Storage assembly and tool assembly
By introducing a diverse connection structure and identification design between the tool storage part and the storage box, the storage inconvenience caused by the single connection in the prior art is solved, and a fast and reliable storage process is achieved.
Patent Information
- Application Number
- CN202422311166.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-20
AI Technical Summary
The connection method between the existing tool storage parts and the storage box is single, which leads to a long time to confirm the connection position and adjust the position during the storage process, which reduces the convenience of storage.
A storage assembly is designed, in which the connecting part of the tool storage part is optionally removably connected to the two connecting parts of the storage box, including structures such as jaws, collars, magnet columns, etc., to realize a diverse connection method, and to facilitate identification of accessories in the storage box through inclined surface identification.
It improves the convenience and reliability of the connection between the tool storage parts and the storage box, shortens the connection time, and enhances the convenience and management of storage.
Smart Images

Figure CN223057706U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of tools, and more particularly, to a storage component and a tool component. Background Art
[0002] In the prior art, there are a large number of accessories such as bits that can be used in conjunction with tools such as screwdrivers. Therefore, there are storage boxes for storing bits, and there are tool storage members for storing a main body (such as a screwdriver). In the prior art where the tool storage member and the storage box can be connected to each other, the tool storage box can only be connected to the storage box from one side of the storage box, that is, during the storage process, it is necessary to first distinguish which side of the storage box can be connected to the tool storage member, and then connect the tool storage member to the storage box. Summary of the Utility Model
[0003] The purpose of this application is to provide a storage component and a tool component, which have higher convenience during the storage process.
[0004] The embodiments of this application are implemented as follows:
[0005] In a first aspect, an embodiment of this application provides a storage component, including a tool storage member and a storage box. The tool storage member is provided with a first connection portion; the storage box includes a box body. A second connection portion is provided on a first side of the box body, and a third connection portion is provided on a second side of the box body opposite to the first side. The first connection portion is selectively detachably connected to the second connection portion or the third connection portion.
[0006] In the above technical solution, the tool storage member is used to store the main body, and the storage box is used to store the accessories. Since the first connection portion of the tool storage member is selectively detachably connected to the second connection portion or the third connection portion, the tool storage member can be connected to either the first side or the second side of the storage box. The connection method between the tool storage member and the storage box is more diverse. Therefore, the tool storage member and the storage box can be connected more conveniently and quickly, shortening the storage time and improving the convenience of storage.
[0007] In some alternative embodiments, both the second connection portion and the third connection portion include two cylindrical structures. The cylindrical structures extend in a direction from a first surface of the box body to a second surface. The tool storage member includes a storage cylinder, and the first connection portion includes two connection structures. The two connection structures are spaced apart on the storage cylinder, and one connection structure at least partially surrounds the outer periphery of one of the cylindrical structures for connection.
[0008] In the above technical solution, both the second connecting portion and the third connecting portion include two cylindrical structures. The connecting structures in the first connecting portion can be respectively connected to one cylindrical structure. That is, there are at least two connecting positions between the tool storage member and the storage box, making the connection between the storage box and the tool storage member more reliable.
[0009] In some alternative embodiments, the box body includes a box body for storing accessories and connectors provided at both ends in the length direction of the box body. The cylindrical structure is provided on the connector, and both ends of the cylindrical structure protrude from the connector in the thickness direction. When two of the storage boxes overlap, the connecting structure can be simultaneously connected to the upper and lower cylindrical structures at the overlapping portion of the two storage boxes.
[0010] In the above technical solution, the accessories are stored in the box body and the cylindrical structure members are provided on the connectors, which can reduce the influence on the process of taking and placing accessories when the first connecting portion is connected to the cylindrical structure. Since both ends of the cylindrical structure protrude from the connector in the thickness direction, the connecting structure in the first connecting portion can surround the outer periphery of the cylindrical structure either from the radial direction of the cylindrical structure or from the axial direction of the cylindrical structure.
[0011] In some alternative embodiments, the box body is provided with an inclined surface that connects the surface and the side surface of the box body, and the inclined surface is provided with a mark.
[0012] In the above technical solution, the mark can be associated with the accessories stored in the box body, so that when in use, the user can conveniently know the type of accessories stored in the box body through the inclined surface. And the mark is provided on the inclined surface, and the mark can be seen whether multiple storage boxes overlap or multiple storage boxes are horizontally spliced, so as to know the types of accessories in the storage box.
[0013] In some alternative embodiments, each of the connecting structures includes a claw, and one of the claws can be selectively clamped outside one of the cylindrical structures.
[0014] In the above technical solution, the connection between the first connecting portion and the second connecting portion is a snap connection, which is convenient for disassembly and assembly.
[0015] In some alternative embodiments, the claw includes a first clip and a second clip. One end of the first clip and the second clip is hinged, and they are elastically connected between them. The ends of the first clip and the second clip away from the hinged portion can open to be clamped outside the cylindrical structure and can rebound to clamp the cylindrical structure by the first clip and the second clip.
[0016] In the above technical solution, the clamping jaw is clamped with the cylindrical structure in the storage box, and the first clamping clip and the second clamping clip of the clamping jaw are hinged, so that one end of the first clamping clip and the second clamping clip can be opened to be clamped outside the cylindrical structure, and then rebound to clamp the cylindrical structure, making the disassembly between the tool storage member and the storage box convenient.
[0017] In some alternative embodiments, a tension spring or a torsion spring is connected between the first clamping clip and the second clamping clip.
[0018] In some alternative embodiments, the box body is provided with a groove structure; the two first clamping clips are located between the two second clamping clips, and a convex rib is provided on one side of the first clamping clip facing the other first clamping clip; the clamping jaw and the storage box are configured such that: along a direction perpendicular to the axis of the cylindrical structure, the convex rib is inserted into the groove structure, and one end of the first clamping clip and the second clamping clip away from the hinge can be opened first and then rebound to clamp the cylindrical structure.
[0019] In the above technical solution, the box body and the first clamping clip are respectively provided with a groove structure and a convex rib, and the process of inserting the convex rib into the groove structure can simultaneously realize the process of the first clamping clip and the second clamping clip clamping the cylindrical structure, that is, after connecting the clamping jaw and the cylindrical structure, the convex rib is located in the groove structure. Therefore, the displacement of the connected tool storage member and the storage box along the axial direction of the cylindrical structure can be restricted.
[0020] In some alternative embodiments, the first clamping clip is fixedly connected to the storage cylinder.
[0021] In the above technical solution, the first clamping clip is provided with a convex rib and is fixedly connected to the storage cylinder. During the process of connecting the storage box and the tool storage member, the relative position between the first clamping clip and the storage cylinder does not change, so that the convex rib can be better inserted into the groove structure of the box body.
[0022] In some alternative embodiments, the connecting structure includes a collar, and one collar is selectively sleeved outside one cylindrical structure.
[0023] In some alternative embodiments, one connecting structure includes a collar, and the other connecting structure includes a clamping jaw. One collar is selectively sleeved outside one cylindrical structure, and the other clamping jaw is selectively clamped outside the other cylindrical structure.
[0024] In some alternative embodiments, each cylindrical structure includes an outer cylinder and a magnet cylinder arranged inside the outer cylinder. The magnet cylinder is used to magnetically connect the two box bodies; one connecting structure at least partially surrounds the outer periphery of one outer cylinder.
[0025] In the above technical solution, the storage boxes are connected by the magnetic force of the magnetic columns, and the storage box and the tool storage member are connected through the connection structure in the first connection portion and the outer column in the columnar structure of the storage box. That is, the magnetic column and the outer column for connecting the storage boxes are arranged at the same position, which can reduce the space occupation, make the structure of the storage box simpler, and the magnetic column is located inside the outer column, and the outer column can protect the magnetic column.
[0026] In some alternative embodiments, the first connection portion is detachably connected to the second connection portion or the third connection portion by magnetic adsorption; the magnetic adsorption is the adsorption between magnets or the adsorption between a magnet and a ferromagnetic structural member.
[0027] In the above technical solution, the first connection portion can be magnetically connected to the second connection portion or magnetically connected to the third connection portion. The tool storage member and the storage box are detachably connected by magnetic adsorption, and the disassembly is more convenient.
[0028] In some alternative embodiments, the first connection portion, the second connection portion, and the third connection portion each include a sub-component and a mother-component. In the box body, the setting position of the sub-component on one side corresponds to the setting position of the mother-component on the other side, and the setting position of the mother-component on one side corresponds to the setting position of the sub-component on the other side; the sub-component of the first connection portion can be detachably connected to the mother-component of the second connection portion or the third connection portion, and the mother-component of the first connection portion can be detachably connected to the sub-component of the second connection portion or the third connection portion.
[0029] In the above technical solution, the first connection portion, the second connection portion, and the third connection portion each include a sub-component and a mother-component, and the sub-component and the mother-component are arranged according to the above technical solution, so that the tool storage member connects the storage box through the sub-component and the mother-component. There are at least two connections between the tool storage member and the storage box. That is, one connection is at the position where the sub-component in the tool storage member is located, and the other is at the position where the mother-component in the tool storage member is located, making the connection between the tool storage member and the storage box more reliable.
[0030] In some alternative embodiments, in the box body, the setting positions of the sub-components and the mother-components on the same side are symmetric about the median line extending vertically in the corresponding side surface.
[0031] In the above technical solution, in the case where a storage box connects the sub-components and mother-components of another storage box through the sub-components and mother-components on one side, since the setting positions of the sub-components and mother-components are symmetric about the median line extending vertically in the side surface of the box body, the two ends after the two storage boxes are connected can be aligned.
[0032] In some alternative embodiments, the sub-component is a jack and the mother-component is a plug.
[0033] In the above technical solution, the tool storage member and the storage box are connected by plugging, which is convenient for disassembly and connection.
[0034] In some alternative embodiments, an end portion of the plug has a bent portion, and the plug and the socket are configured such that after the plug is inserted into the socket, they can slide relative to each other so that the bent portion hooks on the inner wall of the socket.
[0035] In the above technical solution, after the plug is inserted into the socket, the two storage boxes slide relative to each other perpendicular to the insertion direction, so that the bent portion at the end of the plug can hook on the inner wall of the socket, thereby restricting the relative movement between the two storage boxes and making the connection between the two storage boxes more reliable.
[0036] In some alternative embodiments, a groove is provided in a region of the inner wall of the box body close to the socket, the bent portion extends towards the box body and forms a hook-like structure, and the plug and the socket are configured such that when the plug is inserted into the socket and the plug is slid along a direction perpendicular to the insertion direction, the hook-like structure can hook the groove.
[0037] In the above technical solution, hooking the groove by the hook-like structure can further improve the reliability of the plug-in connection between the sub-member and the mother member.
[0038] In some alternative embodiments, the end portion of the plug away from the box body has two protruding free ends, and there is a gap between the two free ends, and the end portion of the free end has a chamfer; when the plug is connected to the socket, the two free ends can be squeezed towards the gap to simultaneously extend into a socket, and can rebound away from each other to have an interference fit with the socket.
[0039] In the above technical solution, due to the chamfer structure at the end of the free end, the plug can enter the socket more easily; due to the gap between the two free ends, space is provided for the deformation of the free ends so that the free ends can extend into the socket; after the free ends rebound, they have an interference fit with the socket, which can make the connection relatively stable.
[0040] In some alternative embodiments, the sub-member is a chute structure, and the mother member is a slide rail structure that can be slidably connected to the chute structure in terms of structure; or, the second connecting portion and the third connecting portion include a slide rail structure, and the first connecting portion includes a chute structure that can be slidably connected to the slide rail structure in terms of structure; or, the second connecting portion and the third connecting portion include a chute structure, and the first connecting portion includes a slide rail structure that can be slidably connected to the chute structure in terms of structure.
[0041] In the above technical solution, a sliding groove structure and a sliding rail structure are adopted between the tool storage member and the storage box to achieve detachable connection, and the tool storage member can be connected to the first side of the middle box body of the storage box or the second side of the box body. Since there is a relatively long contact position between the sliding groove structure and the sliding rail structure, the connection between the tool storage member and the storage box can be made more stable and reliable.
[0042] In some alternative embodiments, the storage assembly includes a tool storage member and at least two storage boxes. The tool storage member has a first connecting portion; each storage box includes a box body having opposite first and second sides. The first side is provided with a second connecting portion, and the second side is provided with a third connecting portion. The second connecting portion of one storage box can be detachably connected to the first connecting portion, and the third connecting portion of the storage box can be detachably connected to the second connecting portion of an adjacent storage box.
[0043] In the above technical solution, since the second connecting portion on the first side of the box body and the third connecting portion on the other side are in position correspondence and can be detachably connected in structure, it is convenient to connect two storage boxes by connecting the second connecting portion of one storage box and the third connecting portion of another storage box. In addition, the second connecting portion of the storage box and the first connecting portion of the tool storage member can be detachably connected, that is, the storage box can not only be connected to the tool storage member on one side, but also be connected to another storage box on the other side at the same time, so that the storage box and the tool storage member can be connected into an integral structure, which is convenient for storage and management.
[0044] In some alternative embodiments, both the second connecting portion and the third connecting portion include a sub-member and a mother member, and the sub-member and the mother member can be matched to achieve connection; the sub-member in the second connecting portion corresponds to the mother member in the third connecting portion, and the mother member in the second connecting portion corresponds to the sub-member in the third connecting portion; the first connecting portion is detachably connected to the sub-member and the mother member.
[0045] In the above technical solution, the sub-member and the mother member in the second connecting portion of one storage box can be correspondingly connected to the mother member and the sub-member in the third connecting portion of another storage box, that is, there are at least two connection positions between the two storage boxes, and the connection is more reliable. Since the first connecting portion is connected to the sub-member and the mother member, and both the second connecting portion on the first side of the box body and the third connecting portion on the second side are provided with the sub-member and the mother member, the tool storage member can be connected to the storage box from both the first side and the second side of the box body; that is, after two adjacent storage boxes are connected, the tool storage member can be connected to either one of the two storage boxes or the other.
[0046] In some alternative embodiments, one of the storage boxes and another storage box can be magnetically connected through the sub-component and the mother-component.
[0047] In the above technical solution, the storage boxes are magnetically connected, which is convenient for connection and easy to disassemble.
[0048] In some alternative embodiments, the box body further has opposite first and second surfaces. The sub-component and the mother-component are both columnar structures, and the columnar structures extend along the direction from the first surface to the second surface. The first connecting portion is detachably connected to one or two of the columnar structures on the same side of the box body.
[0049] In the above technical solution, since the sub-component and the mother-component are columnar structures and extend along the direction from the first surface to the second surface, the first surface and the second surface can be made magnetic, and thus the two storage boxes can be overlapped vertically and magnetically connected. And since the sub-component and the mother-component are provided on both the first side and the second side of the box body, the storage boxes can not only be overlapped vertically, but also be connected horizontally.
[0050] In some alternative embodiments, the columnar structure includes a magnet column. The pole of the magnet column in the sub-component near the first surface is the N pole, and the pole of the magnet column in the mother-component near the first surface is the S pole; the sub-component and the mother-component in the second connecting portion of one box body can attract the sub-component and the mother-component in the third connecting portion of another adjacent box body to realize magnetic connection of the two adjacent box bodies.
[0051] In some alternative embodiments, the columnar structure further includes an outer column, and the magnet column is arranged inside the outer column; the first connecting portion is detachably connected to the outer column on the same side.
[0052] In the above technical solution, the magnet column needs to be installed after the box body is produced. The outer column can, on the one hand, be used for installing the magnet, and on the other hand, can also be used for detachable connection with the first connecting portion. Further, the positions for installing the magnet and for connecting with the first connecting portion are both located on the outer column, which can reduce the occupation of the space of the box body and simplify the structure of the box body.
[0053] In some alternative embodiments, the sub-component includes a magnet column, the mother-component includes a ferromagnetic structural member, and the first connecting portion is detachably connected to the magnet column and the ferromagnetic structural member on the same side of the box body.
[0054] In some alternative embodiments, the box body has a square structure, and four of the columnar structures are provided on each box body. The four columnar structures are located at the four corners of the box body. Along the circumferential direction of the box body, the sub-component, the mother component, another sub-component, and another mother component are arranged in sequence; the first connecting portion is detachably connected to the two columnar structures on the same side of the box body.
[0055] In the above technical solution, since columnar structures are provided at the four corners of the box body, when the storage boxes are overlapped, there can be four connection positions between the upper and lower storage boxes, making the connection more reliable. And the direction of overlapping of the two storage boxes can be unrestricted.
[0056] In some alternative embodiments, the box body includes a box body for storing accessories and connectors provided at both ends in the length direction of the box body. The columnar structure is provided on the connector, and both ends of the columnar structure protrude from the connector; the first connecting portion is connected to the part of the columnar structure protruding from the connector.
[0057] When the two storage boxes are overlapped, the first connecting portion can be simultaneously connected to the upper and lower columnar structures at the overlapping part of the two storage boxes.
[0058] In some alternative embodiments, the tool storage member includes a storage cylinder for storing the main body. The first connecting portion includes two clamping claws, and the two clamping claws are provided at both ends of the storage cylinder. One clamping claw can be selectively clamped outside one of the columnar structures.
[0059] In the above technical solution, the clamping claws are provided at both ends of the storage cylinder, that is, both ends of the tool storage member are connected to the storage box, making the tool storage member more stable after connection and not prone to shaking.
[0060] In some alternative embodiments, the first connecting portion includes two sleeves, and the two sleeves are provided at both ends of the storage cylinder. One sleeve can be selectively sleeved outside the columnar structure at one end.
[0061] In the above technical solution, the connection between the tool storage member and the storage box is realized by sleeving the sleeve outside the columnar structure, which can limit the relative movement of the storage box and the tool storage member along the radial direction of the columnar structure after connection, making the connection more reliable.
[0062] In some alternative embodiments, both the sub-component and the mother-component are columnar structures, and magnetic connection can be achieved between the second connecting portion and the third connecting portion through the magnetic force between the sub-component and the mother-component; both the sub-component and the mother-component in the second connecting portion include columnar outer columns and ferromagnetic structural members disposed within the outer columns; both the sub-component and the mother-component in the third connecting portion include columnar outer columns and magnet columns disposed within the outer columns; the first connecting portion is detachably connected to the outer column on the same side of the box body.
[0063] In some alternative embodiments, both the sub-component and the mother-component are columnar structures, and magnetic connection can be achieved between the second connecting portion and the third connecting portion through the magnetic force between the sub-component and the mother-component; both the sub-component in the second connecting portion and the sub-component in the third connecting portion include columnar outer columns and magnet columns disposed within the outer columns; both the mother-component in the second connecting portion and the mother-component in the third connecting portion include columnar outer columns and ferromagnetic structural members disposed within the outer columns; the first connecting portion is detachably connected to the outer column on the same side of the box body.
[0064] In some alternative embodiments, both the sub-component and the mother-component are columnar structures, and magnetic connection can be achieved between the second connecting portion and the third connecting portion through the magnetic force between the sub-component and the mother-component; both the sub-component and the mother-component include columnar outer columns and magnet columns disposed within the outer columns; the first connecting portion is detachably connected to the outer column on the same side of the box body.
[0065] In a second aspect, an embodiment of the present application provides a tool assembly, including a main body and the storage assembly provided in the first aspect, and the main body is detachably connected to the tool storage member. BRIEF DESCRIPTION OF THE DRAWINGS
[0066] To more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments. It should be understood that the following drawings only show some embodiments of the present application and should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.
[0067] Figure 1 Schematic diagram of the tool storage member provided in an embodiment of the present application connected to the first side of the box body;
[0068] Figure 2 Schematic diagram of the tool storage member provided in an embodiment of the present application connected to the second side of the box body;
[0069] Figure 3 Schematic diagram of the connection between the tool storage member and the storage box in an embodiment of the present application;
[0070] Figure 4 is Figure 3 an enlarged view of part A in
[0071] Figure 5 a schematic diagram showing the connection between a tool storage member and a storage box in an embodiment of the present application;
[0072] Figure 6 a schematic diagram showing the connection between a tool storage member and a storage box in an embodiment of the present application;
[0073] Figure 7 a schematic diagram showing the connection between a tool storage member and a storage box in an embodiment of the present application;
[0074] Figure 8 a schematic diagram showing the connection between a tool storage member and a storage box in an embodiment of the present application;
[0075] Figure 9 a schematic diagram showing the connection between a tool storage member and a storage box in an embodiment of the present application;
[0076] Figure 10 a schematic diagram of a storage box in an embodiment of the present application;
[0077] Figure 11 is Figure 10 a top view of the storage box in
[0078] Figure 12 is Figure 10 a front view of the storage box in
[0079] Figure 13 a schematic diagram of a storage box in an embodiment of the present application;
[0080] Figure 14 a schematic diagram of a storage box in an embodiment of the present application;
[0081] Figure 15 a schematic diagram of a plug-in in an embodiment of the present application;
[0082] Figure 16 a schematic diagram of a plug-in in an embodiment of the present application;
[0083] Figure 17 a schematic diagram of a tool storage member in an embodiment of the present application;
[0084] Figure 18 a schematic diagram of a tool storage member in an embodiment of the present application;
[0085] Figure 19 a schematic diagram of a tool storage member in an embodiment of the present application;
[0086] Figure 20Schematic diagram of a tool storage member in an embodiment of the present application;
[0087] Figure 21 Schematic diagram of stacking storage boxes in an embodiment of the present application;
[0088] Figure 22 Schematic diagram of stacking storage boxes in an embodiment of the present application;
[0089] Figure 23 Schematic diagram of splicing storage boxes in the width direction in an embodiment of the present application;
[0090] Figure 24 Schematic diagram of splicing storage boxes in the length direction in an embodiment of the present application.
[0091] Icons: 100 - tool storage member; 110 - first connection part; 111 - accommodation space; 112 - connection structure; 120 - clamping jaw; 121 - first clip; 1211 - convex rib; 122 - second clip; 123 - elastic member; 130 - collar; 140 - storage tube; 200 - storage box; 210 - box body; 211 - second connection part; 212 - third connection part; 213 - box body; 214 - connecting member; 215 - first surface; 216 - accessory groove; 217 - groove structure; 218 - inclined surface; 310 - sub - part; 311 - jack; 3111 - groove; 320 - mother part; 321 - plug; 3211 - bent part; 3212 - free end; 3213 - interval; 330 - cylindrical structure; 331 - outer column; 332 - magnet column. Detailed implementation manners
[0092] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. The components of the embodiments of the present application usually described and illustrated in the accompanying drawings here can be arranged and designed in various different configurations.
[0093] Therefore, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the claimed present application, but merely represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts fall within the scope of protection of the present application.
[0094] It should be noted that: similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.
[0095] In the description of the present application, it should be noted that the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of this application is customarily placed during use. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or component referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation on the present application. In addition, terms such as "first", "second", "third", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0096] In addition, terms such as "horizontal", "vertical", "hanging", etc. do not mean that the components are required to be absolutely horizontal or hanging, but can be slightly inclined. For example, "horizontal" only means that its direction is more horizontal relative to "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.
[0097] In the description of the present application, it should also be noted that unless otherwise clearly specified and limited, the terms "set", "installed", "connected", "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.
[0098] An embodiment of the present application provides a tool assembly, including a main body and a storage assembly. Among them, as Figures 1 to 9 shown, the storage assembly includes a storage box 200 for storing accessories and a tool storage member 100 for storing the main body. The main body is detachably connected to the tool storage member 100. In the storage assembly provided by the present application, the main body that the tool storage member 100 can store can be a screwdriver or a grinder. Correspondingly, the accessories are bit heads or grinding heads; the main body can also be other tools that can be used with replaceable accessories, such as an electric drill with a replaceable drill bit, and the accessory is a drill bit.
[0099] Furthermore, the tool storage member 100 is provided with a first connection portion 110. The storage box 200 includes a box body 210. As Figures 10 to 14 shown, a second connection portion 211 is provided on the first side of the box body 210, and a third connection portion 212 is provided on the opposite second side. The first connection portion 110 can be selectively detachably connected to the second connection portion 211 or the third connection portion 212. That is, as Figure 1 and Figure 2As shown, the first connecting portion 110 can be connected to the second connecting portion 211 on the first side of the box body 210, or can be connected to the third connecting portion 212 on the second side of the box body 210. The tool storage member 100 provided in this embodiment can be connected to either of the two opposite sides of the box body 210 in the storage box 200. During the process of connecting the tool storage member 100 to the storage box 200, the time for confirming the position of the structure in the storage box 200 for connecting to the tool storage member 100 is reduced, and at the same time, the time spent on adjusting the position of the tool storage member 100 or the storage box 200 for connecting the tool storage member 100 to the storage box 200 is also reduced, greatly improving the convenience of storage.
[0100] In some embodiments, as Figures 10 to 12 shown, the second connecting portion 211 includes two cylindrical structures 330. As Figures 17 to 20 shown, the tool storage member 100 includes a storage cylinder 140, and the first connecting portion 110 includes two connecting structures 112. The two connecting structures 112 are arranged at an interval of 3213 on the storage cylinder 140, and one connecting structure 112 at least partially surrounds the outer periphery of one cylindrical structure 330 for connection. That is, the connection between the first connecting portion 110 and the second connecting portion 211 is realized by the way that the connecting structure 112 at least partially surrounds the outer periphery of the cylindrical structure 330. When the connecting structure 112 partially surrounds the outer periphery of the cylindrical structure 330 as Figure 4 shown, the relative movement between the connecting structure 112 and the cylindrical structure 330 in the radial direction of the cylindrical structure 330 is restricted. Among them, the restricted relative movement means that when there is a tendency of relative movement between the connecting structure 112 and the cylindrical structure 330 in the radial direction of the cylindrical structure 330, there is a resistance between the connecting structure 112 and the cylindrical structure 330 that hinders the relative movement of the two. When the acting force driving the relative movement between the connecting structure 112 and the cylindrical structure 330 is less than this resistance, the driving connecting structure 112 and the cylindrical structure 330 still maintain a connection relationship. Further, in some embodiments, when the acting force driving the relative movement between the connecting structure 112 and the cylindrical structure 330 is greater than this resistance, the connecting structure 112 and the cylindrical structure 330 are separated from each other, but the connecting structure 112 and the cylindrical structure 330 are not damaged; in other embodiments, it can also be that when the acting force driving the relative movement between the connecting structure 112 and the cylindrical structure 330 is greater than this resistance, the connecting structure 112 and the cylindrical structure 330 are separated from each other, and the connecting structure 112 and the cylindrical structure 330 are damaged. In this embodiment, the connecting structure 112 can move relative to the cylindrical structure 330 along the axial direction of the cylindrical structure 330, so that the cylindrical structure 330 and the connecting structure 112 are separated.
[0101] In some embodiments, the outer contour of the cross-section of the cylindrical structure 330 in a direction perpendicular to its own axis is circular; in other embodiments, the outer contour of the cross-section of the cylindrical structure 330 in a direction perpendicular to its own axis may also be rectangular, elliptical, etc. In the case where the outer contour is not circular, the radial direction of the cylindrical structure 330 is the direction that intersects its axis and is perpendicular to its axis.
[0102] In some embodiments, such as Figure 10 as Figure 11 shown, the box body 210 includes a box body 213 for accommodating accessories and connecting members 214 provided at both ends in the length direction of the box body 213; the cylindrical structure 330 is provided on the connecting member 214, and both ends of the cylindrical structure 330 protrude from the connecting member 214. When the cylindrical structure 330 is connected to the connecting structure 112, the connecting structure 112 is connected to the part of the cylindrical structure 330 that protrudes from the connecting member 214. In this embodiment, since the end of the cylindrical structure 330 protrudes from the connecting member 214, therefore, when the connection method between the first connection portion 110 and the cylindrical structure 330 is that the first connection portion 110 is sleeved outside the cylindrical structure 330, the first connection portion 110 can be connected to the cylindrical structure 330 axially or radially from the cylindrical structure 330. Further, in the case where there are two storage boxes 200 in the storage assembly, when the two storage boxes 200 overlap, the connecting member 214 can be simultaneously connected to the upper and lower cylindrical structures 330 at the overlapping part of the two storage boxes 200. Further, such as Figure 6 as Figure 12 shown, the box body 210 is provided with an inclined surface 218, and the inclined surface 218 connects the second surface and the side surface, and a mark is provided on the inclined surface 218. Specifically, the mark can be associated with the accessories accommodated in the box body 210, so that when in use, the user can conveniently know the type of accessories accommodated in the box body 210 below through the inclined surface 218.
[0103] Further, in some embodiments, such as Figures 1 to 5 and Figure 17 as Figure 18As shown, each connection structure 112 in the first connection portion 110 includes a claw 120, and the claw 120 can be selectively clamped outside a cylindrical structure 330. That is, in some usage states, the claw 120 is clamped outside the cylindrical structure 330, and in some other usage states, the claw 120 is not clamped with the cylindrical structure 330. In some other embodiments, it may also be that some connection structures 112 include claws 120 and some other connection structures 112 include collars 130. The collar 130 has a closed, annular receiving space 111. The collar 130 can move toward the cylindrical structure from the axial direction of the cylindrical structure, so that the outer periphery of the cylindrical structure is surrounded by the collar 130, that is, the cylindrical structure is located within the receiving space 111, and the movement of the cylindrical structure in the radial direction is restricted by the collar 130; when the tool storage member 100 is connected to the storage box 200, one connection structure can be selectively clamped outside a cylindrical structure through the claw 120, and the other connection structure 112 can be selectively sleeved outside another cylindrical structure through the collar 130. In some embodiments, as Figure 19 shown, it may also be that each connection structure 112 includes a collar 130. It is not difficult to understand that in the above embodiments, the claw 120 surrounds a peripheral portion of the cylindrical structure 330, and the collar 130 completely surrounds the outer periphery of the cylindrical structure 330.
[0104] Furthermore, in some embodiments, as Figure 17 shown in Figure 18 the figure, the claw 120 includes a first clip 121 and a second clip 122. One ends of the first clip 121 and the second clip 122 are hinged, and the first clip 121 and the second clip 122 are elastically connected, that is, the first clip 121 and the second clip 122 can move relative to each other under the action of a force, and after the force is withdrawn, the first clip 121 and the second clip 122 can return to the state before the application of the force. The ends of the first clip 121 and the second clip 122 away from the hinge can open to be clamped outside the cylindrical structure 330, and can rebound so that the first clip 121 and the second clip 122 clamp the cylindrical structure 330. That is, the claw 120 can be connected to the cylindrical structure 330 from the radial direction of the cylindrical structure 330.
[0105] Specifically, as Figure 18In an embodiment shown, the first clip 121 and the second clip 122 form a receiving space 111 for receiving a cylindrical structure 330. The receiving space 111 has a notch at a first end away from the hinged position of the first clip 121 and the second clip 122. In the case where no force is applied to the claw 120, the elastic connection between the first clip 121 and the second clip 122 makes the size of the notch smaller than the size of the cylindrical structure 330. After a force is applied to the claw 120, one ends of the first clip 121 and the second clip 122 away from the hinge open, so that the size of the notch can be increased for the cylindrical structure 330 to pass through. The process of connecting the claw 120 provided in this embodiment to the cylindrical structure 330 includes: moving the claw 120 towards the cylindrical structure 330 along the radial direction of the cylindrical structure 330. When the cylindrical structure 330 is located at the notch, that is, when the claw 120 contacts the cylindrical structure 330, the reaction force exerted by the cylindrical structure 330 on the claw 120 causes one ends of the first clip 121 and the second clip 122 away from the hinge to open, thereby enabling the cylindrical structure 330 to enter the receiving space 111 between the first clip 121 and the second clip 122. Then, the first clip 121 and the second clip 122 rebound under the action of the elastic connection, so that the cylindrical structure 330 is restricted within the receiving space 111. The first clip 121 and the second clip 122 can restrict the radial detachment of the cylindrical structure 330 from the receiving space 111, where "restrict" means that the first clip 121 and the second clip 122 can exert a certain resistance on the cylindrical structure 330 during the process of the cylindrical structure 330 detaching from the receiving space 111. According to the magnitude of the external actual force, under the restricting action of the first clip 121 and the second clip 122, the cylindrical structure 330 can either detach from the receiving space 111 or not. The radial direction of the receiving space 111 is the direction that intersects and is perpendicular to its axis.
[0106] Furthermore, the elastic connection between the first clip 121 and the second clip 122 can be realized by an elastic member 123 such as a tension spring or a torsion spring. It is not difficult to understand that at least one of the first clip 121 and the second clip 122 is movable. In some embodiments, one end of the tension spring or the torsion spring is connected to the movable one of the first clip 121 and the second clip 122, and the other end is connected to the other one of the first clip 121 and the second clip 122, or the other end is connected to other fixed structures such as the receiving cylinder 140.
[0107] Furthermore, in some embodiments, the two first clips 121 are located between the two second clips 122. As Figure 17 shown, a convex rib 1211 is provided on a side of the first clip 121 facing the other first clip 121. As Figure 4 And Figure 12As shown, the box body 210 is also provided with a groove structure 217. In this embodiment, during the process of inserting the ridge 1211 into the groove structure 217 in a direction perpendicular to the axis of the columnar structure 330 (i.e., the storage box 200 is relative to the tool storage member 100 along the direction of the ridge 1211), the ridge 1211 is inserted into the groove structure 217 in a direction perpendicular to the axis of the columnar structure 330. Figure 18 In the embodiment, it is easy to understand that after the groove structure 217 of the box body 210 and the convex rib 1211 of the first clamp 121 cooperate with each other, they can play a role in limiting the separation of the clamp and the column structure 330 along the axis direction of the column structure 330. When the user holds one of the storage box 200 and the tool storage member 100 connected and located at approximately the same level, the other one is not easy to fall.
[0108] Furthermore, the first clip 121 is fixedly connected to the storage tube 140 so that during the process of connecting the storage box 200 with the tool storage member 100 , the relative position between the first clip 121 and the storage tube 140 does not change, and the ridge 1211 can be better inserted into the groove structure 217 of the box body 210 .
[0109] In some embodiments of the present application, Figure 3 and Figure 4 As shown, each columnar structure 330 includes an outer column 331 and a magnet column 332 disposed inside the outer column 331, and the magnet column 332 is used to connect the two box bodies 210 through magnetic force. A connection structure 112 surrounds at least the periphery of an outer column 331. In this embodiment, the magnet column 332 used for connecting the storage boxes 200 and the outer column 331 used for connecting the storage box 200 and the tool storage member 100 are arranged at the same position, which can reduce space occupation and make the structure of the storage box 200 simpler, and the magnet column 332 is located inside the outer column 331, and the outer column 331 can protect the magnet column 332. In some other embodiments, the connection structure 112 can also be directly connected to the magnet column 332. In this embodiment, the outer column 331 can play a role in installing the magnet column 332.
[0110] Further, in an embodiment where the columnar structure 330 includes a magnet column 332 and the two boxes 210 are connected by magnetic force, it can be Figure 21 and Figure 22 The two boxes 210 shown are vertically (i.e. Figure 12 The stacking of the box body 210 in the thickness direction as shown by the arrow Z in the middle) can also be Figure 23 andFigure 24 The two boxes 210 shown are joined horizontally under the action of magnetic force; the horizontal direction includes the length direction of the box 210 (i.e., Figure 11 the direction indicated by the arrow X in Figure 11 ), and the width direction (i.e., Figures 10 to 12 the direction indicated by the arrow Y in
[0111] ). For example, in some embodiments, the box 210 is square, and a columnar structure 330 is provided at each of the four corners of the box 210. The magnet column 332 in the columnar structure 330 extends along the thickness direction of the box 210. When the two storage boxes 200 are joined horizontally, the magnet column 332 on one side of one storage box 200 attracts the magnet column 332 on one side of the other storage box 200 and makes the two storage boxes 200 connected together; when the two storage boxes 200 are stacked vertically, the end of the magnet column 332 close to the upper surface of the box 210 in one storage box 200 attracts the end of the magnet column 332 close to the upper surface or the lower surface of the box 210 in the other storage box 200, thereby making the two storage boxes 200 connected together. Taking the structure shown as an example, the box 210 has a fitting groove 216 for accommodating fittings. The fitting groove 216 should have a pick-up opening for taking out the fittings. When using the storage box 200, when the pick-up opening is placed upward, the upper surface of the box 210 is the upper surface of the box 210, denoted as the first surface 215, and the surface opposite to the upper surface is the lower surface, denoted as the second surface; when the pick-up opening is placed upward, the surface of the box 210 extending in the vertical direction is the side surface (taking the box 210 as square, that is, when the box 210 is generally a cuboid, the box 210 has an upper surface, a lower surface, and four side surfaces). That is, the columnar structure 330 extends along the thickness direction of the box 210; the columnar structure 330 extending from the first surface 215 to the second surface only indicates the extension direction of the columnar structure 330, and there is no limitation on the starting position of the extension of the columnar structure 330, that is, it is not limited that one end of the columnar structure 330 is located on the first surface 215 or flush with the first surface 215, and the other end is located on the second surface or flush with the second surface. Further, the first connecting portion 110 can be connected to two columnar structures 330 on the same side of the box 210, or can be connected to only one columnar structure 330.In some embodiments, the connection between the tool storage member 100 and the storage box 200 is also a magnetic connection. For example, the first connection portion 110 is detachably connected to the second connection portion 211 or the third connection portion 212 by magnetic adsorption; the magnetic adsorption is the adsorption between magnets or the adsorption between a magnet and iron. For example, in some embodiments, the connection structure 112 in the first connection portion 110 includes an outer column 331 and a ferromagnetic structure member (such as a structure member made of iron, nickel, cobalt, etc.) inside the outer column 331. Then, the columnar structure 330 in the second connection portion 211 and the columnar structure 330 in the third connection structure 112 both include an outer column 331 and a magnet column 332 inside the outer column 331; the tool storage member 100 can be magnetically adsorbed on the first side or the second side of the box body 210 in the storage box 200. In some embodiments, the connection structure 112 in the first connection portion 110 includes an outer column 331 and a magnet column 332 inside the outer column 331. The columnar structure 330 in the second connection portion 211 and the columnar structure 330 in the third connection structure 112 also both include an outer column 331 and a magnet column 332 inside the outer column 331; the tool storage member 100 can be magnetically adsorbed on the first side or the second side of the box body 210 in the storage box 200. In some embodiments, the connection structure 112 in the first connection portion 110 includes a magnet column 332. The columnar structure 330 in the second connection portion 211 includes an outer column 331 and a magnet column 332 inside the outer column 331, and the columnar structure 330 in the third connection structure 112 includes an outer column 331 and a ferromagnetic structure member inside the outer column 331; the tool storage member 100 can be magnetically adsorbed on the first side or the second side of the box body 210 in the storage box 200, and the two storage boxes 200 can also be magnetically adsorbed and connected by the magnet column 332 in the second connection portion 211 and the ferromagnetic structure member in the third connection portion 212. Further, the ferromagnetic structure member can be a columnar structure or a sheet structure.
[0112] In some embodiments, such as Figure 8 , Figure 9 , Figure 13 and Figure 20As shown, the first connecting portion 110, the second connecting portion 211, and the third connecting portion 212 all include a sub-component 310 and a mother-component 320. In the box body 210, the setting position of the sub-component 310 on one side of the box body 210 corresponds to the setting position of the mother-component 320 on the other side, and the setting position of the mother-component 320 on one side corresponds to the setting position of the sub-component 310 on the other side; that is, the setting positions of the sub-component 310 and the mother-component 320 in the second connecting portion 211 on the first side of the box body 210 respectively correspond to the setting positions of the mother-component 320 and the sub-component 310 in the third connecting portion 212 on the second side. The sub-component 310 of the first connecting portion 110 can be detachably connected to the mother-component 320 of the second connecting portion 211 or the third connecting portion 212, and the mother-component 320 of the first connecting portion 110 can be detachably connected to the sub-component 310 of the second connecting portion 211 or the third connecting portion 212. That is, in this embodiment, the first connecting portion 110 connects the first connecting portion 110 and the second connecting portion 211 in the tool storage 200 through the sub-component 310 and the mother-component 320, and there are at least two connecting positions, making the connection between the tool storage member 100 and the storage box 200 more reliable.
[0113] Among them, the setting position of the sub-component 310 on one side corresponding to the setting position of the mother-component 320 on the other side, and the setting position of the mother-component 320 on one side corresponding to the setting position of the sub-component 310 on the other side means that: the distance from the sub-component 310 in the second connecting portion 211 to the end of the box body 210 is equal to the distance from the mother-component 320 in the third connecting portion 212 to the end of the box body 210; or along the direction from the first side to the second side of the box body 210, the projection of the sub-component 310 of the second connecting portion 211 and the projection of the mother-component 320 of the third connecting portion 212 at least partially overlap, and the projection of the mother-component 320 of the second connecting portion 211 and the projection of the sub-component 310 of the third connecting portion 212 at least partially overlap. Further, when the tool storage member 100 is connected to the storage box 200, the tool storage member 100 can be connected to the sub-component 310 and the mother-component 320 in the second connecting portion 211. Since both the second connecting portion 211 and the third connecting portion 212 of the storage box 200 include a sub-component 310 and a mother-component 320, therefore, the tool storage member 100 can also be connected through the sub-component 310 and the mother-component 320 in the third connecting portion 212. That is, in this embodiment, the tool storage member 100 can be connected to the second connecting portion 211 on the first side of the box body 210 or the third connecting portion 212 on the second side of the box body 210.
[0114] Further, the installation positions of the sub-components 310 on the same side in the box body 210 are symmetrical to the installation positions of the mother component 320 along the vertical median line of the corresponding side surface. For example, the installation positions of the sub-component 310 and the mother component 320 in the second connection part 211 are symmetrical about the vertical median line of the side surface on the first side of the box body 210; the installation positions of the sub-component 310 and the mother component 320 in the third connection part 212 are symmetrical about the vertical median line of the side surface on the second side of the box body 210. So that when the sub-component 310 and the mother component 320 in the second connection part 211 of a storage box 200 are respectively connected to the mother component 320 and the sub-component 310 in the third connection part 212 of another storage box 200, both ends in the length direction of the storage box 200 can be aligned.
[0115] In some embodiments, such as Figure 14 and Figure 15 shown, the sub-component 310 is a jack 311, and the mother component 320 is a plug 321. That is, the sub-component 310 and the mother component 320 can be structurally matched to achieve a plug-in connection.
[0116] Further, in some embodiments, a bending part 3211 can be provided at the end of the plug 321. After the plug 321 is inserted into the jack 311, it can slide relatively and the bending part 3211 can be hooked on the hole wall of the jack 311. It is not difficult to understand that since the bending part 3211 is hooked on the hole wall of the jack 311, the connection between the jack 311 and the plug 321 can be made more reliable. Further, a groove 3111 can be provided in the inner wall of the box body 210 in the area close to the jack 311, and the bending part 3211 extends towards the box body 210 and forms a hook mechanism. And the plug 321 and the jack 311 satisfy that after the plug 321 is inserted into the jack 311 and the plug 321 is slid along, the hook structure can hook the groove 3111, thereby restricting the relative movement between the two storage boxes 200 and making the connection between the two storage boxes 200 more reliable. In some embodiments, the relative sliding direction of the plug 321 after being inserted into the jack 311 can be perpendicular to the insertion direction; in some other embodiments, it can also slide along other directions.
[0117] In some embodiments where the sub-component 310 is a jack 311 and the mother component 320 is a plug 321, such as Figure 16As shown, the end of the plug 321 away from the box body 210 has two protruding free ends 3212. There is a gap 3213 between the two free ends 3212. When the plug 321 is connected to the jack 311, the two free ends 3212 can approach each other so as to simultaneously extend into a jack 311, and can move away from each other to achieve rebound and then have an interference fit with the jack 311. It is not difficult to understand that the plug 321 has two free ends 3212, and there is a gap 3213 between the two free ends 3212, which provides space for the deformation of the free ends 3212. Therefore, the plug 321 is an elastic structure, so that after the plug 321 enters the jack 311, it has a tendency to rebound under the action of its own elastic deformation, forms extrusion with the jack 311, and then achieves the effect of interference fit. Further, in order to facilitate inserting the plug 321 into the jack 311, the end face of the free end 3212 is a chamfered structure, and this chamfered structure can play a guiding role to enable the plug 321 to be better inserted into the jack 311. In some embodiments, the gap 3213 can be a gap 3213 in the horizontal direction, that is, the two free ends 3212 are arranged side by side in the horizontal direction; in other embodiments, the gap 3213 can also be a gap 3213 in the vertical direction, that is, the two free ends 3212 are arranged vertically one above the other. In some embodiments, the cross-section of the free end 3212 can be rectangular; in other embodiments, the cross-section of the free end 3212 can also be bow-shaped, cylindrical, or other shapes, where the cross-section of the free end 3212 is the cross-section perpendicular to the direction in which the plug 321 is inserted into the jack 311.
[0118] In some embodiments, it can also be that the sub-component 310 is a chute structure and the mother component 320 is a slide rail structure that can be slidably connected to the chute structure in terms of structure. For example, in some embodiments, the first connecting portion 110 and the third connecting portion 212 include chute structures, and the second connecting portion 211 includes a slide rail structure that can be slidably connected to the chute structure in terms of structure. Further, the first connecting portion 110 can include two parallel chute structures. Correspondingly, the second connecting portion 211 includes two slide rail structures and the third connecting portion 212 includes two chute structures. Among them, the two slide rail structures of the second connecting portion 211 can extend along the thickness direction of the box body 210, or can extend along the direction perpendicular to the thickness of the box body 210. In some other embodiments, the slide rail structure of the second connecting portion 211 can also be only one, and preferably, this slide rail structure extends along the direction perpendicular to the thickness of the box body 210.
[0119] In some other embodiments, the first connecting portion 110 and the third connecting portion 212 include a slide rail structure, and the second connecting portion 211 includes a chute structure that can be slidably connected to the slide rail structure in terms of structure. That is, the tool storage member 100 can be connected to the first side of the box body 210, and the second side of the box body 210 is used to connect to the first side of the box body 210 in other storage boxes 200.
[0120] In some embodiments, the second connecting portion 211 and the third connecting portion 212 include a slide rail structure, and the first connecting portion 110 includes a chute structure that can be slidably connected to the slide rail structure in terms of structure. That is, the tool storage member 100 can be connected to either the first side or the second side of the box body 210.
[0121] In some embodiments, the second connecting portion 211 and the third connecting portion 212 include a chute structure, and the first connecting portion 110 includes a slide rail structure that can be slidably connected to the chute structure in terms of structure. That is, the tool storage member 100 can be connected to either the first side or the second side of the box body 210.
[0122] The foregoing are only the preferred embodiments of the present application and are not intended to limit the present application. For those skilled in the art, various changes and modifications can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.
Claims
1. A storage component, characterized in that, It includes a tool storage member and a storage box. The tool storage member is provided with a first connecting portion; the storage box includes a box body. A second connecting portion is provided on the first side of the box body, and a third connecting portion is provided on the opposite second side of the box body. The first connecting portion is selectively detachably connected to the second connecting portion or the third connecting portion.
2. The storage assembly according to claim 1, wherein, Both the second connecting portion and the third connecting portion include two cylindrical structures that extend in the direction from the first surface to the second surface of the box body. The tool storage member includes a storage cylinder, and the first connecting portion includes two connecting structures. The two connecting structures are spaced apart on the storage cylinder, and one connecting structure at least partially surrounds the outer periphery of one cylindrical structure for connection.
3. The storage assembly according to claim 2, wherein, The box body includes a box main body for storing accessories and connectors provided at both ends in the length direction of the box main body. The cylindrical structures are provided on the connectors, and both ends of the cylindrical structures protrude from the connectors in the thickness direction. When two storage boxes overlap, the connecting structure can be simultaneously connected to the upper and lower cylindrical structures at the overlapping portion of the two storage boxes.
4. The storage component according to claim 3, characterized in that The box body is provided with an inclined surface that connects the surface and the side surface of the box body, and the inclined surface is provided with a mark.
5. The storage component according to claim 2 or 3, characterized in that Each connecting structure includes a claw, and one claw is selectively clamped outside one cylindrical structure.
6. The storage assembly according to claim 5, wherein The claw includes a first clip and a second clip. One end of the first clip and the second clip is hinged, and they are elastically connected therebetween. The ends of the first clip and the second clip away from the hinged portion can open to be clamped outside the cylindrical structure and can rebound so that the first clip and the second clip clamp the cylindrical structure.
7. The storage component according to claim 6, wherein A tension spring or a torsion spring is connected between the first clip and the second clip.
8. The storage assembly according to claim 6, wherein The box body is provided with a groove structure; the two first clips are located between the two second clips, and a convex rib is provided on the side of the first clip facing the other first clip; the claw and the storage box are configured such that the convex rib is inserted into the groove structure along the direction perpendicular to the axis of the cylindrical structure, and the ends of the first clip and the second clip away from the hinged portion can first open and then rebound to clamp the cylindrical structure.
9. The storage component according to claim 8, wherein The first clip is fixedly connected to the storage cylinder.
10. The storage component according to claim 2, wherein The connecting structure includes a collar, and one collar is selectively sleeved outside one cylindrical structure.
11. The storage component according to claim 2, characterized in that, One connecting structure includes a collar, and the other connecting structure includes a claw. One collar is selectively sleeved outside one cylindrical structure, and the other claw is selectively clamped outside the other cylindrical structure.
12. The storage assembly according to claim 2 or 3, characterized in that, Each cylindrical structure includes an outer column and a magnet column provided inside the outer column. The magnet column is used to magnetically connect the two box bodies; one connecting structure at least partially surrounds the outer periphery of one outer column.
13. The storage component according to claim 1, wherein The first connecting portion is selectively detachably connected to the second connecting portion or the third connecting portion by magnetic adsorption; the magnetic adsorption is the adsorption between magnets or the adsorption between a magnet and a ferromagnetic structural member.
14. The storage assembly according to claim 1, wherein, The first connecting part, the second connecting part and the third connecting part each include a sub-component and a mother-component. In the box body, the setting position of the sub-component on one side corresponds to the setting position of the mother-component on the other side, and the setting position of the mother-component on one side corresponds to the setting position of the sub-component on the other side; the sub-component of the first connecting part can be detachably connected to the mother-component of the second connecting part or the third connecting part, and the mother-component of the first connecting part can be detachably connected to the sub-component of the second connecting part or the third connecting part.
15. The storage component according to claim 14, wherein, In the box body, the setting positions of the sub-components on the same side are symmetric about the midline extending vertically in the corresponding side surface with respect to the setting positions of the mother-components.
16. The storage assembly according to claim 14 or 15, characterized in that, The sub-component is a jack, and the mother-component is a plug-in part.
17. The storage component according to claim 16, characterized in that, One end of the plug-in part has a bent part, and the plug-in part and the jack are configured such that after the plug-in part is inserted into the jack, they can slide relative to each other so that the bent part hooks on the hole wall of the jack.
18. The storage assembly according to claim 17, wherein A groove is provided in the area of the inner wall of the box body close to the jack. The bent part extends towards the box body and forms a hook-shaped structure. The plug-in part and the jack are configured such that when the plug-in part is inserted into the jack and the plug-in part is slid in a direction perpendicular to the insertion direction, the hook-shaped structure can hook the groove.
19. The storage component according to claim 16, wherein, The end of the plug-in part away from the box body has two protruding free ends, and there is a gap between the two free ends. The ends of the free ends have chamfers. When the plug-in part is connected to the jack, the two free ends can be squeezed towards the gap to simultaneously extend into one jack, and can rebound away from each other to achieve an interference fit with the jack.
20. The storage assembly according to claim 14, wherein The sub-component is a chute structure, and the mother-component is a slide rail structure that can be slidably connected to the chute structure in terms of structure. Alternatively, the second connecting part and the third connecting part include a slide rail structure, and the first connecting part includes a chute structure that can be slidably connected to the slide rail structure in terms of structure. Alternatively, the second connecting part and the third connecting part include a chute structure, and the first connecting part includes a slide rail structure that can be slidably connected to the chute structure in terms of structure.
21. A tool component, characterized in that, It includes a main body and the storage assembly according to any one of claims 1-20. The main body is detachably connected to the tool storage member.