Container with assembling structure
Through the combination of side panel folding design and articulated plug-in structure, the problems of low container disassembly and assembly efficiency and insufficient structural strength are solved, and rapid disassembly and assembly and high-strength container assembly are achieved, meeting the container transportation needs.
Patent Information
- Application Number
- CN202510969085.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-15
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2045-07-15
AI Technical Summary
The existing container structure cannot be disassembled and assembled efficiently, resulting in high turnover costs for empty boxes and large storage area. The existing detachable containers have low connection strength and short service life, making it difficult to meet transportation needs.
The side panel is folded inwardly, combined with the hinged structure and the plug-in structure. The hinged structure remains loose when not loaded. The plug-in structure bears the main connection load, assists assembly and alignment through elastic structure, uses reinforced frames and frames to improve overall strength, and achieves rapid disassembly and assembly through a small number of fasteners.
It improves the efficiency and structural strength of container disassembly and assembly, extends the service life of the articulated structure, reduces the cumbersomeness of the disassembly and assembly process, meets the service life and structural strength requirements of the container, and improves the mechanized disassembly and assembly degree of the overall structure.
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Figure CN120462784A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of containers, in particular to a container with an assembling structure. Background Art
[0002] Existing containers generally adopt an integral welded or riveted structure. The integral structure is usually non-disassembly and has high strength, but the empty container turnover efficiency is low. On the one hand, it is reflected in the overseas transportation environment. Since the containers cannot be disassembled, the empty container turnover cost is high, which seriously increases the operating costs. On the other hand, it is reflected in the storage and warehousing pressure. The stacking of empty containers occupies a large area, resulting in a continuous increase in storage costs at ports and logistics hubs. In this environment, the demand for removable containers has emerged.
[0003] At present, there are two main types of detachable containers. One is split disassembly, which requires the side panels, top, bottom panels, front and rear panels to be completely disassembled. The disassembly and reassembly processes are tedious and complicated, time-consuming, and require a large number of fasteners, which seriously reduces the efficiency of container disassembly and assembly. The other is folding disassembly, which uses the method of folding the side panels and storing them between the top and bottom panels to reduce the tediousness of the disassembly and assembly process. However, it requires a hinged connection method for connection. The hinged structure bears the main connection load, which not only has low connection strength and large loss, but also has low service life and safety of use, making it difficult to meet the transportation needs of containers. Summary of the Invention
[0004] The present invention provides a container with an assemblable structure, comprising a top plate, a bottom plate, a front plate, a rear plate, a hinge structure, a plug-in structure and two inwardly foldable side plates; the two side plates, the top plate and the bottom plate constitute a foldable main box body; the side plates comprise an upper half plate and a lower half plate; the hinge structure and the plug-in structure are arranged at points between the upper half plate and the lower half plate; between the upper half plate and the top plate; and between the lower half plate and the bottom plate; wherein elastic structures are arranged between the hinge structure and the upper half plate, between the hinge structure and the lower half plate, and between the top plate and the bottom plate; when the main box body is spliced and unfolded, the plug-in structure bears the main connection load, and the hinge structure does not bear the load. The elastic structure is in a free state; when the main box body is folded and stored, the plug-in structure is released from the connection state, the hinged structure maintains the connection between the upper half panel, the lower half panel, the top panel and the bottom panel, and the elastic structure stores energy to assist the plug-in structure in aligning when the main box body is unfolded; reinforcement frames are fixedly installed on the inner sides of the front panel and the rear panel, and the reinforcement frames limit the ends of the top panel, the bottom panel and the side panels when spliced and unfolded; a reinforcement frame is hinged on the inner side of the side panel, and the reinforcement frame switches between a crossed and a non-crossed state; in the crossed state, the two ends of the reinforcement frame are detachably connected to the corresponding reinforcement frames, and the cross-overlapping area is detachably connected to the side panel.
[0005] In one possible implementation, the plug-in structure includes a plug-in socket and a plug-in connector, and a plurality of accommodating cavities are provided on the plug-in socket and the plug-in connector. When the plug-in socket and the plug-in connector are plugged in, the accommodating cavities on the two are symmetrical in the upper and lower directions and constitute a sealed cavity, and the hinged structure and the elastic structure are both located in the sealed cavity.
[0006] In a possible implementation, both the socket and the plug connector are provided with an external interface, and the external interface is used for externally connecting a locking member, so that the socket and the plug connector are fastened and locked together by the locking member.
[0007] In a possible implementation, the hinge structure includes symmetrically distributed sliding seats, and hinged parts are hinged between the symmetrical sliding seats.
[0008] In one possible implementation, a connecting structure is provided between the front plate and the bottom plate, and between the rear plate and the bottom plate. The connecting structure includes a sliding member, a connecting member is hinged on the sliding member, and the front plate and the rear plate are hinged to the corresponding connecting members.
[0009] In one possible implementation, the reinforcement frame includes a rectangular fixing seat and a wedge-shaped groove opened along the outline of the fixing seat, and the ends of the top plate, bottom plate and side plates are fixedly installed with wedge-shaped plug-in eaves that match the wedge shape of the wedge-shaped groove.
[0010] In one possible implementation, both the upper and lower panels are provided with a clamping member. When the reinforcing frame is in a cross-reinforcement state, the reinforcing frame and the clamping member are pressed against each other, and the clamping force is transmitted to the upper and lower panels, so that the upper and lower panels are stably spliced together.
[0011] In a possible implementation, the top plate and the bottom plate are both provided with reinforced eaves, which limit the side plates from the outside and are detachably fixedly connected to the side plates.
[0012] The technical solution of the present invention has at least one of the following technical effects: the present invention stores containers in a manner that folds the side panels inward, thereby improving the efficiency of container assembly and disassembly and the degree of mechanized assembly and disassembly, and during the disassembly and storage process, the various components are connected together by a hinged structure, which is convenient for rapid folding and storage; after assembly, the load of the main connection is borne by the plug-in structure, thereby improving the structural strength of the container, and making the hinged structure in a stress-free state, thereby increasing the service life of the overall structure to meet the container's requirements for service life and structural strength, and during the unfolding and assembly process, the elastic structure assists the side panels and the plug-in structure in resetting and aligning, thereby facilitating the rapid and smooth completion of the unfolding, assembly, and disassembly and folding of the container; at the same time, by combining the quick connection and limiting support of the reinforcement frame and the reinforcement skeleton, the degree of integration of the overall structure is fully improved, the strength of the overall structure is further enhanced, and the transportation requirements of the container are fully met, and the overall structure only needs to use a small number of fasteners to form a high-strength container, which fully improves the disassembly and assembly efficiency of the container on the basis of ensuring the structural strength of the container. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 The figure is a schematic diagram of the overall structure of an assemblable container provided by an embodiment of the present invention.
[0014] Figure 2 The figure is a partial structural diagram of an assemblable container provided by an embodiment of the present invention.
[0015] Figure 3 It is a schematic structural diagram of a side panel, a reinforcing frame and an adapter of an assemblable structure provided by an embodiment of the present invention from a side view.
[0016] Figure 4 yes Figure 3 Enlarged view of point A in the middle.
[0017] Figure 5 The present invention is a schematic diagram showing a process in which an upper half panel and a lower half panel of an assemblable container provided by an embodiment of the present invention are converted from an upper and lower vertically butted state to a folded state from a front view.
[0018] Figure 6 It is a schematic structural diagram of an external interface and a locking member of an assemblable container provided by an embodiment of the present invention from a front view.
[0019] Figure 7 It is a structural schematic diagram of a locking member and a receiving cavity of an assemblable container provided by an embodiment of the present invention from a left-side viewing angle.
[0020] Figure 8 It is a structural schematic diagram of a connection structure of an assemblable container provided by an embodiment of the present invention from a left-side viewing angle.
[0021] Figure 9 This is a schematic diagram of the folding process of the main body of an assemblable container provided by an embodiment of the present invention from a front perspective.
[0022] Figure 10 The figure is a schematic structural diagram of a fixing seat and a wedge-shaped groove of an assemblable container provided by an embodiment of the present invention.
[0023] In the figure: 1. Top plate; 2. Bottom plate; 3. Front plate; 4. Back plate; 5. Hinge structure; 51. Sliding seat; 52. Hinge member; 6. Plug-in structure; 61. Plug-in seat; 62. Plug connector; 63. Accommodating chamber; 64. External interface; 65. Locking member; 7. Side plate; 71. Upper half plate; 72. Lower half plate; 73. Clamping member; 8. Strengthening frame; 81. Fixed seat; 82. Wedge-shaped groove; 9. Strengthening skeleton; 10. Connecting structure; 101. Sliding member; 102. Connecting member; 11. Strengthening eaves; 12. Elastic structure; 13. Plug-in eaves; 14. Connecting seat; 15. Adapter. DETAILED DESCRIPTION
[0024] To make the above-mentioned objects, features, and advantages of the present invention more readily apparent, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings. The following description sets forth numerous specific details to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways than those described below, and those skilled in the art may make similar modifications without departing from the scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0025] See also Figure 1 、 Figure 5 and Figure 9 A container with an assembled structure includes a top plate 1, a bottom plate 2, a front plate 3, a rear plate 4, a hinge structure 5, and two foldable side plates 7. The side plates 7 are symmetrically distributed on the left and right and include an upper half plate 71 and a lower half plate 72. The upper half plate 71 is connected to the top plate 1 through the hinge structure 5, and the lower half plate 72 is connected to the bottom plate 2 through the hinge structure 5. The upper half plate 71 and the lower half plate 72 are connected together through the hinge structure 5. The side plates 7 on the left and right sides are combined with the top plate 1 and the bottom plate 2 to form a foldable main box body. The front plate 3 and the rear plate 4 are symmetrically distributed on the left and right and include an upper half plate 71 and a lower half plate 72. They are detachably installed on the front and rear sides of the main box body respectively. During the disassembly of the container, the front panel 3 and the rear panel 4 are first removed, and then the main box body can be quickly folded by moving the top panel 1. Similarly, during the installation process, the main box body can be quickly unfolded by moving the top panel 1 first, and then the front panel 3 and the rear panel 4 are installed to quickly complete the installation of the container. Compared with the existing containers that need to be disassembled and assembled piece by piece, the efficiency of disassembly and assembly is effectively improved, the complexity of the disassembly and assembly process is reduced, and at the same time, it is convenient for mechanized disassembly and assembly.
[0026] See also Figure 1 、 Figure 5 、 Figure 6 、 Figure 7 and Figure 9 In order to improve the connection strength of the container and the service life of the hinge structure 5, a plug-in structure 6 is provided between the upper half plate 71 and the lower half plate 72, between the upper half plate 71 and the top plate 1, and between the lower half plate 72 and the bottom plate 2, and the hinge structure 5 is slidably connected to the top plate 1, the bottom plate 2, the upper half plate 71 and the lower half plate 72; the plug-in structure 6 includes a plug-in seat 61 and a plug-in connector 62. Taking the plug-in structure 6 between the upper half plate 71 and the lower half plate 72 as an example, the plug-in seat 61 is fixedly mounted on the top of the lower half plate 72, the plug-in connector 62 is fixedly mounted on the bottom of the upper half plate 71, and the plug-in connector 62 is vertically inserted into the plug-in seat 61, so that the upper half plate 71 and the lower half plate 72 are spliced together. During the folding process of the main box body, it is only necessary to pull up the top plate 1 to separate the plug-in connector 62 from the corresponding plug-in seat 61, and then push the upper half plate 71 inward. By pulling up the top plate 1 and lowering the top plate 1, the main box body can be quickly disassembled and folded. During the splicing and installation of the main box body, it is only necessary to pull up the top plate 1 to align the plug connector 62 with the corresponding plug socket 61, and then lower the top plate 1 to complete the splicing and installation of the main box body. After the main box body is spliced and installed, the hinge structure 5 is in a relaxed state of unloading or only bearing very small force, which effectively avoids high stress under working conditions such as heavy-load transportation, thereby greatly reducing the risks of wear and deformation, and significantly improving the service life of the hinge structure 5. The connections between the upper half plate 71 and the lower half plate 72, the upper half plate 71 and the top plate 1, and the lower half plate 72 and the bottom plate 2 are formed by the rigid plug-in structure 6 to form a solid frame node. Compared with the hinge structure 5, it can more effectively transmit force and resist deformation, greatly improving the overall rigidity and bearing capacity of the box body. In addition, to meet the demand for high loads, external interfaces 64 are provided on both the socket 61 and the plug connector 62. The external interfaces 64 are evenly distributed from front to back, and the external interfaces 64 are used to connect an external locking member 65. The external locking member 65 is a threaded fastener or a latch. After the box is installed, the locking member 65 enters the external interface 64 on the plug connector 62 from the external interface 64 on the socket 61 and locks it, further increasing the connection strength between the upper half plate 71 and the lower half plate 72, the upper half plate 71 and the top plate 1, and the lower half plate 72 and the bottom plate 2. The number of locking members 65 does not need to be large, so a lot of time will not be wasted during the disassembly and assembly process.
[0027] See also Figure 1 and Figure 5In order to ensure the smooth disassembly and assembly of the main box, elastic structures 12 are connected between the hinge structure 5 and the top plate 1, between the hinge structure 5 and the bottom plate 2, and between the upper half plate 71 and the lower half plate 72. During the disassembly and folding process of the main box, the elastic structure 12 generates elastic deformation force, and during the unfolding and splicing process of the main box, the elastic deformation force is released to make the main box unfold quickly and smoothly, and the plug connector 62 aligns with the corresponding plug seat 61, fully improving the convenience of disassembly and assembly of the main box. Among them, there are several accommodating cavities 63 evenly distributed from front to back on the plug seat 61 and the plug connector 62. The accommodating cavities 63 on the plug seat 61 and the plug connector 62 are symmetrically distributed up and down. When the plug seat 61 and the plug connector 62 are plugged together, the symmetrically distributed accommodating cavities 63 are in a sealed docking state to form a sealed cavity. There are several hinge structures 5 and they are respectively installed in several sealed cavities; Figure 5 As shown, the hinge structure 5 includes a sliding seat 51 and a hinge 52, and several accommodating cavities 63 are slidably installed with sliding seats 51, and the hinge 52 is hinged between the corresponding two sliding seats 51; take the hinge structure 5 between the upper half plate 71 and the lower half plate 72 as an example: the elastic structure 12 is connected between the accommodating cavity 63 and the sliding seat 51, and the sliding seat 51 moves relatively under the action of the hinge 52, so that the elastic structure 12 is stretched and deformed to generate elastic energy storage, wherein the elastic structure 12 is a connecting rod with a spring, and the connecting rod is limitedly slidably installed between the sliding seat 51 and the accommodating cavity 63, when the main box body is in the unfolded and spliced state, the spring is in a relaxed state, and when the main box body is in the folded and stored state, the spring is in a compressed state.
[0028] See also Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 8 and Figure 10In order to further improve the strength of the box and the convenience of assembly, a strengthening frame 8 is fixedly installed on the inner side of the front panel 3 and the rear panel 4. The strengthening frame 8 limits the ends of the top panel 1, the bottom panel 2 and the side panels 7 when spliced and unfolded. On the one hand, it enhances the structural strength of the main box, and on the other hand, it improves the overall integration of the box, thereby improving the strength of the box. The strengthening frame 8 includes a rectangular fixing seat 81 and a wedge-shaped groove 82 opened along the outline of the fixing seat 81. The ends of the top panel 1, the bottom panel 2 and the side panels 7 are all provided with a plug-in eaves 13 that wedge-fit with the wedge-shaped groove 82; after the main box is unfolded and spliced, the plug-in eaves 13 on the top panel 1, the bottom panel 2 and the side panels 7 are distributed in a rectangular shape. At this time, the front panel 3 and the rear panel 4 are assembled. Align the corresponding ends of the main box body respectively, align the rectangularly distributed plug-in eaves 13 with the corresponding wedge-shaped grooves 82, and then push the front panel 3 and the rear panel 4 toward the main box body until the plug-in eaves 13 are inserted into the corresponding wedge-shaped grooves 82 and clamped, and then use pins or fasteners to fix the front panel 3 and the rear panel 4 to the main box body. On the one hand, the main box body is connected to the front panel 3 and the rear panel 4 through the cooperation of the wedge-shaped grooves 82 and the plug-in eaves 13, which improves the degree of integration of the container and enhances the overall rigidity and strength of the container. On the other hand, the plug-in eaves 13 and the wedge-shaped grooves 82 are quickly and smoothly plugged together, which improves the convenience and smoothness of the installation process, thereby improving the efficiency of assembly and reducing the assembly fault tolerance.
[0029] See also Figure 2 and Figure 3 In order to further improve the strength of the box, two reinforcing frames 9 are hinged on the inner side of the side panel 7. The reinforcing frames 9 can be switched to a cross-reinforced state or a non-crossed storage state. In the cross state, the two ends of the reinforcing frame 9 are detachably fixedly connected to the reinforcing frames 8 at both ends, and the cross-overlapping area is detachably fixedly connected to the side panel 7, further enhancing the overall integration of the container and improving the strength of the overall structure. Figure 3As shown, one of the reinforcing frames 9 is hinged to the upper half plate 71 near the front end, and the other reinforcing frame 9 is hinged to the lower half plate 72 near the front end; in the non-crossed state, the two reinforcing frames 9 are respectively located within the range covered by the upper half plate 71 and the lower half plate 72 to which they are hinged. At this time, the upper half plate 71 and the lower half plate 72 can be smoothly folded inward, and the two reinforcing frames 9 are respectively stored between the upper half plate 71 and the top plate 1 and between the lower half plate 72 and the bottom plate 2. During the process of unfolding and installing the main box body, the reinforcing frames 9 are fixedly connected before the front plate 3 and the rear plate 4 are installed. In this process, the rear end of the reinforcing frame 9 is moved, wherein the reinforcing frame 9 hinged to the upper half plate 71 is pulled downward, and the reinforcing frame 9 hinged to the lower half plate 72 is pulled upward, so that the two reinforcing frames 9 are cross-distributed and the two reinforcing frames 9 are diagonally distributed. At this time, both ends of the reinforcing frame 9 can be located in the connection area, and a connecting seat 14 is provided in this connection area. The connecting seat 14 corresponds to the end of the reinforcing frame 9 one by one, and the connecting seat 14 is fixedly installed on the fixing seat 81, wherein the rear connecting seat 14 is detachably fixedly connected to the reinforcing frame 9 through the adapter 15; Figure 3 As shown, in order to avoid the reinforcing frame 9 in the non-crossed state being too long and affecting the overall storage, it is extended and connected through an adapter 15. The adapter 15 is hinged on the side panel 7, and one end of the adapter 15 is detachably fixedly connected to the reinforcing frame 9, and the other end is detachably fixedly connected to the corresponding connecting seat 14. A double door is installed on the rear panel 4 to facilitate the taking and placing of goods during use.
[0030] See also Figure 3 、 Figure 4 and Figure 8 A connecting structure 10 is provided between the front plate 3 and the bottom plate 2, and between the rear plate 4 and the bottom plate 2. The connecting structure 10 includes a sliding member 101, which is slidably installed on the bottom plate 2. A connecting member 102 is hinged on the sliding member 101. The front plate 3 and the rear plate 4 are hinged to the corresponding connecting members 102. After the front plate 3 and the rear plate 4 are separated from the main box body, they are not disconnected from it. After the main box body is folded and stored, they can be rotated and folded on the main box body to complete storage, which is convenient for storing the entire container.
[0031] See also Figure 2 and Figure 3 , a fastening member 73 is fixedly mounted on both the upper half plate 71 and the lower half plate 72, such as Figure 3 As shown, when the rear end of the reinforcing frame 9 hinged to the upper half plate 71 rotates downward to a cross state, it will abut against the fastening member 73 on the upper half plate 71 from above. When the rear end of the reinforcing frame 9 hinged to the lower half plate 72 rotates upward to a cross state, it will abut against the fastening member 73 on the lower half plate 72 from below. The low tightening force generated will act on the upper half plate 71 and the lower half plate 72, thereby helping to increase the strength of the overall structure.
[0032] See also Figure 1 and Figure 2 , the top plate 1 and the bottom plate 2 are provided with a strengthening eaves 11, the strengthening eaves 11 limit the side panels 7 from the outside and are detachably fixedly connected to the side panels 7; Figure 2 As shown, there are four reinforced eaves 11, which are fixedly installed on the left and right sides of the top plate 1 and the left and right sides of the bottom plate 2. When the main box body is unfolded, the outer side of the side panel 7 is tightly attached to the corresponding reinforced eaves 11, further improving the strength of the overall structure.
[0033] In the embodiments of the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature 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, a first feature being "above," "above," or "above" a second feature 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. A first feature being "below," "below," or "below" a second feature 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.
[0034] In the description of the present invention, it should also be noted that, unless otherwise expressly specified or limited, the terms "disposed," "connected," "installed," and "connected" should be understood in a broad sense. For example, they may refer to fixed or detachable connections, integral or sliding connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0035] The embodiments of this specific implementation method are all preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, any equivalent changes made based on the structure, shape, and principle of the present invention should be included in the scope of protection of the present invention.
Claims
1. A container with an assemblable structure, comprising a top plate, a bottom plate, a front plate and a rear plate, characterized in that: It also includes a hinged structure, a plug-in structure and two inward-folding side panels; The two side panels, the top panel and the bottom panel form a foldable main box body; the side panels include an upper half panel and a lower half panel; The setting points of the articulated structure and the plug-in structure include: Between the upper and lower panels; Between the upper half plate and the top plate; Between the lower half plate and the bottom plate; Among them, elastic structures are provided between the hinge structure and the upper half plate, between the hinge structure and the lower half plate, and between the top plate and the bottom plate; When the main box is spliced and unfolded, the plug-in structure bears the main connection load, the hinge structure does not bear the load, and the elastic structure is in a free state; When the main box is folded and stored, the plug-in structure is disconnected, the hinge structure maintains the connection between the upper half plate, the lower half plate, the top plate and the bottom plate, and the elastic structure stores energy to assist the plug-in structure in aligning when the main box is unfolded; A reinforcement frame is fixedly installed on the inner side of the front plate and the rear plate, and the reinforcement frame limits the ends of the top plate, bottom plate and side plates when they are spliced and unfolded; A reinforcing frame is hinged on the inner side of the side panel, and the reinforcing frame switches between a crossed and a non-crossed state; in the crossed state, the two ends of the reinforcing frame are detachably connected to the corresponding reinforcing frames, and the cross-overlapping area is detachably connected to the side panel.
2. The container of an assemblable structure according to claim 1, characterized in that: The plug-in structure includes a plug-in socket and a plug-in connector. Both the plug-in socket and the plug-in connector are provided with a plurality of accommodating cavities. When the plug-in socket and the plug-in connector are plugged in, the accommodating cavities on the two are symmetrical and form a sealed cavity. The hinge structure and the elastic structure are both located in the sealed cavity.
3. The container of the assemblable structure according to claim 2, characterized in that: The socket and the plug connector are both provided with external interfaces, which are used for externally connecting a locking piece, and the socket and the plug connector are fastened and locked together by the locking piece.
4. The container of an assemblable structure according to claim 1 or 2, characterized in that: The hinge structure includes symmetrically distributed sliding seats, and hinged parts are hinged between the symmetrical sliding seats.
5. The container of an assemblable structure according to claim 1, characterized in that: A connecting structure is provided between the front plate and the bottom plate, and between the rear plate and the bottom plate. The connecting structure includes a sliding member, a connecting member is hinged on the sliding member, and the front plate and the rear plate are hinged to the corresponding connecting members.
6. The container of an assemblable structure according to claim 1, characterized in that: The reinforcement frame includes a rectangular fixing seat and a wedge-shaped groove opened along the outline of the fixing seat. The ends of the top plate, the bottom plate and the side plates are fixedly installed with wedge-shaped plug-in eaves that match the wedge shape of the wedge-shaped groove.
7. The container of an assemblable structure according to claim 1, characterized in that: The upper and lower panels are both provided with abutting pieces. When the reinforcement frame is in a cross-reinforced state, the reinforcement frame and the abutting pieces abut against each other, and the abutting force is transmitted to the upper and lower panels, so that the upper and lower panels are stably spliced together.
8. The container of an assemblable structure according to claim 1, characterized in that: The top plate and the bottom plate are both provided with reinforced eaves, which limit the side plates from the outside and are detachably fixedly connected to the side plates.
Citation Information
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