it contacts and supports the bottom wall of the communication channel 111. This can enhance the retaining effect of the first mounting hole 112 on the cylindrical object and improve the stability of the cylindrical object placed in the first mounting hole 112.
[0069] It should be further explained that each adjusting member 12 is movably engaged within the communicating channel 111. The adjusting member 12 has a first position and a second position during its movement within the communicating channel 111. When the adjusting member 12 is in the first position, it is located below the first mounting hole 112, isolating the communicating channel 111 from all of its corresponding first mounting holes 112. When the adjusting member 12 is in the second position, the adjusting member 12 avoids the first mounting hole 112, and the communicating channel 111 communicates with all of its corresponding first mounting holes 112.
[0070] Understandably, see Figure 1 、 Figure 7 and Figure 8During the actual operation of using the pallet 100 to transport goods, if the pallet 100 needs to be used to place and transport ordinary goods, the adjusting member 12 is controlled to move to the first position within the connecting channel 111, so that the adjusting member 12 is located below the first mounting holes 112 and can block the connecting channel 111 from all of the first mounting holes 112 that are connected to it. In this way, the depth of the first mounting holes 112 after being blocked from the connecting channel 111 is reduced, which does not affect the placement of ordinary goods. In other words, ordinary goods can be placed directly on the side of the tray body 11 facing away from the base 10. If the pallet 100 needs to be used to place and transport cylindrical goods, the adjusting member 12 is controlled to move to the second position within the connecting channel 111, so that the adjusting member 12 is clear of the first mounting holes 112 and further connects the connecting channel 111 to all of the first mounting holes 112 that are connected to it. In this way, the pallet 100 can place and transport cylindrical goods by placing the cylindrical goods one by one in the first mounting holes 112 that are connected to the connecting channel 111.
[0071] The pallet 100 provided in the embodiment of the present application achieves vertical placement of cylindrical cargo by providing a first mounting hole 112 on the tray body 11 and placing cylindrical cargo in the first mounting hole 112. Furthermore, a connecting passage 111 is provided in the tray body 11 to communicate with the first mounting hole 112, and an adjusting member 12 is adapted to move within the connecting passage 111 to connect or disconnect the first mounting hole 112 and the connecting passage 111. Thus, when the first mounting hole 112 is connected to the connecting passage 111, cylindrical cargo can be placed vertically; when the first mounting hole 112 is disconnected from the connecting passage 111, ordinary cargo (such as cubic cargo) can be placed.
[0072] It should also be noted that, in the present application, the connecting channel 111 has a certain width in the second direction, which means that the connecting channel 111 has a first side and a second side that are relatively arranged in the second direction. Specifically, all first mounting holes 112 that are in communication with the connecting channel 111 are located on the first side of the connecting channel 111 along the second direction, and when the adjusting member 12 moves to the first position in the connecting channel 111, the adjusting member 12 is located on the first side of the connecting channel 111 along the second direction, at which point the adjusting member 12 is isolated from all first mounting holes 112 that are in communication with the connecting channel 111. Correspondingly, when the adjusting member 12 moves to the second position in the connecting channel 111, the adjusting member 12 is located on the second side of the connecting channel 111 along the second direction, at which point the adjusting member 12 avoids the first mounting holes 112, and the connecting channel 111 is in communication with all first mounting holes 112 that are in communication with the connecting channel 111.
[0073] In some embodiments, see Figure 1The base 10 includes a plurality of base bodies 101, all of which are spaced apart from each other along the second direction and are connected to the bottom side of the plate 11. Each base body 101 extends along the first direction and is correspondingly disposed below each first mounting hole group.
[0074] It can be understood that the base 101 is supported below the first mounting hole group corresponding to the disc body 11, and can directly bear the weight of the cylindrical goods placed in the first mounting holes 112, which is beneficial to improving the stability of the cylindrical goods placed in the first mounting holes 112, and can better share the load-bearing capacity of the disc body 11 to enhance the structural rigidity of the disc body 11, thereby reducing the chance of damage to the disc body 11 and effectively improving the service life of the pallet 100.
[0075] In some embodiments, see Figure 1 All the seats 101 are evenly spaced along the second direction, and the two seats 101 at the first and last positions are respectively connected to the opposite ends of the bottom side of the disk body 11 along the second direction.
[0076] It is understood that by evenly spacing all base bodies 101, the base bodies 101 can evenly distribute the load of the tray body 11, thereby enhancing the structural rigidity of the tray body 11, thereby reducing the probability of damage to the tray body 11 and effectively extending the service life of the pallet 100. Correspondingly, the layout of each first mounting hole group is similar to that of each base body 101, that is, each first mounting hole group is evenly spaced along the second direction, which effectively improves the aesthetics of the cargo display.
[0077] In some embodiments, see Figure 1 A plurality of communication holes (not shown) are provided on the base 10, each communication hole is arranged in a one-to-one correspondence with each first mounting hole 112, each communication hole is connected to the corresponding first mounting hole 112 and the communication channel 111, and each communication hole extends in the same direction as the corresponding first mounting hole 112.
[0078] It can be understood that in the actual operation process of using the pallet 100 to transport goods, if it is necessary to use the pallet 100 to place and transport ordinary goods, the adjusting member 12 is controlled to move to the first position in the connecting channel 111, so that the adjusting member 12 is located below the first mounting hole 112, and can isolate the connecting channel 111 from all the first mounting holes 112 and all the connecting holes corresponding to it. In this way, the hole depth of the first mounting hole 112 after being isolated from the connecting channel 111 is smaller, which will not affect the placement of ordinary goods, that is, ordinary goods can be placed directly on the side of the tray body 11 away from the base 10. If the pallet 100 is needed to place and transport cylindrical goods, the adjusting member 12 is controlled to move to the second position in the connecting channel 111 so that the adjusting member 12 avoids the first mounting hole 112, and further connects the connecting channel 111 with all its corresponding first mounting holes 112 and all connecting holes. In this way, by inserting the cylindrical goods into the corresponding connected first mounting holes 112, the connecting channel 111 and the connecting holes, the pallet 100 can be used to place and transport the cylindrical goods.
[0079] In the present application, by interconnecting the first mounting hole 112 , the communicating channel 111 and the communicating hole, the size of the cylindrical cargo extending into the first mounting hole 112 can be increased, thereby effectively improving the stability of the assembly of the cylindrical cargo.
[0080] It should be noted that, in this application, the specific number of the adjusting member 12, the base 101, the first mounting hole 112, and the connecting passage 111 is not limited. The specific number of the four is primarily determined by the amount of cargo to be placed on the pallet 100, and the user can adjust the specific number of the four according to actual needs. In addition, it is necessary to comprehensively consider the impact of the specific number of the four on the stability of the pallet 100 structure and the stability of cargo placement.
[0081] Based on this, in some embodiments of this application, see Figure 1 The tray 100 includes three adjustment members 12. The base 10 includes three base bodies 101. Nine first mounting holes 112 are defined on the side of the tray body 11 facing away from the base 10. These nine first mounting holes 112 collectively form three first mounting hole groups. Three connecting passages 111 extending along a first direction are formed within the tray body 11.
[0082] For ease of understanding, the three base bodies 101 are defined as the first base body 101, the second base body 101, and the third base body 101; the three communication channels 111 are defined as the first communication channel, the second communication channel, and the third communication channel. The first, second, and third base bodies 101 are evenly spaced along the second direction, and the first and third base bodies 101 are located at opposite ends of the bottom side of the disk body 11 along the second direction. The second base body 101 is located at the midpoint of the bottom side of the disk body 11 along the second direction. Correspondingly, the three communication channels 111 and the three first mounting hole groups are arranged in positions corresponding to the three base bodies 101.
[0083] It can be understood that when the number of cylindrical goods is small, the cylindrical goods need to be placed correspondingly in all the first mounting holes 112 located at the midpoint of the disc body 11 along the second direction, and no goods are placed in all the first mounting holes 112 located at the opposite ends of the bottom side of the disc body 11 along the second direction. In this way, the weight of the cylindrical goods placed at the midpoint of the disc body 11 along the second direction can be evenly transferred to each seat body 101 through the disc body 11, and the force on both sides of the pallet 100 is balanced, which is conducive to ensuring the stability of the placement of the goods and the stability of the structure of the pallet 100.
[0084] Similarly, when the number of cylindrical goods is sufficient, the cylindrical goods fill all the first mounting holes 112 , which can achieve overall force balance on the pallet 100 , thereby ensuring the stability of the goods placement and the stability of the pallet 100 structure.
[0085] Further, see Figure 1 and Figure 2 The tray 100 further includes a connecting member 13 for connecting any two of the three adjusting members 12. The two adjusting members 12 connected by the connecting member 13 are movably coupled to any two adjacent communicating channels 111 among the three communicating channels 111, and the connecting member 13 is exposed outside the communicating channels 111.
[0086] For ease of understanding, the three adjusting parts 12 are defined as the first adjusting part, the second adjusting part and the third adjusting part; wherein, the first adjusting part, the second adjusting part and the third adjusting part are respectively equipped in the first connecting channel, the second connecting channel and the third connecting channel, and the connecting part 13 is connected between the first adjusting part and the second adjusting part.
[0087] Thus, during the actual operation of transporting goods using the pallet 100, if the pallet 100 needs to be used to place and transport cylindrical goods, the first and second adjusting members are driven to move synchronously to the second position within the first and second connecting channels, respectively, by controlling the connecting member 13, so that the first and second adjusting members avoid the first mounting holes 112 connected to the connecting channel 111 in which they are located, and further connect the connecting channel 111 with all of its corresponding first mounting holes 112. In addition, it is necessary to directly control the third adjusting member to move to the second position within the third connecting channel, so that the third adjusting member avoids the first mounting holes 112 connected to the third connecting channel, and further connect the third connecting channel with all of its corresponding first mounting holes 112. In this way, by placing the cylindrical goods one by one in the first mounting holes 112 connected to the third connecting channel, the pallet 100 can be used to place and transport the cylindrical goods.
[0088] If the pallet 100 is to be used for placing and transporting ordinary goods, the first and second adjusting members are driven to move synchronously to the second positions within the first and second connecting channels, respectively, by controlling the connecting member 13. This allows the first and second adjusting members to be located below the first mounting holes 112 connected to the connecting channel 111 in which they are located, and to isolate the connecting channel 111 from all of the first mounting holes 112 that are connected to the corresponding connecting channels. Furthermore, the third adjusting member is also directly controlled to move to the second position within the third connecting channel, allowing the third adjusting member to be located below the first mounting holes 112 that are connected to the third connecting channel, and to isolate the third connecting channel from all of the first mounting holes 112 that are connected to the corresponding connecting channels. In this way, the depth of the first mounting holes 112, after being isolated from the third connecting channel, is reduced, and does not affect the placement of ordinary goods. In other words, ordinary goods can be placed directly on the side of the tray body 11 facing away from the base 10.
[0089] In some embodiments, see Figure 1 and Figure 2 The tray 100 further includes a fixing member 14 and a fitting member 15 . Either the fixing member 14 or the fitting member 15 is connected to the adjusting member 12 , and the other is connected to the tray body 11 . The fixing member 14 and the fitting member 15 are detachably fixed and fitted together.
[0090] It is understandable that the specific connection positions of the fixing member 14 and the matching member 15 can be selected according to actual needs. For ease of understanding, in this application, the fixing member 14 is connected to the adjusting member 12 and the matching member 15 is connected to the disk body 11 as an example.
[0091] Specifically, since the communication channel 111 has a certain width in the second direction, the fittings 15 need to be respectively connected to the tray body 11 on opposite sides of the communication channel 111 along the second direction. In this way, when the adjusting member 12 moves to the first position in the communication channel 111, that is, when the adjusting member 12 is located on the first side of the communication channel 111 along the second direction, the fixing member 14 on the adjusting member 12 is fixedly connected to the fittings 15 on the tray body 11 near the first side of the communication channel 111, thereby preventing the adjusting member 12 from moving in the communication channel 111 and ensuring stable placement of the goods.
[0092] Similarly, when the adjusting member 12 moves to the second position in the connecting channel 111, that is, when the adjusting member 12 is located on the second side of the connecting channel 111 along the second direction, the fixing member 14 on the adjusting member 12 is fixedly connected to the matching member 15 on the disk body 11 close to the second side of the connecting channel 111.
[0093] Furthermore, specifically in the embodiment of the present application having three connecting channels 111 and three adjusting members 12, the fitting members 15 are respectively connected to the disk body 11 on the first side close to the first connecting channel, the disk body 11 on the second side close to the second connecting channel, and the disk body 11 on the opposite sides of the third connecting channel along the second direction, and the three adjusting members 12 are all connected to fixing members 14.
[0094] Thus, during the actual operation of transporting goods using the pallet 100, if the first and second adjusting members are moved to the first positions within the first and second connecting passages, respectively, the fixing member 14 on the first adjusting member needs to be fixedly connected to the matching member 15 on the tray body 11 located on the first side near the first connecting passage. Correspondingly, if the first and second adjusting members are moved to the second positions within the first and second connecting passages, respectively, the fixing member 14 on the second adjusting member needs to be fixedly connected to the matching member 15 on the tray body 11 located on the second side near the second connecting passage.
[0095] Furthermore, when the third adjusting member is moved to the first position of the third communication channel, the fixing member 14 on the third adjusting member needs to be fixedly connected to the matching member 15 on the disk body 11 located on the first side near the third communication channel. Correspondingly, when the third adjusting member is moved to the second position of the third communication channel, the fixing member 14 on the third adjusting member needs to be fixedly connected to the matching member 15 on the disk body 11 located on the second side near the third communication channel.
[0096] In some embodiments, see Figure 1 、 Figure 2 and Figure 3The side of the plate 11 facing away from the base 10 is provided with a plurality of support holes 113, and all the support holes 113 are arranged in at least two rows along the second direction. All the support holes 113 in the same row are spaced apart along the first direction and together form a support hole group.
[0097] The tray 100 further includes a plurality of support components 16 . Each support component 16 is disposed in a corresponding supporting hole 113 , and each support component 16 can be extended out of or received in the corresponding supporting hole 113 .
[0098] It can be understood that in the actual operation process of using the pallet 100 to transport goods, by controlling the support components 16 set in all the support holes 113 of the same support hole group to extend out of the corresponding support holes 113, and then placing the cylindrical goods horizontally, and making each support component 16 able to support the cylindrical goods along the longitudinal direction of the cylindrical goods, in this way, the support components 16 cooperate with each other to achieve the horizontal placement of the cylindrical goods and ensure the stability of the cylindrical goods.
[0099] Furthermore, by ensuring that all support assemblies 16 disposed within the same support hole group 113 are accommodated within the corresponding support holes 113, the pallet 100 can utilize the adjustment member 12, the first mounting hole 112, and the communication channel 111 to accommodate both cylindrical and general cargo in a vertically positioned manner. Furthermore, by ensuring that the support assemblies 16 are accommodated within the corresponding support holes 113, interference with the vertically positioned cylindrical and general cargo can be avoided.
[0100] In some embodiments, see Figure 3 and Figure 4 The support assembly 16 includes a first support member 161 and a second support member 162. The first support member 161 and the second support member 162 are disposed side by side in the support hole 113. The first support member 161 has a first end close to the second support member 162 and a second end away from the second support member 162. The second support member 162 has a third end close to the first support member 161 and a fourth end away from the first support member 161.
[0101] The first end is configured to form a first rotation fulcrum 165, and the first support member 161 can be controlled to rotate about the first rotation fulcrum 165 until the second end protrudes from the support hole 113 or is received in the support hole 113. The third end is configured to form a second rotation fulcrum 166, and the second support member 162 can be controlled to rotate about the second rotation fulcrum 166 until the fourth end protrudes from the support hole 113 or is received in the support hole 113.
[0102] When the second end and the fourth end both extend out of the support hole 113 , the first support member 161 and the second support member 162 , which are away from the side of the support hole 113 , jointly form a support space.
[0103] It can be understood that by controlling the support components 16 in all the support holes 113 of the same support hole group to extend out of the corresponding support holes 113, that is, the second end of the first support member 161 and the fourth end of the second support member 162 in all the support components 16 extend out of the support holes 113, and together construct a support space, the cylindrical cargo is placed horizontally and located in series in each support space. In this way, the side surface of the support space can limit the outer wall of the cylindrical cargo, thereby ensuring the stability of the cylindrical cargo.
[0104] In some embodiments, see Figure 3 、 Figure 4 and Figure 5 The support assembly 16 further includes a third support member 163. A first receiving slot 1611 is formed in a recessed manner on the side of the first support member 161 facing the support hole 113. The first receiving slot 1611 extends longitudinally of the first support member and passes through the second end. The third support member 163 has a fifth end and a sixth end disposed opposite each other along its longitudinal direction. The fifth end is movably engaged with the first receiving slot 1611, and the sixth end is engaged with the support hole 113, forming a third pivot point 167.
[0105] When the first support member 161 is controlled to rotate about the first rotation fulcrum 165 until the second end extends out of the support hole 113, the third support member 163, driven by the first support member 161, rotates about the third rotation fulcrum 167 until the fifth end moves along the first receiving groove 1611 from the first end to the second end to the first preset position, thereby forming a support structure together with the first support member 161. When the first support member 161 is controlled to rotate about the first rotation fulcrum 165 until the second end is received in the support hole 113, the third support member 163, driven by the first support member 161, rotates about the third rotation fulcrum 167 until the fifth end moves along the first receiving groove 1611 from the second end to the first end to the second preset position, and the third support member 163 is received in the first receiving groove 1611.
[0106] It is understood that the specific process by which the first and third support members 161 and 163 extend from their corresponding support holes 113 is as follows: the second end of the first support member 161, under the action of an external force, rotates about the first pivot point 165 in a direction away from the support hole 113 until the second end extends out of the support hole 113. Driven by the first support member 161, the third support member 163 rotates about the third pivot point 167 until the fifth end moves along the first receiving groove 1611 from the first end toward the second end to the first predetermined position. At this point, the third support member 163 supports the first support member 161 and, together with the first support member 161, forms a supporting structure. Thus, when the first support member 161 bears the weight of a round object, the third support member 163 transmits the force exerted on the first support member 161, thereby enhancing the structural strength of the first support member 161.
[0107] Correspondingly, the specific process of the first support member 161 and the third support member 163 being received in the corresponding support hole 113 is as follows: the second end of the first support member 161 is rotated about the first rotation fulcrum 165 in a direction closer to the support hole 113 by an external force until the second end is received in the support hole 113. The third support member 163, driven by the first support member 161, rotates about the third rotation fulcrum 167 until the fifth end moves from the second end to the first end along the first receiving groove 1611 to the second preset position. At this point, the third support member 163 is received in the first receiving groove 1611. In this way, the support assembly 16 can be completely received, thereby preventing the support assembly 16 from interfering with vertically placed cylindrical goods and ordinary goods, while ensuring the neat and beautiful appearance of the pallet 100.
[0108] In some embodiments, see Figure 3 、 Figure 4 and Figure 5 Support assembly 16 further includes a fourth support member 164. A second receiving slot 1621 is formed in a recessed manner on the side of second support member 162 facing support hole 113. Second receiving slot 1621 extends along the longitudinal direction of the second support portion and passes through the fourth end. Fourth support member 164 has seventh and eighth ends disposed opposite each other along its longitudinal direction. The seventh end is movably engaged with second receiving slot 1621, and the eighth end is engaged with support hole 113, forming a fourth pivot point 168.
[0109] When the second support member 162 is controlled to rotate about the second rotation fulcrum 166 until the fourth end extends out of the support hole 113, the fourth support member 164, driven by the second support member 162, rotates about the fourth rotation fulcrum 168 until the seventh end moves along the second receiving groove 1621 from the third end to the fourth end to a third preset position, thereby forming a support structure together with the second support member 162. When the second support member 162 is controlled to rotate about the second rotation fulcrum 166 until the fourth end is received in the support hole 113, the fourth support member 164, driven by the second support member 162, rotates about the fourth rotation fulcrum 168 until the seventh end moves along the second receiving groove 1621 from the fourth end to the third end to the fourth preset position, and the fourth support member 164 is received in the second receiving groove 1621.
[0110] It is understood that the specific process by which the second support member 162 and the fourth support member 164 extend into the corresponding support hole 113 is as follows: the fourth end of the second support member 162, under the action of an external force, rotates about the second pivot point 166 in a direction away from the support hole 113 until the fourth end extends out of the support hole 113. Driven by the second support member 162, the fourth support member 164 rotates about the fourth pivot point 168 until the seventh end moves along the second receiving groove 1621 from the third end toward the fourth end to the second preset position. At this point, the fourth support member 164 supports the second support member 162 and, together with the second support member 162, forms a supporting structure. Thus, when the second support member 162 bears the weight of a round object, the fourth support member 164 transmits the force acting on the second support member 162, thereby enhancing the structural strength of the second support member 162.
[0111] Correspondingly, the specific process of the second support member 162 and the fourth support member 164 being received in the corresponding support hole 113 is as follows: the fourth end of the second support member 162 is rotated about the second rotation fulcrum 166 in a direction closer to the support hole 113 by an external force until the fourth end is received in the support hole 113. Driven by the second support member 162, the fourth support member 164 rotates about the fourth rotation fulcrum 168 until the seventh end moves along the second receiving groove 1621 from the fourth end toward the third end to the second preset position. At this point, the fourth support member 164 is received in the second receiving groove 1621. In this way, the support assembly 16 can be completely received, thereby preventing the support assembly 16 from interfering with vertically placed cylindrical goods and ordinary goods, while ensuring the neat and beautiful appearance of the pallet 100.
[0112] In some embodiments, see Figure 5 and Figure 6The support assembly 16 further includes a movable member 17 and an elastic member 18. A second mounting hole 1631 is formed through the third support member 163. A movable member 17 is positioned at each side of the second mounting hole 1631. Both movable members 17 are at least partially movably disposed within the corresponding opening. The elastic member 18 is flexibly coupled between the two movable members 17.
[0113] Among them, when the third support member 163 moves between the first preset position and the second preset position along the first accommodating groove 1611 under the drive of the first support member 161, the elastic member 18 is deformed and compressed, and provides a thrust to the two movable members 17 to move toward the outside of the opening, so that the two movable members 17 at least partially extend out of the corresponding opening and respectively abut against the inner walls on both sides opposite to each other of the first accommodating groove 1611.
[0114] It is understandable that the thrust generated by the deformation and compression of the elastic member 18 can cause the portions of the two movable members 17 extending from the corresponding openings to respectively abut against the inner walls of the first receiving groove 1611 on both sides, thereby ensuring the connection between the third support member 163 and the first support member 161. At the same time, because the elastic member 18 can deform under the action of an external force, when the third support member 163 moves along the first receiving groove 1611 between the first preset position and the second preset position under the drive of the first support member 161, the elastic member 18 will be compressed under the pressure of the two movable members 17, so that the two movable members 17 can respectively create a movable gap between the inner walls of the first receiving groove 1611 on both sides, thereby realizing the movement of the third support member 163 within the first receiving groove 1611.
[0115] In some embodiments, see Figure 3 、 Figure 4 and Figure 5 The first accommodating groove 1611 has two opposite inner walls respectively formed with first limiting holes 1612 .
[0116] Among them, when the third support member 163 moves to the first preset position along the first accommodating groove 1611 under the drive of the first support member 161, the elastic member 18 is deformed and compressed, and provides a thrust to the two movable members 17 to move toward the outside of the opening, so that the two movable members 17 at least partially extend out of the corresponding opening and are respectively embedded in the two first limiting holes 1612.
[0117] It can be understood that when the third support member 163 moves to the first preset position along the first accommodating groove 1611 under the drive of the first support member 161, the third support member 163 and the first support member 161 can be fixedly connected by respectively embedding the parts of the two movable members 17 extending out of the corresponding openings into the two first limiting holes 1612. In this way, when the first support member 161 bears the weight of the circular cargo, the third support member 163 can transmit the force of the first support member 161 and enhance the structural strength of the first support member 161.
[0118] In some embodiments, see Figure 3 、 Figure 4 and Figure 5 The fourth support member 164 has a third mounting hole 1641 extending therethrough. A movable member 17 is located at each side of the third mounting hole 1641. Both movable members 17 have at least a portion movably disposed in the corresponding opening. An elastic member 18 is deformably coupled between the two movable members 17.
[0119] Among them, when the fourth support member 164 moves between the third preset position and the fourth preset position along the second accommodating groove 1621 under the drive of the second support member 162, the elastic member 18 is deformed and compressed, and provides a thrust to the two movable members 17 to move toward the outside of the opening, so that the two movable members 17 at least partially extend out of the corresponding opening and respectively abut against the inner walls on both sides opposite to each other of the second accommodating groove 1621.
[0120] It is understood that the thrust generated by the deformation and compression of the elastic member 18 can cause the portions of the two movable members 17 extending from the corresponding openings to respectively abut against the inner walls of the first receiving groove 1611 on both sides, thereby ensuring the connection between the fourth support member 164 and the second support member 162. At the same time, because the elastic member 18 can deform under the action of an external force, when the fourth support member 164 moves along the second receiving groove 1621 between the first preset position and the second preset position under the drive of the second support member 162, the elastic member 18 will be compressed under the pressure of the two movable members 17, so that the two movable members 17 can respectively create a movable gap between the inner walls of the first receiving groove 1611 on both sides, thereby realizing the movement of the fourth support member 164 within the second receiving groove 1621.
[0121] In some embodiments, see Figure 3 、 Figure 4 and Figure 5 Second limiting holes 1622 are respectively formed on the inner walls of the opposite sides of the second receiving groove 1621.
[0122] Among them, when the fourth support member 164 moves to the third preset position along the second accommodating groove 1621 under the drive of the second support member 162, the elastic member 18 is deformed and compressed, and provides a thrust to the two movable members 17 to move toward the outside of the opening, so that the two movable members 17 at least partially extend out of the corresponding opening and are respectively embedded in the two second limiting holes 1622.
[0123] It can be understood that when the fourth support member 164 moves to the first preset position along the second accommodating groove 1621 under the drive of the second support member 162, the fourth support member 164 and the second support member 162 can be fixedly connected by respectively embedding the parts of the two movable members 17 extending out of the corresponding openings into the two second limiting holes 1622. In this way, when the second support member 162 bears the weight of the circular cargo, the fourth support member 164 can transmit the force of the second support member 162 and enhance the structural strength of the second support member 162.
[0124] In some embodiments, see Figure 6 The movable part 17 includes a movable section and a limiting section connected to each other. The connection between the movable section and the limiting section is structured to form a step surface, and the movable section can be movably inserted into the corresponding opening, and the step surface abuts against the hole wall of the second mounting hole 1631.
[0125] One or more embodiments of the present application further provide a storage system, which includes the pallet 100 in the previous embodiment.
[0126] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0127] The above-described embodiments merely represent several implementation methods of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the spirit of the present application, all of which fall within the scope of protection of the present application. Therefore, the scope of protection of the present patent application shall be determined by the appended claims.
Claims
1. A pallet, characterized in that: include: base; A disc body is coupled to the base, wherein a plurality of communication channels extending along a first direction are formed inside the disc body, and the communication channels are parallel to each other and spaced apart; a plurality of first mounting holes are formed on a side of the disc body facing away from the base, and all of the first mounting holes are arranged in at least one row along a second direction intersecting the first direction; all of the first mounting holes in the same row are spaced apart along the first direction and together form a first mounting hole group; each of the first mounting hole groups is arranged in a one-to-one correspondence with each of the communication channels, and all of the first mounting holes in each of the first mounting hole groups are connected to the corresponding communication channels; A plurality of adjusting members, each of which is movably coupled to one of the communicating channels; In which, the adjusting member has a first position and a second position during the movement in the connecting channel. When the adjusting member moves to the first position, the adjusting member is located below the first mounting hole and isolates the connecting channel from all the first mounting holes corresponding to it; when the adjusting member is located at the second position, the adjusting member avoids the first mounting hole, and the connecting channel is connected to all the first mounting holes corresponding to it.
2. The pallet according to claim 1, wherein: The base includes a plurality of base bodies, all of which are spaced apart from each other along the second direction and are connected to the bottom side of the disc body; Wherein, each of the base bodies extends along the first direction, and each of the base bodies is disposed below each of the first mounting hole groups in a one-to-one correspondence.
3. The pallet according to claim 1, wherein: All the bases are evenly spaced along the second direction, and the two bases at the first and last positions are respectively matched with the opposite ends of the bottom side of the disk along the second direction.
4. The pallet according to any one of claims 1 to 3, characterized in that: The base is provided with a plurality of communicating holes, each communicating hole is arranged in one-to-one correspondence with each first mounting hole, each communicating hole is connected with the corresponding first mounting hole and the communicating channel, and each communicating hole extends in the same direction as the corresponding first mounting hole.
5. The pallet according to claim 3, wherein: The tray includes three adjusting parts; the base includes three seat bodies; nine first mounting holes are provided on the side of the tray body facing away from the base, and the nine first mounting holes are together constructed to form three first mounting hole groups; three connecting channels extending through along the first direction are formed inside the tray body.
6. The pallet according to claim 5, characterized in that The tray further includes a connecting piece, and the connecting piece is used to connect any two of the three adjusting pieces; Wherein, the two adjusting members connected by the connecting member are movably matched in any two adjacent connecting channels among the three connecting channels, and the connecting member is exposed in the connecting channels.
7. The pallet according to claim 6, characterized in that The tray further includes a fixing member and a matching member. Either the fixing member or the matching member is connected to the adjusting member, and the other is connected to the tray body. The fixing member and the matching member are detachably fixed and matched.
8. The pallet according to claim 1, wherein: A plurality of support holes are formed on a side of the disk body facing away from the base, and all the support holes are arranged in at least one row along the second direction; all the support holes in the same row are spaced apart along the first direction and together form a support hole group; The tray further comprises a plurality of supporting components, each of which is disposed in a one-to-one correspondence within each of the supporting holes, and each of the supporting components can be extended out of or received in the corresponding supporting hole.
9. The pallet according to claim 8, characterized in that The support assembly includes a first support member and a second support member, the first support member and the second support member are arranged side by side in the support hole, the first support member has a first end close to the second support member and a second end away from the second support member; the second support member has a third end close to the first support member and a fourth end away from the first support member; The first end structure forms a first rotation fulcrum, and the first support member can be controlled to rotate around the first rotation fulcrum until the second end extends out of the support hole or is received in the support hole; the three-end structure forms a second rotation fulcrum, and the second support member can be controlled to rotate around the second rotation fulcrum until the fourth end extends out of the support hole or is received in the support hole; When the second end and the fourth end both extend out of the support hole, the first support member and the second support member, both of which are away from the side of the support hole, jointly form a support space.
10. The pallet according to claim 9, characterized in that The support assembly further includes a third support member, wherein a first receiving groove is formed in a recess on a side of the first support member facing the support hole, and the first receiving groove extends along the longitudinal direction of the first support member and passes through the second end; the third support member has a fifth end and a sixth end that are oppositely arranged along its longitudinal direction, and the fifth end is movably engaged in the first receiving groove, and the fifth end is engaged in the support hole, and is structured to form a third rotation fulcrum; wherein, when the first support member is controlled to rotate around the first rotation fulcrum until the second end extends out of the support hole, the third support member is driven by the first support member to rotate around the third rotation fulcrum until the fifth end moves along the first accommodating groove from the first end to the second end to a first preset position, so as to form a support structure together with the first support member; when the first support member is controlled to rotate around the first rotation fulcrum until the second end is received in the support hole, the third support member is driven by the first support member to rotate around the third rotation fulcrum until the fifth end moves along the first accommodating groove from the second end to the first end to a second preset position, and the third support member is received in the first accommodating groove.
11. The pallet according to claim 10, wherein: The support assembly further includes a fourth support member, wherein a second receiving groove is formed on a side of the second support member facing the support hole, and the second receiving groove extends along the longitudinal direction of the second support portion and passes through the fourth end; The fourth support member has a seventh end and an eighth end disposed opposite to each other along its longitudinal direction, and the seventh end is movably engaged in the second receiving groove, and the eighth end is engaged in the supporting hole, thereby forming a fourth rotation fulcrum; In which, when the second support member is controlled to rotate around the second rotation fulcrum until the fourth end extends out of the support hole, the fourth support member rotates around the fourth rotation fulcrum driven by the second support member, until the seventh end moves along the second accommodating groove from the third end to the fourth end to a third preset position, so as to form a support structure together with the second support member; when the second support member is controlled to rotate around the second rotation fulcrum until the fourth end is received in the support hole, the fourth support member rotates around the fourth rotation fulcrum driven by the second support member, until the seventh end moves along the second accommodating groove from the fourth end to the third end to a fourth preset position, and the fourth support member is received in the second accommodating groove.
12. The pallet according to claim 11, wherein: The support assembly further includes a movable member and an elastic member. The third support member is provided with a second mounting hole extending therethrough. A movable member is disposed at each of two openings of the second mounting hole. Both movable members have at least a portion movably disposed in the corresponding opening. The elastic member is deformably coupled between the two movable members. Among them, when the third support member moves along the first accommodating groove between the first preset position and the second preset position under the drive of the first support member, the elastic member is deformed and compressed, and provides a thrust to the two movable members to move toward the outside of the opening, so that the two movable members at least partially extend out of the corresponding opening and respectively abut against the inner walls on both sides opposite to each other of the first accommodating groove.
13. The pallet according to claim 12, wherein: The first accommodating groove is provided with first limiting holes on two opposite inner walls thereof; Among them, when the third support member moves along the first accommodating groove to the first preset position under the drive of the first support member, the elastic member is deformed and compressed, and provides a thrust to the two movable members to move toward the outside of the opening, so that the two movable members at least partially extend out of the corresponding opening and are respectively embedded in the two first limiting holes.
14. The pallet according to claim 12, wherein: The fourth support member is provided with a third mounting hole extending therethrough, and a movable member is disposed at each of two openings of the third mounting hole, and both movable members have at least a portion movably disposed through the corresponding opening; the elastic member is deformably coupled between the two movable members; Among them, when the fourth support member moves between the third preset position and the fourth preset position along the second accommodating groove under the drive of the second support member, the elastic member is deformed and compressed, and provides a thrust to the two movable members to move toward the outside of the opening, so that the two movable members at least partially extend out of the corresponding opening and respectively abut against the inner walls on both sides opposite to each other of the second accommodating groove.
15. The pallet according to claim 12, wherein: The second accommodating groove has two opposite inner walls respectively provided with second limiting holes; Among them, when the fourth support member moves to the third preset position along the second accommodating groove under the drive of the second support member, the elastic member is deformed and compressed, and provides a thrust to the two movable members to move toward the outside of the opening, so that the two movable members at least partially extend out of the corresponding opening and are respectively embedded in the two second limiting holes.
16. The pallet according to claim 12, wherein: The movable part includes a movable section and a limiting section connected to each other, the connection between the movable section and the limiting section is structured to form a step surface, and the movable section can be movably inserted into the corresponding opening, and the step surface abuts against the hole wall of the second mounting hole.
17. A storage system, characterized in that: A pallet comprising the pallet described in any one of claims 1 to 16.
Citation Information
Patent Citations
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