Cabinet body structure and vehicle-mounted express cabinet
By setting up rotating components and locking slots on the express cabinet body, allowing the cabinet body to fold and overlap, the problem of inconvenience in transportation of existing express cabinets is solved, and the effect of simplifying transportation and loading and unloading is achieved.
Patent Information
- Application Number
- CN202422031909.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing express cabinets are inconvenient during transportation and need to be disassembled into multiple parts for loading and assembly, resulting in time-consuming and laborious loading and unloading.
A cabinet structure is designed, by providing a rotating assembly and locking groove on the cabinet body, allowing adjacent cabinet bodies to rotate from the unfolded position to the folded position, partially overlapping with each other's surfaces, thereby simplifying the transportation and loading and unloading process.
Through the folding design, the weight of a single mobile unit is reduced, adapted to different spaces, simplified the transportation and loading and unloading of the cabinet, and saved the loading and unloading space of the vehicle body.
Smart Images

Figure CN223022734U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to a courier cabinet, and particularly to a cabinet structure and a vehicle-mounted courier cabinet. Background Art
[0002] With the increase in the number of express delivery orders, the requirement for the personnel efficiency ratio of the courier stations is getting higher and higher. The method of cabinetizing the courier stations is gradually emerging, which can reduce the input of personnel costs and put small and medium-sized packages in the courier cabinet in the station.
[0003] In the prior art, most courier cabinets are fixed and immovable. Therefore, restricted by the structure and the use site, it is difficult to infinitely increase their capacity and volume, and thus cannot meet the increasing demand for express delivery volume. Therefore, during the transportation of larger courier cabinets, there are situations where transportation is inconvenient. It is necessary to disassemble the cabinet body into multiple components for loading and then assemble them after transporting to the destination. This is not only inconvenient for loading and unloading and transportation, but also time-consuming and laborious.
[0004] Therefore, how to provide a cabinet structure to facilitate the transportation and loading / unloading of the cabinet body is a technical problem that the present utility model urgently needs to solve. Summary of the Utility Model
[0005] An object of the present application is to provide a cabinet structure and a vehicle-mounted courier cabinet, which can facilitate the transportation and loading / unloading of the cabinet body.
[0006] According to one aspect of the present application, a cabinet structure is provided, including:
[0007] Cabinet body:
[0008] A groove formed on the cabinet body for setting a rotating assembly, which is used to form a rotating shaft connection with an adjacent cabinet body, so that after the adjacent cabinet bodies rotate from the unfolded position to the folded position, at least part of two adjacent surfaces between them overlap each other.
[0009] Further preferably, grooves are formed on both the surface of the cabinet body for forming the overlapping surface and the opposite surface.
[0010] Further preferably, the grooves are formed on opposite sides of the cabinet body;
[0011] And / or, the grooves are located on the lateral surface of the cabinet body where no storage window is provided;
[0012] And / or, there are multiple grooves, which are arranged at intervals along the axis for forming the rotating shaft connection on the cabinet body;
[0013] And / or, the grooves are arranged at equal intervals.
[0014] Further preferably, the area on the cabinet body for arranging the rotating assembly is located on the opposite sides of the cabinet body and is arranged along the diagonal direction.
[0015] Further preferably, the groove bodies are arranged on both opposite sides of the surface;
[0016] The area on the surface where the groove body is arranged is adjacently arranged to an adjacent surface.
[0017] Further preferably, it further includes: a rotating assembly, wherein at least one group of the rotating assembly is a hinge member or a pivot connecting member for connecting two cabinet bodies.
[0018] Further preferably, it further includes: a locking groove formed on the cabinet body, which is used to engage a locking member after an adjacent cabinet body rotates from a folded position to an unfolded position or from an unfolded position to a folded position, so as to form a locking connection with the adjacent cabinet body through the locking member; a locking member for inserting into the locking groove.
[0019] Further preferably, the locking groove includes: a card slot area for engaging the locking member, and a locking area communicated with the card slot area, wherein the area of the second through hole area covered by the locking area is smaller than the area of the first through hole area covered by the card slot area;
[0020] And / or, the locking groove is arranged in the peripheral area adjacent to the groove body;
[0021] And / or, locking grooves are arranged in the adjacent areas of two adjacent surfaces;
[0022] And / or, the locking member is a magnetic attraction member;
[0023] And / or, the cabinet body is an express delivery storage cabinet;
[0024] And / or, pulleys are arranged at the bottom of the cabinet body.
[0025] Further preferably, the locking member includes: a connection body, a protrusion portion for inserting into the card slot area, and a sliding connection portion with one end connected to the protrusion portion and the other end connected to the connection body and used for passing through the second through hole area;
[0026] Wherein, the sliding connection portion is used to slide down into the second through hole area after following the protrusion portion through the first through hole area;
[0027] And / or, the second through hole area is only used for passing through the sliding connection portion.
[0028] This application also provides a cabinet body structure, including:
[0029] At least two or more cabinet bodies;
[0030] A rotating assembly disposed between two adjacent cabinet bodies and used to form a rotating shaft connection;
[0031] Wherein, after the two adjacent cabinet bodies are rotated from the unfolded position to the folded position, at least part of the two adjacent surfaces between them overlap each other.
[0032] Further preferably, the rotating assembly includes: at least one set of hinge members or pivot connecting members for connecting the two cabinet bodies.
[0033] Further preferably, the rotating assembly includes: more than two hinge members, and they are arranged at an axial interval along the rotation axis direction of the two adjacent cabinet bodies;
[0034] And / or, each hinge member is arranged at equal intervals.
[0035] Further preferably, when there are more than three cabinet bodies, each rotating assembly is arranged in a staggered manner on the two adjacent cabinet bodies to form the area of the rotating shaft connection;
[0036] And / or, the area on the cabinet body for forming the rotating shaft connection is located on the opposite sides of the cabinet body and is arranged along the diagonal direction.
[0037] Further preferably, it further includes: a locking mechanism for making the two adjacent cabinet bodies be locked and connected after being rotated to the unfolded position or the folded position.
[0038] Further preferably, the locking mechanism includes: a locking groove opened on the cabinet body, and a locking member for inserting into the locking groove;
[0039] Wherein, the locking member is used to respectively snap into the locking grooves of the corresponding cabinet bodies at the opposite ends after the two adjacent cabinet bodies are rotated from the folded position to the unfolded position, so as to realize the locking connection of the adjacent cabinet bodies.
[0040] Further preferably, the locking groove includes: a card slot area for snapping in the locking member, and a locking area communicated with the card slot area. Among them, the area of the first through-hole area covered by the locking area is smaller than the area of the second through-hole area covered by the card slot area;
[0041] And / or, the locking groove is arranged in the peripheral area adjacent to the groove body;
[0042] And / or, locking grooves are arranged in the adjacent areas of the two adjacent surfaces;
[0043] And / or, the locking member is a magnetic attracting member;
[0044] And / or, the cabinet body is an express storage cabinet.
[0045] Further preferably, the locking member includes: a connecting body, a convex portion for inserting into the card slot area, and a sliding connecting portion having one end connected to the convex portion and the other end connected to the connecting body and for passing through the second through-hole area; wherein, the sliding connecting portion is configured to slide downward into the second through-hole area after following the convex portion through the first through-hole area;
[0046] and / or, the second through-hole area is only used for passing through the sliding connecting portion;
[0047] and / or, the convex portion of the locking member is a magnetic portion.
[0048] Further preferably, it further includes: a groove body opened on the cabinet body, at least part of which is used for arranging a rotating assembly; wherein, the groove body is opened on opposite sides of the cabinet body.
[0049] Further preferably, groove bodies are opened on the surface of the cabinet body for forming the mutually overlapping surfaces and on the opposite surface;
[0050] The groove bodies are opened on opposite sides of the cabinet body;
[0051] and / or, the groove bodies are located on the lateral surfaces of the cabinet body where no storage window is provided;
[0052] and / or, there are multiple groove bodies, which are arranged at intervals along the axial direction of the cabinet body for forming the shaft connection;
[0053] and / or, the groove bodies are arranged at equal intervals.
[0054] Further preferably, the groove body is a hollow area opened at the corner edge line of the cabinet body;
[0055] and / or, the groove bodies are arranged at intervals along the height direction of the cabinet body;
[0056] and / or, the groove bodies are arranged in a matrix in space;
[0057] and / or, the groove bodies are arranged at equal intervals along the height direction of the cabinet body.
[0058] This application also provides a vehicle-mounted express cabinet, including: the above cabinet body structure.
[0059] Further preferably, at least part of the side of the cabinet body is provided with an automatically telescopic lifting rod, which is used to lift each cabinet body to a preset height, so that a loading and unloading space for a transport vehicle to pass through is formed under the bottom of each cabinet body, and after the loading platform of the transport vehicle moves into the loading and unloading space, each cabinet body is lowered onto the loading platform and then automatically retracts to the initial position.
[0060] Compared with the prior art, the present application can facilitate the transportation, loading and unloading of the cabinet body. BRIEF DESCRIPTION OF THE DRAWINGS
[0061] Other features, objects and advantages of the present application will become more apparent by reading the following detailed description of the non-limiting embodiments with reference to the accompanying drawings:
[0062] Figure 1 A three-dimensional structure schematic diagram showing the cabinet body structure in the first specific embodiment of the present application;
[0063] Figure 2 A three-dimensional structure schematic diagram showing the folded state of two cabinet body structures in the first specific embodiment of the present application;
[0064] Figure 3 A structure schematic diagram showing the locking groove in the first specific embodiment of the present application;
[0065] Figure 4 A structure schematic diagram showing the locking member in the first specific embodiment of the present application;
[0066] Figure 5 A front structure schematic diagram showing the folding state of the cabinet body structure in the second specific embodiment of the present application;
[0067] Figure 6 A back structure schematic diagram showing the folding state of the cabinet body structure in the second specific embodiment of the present application;
[0068] Figure 7 A back structure schematic diagram showing the folding state of the cabinet body structure in the second specific embodiment of the present application;
[0069] Figure 8 A state schematic diagram showing the folded and unfolded state of the cabinet body structure in the second specific embodiment of the present application;
[0070] Figure 9 A state schematic diagram showing the fully unfolded state of the cabinet body structure in the second specific embodiment of the present application.
[0071] Figure 10 A state schematic diagram showing another folded state of the cabinet body structure in the second specific embodiment of the present application;
[0072] Figure 11 A structure schematic diagram showing the on-vehicle express cabinet in the third specific embodiment of the present application;
[0073] Figure 12 A state schematic diagram showing the loading state of the on-vehicle express cabinet in the third specific embodiment of the present application;
[0074] The same or similar reference numerals in the drawings represent the same or similar components.
[0075] Reference numerals: cabinet structure 10, cabinet 10a, cabinet 10b, cabinet 10c, cabinet 10d, tank 101, rotating assembly 102, locking member 103, connecting body 1031, convex portion 1032, sliding connection portion 1033, locking groove 105, card slot area 1051, locking area 1052, first through-hole area 1053, second through-hole area 1054, lifting rod assembly 106, lifting cylinder body 1061, lifting push rod 1062, pulley 107, transport vehicle 20, loading platform 201. Detailed implementation manners
[0076] The concept, specific structure and technical effects of the present utility model will be further described below in conjunction with the accompanying drawings to fully understand the purpose, features and effects of the present utility model.
[0077] Embodiment 1
[0078] This embodiment provides a cabinet structure, as Figure 1 and Figure 2 shown. The cabinet structure 10 includes: a cabinet: a tank 101 opened on the cabinet, etc. Among them, at least part of the tank 101 is used to arrange a rotating assembly for forming a shaft connection with an adjacent cabinet, so that after the adjacent cabinets are rotated from the unfolded position to the folded position, as Figure 2 shown, at least part of two adjacent surfaces overlap each other.
[0079] According to the structure of the above cabinet structure 10, in practical applications, folding two or more cabinets by means of arranging a rotating assembly not only reduces the weight of a single moving unit, but also can adapt to different spaces through folding, thus further facilitating the transportation of the cabinet structure 10 and saving the loading and unloading space of the vehicle body.
[0080] In addition, the express cabinet assembled by the above cabinet structure 10 can be composed of single movable cabinets with large volume and capacity, and can be placed randomly through folding and unfolding, thus better meeting the needs of customers.
[0081] Further preferably, the tank 101 is opened on both the surface of the cabinet for forming the overlapping surface and the opposite surface.
[0082] Further preferably, for the convenience of actual assembly and design requirements, the above tank 101 is opened on opposite sides of the cabinet.
[0083] Further preferably, the tank 101 is located on the lateral surface of the cabinet where no storage window is provided.
[0084] Further preferably, there are a plurality of the groove bodies 101, and they are arranged at intervals along the axial direction for forming the shaft connection on the cabinet body.
[0085] Further preferably, the groove bodies 101 are arranged at equal intervals.
[0086] Further preferably, the areas on the cabinet body for arranging the rotating assembly are located on the opposite sides of the cabinet body and are arranged along the diagonal direction.
[0087] Further preferably, the groove bodies 101 are arranged on both opposite sides of the surface of the above cabinet body.
[0088] Further preferably, the area on the surface where the groove body 101 is arranged is adjacent to an adjacent surface.
[0089] Further preferably, the groove body 101 is a hollowed-out area opened at the edge of the cabinet body. For example, the hollowed-out area penetrates at least an adjacent other surface to be used for arranging the rotating assembly 102, such as the hinge piece of the hinge. With this structure, it can be better realized that the rotating shaft of the rotating assembly is located between the gaps of two adjacent cabinet bodies, or the rotating shaft of the rotating assembly is hidden in the groove body 101, so as to facilitate the folding between adjacent cabinet bodies and avoid the contact between the rotating shaft and the outer surface of the cabinet body.
[0090] Further preferably, the groove bodies 101 are arranged in a matrix in space so that any two cabinet bodies can be connected by a rotating shaft through arranging a rotating assembly.
[0091] Obviously, it should be noted that the groove bodies 101 in this embodiment can also be arranged at unequal intervals according to requirements, and no specific limitation and elaboration will be made here.
[0092] Further preferably, the above cabinet body structure 10 further includes: a rotating assembly 102 arranged in some of the groove bodies 101. Among them, at least one group of the rotating assemblies is a hinge piece or a pivot connecting piece (not shown in the figure) for connecting two cabinet bodies.
[0093] Further preferably, as Figure 2 and Figure 3 shown, the above cabinet body structure 10 further includes: a locking groove 105 opened on the cabinet body, which is used to engage with a locking piece 103 after adjacent cabinet bodies are rotated from the folded position to the unfolded position, or from the unfolded position to the folded position, so as to form a locking connection with the adjacent cabinet body through the locking piece 103. The above cabinet body structure 10 further includes: a locking piece 103 for inserting into the locking groove 105. Through the mutual cooperation of the above locking piece 103 and the locking groove 105, the locking and disassembly connection of the cabinet body can be realized without using the method of bolting and drilling holes.
[0094] Further preferably, as shown in the figure, the locking groove 105 includes: a card slot area 1051 for engaging with the locking member 103, and a locking area 1052 communicating with the card slot area 1051. Among them, the area of the second through-hole area 1054 covered by the locking area 1052 is smaller than the area of the first through-hole area 1053 covered by the card slot area 1051. Through the above structure, not only can the mutual locking between the locking member 103 and the locking groove 105 be realized, but also the automatic locking between the locking member 103 and the locking groove 105 can be achieved by virtue of the different sizes of the through-hole areas corresponding to the card slot area 1051 and the locking area 1052, and it can be prevented from disengaging due to vibration under the action of external force during transportation or movement.
[0095] Further preferably, in order to facilitate the orderly or adaptable locking of different areas of the cabinet body according to requirements, the locking groove 105 is arranged adjacent to the peripheral area of the groove body 101, such as below, on the left side, on the right side, or on the upper side of the groove body 101. Through this structure, not only the installation of the design is facilitated, but also it is beneficial to form a good constraint on the area where the locking groove 105 with the rotating component is arranged, and the length of the locking member 103 is saved.
[0096] Further preferably, locking grooves 105 are provided in the adjacent areas of two adjacent surfaces to facilitate the user to lock and connect the front or side of the folding positions of each cabinet body according to requirements.
[0097] Further preferably, in order to facilitate locking and disassembly, the above-mentioned locking member 103 can be a magnetic part, which is usually adsorbed to prevent the locking member 103 from disengaging from the locking groove, and the fixed position of the locking member 103 in the locking groove can be adjusted in real time.
[0098] Further preferably, the above-mentioned cabinet body is an express storage cabinet.
[0099] Further preferably, a pulley 107 is provided at the bottom of the cabinet body to facilitate the movement of the cabinet body structure 10, and the pulley 107 can preferably be a universal wheel.
[0100] Further preferably, the locking member 103 includes: a connecting body 1031, a protruding portion 1032 for inserting into the card slot area 1051, and a sliding connecting portion 1033 with one end connected to the protruding portion 1032 and the other end connected to the connecting body 1031 and for passing through the second through-hole area 1054. Among them, the sliding connecting portion 1033 is configured to slide down into the second through-hole area 1054 after following the protruding portion 1032 through the first through-hole area 1053. With this structure, after the user inserts the protruding portion 1032 of the locking member 103 into the card slot area 1051, by means of the self-weight of the locking member 103 or moving the self-locking member, the sliding connecting portion 1033 can slide into the second through-hole area 1054, and then the protruding portion 1032 of the locking member 103 cannot be pulled out through the second through-hole area 1054, thereby achieving a good clamping or magnetic clamping.
[0101] In addition, the connecting body 1031 in this embodiment is preferably a plate-shaped body. Obviously, the connecting body 1031 can also be set as a bent member at a corresponding angle according to actual needs, such as a bent member at 90 degrees or a bent member at 60 degrees, to meet the fixing requirements of two adjacent cabinets in different scenarios. Here, the bending angle of the connecting body 1031 is not specifically limited and will not be elaborated.
[0102] Further preferably, the second through-hole area 1054 is only used for passing through the sliding connecting portion 1033.
[0103] Further preferably, the protruding portion 1032 is a magnetic part.
[0104] Further preferably, the cabinet structure 10 further includes: a groove body 101 opened on the cabinet for arranging a rotating assembly. Among them, the groove body 101 is opened on opposite sides of the cabinet. By opening the groove body 101 on the surface of the cabinet structure 10, the rotating assembly can be selectively installed according to the actual position, which is not only beneficial for the adjacent cabinets to achieve surface-to-surface coincidence after being folded and overlapped, but also prevents the rotating assembly from protruding from the surface of the cabinet, resulting in a large gap during folding, or scratching the surface of the cabinet, or forming a pressing dent, etc., which affects the surface appearance.
[0105] Further preferably, the surfaces of the cabinet for forming the mutually overlapping surfaces and the opposite surfaces are both provided with the groove body 101.
[0106] Further preferably, the groove body 101 is opened on opposite sides of the cabinet.
[0107] Further preferably, the groove body 101 is located on the lateral surface of the cabinet where no storage window is provided.
[0108] Further preferably, there are a plurality of the groove bodies 101, and they are arranged at intervals along the axis for forming the rotation connection on the cabinet body.
[0109] Further preferably, the groove bodies 101 are arranged at equal intervals, for example, arranged at intervals along the height direction of the cabinet body.
[0110] Embodiment 2
[0111] This application also provides a cabinet body structure, as Figures 5 to 7 shown, the cabinet body structure 10 includes: at least two or more cabinet bodies, a rotating assembly 102 arranged between two adjacent cabinet bodies and used for forming a rotation connection, etc.
[0112] Among them, when two adjacent cabinet bodies rotate from the unfolded position to the folded position, or after rotating from the unfolded position to the folded position, for example, from Figure 9 the unfolded position shown rotates to Figure 7 or Figure 10 the folded position shown, at least part of two adjacent faces between them overlap each other. This embodiment only takes four cabinet bodies, for example Figure 5 the cabinet body 10a, the cabinet body 10b, the cabinet body 10c, and the cabinet body 10d in it as an example for illustration. And, the unfolded position only takes Figure 9 the one-line arrangement in it as an example for illustration, and does not limit the specific angle.
[0113] Through the cabinet body structure 10, two or three or more cabinet bodies can be folded by means of arranging the rotating assembly 102, which not only reduces the weight of a single moving unit, but also can adapt to different spaces through folding, thus further facilitating the transportation of the cabinet body structure 10 and saving the loading and unloading space of the vehicle body.
[0114] In addition, the express cabinet assembled by the above cabinet body structure 10 can be composed of a single movable cabinet body with a large volume and capacity, and can be placed randomly through folding and unfolding, thus being able to better meet the needs of customers.
[0115] Specifically, in order to meet the assembly and design requirements in practical applications, the rotating assembly 102 includes: at least one group of hinge pieces or pivot connecting pieces for connecting two cabinet bodies.
[0116] Further preferably, the rotating assembly 102 includes: two or more hinge pieces, and they are arranged at intervals along the axis of the rotation axis of two adjacent cabinet bodies.
[0117] Further preferably, each hinge piece is arranged at equal intervals.
[0118] Further preferably, when there are three or more cabinet bodies, such as Figures 6 to 8As shown, each rotating component 102 is arranged in a staggered manner on two adjacent cabinets to form the area where the rotating shafts are connected. Through this layout structure, each cabinet can be folded in an S-shaped manner as shown in Figure 2 or folded in half in the manner shown in Figure 3 , for example, folded in a rectangular or trapezoidal shape as shown in Figure 10 . That is to say, when folding, it can be folded into different volume forms according to needs to maximize the use of the on-vehicle space or placement space.
[0119] Further preferably, in order to enable two adjacent cabinets to be folded and overlapped to the maximum extent, the areas on the cabinets for forming the rotating shaft connection are located on opposite sides of the cabinets and are arranged along the diagonal direction.
[0120] Further preferably, the cabinet structure 10 further includes: a locking mechanism for locking and connecting two adjacent cabinets after they are rotated to the unfolded position or the folded position. Through the locking mechanism, when the folded cabinets are unfolded after loading or unloading the on-vehicle storage cabinet, they can be locked according to needs to prevent them from shaking and causing collision between two adjacent cabinets and damaging the surface of the cabinets.
[0121] Further preferably, referring to the attachments shown in the first embodiment above Figure 3 and the attachments Figure 4 , the locking mechanism includes: a locking slot 105 opened on the cabinet, and a locking member 103 for inserting into the locking slot 105.
[0122] Among them, the locking member 103 is used to respectively engage the opposite ends into the locking slots 105 of the corresponding cabinets after two adjacent cabinets are rotated from the folded position to the unfolded position, so as to realize the locking connection of the adjacent cabinets. Through the mutual cooperation of the locking member 103 and the locking slot 105, the locking and disassembly connection of the cabinets can be realized without using the method of drilling holes with bolts.
[0123] Further preferably, the above locking slot 105 includes: a card slot area 1051 for engaging the locking member 103, and a locking area 1052 communicating with the card slot area 1051. Among them, the area of the first through-hole area 1053 covered by the locking area 1052 is smaller than the area of the second through-hole area 1054 covered by the card slot area 1051. Through the above structure, not only can the locking member 103 and the locking slot 105 be locked to each other, but also the automatic locking of the locking member 103 and the locking slot 105 can be realized by virtue of the different sizes of the through-hole areas corresponding to the card slot area 1051 and the locking area 1052, and it can be prevented from disengaging due to vibration under the action of external force during transportation or movement.
[0124] Further preferably, locking grooves 105 are provided in the adjacent regions of the two adjacent surfaces, so as to facilitate the user to lock and connect the folding positions of the cabinets frontally or laterally according to needs.
[0125] Further preferably, for the convenience of locking and disassembling, the locking member 103 can be a magnetic member, which prevents the locking member 103 from detaching from the locking groove 105 by means of normal adsorption, and can adjust the fixed position of the locking member 103 in the locking groove 105 in real time.
[0126] Further preferably, the cabinet is an express storage cabinet.
[0127] Further preferably, referring to the attachment shown in the first embodiment above Figure 3 and attachment Figure 4 The locking member 103 includes: a connection body 1031, a convex portion 1032 for inserting into the card slot area 1051, and a sliding connection portion 1033 connected to one end of the convex portion 1032 and the other end connected to the connection body 1031 and for passing through the second through-hole area 1054. Wherein, the sliding connection portion 1033 is used to slide down into the second through-hole area 1054 after following the convex portion 1032 through the first through-hole area 1053. With this structure, after the user inserts the convex portion 1032 of the locking member 103 into the card slot area 1051, by means of the self-weight of the locking member 103 or moving the self-locking member, the sliding connection portion 1033 can slide into the second through-hole area 1054, and then the convex portion 1032 of the locking member 103 cannot be pulled out through the second through-hole area 1054, so as to achieve good clamping or magnetic clamping.
[0128] In addition, the connection body 1031 in this embodiment is preferably a plate-shaped body. Obviously, the connection body 1031 can also be set to a corresponding angle according to actual needs, such as a 90-degree bending member or a 60-degree bending member, to meet the fixing requirements of two adjacent cabinets in different scenarios. Here, the bending angle of the connection body 1031 is not specifically limited and elaborated.
[0129] Further preferably, the second through-hole area 1054 is only used for passing through the sliding connection portion 1033.
[0130] Further preferably, the convex portion 1032 is a magnetic part.
[0131] Further preferably, the cabinet structure 10 further includes: a groove 101 formed in the cabinet for arranging a rotating assembly 102. Wherein, the grooves 101 are formed on opposite sides of the cabinet. By forming the grooves 101 on the surface of the cabinet structure 10, the rotating assembly 102 can be selectively installed according to the actual position, which is not only beneficial to the surfaces of the cabinets of the cabinet structure 10 being overlapped face to face after folding and overlapping, but also prevents the rotating assembly 102 from protruding from the surface of the cabinet, resulting in a large gap during folding, or scratching the surface of the cabinet, or forming a pressing dent, etc., which affects the surface appearance.
[0132] Further preferably, grooves 101 are formed on both the surface of the cabinet for forming the overlapping surface and the opposite surface.
[0133] Further preferably, the grooves 101 are formed on opposite sides of the cabinet.
[0134] Further preferably, the grooves 101 are located on the lateral surface of the cabinet where no storage window is provided, so as to facilitate folding while avoiding affecting the appearance of the front of the cabinet.
[0135] Further preferably, there are multiple grooves 101, and they are arranged at intervals along the axial direction for forming the shaft connection on the cabinet.
[0136] Further preferably, the grooves 101 are arranged at equal intervals, for example, arranged at intervals along the height direction of the cabinet.
[0137] Further preferably, the groove 101 is a hollowed-out area formed at the edge of the cabinet. For example, the hollowed-out area penetrates at least the adjacent other surface, so as to arrange the hinge plate of the hinge part. Through this structure, the rotating shaft of the hinge part can be preferably located between the gaps between adjacent cabinets, or the rotating shaft of the hinge part is hidden in the groove 101, so as to facilitate the folding between adjacent cabinets and avoid the contact between the rotating shaft and the outer surface of the cabinet.
[0138] Further preferably, the grooves 101 are arranged in a matrix in space, so that any two cabinets can be connected by a rotating shaft through arranging the rotating assembly 102.
[0139] Obviously, it should be noted that the grooves 101 in this embodiment can also be arranged at unequal intervals according to requirements, and no specific limitation and elaboration will be made here.
[0140] In addition, not all the grooves 101 in this embodiment need to be provided with the rotating assembly 102. Some can be provided, or all can be arranged to meet the requirements of shaft connection.
[0141] Further preferably, as Figure 7 shown, in order to facilitate the orderly locking of different areas of the cabinet body or the locking adapted to requirements, the locking groove 105 is arranged adjacent to the peripheral area of the groove body 101, such as below, left, right, or above the groove body 101. This structure not only facilitates the installation of the design, but also helps to form a good constraint on the area where the locking groove 105 with the rotating component 102 is arranged, and saves the length of the locking piece 103.
[0142] Embodiment III
[0143] This embodiment also provides a vehicle-mounted express cabinet, including: the cabinet body structure 10 in any of the above embodiments.
[0144] Further preferably, as Figure 11 shown, at least part of the side of the cabinet body is provided with an automatically telescopic lifting rod, which is used to lift each cabinet body to a preset height, so as to form a loading and unloading space for the transportation vehicle 20 to pass under the bottom of each cabinet body, and after the loading platform 201 of the transport vehicle moves into the loading and unloading space, each cabinet body descends to the loading platform 201 and then automatically retracts to the initial position.
[0145] By setting a lifting mechanism on the cabinet body structure 10, during the transportation of the vehicle-mounted express cabinet, there is no need to use manual methods for disassembly or loading and unloading, etc. After the cabinet body structure 10 is lifted from the ground or a preset loading platform 201 to a preset height by the lifting mechanism, a loading and unloading space for the transportation vehicle 20 to pass under the bottom of the cabinet body structure 10 is formed, and then the cabinet body structure 10 is lowered to the corresponding height by the lifting mechanism, and the automatic loading and unloading of the cabinet body structure 10 can be realized, especially suitable for the loading and unloading of large cabinet bodies or empty cabinet bodies, as well as the synchronous loading and unloading of multiple cabinet body structures 10, improving the efficiency and portability of loading and unloading and transportation, saving costs, and also facilitating the subsequent unmanned loading and unloading management of the vehicle-mounted express cabinet.
[0146] Further preferably, as Figure 12 shown, for the convenience of installation and cost saving, the above vehicle-mounted express cabinet includes: a plurality of lifting rod assemblies 106 provided on the cabinet body structure 10 and having the above-mentioned lifting rods.
[0147] Further preferably, the lifting rod assembly 106 includes: a lifting push rod, and a lifting cylinder body 1061 for driving the lifting push rod to perform lifting motion. Among them, the lifting cylinder body 1061 is arranged on the cabinet body structure 10. Through this structure, for example, through the synchronous lifting of the lifting push rods, the synchronous lifting of the cabinet body structure 10 is realized.
[0148] Further preferably, the above-mentioned lifting rod assemblies 106 are arranged in a rectangle.
[0149] Further preferably, the lifting rod assemblies 106 are hidden in the cabinet structure 10. With this structure, not only the transportation of the cabinet structure 10 can be facilitated, but also the folding of the cabinet structure 10 can be facilitated to save space.
[0150] Further preferably, the lifting cylinder body 1061 is a hydraulically driven cylinder body or an electrically driven cylinder body.
[0151] Further preferably, the number of the lifting rod assemblies 106 is four, and only this example is used for illustration.
[0152] Further preferably, the lifting rod assemblies 106 are located in the diagonal areas of the cabinet structure 10.
[0153] Obviously, it should be noted that in this embodiment, the lifting rod assemblies 106 can also be arranged in a triangle. For example, the number of the lifting rod assemblies 106 is set to three. Here, no specific limitation and elaboration will be made.
[0154] Further preferably, the cabinet structure 10 includes: mounting grooves opened along its circumference for mounting the lifting cylinder body 1061 to implement a hidden design.
[0155] Further preferably, the lifting rod assembly 106 further includes: a driving motor for driving the lifting push rod is built in the lifting cylinder body 1061, as well as a driving assembly, etc.
[0156] Further preferably, a first sensor and a second sensor for triggering the lifting position of the lifting rod are built in or externally mounted on the lifting cylinder body 1061 to control the lifting height of the lifting rod through the first sensor and the second sensor. In this embodiment, only the built-in sensor is used as an example for illustration.
[0157] Here, it should be noted that when the lifting rod in this embodiment is in the initial state, it is disengaged from the ground, and the bottoms of the lifting rod assemblies 106 are all on the same plane.
[0158] In addition, it is worth mentioning that as Figure 11 shown, the width W of the loading and unloading space in this embodiment is preferably 1.5 to 2 meters.
[0159] The height G of the loading and unloading space in this embodiment is preferably 0.6 meters to 1 meter.
[0160] The length L of the loading and unloading space in this embodiment is preferably the side length of the cabinet structure.
[0161] For those skilled in the art, it is obvious that the present application is not limited to the details of the above-mentioned exemplary embodiments, and the present application can be implemented in other specific forms without departing from the spirit or basic characteristics of the present application. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present application is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present application. Any reference signs in the claims should not be construed as limiting the claims involved. In addition, it is obvious that the word "comprising" does not exclude other units or steps, and the singular does not exclude the plural. The multiple units or devices stated in the apparatus claims can also be implemented by one unit or device through software or hardware. The words such as "first" and "second" are used to denote names and do not represent any particular order. Those of ordinary skill in the art should understand that the technical solutions of the present utility model can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present utility model, and all such modifications and replacements should be covered within the scope of the claims of the present utility model.
Claims
1. A cabinet structure, characterized in that: include: Cabinet: The groove body opened on the cabinet body is used to set the rotating assembly to form a rotating shaft connection with the adjacent cabinet body, so that after the adjacent cabinet body is rotated from the unfolded position to the folded position, the two adjacent surfaces between each other at least partially overlap with each other.
2. The cabinet structure according to claim 1, characterized in that: The cabinet is used to form the mutually overlapping surfaces, and the groove is provided on the other opposite surface.
3. The cabinet structure according to claim 1, characterized in that: The trough is opened on two opposite sides of the cabinet; And / or, the trough is located on a lateral surface of the cabinet body where no storage window is provided; And / or, the grooves are multiple and are arranged at intervals along the axial direction of the cabinet for forming the shaft connection; And / or, the slots are arranged at equal intervals.
4. The cabinet structure according to claim 1, characterized in that: The areas on the cabinet for arranging the rotating components are located on opposite sides of the cabinet and are arranged along a diagonal direction.
5. The cabinet structure according to claim 1, characterized in that: The grooves are disposed on opposite sides of the surface; The area on the surface where the groove is disposed is adjacent to an adjacent surface.
6. The cabinet structure according to claim 1, characterized in that: Also includes: A rotating assembly, wherein the rotating assembly comprises at least one set of hinges or pivot connections for connecting two cabinets.
7. The cabinet structure according to any one of claims 1 to 6, characterized in that: Also includes: The locking groove formed on the cabinet is used to engage the locking member after the adjacent cabinet rotates from the folded position to the unfolded position, or rotates from the unfolded position to the folded position, so as to form a locking connection with the adjacent cabinet through the locking member; A locking piece is used to be inserted into the locking groove.
8. The cabinet structure according to claim 7, characterized in that: The locking groove comprises: a slot area for locking the locking member, and a locking area connected to the slot area, wherein the area of the second through hole area covered by the locking area is smaller than the area of the first through hole area covered by the slot area; and / or, the locking groove is arranged adjacent to a peripheral area of the groove body; and / or, the adjacent areas of two adjacent surfaces are both provided with locking grooves; And / or, the locking member is a magnetic member; And / or, the cabinet is a courier storage cabinet; And / or, a pulley is provided at the bottom of the cabinet.
9. The cabinet structure according to claim 8, characterized in that: The locking member comprises: a connecting body, a protrusion for inserting into the slot area, a sliding connection part having one end connected to the protrusion and the other end connected to the connecting body and used to pass through the second through hole area; Wherein, the sliding connection portion is used to follow the protrusion through the first through hole area and then slide downward into the second through hole area; And / or, the second through hole area is only used for passing the sliding connection part.
10. A cabinet structure, characterized in that: include: At least two cabinets; A rotating assembly disposed between two adjacent cabinets and used to form a rotating shaft connection; Wherein, after the two adjacent cabinets are rotated from the unfolded position to the folded position, the two adjacent surfaces between them at least partially overlap with each other.
11. The cabinet structure according to claim 10, characterized in that: The rotating assembly includes: at least one set of hinges or pivot connections for connecting two cabinets.
12. The cabinet structure according to claim 10, characterized in that: The rotating assembly comprises: more than two hinges, which are arranged at intervals along the axial direction of the rotation axis of two adjacent cabinets; And / or, the hinge parts are arranged at equal distances.
13. The cabinet structure according to any one of claims 10 to 12, characterized in that: When there are more than three cabinets, the rotating components are arranged in a staggered manner on two adjacent cabinets to form the area where the rotating shaft is connected; And / or, the areas on the cabinet for forming the shaft connection are located on opposite sides of the cabinet and are arranged along a diagonal direction.
14. The cabinet structure according to claim 13, characterized in that: Also includes: A locking mechanism is used to lock and connect two adjacent cabinets after they are rotated to the unfolded position or the folded position.
15. The cabinet structure according to claim 14, characterized in that: The locking mechanism comprises: a locking groove formed on the cabinet body, and a locking member inserted into the locking groove; The locking member is used to respectively snap into the locking grooves of the corresponding cabinets at two opposite ends after the two adjacent cabinets are rotated from the folded position to the unfolded position, thereby realizing a locking connection between the adjacent cabinets.
16. The cabinet structure according to claim 15, characterized in that: The locking groove comprises: a slot area for locking the locking member, and a locking area connected to the slot area, wherein the area of the first through hole area covered by the locking area is smaller than the area of the second through hole area covered by the slot area; and / or, the locking groove is arranged adjacent to the peripheral area of the groove body; and / or, the adjacent areas of two adjacent surfaces are both provided with locking grooves; And / or, the locking member is a magnetic member; And / or, the cabinet is a express storage cabinet.
17. The cabinet structure according to claim 16, characterized in that: The locking parts include: A connecting body, a protrusion for inserting into the card slot area, one end of which is connected to the protrusion and the other end of which is connected to the connecting body and is used to pass through a sliding connection part of the second through hole area; wherein the sliding connection part is used to follow the protrusion through the first through hole area and then slide downward into the second through hole area; and / or, the second through hole area is only used for passing the sliding connection part; And / or, the protruding portion of the locking member is a magnetic portion.
18. The cabinet structure according to claim 10, characterized in that: Also includes: At least a portion of the groove body opened on the cabinet body is used to set the rotating component; wherein the groove body is opened on two opposite sides of the cabinet body.
19. The cabinet structure according to claim 18, characterized in that: The cabinet body is used to form the mutually overlapping surface, and a groove is provided on the other surface opposite to the cabinet body; The trough is opened on two opposite sides of the cabinet; And / or, the trough is located on a lateral surface of the cabinet body where no storage window is provided; And / or, the grooves are multiple and are arranged at intervals along the axial direction of the cabinet for forming the shaft connection; And / or, the slots are arranged at equal intervals.
20. The cabinet structure according to claim 18, characterized in that: The trough body is a hollow area opened at the corner edge of the cabinet body; And / or, the troughs are arranged at intervals along the height direction of the cabinet; And / or, the tanks are spatially arranged in a matrix; And / or, the troughs are arranged equidistantly along the height direction of the cabinet.
21. A vehicle-mounted express cabinet, characterized in that: include: The cabinet structure according to any one of claims 1 to 20.
22. The vehicle-mounted express cabinet according to claim 21, characterized in that: At least part of the cabinets are provided with automatically retractable lifting rods on their sides, which are used to lift each cabinet to a preset height so that a loading and unloading space for transport vehicles to pass through is formed under the bottom of each cabinet, and after the loading platform of the transport vehicle moves into the loading and unloading space, each cabinet is lowered onto the loading platform and then automatically retracted to its initial position.