Mounting structure and storage system
By designing the mating structure and locking parts of the connectors and the mating parts, the problem of inconvenient connection between the installation structure and the load-bearing structure is solved, and a firm and convenient installation and disassembly are achieved, reducing material costs.
Patent Information
- Application Number
- CN202410133378.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-30
- Publication Date
- 2025-08-01
AI Technical Summary
The connection between the conventional installation structure and the load-bearing structure is relatively inconvenient, resulting in insecure installation or difficulty in disassembly.
The installation structure including a connector and a mating member is adopted. By providing components such as the first and second mating structures, locking members, etc., the detachable or non-detachable connection between the mating members and the connector is realized, and the firmness and convenience of the connection are improved by using the locking members and elastic support members.
It realizes a firm connection between the installation structure and the load-bearing structure, which is convenient for disassembly and installation, reduces material costs, and improves the stability and flexibility of the connection.
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Figure CN120397488A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of storage tools, and particularly to an installation structure and a storage system. Background Art
[0002] Conventional installation structures such as hooks are usually installed on load-bearing structures such as walls, and the connection between the above storage structure and the load-bearing structure is relatively inconvenient. Summary of the Invention
[0003] Based on this, it is necessary to provide an installation structure and a storage system to solve the problem that the connection between the conventional installation structure and the load-bearing structure is relatively inconvenient.
[0004] An installation structure is installed on a load-bearing structure. The installation structure includes a connecting member and a mating member. The mating member is connected to the load-bearing structure through the connecting member, and the mating member is used to carry an article to be installed.
[0005] In one embodiment, the mating member and the connecting member are non-detachably connected.
[0006] In one embodiment, the mating member and the connecting member are detachably connected.
[0007] In one embodiment, the connecting member is provided with a first mating structure, and the mating member is provided with a second mating structure. At least a part of the second mating structure is pressed against the first mating structure along the gravity direction X to limit the mating member from detaching from the connecting member along the gravity direction X.
[0008] In one embodiment, the first mating structure is configured as a convex portion protruding from the surface of the connecting member, and the second mating structure is configured as a mating groove. The mating groove has a first opening facing the convex portion. The mating groove can be sleeved on the convex portion through the first opening, and the upper wall surface of the mating groove is pressed against the convex portion along the gravity direction X.
[0009] In one embodiment, a limiting convex edge is provided on the outer peripheral wall of the convex portion. The limiting convex edge is spaced from the surface of the connecting member. There is a flanging extending towards the center of the first opening at the first opening, and the flanging is stopped between the limiting convex edge and the surface of the connecting member.
[0010] In one embodiment, the mating groove further has a second opening, and the second opening is communicated with the first opening; along the gravity direction X, the convex portion of the mating member can sequentially extend into the mating groove through the second opening and the first opening.
[0011] In one embodiment, the installation structure further includes a locking member, and the locking member is used to limit the mating member from detaching from the connecting member along the anti-gravity direction Y.
[0012] In one embodiment, the mating piece is provided with a third mating structure, and the locking piece is movably connected to the connecting piece; and at least a portion of the locking piece can be moved to a position protruding from the surface of the connecting piece close to the mating piece, and is used to form a stop above the third mating structure along the gravity direction X; the locking piece can be moved to a position where it does not protrude from the surface of the connecting piece close to the mating piece, so as to release the stop between the third mating structure.
[0013] In one embodiment, the connecting member is provided with a through hole; the locking member includes a main body and a protrusion connected to each other, and the protrusion can extend through the through hole to the surface of the connecting member close to the mating member; the main body is movably connected to the connecting member and can drive the protrusion to disengage from the through hole.
[0014] In one embodiment, the locking member further includes an elastic support member, one end of the elastic support member is connected to the connecting member, and the other end is pressed against the main body along the axial direction of the through hole, so that the protrusion can remain extended out of the through hole.
[0015] In one embodiment, the protrusion is provided with a guiding slope; when the main body moves a preset distance along the anti-gravity direction Y, the protrusion can be separated from the through hole along the guiding slope.
[0016] In one embodiment, the connecting member is provided with a sliding groove, and an end of the main body away from the protrusion can slide along the gravity direction X or the anti-gravity direction Y with the side wall of the sliding groove.
[0017] In one embodiment, the locking member further includes an auxiliary pushing block connected to an end of the main body relatively away from the protrusion; by pushing the auxiliary pushing block along the anti-gravity direction Y, the protrusion can be driven out of the through hole.
[0018] In one embodiment, the locking member further includes a first elastic reset member, one end of the first elastic reset member is connected to the upper wall of the sliding groove, and the other end elastically acts on the auxiliary push block along the gravity direction X.
[0019] In one embodiment, a limit block is provided at one end of the main body away from the protrusion. The limit block is spaced apart from the connecting member and a through groove is formed between the limit block and the connecting member. The through groove is used for sliding cooperation with the load-bearing structure.
[0020] In one embodiment, the limiting block is provided with a locking pin, and the locking pin can move with the auxiliary pushing block to be plugged into and engaged with the load-bearing structure.
[0021] In one embodiment, the connecting member is provided with a first mating structure, and the mating member is provided with a second mating structure. At least a part of the second mating structure is crimped against the first mating structure along the gravity direction X to limit the mating member from detaching from the connecting member along the gravity direction X; the first mating structure is configured as a convex portion protruding from the surface of the connecting member, the second mating structure is configured as a mating groove, the mating groove has a first opening facing the convex portion, the mating groove can be sleeved on the convex portion through the first opening, and the upper wall surface of the mating groove is crimped against the convex portion along the gravity direction X; a through hole is opened in the convex portion, and the third mating structure is configured as a clamping block protruding inside the mating groove.
[0022] In one embodiment, the connecting member is provided with a third mating structure, and the locking member is movably connected to the mating member; at least a part of the locking member can move to protrude from the surface of the mating member close to the connecting member and is used for stopping below the third mating structure along the gravity direction X; the locking member can move to not protrude from the surface of the mating member close to the connecting member to release the stop with the third mating structure.
[0023] In one embodiment, the mating member has an assembly cavity, the assembly cavity has a first opening facing the connecting member, the locking member is movably accommodated in the assembly cavity, and at least a part of the locking member can extend out through the first opening.
[0024] In one embodiment, the assembly cavity has a second opening facing the anti-gravity direction Y; the locking member includes a baffle and a transmission button, the baffle extends out through the first opening, one end of the transmission button extends out through the second opening, and the other end is movably connected to the baffle; as the transmission button moves along the gravity direction X, the transmission button can push the baffle to contract into the assembly cavity.
[0025] In one embodiment, the side wall of the transmission button away from the first opening is configured as a transmission inclined surface, the baffle is provided with a through hole, the transmission button passes through the through hole, and the transmission inclined surface is crimped against the inner wall of the through hole; as the transmission button moves along the gravity direction X, the transmission inclined surface can apply a force from the first opening to the assembly cavity to the inner wall of the through hole.
[0026] In one embodiment, the locking member further includes a stop block, and the stop block is connected to the transmission button and stops below the baffle along the gravity direction X.
[0027] In one embodiment, the locking member further includes a second elastic reset member, one end of the second elastic reset member is connected to the bottom wall of the assembly cavity, and the other end elastically acts on the stop block along the anti-gravity direction Y.
[0028] In one embodiment, the connecting member is provided with a third mating structure, the third mating structure is configured as a limiting hole, the locking member has elasticity, and the locking member is fixedly connected to the mating member; as the mating member moves relative to the connecting member, the locking member can be deformed and extend into the limiting hole.
[0029] In one embodiment, the mounting structure further includes an auxiliary push block, which is movably connected to the mating piece; as the auxiliary push block moves relative to the mating piece, the auxiliary push block can drive the locking piece to deform and disengage from the limiting hole.
[0030] In one embodiment, the fitting part includes a transition portion and a functional portion, wherein the functional portion is connected to the transition portion and is connected to the connecting part through the transition portion.
[0031] In one embodiment, the functional portion is detachably connected to the adapter portion.
[0032] In one embodiment, the adapter portion is provided with at least one set of clamping components, each set of clamping components includes two clamping arms spaced apart and arranged opposite to each other, and the clamping arms are used to clamp the functional portion.
[0033] In one embodiment, the adapter portion has an assembly hole, and the functional portion is inserted into the assembly hole.
[0034] In one embodiment, the adapter portion includes a front cover and a rear cover that are detachably connected, the rear cover is located between the front cover and the connector, and the front cover is provided with a first groove, the rear cover is provided with a second groove, and the second groove and the first groove are enclosed to form an assembly hole.
[0035] In one embodiment, a slot is provided on the surface of the adapter portion, and a hook is provided on the functional portion, and the hook is engaged with the slot.
[0036] In one embodiment, each functional portion is correspondingly connected to at least one adapter portion.
[0037] In one embodiment, the connecting member has at least one mounting surface and at least one mating surface, the mounting surface is used to connect to the load-bearing structure, and the mating surface is used to connect to the mating member.
[0038] In one embodiment, the connector has a mounting surface and a mating surface, and the mounting surface is disposed opposite to the mating surface.
[0039] A storage system comprises a load-bearing structure and an installation structure according to any one of claims 1 to 34.
[0040] In one embodiment, the connecting member of the mounting structure is fixedly mounted on the load-bearing structure.
[0041] In one embodiment, the mounting structure is movably mounted to the load-bearing structure.
[0042] In one embodiment, the load-bearing structure includes a guide rail, and two opposite ends of the mounting structure are respectively provided with a through slot, and two edges of the guide rail are respectively slidably engaged in the two through slots.
[0043] In one embodiment, along the extending direction of the guide rail, a plurality of positioning holes are provided at intervals on the edge of the guide rail, and a locking pin is provided in at least one of the two through grooves. The locking pin can be inserted into any one of the positioning holes to positionally install the mounting structure on the guide rail.
[0044] In one embodiment, the number of guide rails is multiple segments, and hanging structures are respectively provided at both ends of each segment of the guide rail along its own extending direction. Adjacent two segments of guide rails can be spliced and extended with each other through the hanging structures.
[0045] In one embodiment, the load-bearing structure is provided with a hanging strip, and the connecting member has a clamping hook, and the clamping hook is slidably clamped on the hanging strip.
[0046] In one embodiment, the connecting member is provided with a mating hole, and the connecting member is movably sleeved on the outer periphery of the mounting structure through the mating hole. BRIEF DESCRIPTION OF THE DRAWINGS
[0047] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0048] Figure 1 Schematic diagram of the storage system provided by the present application;
[0049] Figure 2 For Figure 1 Enlarged schematic diagram at A;
[0050] Figure 3 Schematic diagram of the first assembly method of the box body and the connecting member;
[0051] Figure 4 Schematic diagram of the second assembly method of the box body and the connecting member;
[0052] Figure 5 For Figure 4 Side view of the connecting member in;
[0053] Figure 6 Side view of the mounting structure cooperating with the belt;
[0054] Figure 7 Exploded view of the first embodiment of the mounting structure;
[0055] Figure 8 For Figure 7 Exploded view of the mounting structure shown from another perspective;
[0056] Figure 9 ForFigure 7 Side view of the middle connecting piece and the locking piece during assembly;
[0057] Figure 10 is Figure 9 exploded view of;
[0058] Figure 11 Front view of the second embodiment of the installation structure and the tool during assembly;
[0059] Figure 12 is Figure 11 isometric view of the installation structure shown;
[0060] Figure 13 Schematic diagram of the second embodiment of the installation structure;
[0061] Figure 14 is Figure 13 Cross-sectional view taken at B-B;
[0062] Figure 15 Side view of the fourth embodiment of the installation structure;
[0063] Figure 16 Front view of the fourth embodiment of the installation structure;
[0064] Figure 17 is Figure 16 Cross-sectional view taken at C-C;
[0065] Figure 18 Exploded view of the fifth embodiment of the installation structure;
[0066] Figure 19 is Figure 18 Schematic diagram of the middle fitting;
[0067] Figure 20 is Figure 19 Cross-sectional view taken at D-D;
[0068] Figure 21 is Figure 18 Front view of the middle connecting piece 10;
[0069] Figure 22 is Figure 21 Cross-sectional view taken at E-E;
[0070] Figure 23 Exploded view of the sixth embodiment of the installation structure;
[0071] Figure 24 Exploded view of the seventh embodiment of the installation structure;
[0072] Figure 25 Schematic diagram of the eighth embodiment of the installation structure;
[0073] Figure 26Schematic diagram of the ninth embodiment of the installation structure;
[0074] Figure 27 Schematic diagram of the tenth embodiment of the installation structure;
[0075] Figure 28 Exploded view of the eleventh embodiment of the installation structure;
[0076] Figure 29 Schematic diagram of the twelfth embodiment of the installation structure;
[0077] Figure 30 Schematic diagram of the twelfth embodiment of the installation structure;
[0078] Figure 31 For Figure 30 exploded view;
[0079] Figure 32 Schematic diagram of the thirteenth embodiment of the installation structure;
[0080] Figure 33 Schematic diagram of the fourteenth embodiment of the installation structure;
[0081] Figure 34 Schematic diagram of the fifteenth embodiment of the installation structure;
[0082] Figure 35 Schematic diagram of the sixteenth embodiment of the installation structure;
[0083] Figure 36 For Figure 35 schematic diagram when the functional part is flipped in;
[0084] Figure 37 For Figure 35 exploded view;
[0085] Figure 38 For Figure 35 schematic diagram of the mating part in.
[0086] Reference numerals: 1, storage system; 100, mounting structure; 10, connector; 11, first matching structure; 111, protrusion; 112, limiting convex edge; 12, through hole; 13, slide groove; 14, through groove; 15, mounting surface; 16, matching surface; 17, snap hook; 18, matching hole; 191, fixing portion; 192, movable portion; 193, locking portion; 20, matching member; 21, second matching structure; 201, matching groove; 22, third matching structure; 202, Clamping block; 203, limiting hole; 211, first opening; 212, flange; 213, second opening; 23, assembly cavity; 231, first opening; 232, second opening; 24, functional area; 25, adapter; 251, clamping assembly; 251a, clamping arm; 252, assembly hole; 253, front cover; 253a, first slot; 254, rear cover; 254a, second slot; 255, clamping slot; 256, functional plane; 257, assembly slot; 258, interface; 26. Functional part; 261. Hook; 262. Lamp; 262a. Articulated axis; 263. Hook; 264. Hanger; 265. Hook body; 266. Frame structure; 267. Tray; 268. Ball frame; 269. Sheet metal frame; 27. Avoidance gap; 30. Locking member; 31. Main body; 311. Limit block; 312. Lock pin; 32. Protrusion; 321. Guide slope; 33. Auxiliary push block; 302. Second slope; 331. Matching hook; 332. First inclined surface; 34. First elastic return member; 35. Baffle; 351. Perforation; 36. Transmission button; 361. Transmission inclined surface; 37. Stop block; 38. Second elastic return member; 39. Elastic support member; 200. Load-bearing structure; 210. Load-bearing plate; 220. Guide rail; 221. Hanging structure; 222. Hook; 223. Hole; 230. Hanging strip; 240. Box; 250. Screw; 260. Positioning hole; 300. Items to be installed; 310. Tool kit. DETAILED DESCRIPTION
[0087] 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.
[0088] It should be noted that when a component is referred to as "fixed to" or "disposed on" another component, it can be directly on the other component or there may also be an intermediate component. When a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be an intermediate component at the same time. The terms "vertical", "horizontal", "upper", "lower", "left", "right" and similar expressions used in the description of the present application are only for illustrative purposes and do not represent the only implementation manner.
[0089] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.
[0090] In the present application, unless otherwise clearly specified and defined, the first feature may be in direct contact with the second feature "on" or "under" the second feature, or the first feature and the second feature are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may mean that the first feature is directly above or obliquely above the second feature, or only indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "underneath" the second feature may mean that the first feature is directly below or obliquely below the second feature, or only indicates that the first feature has a lower horizontal height than the second feature.
[0091] Unless otherwise defined, all technical and scientific terms used in the description of the present application have the same meaning as commonly understood by those skilled in the technical field to which the present application belongs. The terms used in the description of the present application are only for the purpose of describing specific implementation manners and are not intended to limit the present application. The term "and / or" used in the description of the present application includes any and all combinations of one or more of the related listed items.
[0092] Please refer to Figures 1 to 6 , the present application provides an installation structure 100, and the installation structure 100 is installed on a load-bearing structure 200. Among them, Figure 1 、 Figure 3 and Figure 4 are respectively schematic diagrams of the assembly of the installation structure 100 and the load-bearing structure 200. The installation structure 100 includes a connecting member 10 and a mating member 20. The mating member 20 is connected to the load-bearing structure 200 through the connecting member 10, and the mating member 20 is used to carry the item to be installed. By providing the connecting member 10, the connecting member 10 that matches different load-bearing structures 200 can be customized according to different usage requirements, so as to conveniently connect the mating member to the load-bearing structure 200 through the connecting member 10.
[0093] The fitting member 20 and the connecting member 10 are non-detachably connected.
[0094] Optionally, the fitting member 20 and the connecting member 10 are integrally formed parts. For example, the fitting member 20 and the connecting member 10 are integrally injection molded; alternatively, the fitting member 20 and the connecting member 10 are adhesively connected; or, the fitting member 20 and the connecting member 10 are riveted.
[0095] The fitting member 20 and the connecting member 10 are detachably connected.
[0096] Next, please refer to Figures 7 to 10 , where Figure 7 is an exploded view of the first embodiment of the mounting structure 100 provided by the present application; Figure 8 is Figure 7 an exploded view of the mounting structure 100 from another perspective as shown; Figure 9 is Figure 7 a side view of the connecting member 10 and the locking member 30 during assembly in Figure 10 is Figure 9 the exploded view of
[0097] The connecting member 10 is provided with a first mating structure 11, and the fitting member 20 is provided with a second mating structure 21. At least a part of the second mating structure 21 is crimped on the first mating structure 11 along the gravity direction X to limit the fitting member 20 from detaching from the connecting member 10 along the gravity direction X. Under the action of its own gravity and the gravity of the article to be installed, the fitting member 20 is crimped on the first mating structure 11 through the second mating structure 21, so as to realize a firm connection with the connecting member 10 and will not detach from the connecting member 10 along the gravity direction X.
[0098] Optionally, as shown in Figure 8 and Figure 9 , the first mating structure 11 is configured as a convex portion 111 protruding from the surface of the connecting member 10, and the second mating structure 21 is configured as a mating groove 201. The mating groove 201 has a first opening 211 facing the convex portion 111. The mating groove 201 can be sleeved on the convex portion 111 through the first opening 211, and the upper wall surface of the mating groove 201 is crimped on the convex portion 111 along the gravity direction X. In this way, the contact area between the first mating structure 11 and the second mating structure 21 can be increased, so that the connection between the fitting member 20 and the connecting member 10 is more firm.
[0099] Furthermore, as shown in Figure 9As shown, a limiting convex edge 112 is provided on the outer peripheral wall of the convex portion 111. The limiting convex edge 112 is spaced from the surface of the connecting member 10. At the first opening 211, there is a flanging 212 extending towards the center of the first opening 211. The flanging 212 is stopped between the limiting convex edge 112 and the surface of the connecting member 10. By arranging the flanging 212 to be stopped between the limiting convex edge 112 and the surface of the connecting member 10, the fitting member 20 can be restricted from detaching from the connecting member 10 in a direction perpendicular to the surface of the connecting member 10.
[0100] Furthermore, the fitting groove 201 further has a second opening 213, and the second opening 213 is communicated with the first opening 211; along the gravity direction X, the convex portion 111 of the fitting member 20 can sequentially pass through the second opening 213 and the first opening 211 and extend into the fitting groove 201. By providing the second opening 213, it is convenient to sleeved the fitting groove 201 on the surface of the convex portion 111.
[0101] The mounting structure 100 further includes a locking member 30, and the locking member 30 is used to restrict the fitting member 20 from detaching from the connecting member 10 in the anti-gravity direction Y. Three forms of the locking member 30 are introduced below.
[0102] First, the first embodiment of the locking member 30 is introduced:
[0103] Please continue to refer to Figures 7 to 9 , the fitting member 20 is provided with a third fitting structure 22, and the locking member 30 is movably connected to the connecting member 10; and at least part of the locking member 30 can move to protrude from the surface of the connecting member 10 close to the fitting member 20 and is used to form a stop above the third fitting structure 22 along the gravity direction X; the locking member 30 can move to not protrude from the surface of the connecting member 10 close to the fitting member 20 to release the stop with the third fitting structure 22. Since the first fitting structure 11 and the second fitting structure 21 cooperate with each other to restrict the fitting member 20 from detaching from the connecting member 10 along the gravity direction X, by arranging at least part of the locking member 30 to form a stop above the third fitting structure 22 along the gravity direction X, the fitting member 20 can be restricted from detaching from the connecting member 10 in the anti-gravity direction Y, so as to realize the complete locking of the fitting member 20 and the connecting member 10. And by moving the locking member 30, the stop between the locking member 30 and the third fitting structure 22 can be released, so as to realize unlocking the fitting member 20 from the connecting member 10 and facilitate the disassembly of the fitting member 20 from the connecting member 10.
[0104] The connecting member 10 is provided with a through hole 12; the locking member 30 includes a main body portion 31 and a convex block 32 connected to each other. The convex block 32 can extend out of the surface of the connecting member 10 close to the fitting member 20 through the through hole 12; the main body portion 31 is movably connected to the connecting member 10 and can drive the convex block 32 to disengage from the through hole 12. That is, the convex block 32 is used for stop cooperation with the third fitting structure 22.
[0105] Preferably, as Figure 8 and Figure 10 shown, the through hole 12 is formed in the convex portion 111, and the third engaging structure 22 is configured as a clamping block 202 protruding inside the engaging groove 201. In this way, the space of the connecting member 10 along the gravity direction X can be fully utilized, which is beneficial to shortening the length of the connecting member 10 and the corresponding engaging member 20, saving materials and reducing costs.
[0106] The locking member 30 further includes an elastic support member 39. One end of the elastic support member 39 is connected to the connecting member 10, and the other end is axially pressed against the main body portion 31 along the through hole 12 so that the convex block 32 can remain protruding from the through hole 12. In this way, the convex block 32 can be kept in a stop fit with the third engaging structure 22 under the action of the elastic support member 39, which is beneficial to improving the connection firmness between the engaging member 20 and the connecting member 10. Specifically, the elastic support member 39 can be a metal spring piece.
[0107] The convex block 32 is provided with a guiding inclined surface 321; when the main body portion 31 moves a preset distance along the anti-gravity direction Y, the convex block 32 can disengage from the through hole 12 along the guiding inclined surface 321. The guiding inclined surface 321 plays a guiding role to facilitate the disengagement of the convex block 32 from the through hole 12. Specifically, when it is necessary to disassemble the engaging member 20, only need to push the main body portion 31 along the anti-gravity direction Y so that the convex block 32 disengages from the through hole 12 along the guiding inclined surface 321, thereby releasing the stop fit between the convex block 32 and the third engaging structure 22. Then move the engaging member 20 along the anti-gravity direction Y so that the second engaging structure 21 and the first engaging structure 11 are disengaged from the limit, so that the engaging member 20 can be disassembled from the connecting member 10. Specifically, the guiding inclined surface 321 is provided above the convex block 32.
[0108] The connecting member 10 is provided with a sliding groove 13, and one end of the main body portion 31 away from the convex block 32 can slide in cooperation with the side wall of the sliding groove 13 along the gravity direction X or the anti-gravity direction Y. The sliding groove 13 plays a guiding role, so that the main body portion 31 can slide relatively smoothly with respect to the connecting member 10.
[0109] The locking member 30 further includes an auxiliary pushing block 33, and the auxiliary pushing block 33 is connected to one end of the main body portion 31 relatively far from the convex block 32; by pushing the auxiliary pushing block 33 along the anti-gravity direction Y, the convex block 32 can be driven to disengage from the through hole 12.
[0110] Specifically, the auxiliary pushing block 33 is connected to the side of the main body portion 31 close to the engaging member 20, and the engaging member 20 is provided with an avoidance notch 27 corresponding to the auxiliary pushing block 33, and the auxiliary pushing block 33 is exposed through the avoidance notch 27. In this way, it is convenient for the operator to push the main body portion 31 to move along the anti-gravity direction Y through the auxiliary pushing block 33.
[0111] The locking member 30 further includes a first elastic reset member 34. One end of the first elastic reset member 34 is connected to the upper wall surface of the sliding groove 13, and the other end elastically acts on the auxiliary pushing block 33 along the gravity direction X.
[0112] Thus, when an operator applies a force to the auxiliary pushing block 33 to push the auxiliary pushing block 33 to move along the anti-gravity direction Y, the first elastic reset member 34 is compressed. When the operator stops applying a force to the auxiliary pushing block 33, the first elastic reset member 34 pushes the auxiliary pushing block 33 to drive the main body portion 31 to reset, so that the convex block 32 returns to the state of being limited in the through hole 12. The first elastic reset member 34 can be configured as a spring.
[0113] Next, the second embodiment of the locking member 30 is introduced:
[0114] Please refer to Figures 11 - 17 , Figure 11 the schematic diagram of the assembly of the installation structure 100 and the article to be installed 300, wherein the article to be installed 300 is configured as a tool kit 310; Figure 12 For Figure 11 the isometric view of the installation structure 100 shown; Figure 13 the schematic diagram of the second embodiment of the installation structure 100; Figure 14 For Figure 13 the cross-sectional view at B-B; Figure 15 the side view of the fourth embodiment of the installation structure 100; Figure 16 the front view of the fourth embodiment of the installation structure 100; Figure 17 For Figure 16 the cross-sectional view at C-C.
[0115] A third mating structure 22 is provided on the connecting member 10. The third mating structure 22 is configured as a limiting hole 203. The locking member 30 is elastic, and the locking member 30 is fixedly connected to the mating member 20. As the mating member 20 moves relative to the connecting member 10, the locking member 30 can be deformed and extend into the limiting hole 203.
[0116] Furthermore, as Figure 14 shown, the locking member 30 can be set in a hook shape, so as to facilitate extending into the limiting hole 203 and stopping below the upper wall of the limiting hole 203 along the gravity direction X.
[0117] Optionally, both the locking member 30 and the mating member 20 are plastic parts and are integrally formed by injection molding.
[0118] The mounting structure 100 further includes an auxiliary pushing block 33, which is movably connected to the fitting 20; as the auxiliary pushing block 33 moves relative to the fitting 20, the auxiliary pushing block 33 can drive the locking member 30 to deform and disengage from the limiting hole 203. In this way, the operator can push the auxiliary pushing block 33 to disengage the locking member 30 from the limiting hole 203, so as to unlock the fitting 20 and the connecting member 10.
[0119] Further, the auxiliary pushing block 33 is provided with a mating hook 331, which is slidably connected below the locking member 30. As the mating hook 331 slides upward relative to the fitting 20, the mating hook can apply a force to the locking member 30 in the direction away from the connecting member 10, so that the locking member 30 deforms and disengages from the limiting hole 203.
[0120] Specifically, the mating hook 331 is provided with a first inclined surface 332, and the locking member 30 is provided with a second inclined surface 302. The first inclined surface 332 slidably abuts against the lower part of the second inclined surface, and along the direction of gravity, both the first inclined surface 332 and the second inclined surface extend in the direction away from the connecting member 10. In this way, when the mating hook 331 moves upward, the first inclined surface 332 can apply a force to the locking member 30 in the direction away from the connecting member 10 through the second inclined surface 302, so that the locking member 30 deforms and disengages from the limiting hole 203.
[0121] Next, introduce the third embodiment of the locking member 30:
[0122] Please refer to Figures 18 to 22 , in which, Figure 18 is an exploded view of the fifth embodiment of the mounting structure; Figure 19 is Figure 18 a schematic diagram of the fitting in Figure 20 is Figure 19 a cross-sectional view taken at D-D; Figure 21 is Figure 18 a front view of the connecting member 10 in Figure 22 is Figure 21 a cross-sectional view taken at E-E.
[0123] The connecting member 10 is provided with a third mating structure 22, and the locking member 30 is movably connected to the fitting 20; at least part of the locking member 30 can move to protrude from the surface of the fitting 20 close to the connecting member 10 and is used to stop below the third mating structure 22 along the direction of gravity X; the locking member 30 can move to not protrude from the surface of the fitting 20 close to the connecting member 10 to release the stop with the third mating structure 22.
[0124] The fitting 20 has an assembly cavity 23. The assembly cavity 23 has a first opening 231 facing the connecting member 10. The locking member 30 is movably received in the assembly cavity 23, and at least a part of the locking member 30 can extend out through the first opening 231.
[0125] Further, as Figure 20 shown, the assembly cavity 23 has a second opening 232 facing the anti-gravity direction Y; the locking member 30 includes a baffle 35 and a transmission button 36. The baffle 35 extends out through the first opening 231. One end of the transmission button 36 extends out through the second opening 232, and the other end is movably connected to the baffle 35; as the transmission button 36 moves along the gravity direction X, the transmission button 36 can push the baffle 35 to contract into the assembly cavity 23.
[0126] The baffle 35 is used to stop below the third mating structure 22 along the gravity direction X; the operator presses the transmission button 36 along the gravity direction X, and the transmission button 36 drives the baffle 35 to move into the assembly cavity 23 until the baffle 35 does not extend out of the first opening 231, so that the baffle 35 releases the stop of the third mating structure 22. That is, by pressing down the transmission button 36, the unlocking of the fitting 20 and the connecting member 10 can be realized.
[0127] The side wall of the transmission button 36 away from the first opening 231 is configured as a transmission inclined surface 361. The baffle 35 is provided with a through hole 351. The transmission button 36 passes through the through hole 351, and the transmission inclined surface 361 is pressed against the inner wall of the through hole 351; as the transmission button 36 moves along the gravity direction X, the transmission inclined surface 361 can apply a force from the first opening 231 to the inner wall of the through hole 351 towards the assembly cavity 23. By setting the transmission inclined surface 361, the movement of the transmission button 36 along the gravity direction X can be converted into the movement of the baffle 35 towards the inside of the assembly cavity 23.
[0128] The locking member 30 further includes a stop block 37. The stop block 37 is connected to the transmission button 36 and stops below the baffle 35 along the gravity direction X. In this way. The stop block 37 can prevent the transmission button 36 from disengaging from the second opening 232 along the anti-gravity direction Y.
[0129] Further, the locking member 30 further includes a second elastic reset member 38. One end of the second elastic reset member 38 is connected to the bottom wall of the assembly cavity 23, and the other end acts on the stop block 37 along the anti-gravity direction Y elastically. The second elastic reset member 38 applies a force along the anti-gravity direction Y to the baffle 35 by abutting against the stop block 37, so that the baffle 35 is kept limited in the assembly cavity 23.
[0130] The connecting member 10 has at least one mounting surface 15 and at least one mating surface 16. The mounting surface 15 is used to connect the load-bearing structure 200, and the mating surface 16 is used to connect the fitting 20.
[0131] Optionally, in one embodiment, as Figure 18 shown, the connecting member 10 has a mounting surface 15 and a mating surface 16, and the mounting surface 15 and the mating surface 16 are arranged to face away from each other. In this embodiment, each connecting member 10 corresponds to and mounts a mating member 20, and the load-bearing structure 200 and the mating member 20 are located on two opposite sides of the connecting member 10, so that the structure of the connecting member 10 is more compact.
[0132] In another embodiment, the connecting member 10 has a plurality of mating surfaces 16, so that a plurality of mating members 20 can be mounted on the same connecting member 10 at the same time.
[0133] In yet another embodiment, the connecting member 10 has a plurality of mounting surfaces 15, and the plurality of mounting surfaces 15 are applicable to different load-bearing structures 200, so that the connecting member 10 can be switched between a plurality of load-bearing structures 200.
[0134] The mating member 20 includes an adapter portion 25 and a functional portion 26. The functional portion 26 is connected to the adapter portion 25 and is connected to the connecting member 10 through the adapter portion 25.
[0135] The functional portion 26 is detachably connected to the adapter portion 25. In this way, the functional portion 26 can be detached from the adapter portion 25, so that the functional portion 26 can be replaced according to actual practical needs.
[0136] Please refer to Figure 8 , the adapter portion 25 is provided with at least one set of clamping components 251, and each set of clamping components 251 includes two clamping arms 251a that are spaced apart and arranged opposite to each other. The clamping arms 251a are used to clamp the functional portion 26. The clamping arms 251a have elasticity, so as to facilitate clamping the functional portion between a corresponding set of clamping arms 251a.
[0137] Please refer to Figure 18 and Figure 23 , the adapter portion 25 is provided with an assembly groove 257, and the functional portion 26 is snap-fitted in the assembly groove 257. The portion of the functional portion 26 located in the assembly groove 257 can be arranged in a strip shape to increase the contact area between the functional portion 26 and the assembly groove 257.
[0138] The adapter portion 25 has an assembly hole 252, and the functional portion 26 passes through the assembly hole 252.
[0139] Specifically, please refer to Figure 28 , the adapter portion 25 includes a front cover 253 and a rear cover 254 that are detachably connected. The rear cover 254 is located between the front cover 253 and the connecting member 10, and the front cover 253 is provided with a first groove 253a, and the rear cover 254 is provided with a second groove 254a. The assembly hole 252 is formed by enclosing between the second groove 254a and the first groove 253a.
[0140] See also Figure 24 A slot 255 is provided on the surface of the adapter portion 25 , and a hook 261 is provided on the functional portion 26 . The hook 261 is engaged with the slot 255 .
[0141] Each functional portion 26 is correspondingly connected to at least one adapter portion 25 .
[0142] For example, in Figures 7 to 31 In the embodiment shown, each functional portion 26 is connected to a corresponding adapter portion 25. Figures 32 - 34 In the illustrated embodiment, the functional portion 26 is relatively large, and a plurality of adapter portions 25 jointly support the same functional portion 26 .
[0143] The functional part 26 is movably connected to the adapter part 25. In this way, the position of the functional part 26 relative to the adapter part 25 can be adjusted according to the use requirements. For example, please refer to 35 to Figure 38 The functional portion 26 is configured as a lamp 262 , and the lamp 262 is hinged to the adapter portion 25 .
[0144] The functional portion 26 is non-detachably connected to the adapter portion 25 .
[0145] Optionally, in some embodiments, the functional portion 26 may be non-detachably connected to the transition portion 25 by bonding, riveting, or the like.
[0146] Of course, the functional part 26 can also be provided integrally with the adapter part 25, for example, Figure 12 In the embodiment, the functional portion 26 is configured as a functional plane 256 on the adapter portion 25. The functional plane 256 is used to install the tool kit 310. The functional plane 256 can also be used to adhere to the front installation items.
[0147] Further, if Figure 13 As shown, Figure 11 The connector 10 in the embodiment can be configured to Figures 7 to 10 The connector 10 shown can also be configured as Figures 15 to 17 The connector 10 shown is in the form of Figures 15 to 17 In the embodiment, the connector 10 is provided with a matching hole 18, and the connector 10 is movably mounted on the outer periphery of the mounting structure 100 through the matching hole 18. Specifically, the mounting structure 100 can be configured as a waist belt (not shown), so that the connector 10 can be slidably mounted on the waist belt.
[0148] The function of the functional unit 26 is described below using several specific embodiments as examples.
[0149] See also Figures 18 to 29 The functional portion 26 is configured as a hook 263 for hanging reception installation items 300.
[0150] Among them, such asFigures 18 to 27 As shown, the hook 263 can be set as a single hook 263 that extends from below the adapter part 25. It can also be directly connected to the side of the adapter part 25 facing away from the connecting part 10.
[0151] As Figures 28 to 29 shown, the hook 263 can also be set in the form of a double hook.
[0152] Please refer to Figures 30 to 31 , the functional part 26 is configured as a hanging rack 264, and a plurality of hook bodies 265 are arranged on the hanging rack 264 at intervals. The plurality of hook bodies 265 are used to expand the hanging space of the hanging rack 264, so that more items to be installed can be hung.
[0153] Please refer to Figures 32 to 34 , the functional part 26 is configured as a frame structure 266. At least two adapter parts 25 are correspondingly connected to one frame structure 266. Moreover, the frame structure 266 can be used to install a tray 267, a ball frame 268 or a sheet metal rack 269.
[0154] Please refer to Figures 35 to 38 , the functional part 26 is configured as a lamp 262, wherein, Figure 35 is a schematic diagram of the folded state of the lamp; Figure 36 is a schematic diagram of the opened state of the lamp 262; Figure 37 is Figure 36 an exploded view of the installation structure 100 shown; Figure 38 is Figure 37 a schematic diagram of the fitting 20 in the installation structure 100 shown.
[0155] The lamp 262 is hinged to a side of the adapter part 25 through a hinge shaft 262a. Moreover, the lamp 262 can be flipped 270° relative to the adapter part 25. The lamp 262 is rotatably connected to the hinge shaft 262a through a rotating shaft 262b, and the lamp 262 can rotate 360° relative to the adapter part 25. Thus, it is convenient for the user to adjust the illumination angle of the lamp 262 according to the usage requirements.
[0156] Furthermore, an interface 258 is arranged below the adapter part 25. The interface 258 is used for inserting a tripod, so that the lamp 262 can be installed on the tripod for use.
[0157] Please refer to Figures 1 to 6 again, the present application also provides a storage system 1. The storage system 1 includes a load-bearing structure 200 and an installation structure 100 according to any one of claims 1-34.
[0158] The connecting part 10 of the installation structure 100 is fixedly installed on the load-bearing structure 200.
[0159] Optionally, asFigure 1 As shown, the load-bearing structure 200 is configured as a load-bearing plate 210, and the connecting member 10 is nailed to the load-bearing plate 210 by screws 250. Alternatively, as Figure 3 shown, the load-bearing structure 200 is configured as a box body 240, and the connecting member 10 is connected to the box body 240 by screws 250.
[0160] The connecting member 10 can also be directly bonded and fixed to the load-bearing structure 200.
[0161] The connecting member 10 of the mounting structure 100 is detachably connected to the load-bearing structure 200.
[0162] The mounting structure 100 is movably mounted on the load-bearing structure 200. In this way, it is convenient to adjust the mounting position of the mounting structure 100 relative to the load-bearing structure 200.
[0163] Optionally, in one embodiment, as Figure 1 、 Figure 2 and Figure 9 shown, the load-bearing structure 200 includes a guide rail 220. Two opposite end portions of the mounting structure 100 are respectively provided with a through groove 14, and two edges of the guide rail 220 are respectively slidably clamped in the two through grooves 14. In this way, the mounting structure 100 can slide along the extension direction of the guide rail 220. Among them, the through groove 14 is formed in the connecting member 10.
[0164] Optionally, the guide rail 220 is fixedly mounted on the load-bearing plate 210 by screws 250. That is, the guide rail 220 can be used in cooperation with the load-bearing plate 210.
[0165] Furthermore, as Figure 2 and Figure 9 shown, along the extension direction of the guide rail 220, a plurality of positioning holes 260 are provided at the edge of the guide rail 220 at intervals. At least one of the two through grooves 14 is provided with a locking pin 312, and the locking pin 312 can be inserted into any one of the positioning holes 260 to position and mount the mounting structure 100 on the guide rail 220. In this way, when the mounting structure 100 slides along the guide rail 220 to a certain positioning hole from 260, by inserting the locking pin 312 into this positioning hole 260, the mounting structure 100 can be locked on the guide rail 220.
[0166] Preferably, please continue to refer to Figure 9 , a limiting block 311 is provided at one end of the main body portion 31 away from the convex block 32. The limiting block 311 is arranged at an interval from the connecting member 10, and a through groove 14 is formed between the limiting block 311 and the connecting member 10. The through groove 14 is used for sliding cooperation with the load-bearing structure 200. In this way, the main body portion 31 can not only play a role in driving the convex block 32, but also be used to form a through groove 14 at an interval with the connecting member 10 for sliding and clamping with the guide rail 220.
[0167] Furthermore, the limiting block 311 is provided with a locking pin 312 , and the locking pin 312 can follow the auxiliary pushing block 33 to move to be plugged into and engaged with the positioning hole 260 on the load-bearing structure 200 .
[0168] Specifically, when the auxiliary pushing block 33 drives the main body 31 to move upward a preset distance along the anti-gravity direction Y, the locking pin 312 follows the main body 31 to move upward along the anti-gravity direction Y, thereby disengaging from the positioning hole 260, thereby unlocking the installation structure 100 locked on the guide rail 220, and the installation structure 100 can continue to slide along the extension direction of the guide rail 220 to adjust its position.
[0169] Of course, if Figure 22 As shown, a limit block 311 can also be provided separately. The limit block 311 is slidably connected to the connecting member 10 along the gravity direction X or the anti-gravity direction Y, and a through groove 14 is formed between the limit block 311 and the connecting member 10. The locking pin 312 is connected to the limit block 311 and can slide relative to the connecting member 10 along with the limit block 311.
[0170] like Figure 2 As shown, the guide rail 220 is comprised of multiple sections, and each section of guide rail 220 is provided with a connecting structure 221 at both ends along its extension direction. Adjacent sections of guide rail 220 can be connected and extended together via the connecting structures 221. This allows the length of the guide rail 220 to be increased or decreased based on actual needs, and facilitates transportation of the guide rail 220. Of course, the guide rail 220 can also be provided in a single, non-connectable section.
[0171] Specifically, the hanging structure 221 includes a hook 222 and a hole 223 ; a hook 222 is provided at one end of each guide rail 220 , and a hole 223 is opened at the other end, and the hook 222 can be inserted into the hole 223 to connect two adjacent guide rails 220 .
[0172] See also Figure 4 The load-bearing structure is configured as a box 240, the load-bearing structure 200 is provided with a hanging bar 230, and the connector 10 has a snap hook 17, which is slidably mounted on the hanging bar 230. In this way, the position of the connector 10 on the load-bearing structure 200 can be freely adjusted.
[0173] Furthermore, there are two snap hooks 17, which are spaced apart and respectively used to clamp the upper and lower edges of the hanging bar 230. In this way, the connection between the connector 10 and the hanging bar 230 can be strengthened.
[0174] Furthermore, at least one of the snap hooks 17 is elastic, and by bending the snap hook 17 , the upper edge or the lower edge of the hanging bar 230 can be loosened, thereby facilitating the removal of the connector 10 from the hanging bar 230 .
[0175] Please refer to Figure 6 . The connecting member 10 is provided with a mating hole 18, and the connecting member 10 is movably sleeved around the outer periphery of the mounting structure 100 through the mating hole 18. In this embodiment, the mounting structure 100 can be configured as a belt (not shown in the figure). Thus, the connecting member 10 can be slidably mounted on the belt.
[0176] Furthermore, the connecting member 10 includes a fixing portion 191 and a movable portion 192. Among them, the fixing portion 191 is used to connect the mating member 20. One end of the movable portion 192 is hinged to the fixing portion 191, and the other end can be connected to the fixing portion. And a mating hole 18 is formed by enclosing the middle parts of the movable portion 192 and the fixing portion 191. Thus, by flipping the movable portion 192, the mating hole 18 can be opened, so that the connecting member 10 can be detached from the belt.
[0177] Furthermore, the connecting member 10 further includes a locking portion 193, and the locking portion 193 is used to lock the movable portion 192 and the fixing portion 191.
[0178] Optionally, the locking portion 193 is connected to the movable portion 192 and can rotate relative to the movable portion 192. When the movable portion 192 rotates to abut against the fixing portion 191, the movable portion 192 and the fixing portion 191 can be sleeved together and locked by flipping the locking portion 193.
[0179] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.
[0180] The above-described embodiments only represent several implementation manners of the present application. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the patent application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several deformations and improvements can still be made, and these all belong to the protection scope of the present application. Therefore, the patent protection scope of the present application should be subject to the appended claims.
Claims
1. An installation structure is installed on a load-bearing structure, characterized in that, include: Connectors; as well as A matching piece is connected to the load-bearing structure through the connecting piece, and the matching piece is used to carry the items to be installed.
2. The installation structure according to claim 1, characterized in that, The matching piece is non-detachably connected to the connecting piece.
3. The installation structure according to claim 1, characterized in that The matching piece is detachably connected to the connecting piece.
4. The mounting structure according to claim 3, wherein The connecting member is provided with a first matching structure, and the matching member is provided with a second matching structure, at least part of the second matching structure is pressed against the first matching structure along the gravity direction X to limit the matching member from separating from the connecting member along the gravity direction X.
5. The installation structure according to claim 4, characterized in that The first mating structure is configured as a convex portion protruding from the surface of the connecting piece, and the second mating structure is configured as a mating groove. The mating groove has a first opening arranged opposite to the convex portion. The mating groove can be sleeved on the convex portion through the first opening, and the upper wall surface of the mating groove is pressed onto the convex portion along the gravity direction X.
6. The mounting structure according to claim 5, characterized in that, The outer peripheral wall of the convex portion is provided with a limiting convex edge, and the limiting convex edge is spaced apart from the surface of the connecting member. The first opening is provided with a flange extending toward the center of the first opening, and the flange is stopped between the limiting convex edge and the surface of the connecting member.
7. The mounting structure according to claim 6, characterized in that, The matching groove further has a second opening, and the second opening is connected to the first opening; Along the gravity direction X, the protrusion of the matching piece can sequentially pass through the second opening and the first opening and extend into the matching groove.
8. The mounting structure according to claim 3, wherein, The mounting structure further includes a locking member, which is used to limit the mating member from separating from the connecting member along the anti-gravity direction Y.
9. The mounting structure according to claim 8, characterized in that, The matching piece is provided with a third matching structure, and the locking piece is movably connected to the connecting piece; Furthermore, at least a portion of the locking member can be moved to a position where it protrudes from the surface of the connecting member close to the mating member, and is used to form a stop above the third mating structure along the gravity direction X; the locking member can be moved to a position where it does not protrude from the surface of the connecting member close to the mating member, so as to release the stop between the third mating structure and the locking member.
10. The installation structure according to claim 9, characterized in that, The connecting piece is provided with a through hole; The locking member includes a main body and a protrusion connected to each other, and the protrusion can extend through the through hole to the surface of the connecting member close to the matching member; the main body is movably connected to the connecting member and can drive the protrusion to disengage from the through hole.
11. The mounting structure according to claim 10, characterized in that, The locking member further includes an elastic support member, one end of which is connected to the connecting member, and the other end of which is pressed against the main body along the axial direction of the through hole, so that the protrusion can remain extended out of the through hole.
12. The mounting structure according to claim 10, characterized in that, The protrusion is provided with a guiding inclined surface; when the main body moves a preset distance along the anti-gravity direction Y, the protrusion can be separated from the through hole along the guiding inclined surface.
13. The mounting structure according to claim 12, wherein, The connecting member is provided with a sliding groove, and the end of the main body away from the protrusion can be slidably matched with the side wall of the sliding groove along the gravity direction X or the anti-gravity direction Y.
14. The installation structure according to claim 13, characterized in that, The locking member further includes an auxiliary pushing block connected to an end of the main body relatively away from the protrusion; By pushing the auxiliary pushing block along the anti-gravity direction Y, the protrusion can be driven to separate from the through hole.
15. The installation structure according to claim 14, wherein, The locking member further includes a first elastic reset member, one end of the first elastic reset member is connected to the upper wall surface of the sliding groove, and the other end elastically acts on the auxiliary pushing block along the gravity direction X.
16. The installation structure according to claim 14, characterized in that, A limiting block is provided at one end of the main body portion away from the bump, the limiting block is spaced from the connecting member, and a through groove is formed between the limiting block and the connecting member, and the through groove is used for sliding cooperation with the load-bearing structure.
17. The installation structure according to claim 16, characterized in that, The limiting block is provided with a locking pin, and the locking pin can move with the auxiliary pushing block to be inserted and cooperated with the load-bearing structure.
18. The mounting structure according to claim 10, characterized in that, The connecting member is provided with a first matching structure, the matching member is provided with a second matching structure, and at least part of the second matching structure is pressed against the first matching structure along the gravity direction X to limit the matching member from detaching from the connecting member along the gravity direction X; The first matching structure is configured as a convex portion protruding from the surface of the connecting member, the second matching structure is configured as a matching groove, the matching groove has a first opening facing the convex portion, the matching groove can be sleeved on the convex portion through the first opening, and the upper wall surface of the matching groove is pressed against the convex portion along the gravity direction X; The through hole is opened in the convex portion, and the third matching structure is configured as a clamping block protruding inside the matching groove.
19. The installation structure according to claim 8, characterized in that, The connecting member is provided with a third matching structure, and the locking member is movably connected to the matching member; At least part of the locking member can move to protrude from the surface of the matching member close to the connecting member and is used for stopping below the third matching structure along the gravity direction X; the locking member can move to not protrude from the surface of the matching member close to the connecting member to release the stop with the third matching structure.
20. The installation structure according to claim 19, wherein, The matching member has an assembly cavity, the assembly cavity has a first opening facing the connecting member, the locking member is movably accommodated in the assembly cavity, and at least part of the locking member can extend out through the first opening.
21. The installation structure according to claim 20, characterized in that, The assembly cavity has a second opening facing the anti-gravity direction Y; the locking member includes a baffle and a transmission button, the baffle extends out through the first opening, one end of the transmission button extends out through the second opening, and the other end is movably connected to the baffle; As the transmission button moves along the gravity direction X, the transmission button can push the baffle to contract into the assembly cavity.
22. The installation structure according to claim 21, characterized in that, The side wall of the transmission button away from the first opening is configured as a transmission inclined surface, the baffle is provided with a through hole, the transmission button passes through the through hole, and the transmission inclined surface is pressed against the inner wall of the through hole; As the transmission button moves along the gravity direction X, the transmission inclined surface can apply a force from the first opening to the assembly cavity to the inner wall of the through hole.
23. The installation structure according to claim 22, wherein, The locking member further includes a stop block, the stop block is connected to the transmission button and stops below the baffle along the gravity direction X.
24. The installation structure according to claim 23, wherein The locking member further includes a second elastic reset member, one end of the second elastic reset member is connected to the bottom wall of the assembly cavity, and the other end elastically acts on the stop block along the anti-gravity direction Y.
25. The installation structure according to claim 8, characterized in that, The connecting member is provided with a third matching structure, the third matching structure is configured as a limiting hole, the locking member is elastic, and the locking member is fixedly connected to the matching member; As the matching member moves relative to the connecting member, the locking member can be deformed and extend into the limiting hole.
26. The installation structure according to claim 25, characterized in that, The mounting structure further includes an auxiliary pushing block, wherein the auxiliary pushing block is movably connected to the matching member; As the auxiliary pushing block moves relative to the matching member, the auxiliary pushing block can drive the locking member to deform and disengage from the limiting hole.
27. The installation structure according to claim 1, characterized in that, The matching component includes a transition portion and a functional portion, wherein the functional portion is connected to the transition portion and is connected to the connecting component through the transition portion.
28. The mounting structure according to claim 27, characterized in that, The functional part is detachably connected to the adapter part.
29. The installation structure according to claim 28, characterized in that, The adapter portion is provided with at least one group of clamping components, and each group of the clamping components includes two clamping arms that are spaced apart and arranged opposite to each other, and the clamping arms are used to clamp the functional portion.
30. The mounting structure according to claim 28, characterized in that The adapter portion has an assembly hole, and the functional portion is passed through the assembly hole.
31. The installation structure according to claim 30, characterized in that, The adapter portion includes a front cover and a rear cover that are detachably connected. The rear cover is located between the front cover and the connector. The front cover is provided with a first groove, and the rear cover is provided with a second groove. The second groove and the first groove enclose each other to form the assembly hole.
32. The mounting structure according to claim 28, wherein, A card slot is provided on the surface of the adapter portion, and a card hook is provided on the functional portion. The card hook is locked in the card slot.
33. The mounting structure according to claim 27, characterized in that, Each of the functional parts is correspondingly connected to at least one of the adapter parts.
34. The installation structure according to claim 1, characterized in that, The connecting member has at least one mounting surface and at least one matching surface, wherein the mounting surface is used to connect to the load-bearing structure, and the matching surface is used to connect to the matching member.
35. The mounting structure according to claim 34, characterized in that, The connecting piece has a mounting surface and a mating surface, and the mounting surface is arranged opposite to the mating surface.
36. A storage system, characterized in that, The storage system includes a load-bearing structure and an installation structure according to any one of claims 1 to 35.
37. The storage system according to claim 36, wherein The connecting member of the mounting structure is fixedly mounted on the load-bearing structure.
38. The storage system according to claim 36, wherein The connecting piece of the installation structure is movably installed on the load-bearing structure.
39. The storage system according to claim 38, wherein The load-bearing structure includes a guide rail. Two opposite ends of the mounting structure are respectively provided with a through slot. Two edges of the guide rail are respectively slidably clamped in the two through slots.
40. The storage system according to claim 39, wherein Along the extension direction of the guide rail, the edge of the guide rail is provided with a plurality of positioning holes distributed at intervals, and at least one of the two through grooves is provided with a locking pin, which can be inserted into any one of the positioning holes to position the mounting structure on the guide rail.
41. The storage system according to claim 40, wherein, The guide rails are in multiple sections, and each section of the guide rails is provided with hanging structures at both ends along its own extension direction. Two adjacent sections of the guide rails can be spliced and extended with each other through the hanging structures.
42. The storage system according to claim 38, wherein The load-bearing structure is provided with a hanging bar, and the connecting piece is provided with a clamping hook, and the clamping hook is slidably clamped on the hanging bar.
43. The storage system according to claim 37, wherein The connecting piece is provided with a matching hole, and the connecting piece is movably sleeved on the outer periphery of the mounting structure through the matching hole.