Storage box and tool assembly

By designing a detachable connection structure and a magnetic adsorption connection between the storage box and the tool storage piece, the problem of lack of connection between the storage box and the tool storage piece in the prior art is solved, convenient storage and management of tools and accessories are achieved, and the reliability of the connection and the convenience of operation are improved.

CN223339413UActive Publication Date: 2025-09-16SHANGHAI HOTO TECH CO LTD
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Patent Information

Application Number
CN202422311795.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-05-09
Filing Date
2024-09-20
Publication Date
2025-09-16
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

The existing storage box and the tool storage piece lack a connection, which makes the storage and management of tools and accessories inconvenient.

Method used

A storage box is designed, which is detachably connected to the first connecting part of a tool storage piece through a second connecting part, and the first box body and the second box body are connected by magnetic adsorption, and the reliable connection of the box bodies is achieved by combining positioning pins, positioning holes, and a snap-fit ​​structure.

Benefits of technology

It realizes convenient storage and management of tools and accessories, improves connection reliability and operation convenience, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a storage box and a tool assembly, the storage box comprises a second connecting part, and the second connecting part can be detachably connected with a first connecting part of a tool storage piece; the storage box comprises a first box body and a second box body, and the first box body and the second box body are connected through magnetic adsorption to achieve covering. And the first box body and / or the second box body are / is provided with the second connecting part. According to the technical scheme, the storage box is provided with the second connecting part used for being connected with the tool storage piece. Therefore, after the tools are used, the storage box provided by the technical scheme can be used for storing the accessories and can be connected with the tool storage piece for storing the main machine, so that the main machine and the accessories are stored together, and the main machine and the accessories are convenient to store and manage. The first box body and the second box body are closed through magnetic adsorption, and the storage box is convenient to open and close.
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Description

[0001] This application claims priority to patent application number 2024210025945, filing date May 9, 2024, and patent name “TOOLS, TOOL ORGANIZERS, STORAGE BOXES, AND TOOL ASSEMBLIES.” Technical Field

[0002] The present application relates to the field of tools, and in particular, to a storage box and a tool assembly. Background Art

[0003] In the prior art, there are a large number of accessories such as bits that can be used with tools such as screwdrivers. Therefore, there are storage boxes for storing bits, and tool storage pieces for storing main machines (such as screwdrivers, etc.).

[0004] There is no connection between the storage box and the tool storage member in the prior art, which makes storage and management inconvenient. Utility Model Content

[0005] The purpose of this application is to provide a storage box and a tool assembly to facilitate the storage and management of the host and accessories.

[0006] The embodiment of the present application is implemented as follows:

[0007] In a first aspect, an embodiment of the present application provides a storage box, characterized in that it includes a second connecting portion, which can be detachably connected to the first connecting portion of the tool storage piece; the storage box includes a first box body and a second box body, and the first box body and the second box body are connected and covered by magnetic adsorption; the first box body and / or the second box body are provided with the second connecting portion.

[0008] The storage box provided in the above technical solution has a second connection portion for connecting to the tool storage unit. Therefore, after using the tools, the storage box provided by the above technical solution can store accessories and connect to the tool storage unit that holds the main unit, allowing the main unit and accessories to be stored together, facilitating storage and management of the main unit and accessories. The first and second box bodies are connected by magnetic attraction, making the storage box easy to open and close.

[0009] In combination with the first aspect, in some optional embodiments, the first box body has a first contact surface, and the second box body is provided with a second contact surface. The first contact surface is provided with a first accommodating groove for accommodating accessories, and the second contact surface is provided with a second accommodating groove for accommodating accessories. When the first box body and the second box body are covered, the first contact surface is in contact with the second contact surface.

[0010] In the above technical solution, the first box body and the second box body can be connected by a manner in which the first contact surface and the second contact surface are fitted together, and the accessories after connection are not easy to fall out of the storage box.

[0011] In combination with the first aspect, in some optional embodiments, the first box body and the second box body are both provided with magnetic parts to achieve magnetic connection; the magnetic part in the first box body is set at the top corner position of the first contact surface, and the magnetic part in the second box body is set at the top corner position of the second contact surface.

[0012] In combination with the first aspect, in some optional embodiments, the first contact surface is provided with a positioning pin, and the second contact surface is provided with a positioning hole corresponding to the positioning pin; or the first contact surface is provided with a positioning pin and a positioning hole, and the second contact surface is also provided with a corresponding positioning hole and positioning pin.

[0013] In the above technical solution, by providing positioning pins and positioning holes for positioning on the first contact surface and the second contact surface respectively, the positioning of the first box body and the second box body during the closing process can be facilitated.

[0014] In combination with the first aspect, in some optional embodiments, the first side of the first box body is provided with the second connecting portion, and the second side is provided with a third connecting portion that is structurally compatible with the second connecting portion; the first side of the second box body is provided with a fourth connecting portion, and the second side is provided with a fifth connecting portion that is structurally compatible with the fourth connecting portion;

[0015] The first box body and the second box body can be detachably connected by the cooperation between the second connection portion and the fourth connection portion; or can be detachably connected by the cooperation between the third connection portion and the fifth connection portion.

[0016] In the above technical solution, the first box body and the second box body can be spliced ​​together by contacting each other on the first sides, or by contacting each other on the second sides, and the connection methods are more diverse.

[0017] In combination with the first aspect, in some optional embodiments, the second connecting portion, the third connecting portion, the fourth connecting portion, and the fifth connecting portion all include a first connecting structure and a second connecting structure that are structurally compatible with each other;

[0018] In the first box body and the second box body, in the direction perpendicular to the first side toward the second side, the first connection structure in the second connection part corresponds to the second connection structure in the third connection part, and the second connection structure in the second connection part corresponds to the first connection structure in the third connection part; the first connection structure in the fourth connection part corresponds to the second connection structure in the fifth connection part, and the second connection structure in the fourth connection part corresponds to the first connection structure in the fifth connection part.

[0019] By adopting the first box body and the second box body structure provided by the above technical solution, the first box body and the second box body can be spliced ​​by contacting each other with their first sides, or by contacting each other with their second sides, or by contacting each other with the first side of one of them and the second side of the other.

[0020] In combination with the first aspect, in some optional embodiments, the first connecting structure includes a protrusion, and the second connecting structure includes a groove that cooperates with the protrusion;

[0021] Or the first connecting structure is a male buckle in a snap-fit ​​structure, and the second connecting structure is a female buckle in a snap-fit ​​structure;

[0022] or the first connecting structure and the second connecting structure are both magnets;

[0023] Or the first connecting structure is a magnet, and the second connecting structure is a ferromagnetic structural member.

[0024] In combination with the first aspect, in some optional embodiments, the first box body and the second box body have the same structure.

[0025] In the above technical solution, since the first box body and the second box body have the same structure, the production cost of the storage box can be reduced.

[0026] In combination with the first aspect, in some optional embodiments, the fourth connection portion can be detachably connected to the first connection portion of the tool storage component.

[0027] In the above technical solution, the second connecting portion and the fourth connecting portion can both be detachably connected to the first connecting portion of the tool storage member, so the connection between the tool storage member and the storage box is more convenient.

[0028] In the second aspect, an embodiment of the present application provides a tool assembly, including a tool storage piece and the storage box provided in the first aspect, the tool storage piece includes a storage portion and the first connecting portion connected to the storage portion, the storage portion is used to fix the tool, and the first connecting portion is used to detachably connect to the second connecting portion.

[0029] In the above technical solution, the tool storage member can be connected to the second connection portion in the storage box through the first connection portion to achieve a detachable connection between the tool storage member and the storage box, which is convenient for storage and management.

[0030] In combination with the second aspect, in some optional embodiments, the first connection part and the second connection part both include a first connection structure and a second connection structure, the first connection structure of the first connection part and the second connection structure of the second connection part are detachably connected, and the second connection structure of the first connection part and the first connection structure of the second connection part are detachably connected.

[0031] In the above technical solution, the first connecting structure and the second connecting structure in the first storage part are respectively connected to the second connecting structure and the first connecting structure in the second connecting part, so that there can be two connection positions between the tool storage part and the storage box, thereby making the tool storage part and the storage box more reliably connected.

[0032] In combination with the second aspect, in some optional embodiments, the first connecting structure includes a protrusion, and the second connecting structure includes a groove that cooperates with the protrusion; or the first connecting structure is a male buckle in a snap-fit ​​structure, and the second connecting structure is a female buckle in a snap-fit ​​structure; or the first connecting structure and the second connecting structure are both magnets; or the first connecting structure is a magnet, and the second connecting structure is a ferromagnetic structural part.

[0033] In combination with the second aspect, in some optional embodiments, the first connecting part includes two claws, and the two claws are arranged at both ends of the storage part; the second connecting part includes a first connecting structure and a second connecting structure, and the first connecting structure and the second connecting structure are both columnar structures. The first connecting part and the second connecting part are configured so that each claw can be selectively connected to one of the columnar structures.

[0034] In the above technical solution, the tool storage member and the storage box are connected by a snap connection, which makes connection and disassembly more convenient.

[0035] In combination with the second aspect, in some optional embodiments, the claw includes a first clamp and a second clamp, one end of the first clamp and the second clamp are hinged, and the two are elastically connected, and the ends of the first clamp and the second clamp away from the hinge can be opened to be clamped outside the cylindrical structure, and can rebound to allow the first clamp and the second clamp to clamp the cylindrical structure.

[0036] In combination with the second aspect, in some optional embodiments, a tension spring or a torsion spring is connected between the first clip and the second clip.

[0037] In combination with the second aspect, in some optional embodiments, when the claw is clamped outside the cylindrical structure, the first clamp is located between the cylindrical structure and the first box body or the second box body provided with the cylindrical structure; the first clamp is provided with a ridge on the side away from the clamped cylindrical structure, and the first box body or the second box body provided with the second connecting part has a groove structure, and the claw and the first box body or the second box body provided with the second connecting part are configured as follows: the ridge is inserted into the groove structure in a direction perpendicular to the axis of the cylindrical structure, and the end of the first clamp and the second clamp away from the hinge can first open and then rebound to clamp the cylindrical structure.

[0038] In the above technical solution, when the first clamp and the second clamp clamp the cylindrical structure, the ridges can cooperate with the groove structure in the box body to limit the relative displacement of the storage box and the tool storage part in the axial direction of the cylindrical structure or in the axial direction of the accommodating space.

[0039] In combination with the second aspect, in some optional embodiments, the first connecting portion includes two rings, and the two rings are arranged at both ends of the storage portion; the second connecting portion includes a first connecting structure and a second connecting structure, and the first connecting structure and the second connecting structure are both columnar structures. The first connecting portion and the second connecting portion are configured so that each of the rings can be optionally arranged outside one of the columnar structures.

[0040] In the above technical solution, the connection between the tool storage member and the storage box is achieved by using a ring sleeved outside the cylindrical structure, which can limit the relative movement of the connected storage box and the tool storage member along the radial direction of the cylindrical structure, making the connection more reliable.

[0041] In conjunction with the second aspect, in some optional embodiments, the first connecting portion includes a slide rail, and the second connecting portion includes a slide groove that can be detachably connected to the slide rail;

[0042] Alternatively, the first connecting portion includes a sliding groove, and the second connecting portion includes a sliding rail that can be detachably connected to the sliding groove.

[0043] In the above technical solution, the tool storage member and the storage box are connected by a slide groove structure and a slide rail structure, and the contact surface is longer, making the connection more stable.

[0044] In a third aspect, an embodiment of the present application provides a tool assembly, comprising a tool storage member and the storage box provided in the first aspect, wherein the tool storage member comprises a storage portion and a first connecting portion connected to the storage portion, the storage portion being used to secure a tool, and the first connecting portion being detachably connected to the second connecting portion;

[0045] The first connecting portion includes two claws, and the two claws are arranged at both ends of the receiving portion; the second connecting portion, the third connecting portion, the fourth connecting portion and the fifth connecting portion all include a first connecting structure and a second connecting structure that can cooperate with each other in structure; the first connecting structure and the second connecting structure are both cylindrical structures; a magnetic column is provided in the cylindrical structure, so that the first box body and the second box body are connected by magnetic adsorption to achieve covering;

[0046] The first box body and the second box body each include a box body for storing accessories, and connecting pieces provided at both ends of the box body in a lengthwise direction, the columnar structure is provided on the connecting piece, and both ends of the columnar structure protrude from the connecting piece; the claw is connected to a portion of the columnar structure protruding from the connecting piece;

[0047] When the first box body and the second box body are covered, the clamping claw can be connected to the upper and lower columnar structures at the same time.

[0048] In the above technical solution, since the box body is used to store accessories, the columnar structure is provided on the connectors at both ends of the box body, which can reduce the impact of the magnetic column in the columnar structure on the storage of accessories. In addition, since the claw is connected to the portion of the columnar structure protruding from the connector, the claw can be connected to the columnar structure in the axial direction of the columnar structure, and can also be connected to the columnar structure in the radial direction of the columnar structure. Since the claw can be connected to two upper and lower columnar structures at the same time, it can also play a role in limiting the relative movement of the first box body and the second box body in the horizontal direction after they are closed, making the closed connection between the first box body and the second box body more reliable. BRIEF DESCRIPTION OF THE DRAWINGS

[0049] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.

[0050] Figure 1 A schematic structural diagram of a tool assembly provided in the first embodiment of the present application;

[0051] Figure 2 for Figure 1 Enlarged view of point A in the middle;

[0052] Figure 3 This is a schematic diagram of the structure of the tool assembly provided in the second embodiment of the present application;

[0053] Figure 4 The second structural diagram of the tool assembly provided in the second embodiment of the present application;

[0054] Figure 5 A schematic cross-sectional view of a tool assembly provided in accordance with a second embodiment of the present application;

[0055] Figure 6 An exploded view of a tool assembly provided in accordance with a second embodiment of the present application;

[0056] Figure 7 A schematic diagram of a tool storage arrangement for a tool assembly according to a second embodiment of the present application;

[0057] Figure 8 A schematic diagram of the structure of a tool storage member provided in an embodiment of the present application;

[0058] Figure 9 A schematic structural diagram of a second storage box provided in an embodiment of the present application;

[0059] Figure 10 A schematic diagram of a first box body and a second box body of a tool assembly provided in a second embodiment of the present application in a second connection state;

[0060] Figure 11 A schematic structural diagram of a tool assembly provided in a third embodiment of the present application;

[0061] Figure 12 One of the schematic diagrams of the first box body and the second box body of the tool assembly provided in the third embodiment of the present application in the second connection state;

[0062] Figure 13 A second schematic diagram of the first box body and the second box body of the tool assembly provided in the third embodiment of the present application in the second connection state;

[0063] Figure 14 A schematic structural diagram of a tool assembly provided in a fourth embodiment of the present application;

[0064] Figure 15 For demolition Figure 14 A schematic diagram of the second box body;

[0065] Figure 16 for Figure 15 The local schematic diagram of point E in the middle;

[0066] Figure 17 A schematic structural diagram of a tool storage member provided in a fourth embodiment of the present application;

[0067] Figure 18 A schematic structural diagram of a clamping claw provided in a fourth embodiment of the present application;

[0068] Figure 19 A schematic structural diagram of a tool storage member provided in a fifth embodiment of the present application;

[0069] Figure 20 A schematic diagram showing the connection between the tool storage member and the first box body provided in the fifth embodiment of the present application;

[0070] Figure 21 A schematic structural diagram of a first box body provided in a fifth embodiment of the present application;

[0071] Figure 22 for Figure 21 A top view of the first box body shown;

[0072] Figure 23 for Figure 21 The front view of the first box body is shown.

[0073] Icons: 1000-tool assembly; 1100-tool; 1110-host; 1111-first protruding structure; 1112-second protruding structure; 1200-tool storage member; 1210-storage portion; 1211-first accommodating space; 1212-first notch; 1213-limiting groove; 1220-first connecting portion; 1221-first connecting structure; 1222-second connecting structure; 1223-first clip; 12231-rib; 1224-second clip; 12241-second protruding portion; 1225-elastic member; 1226-second accommodating space; 1227-second notch; 1228-ring; 12 30-second storage box; 1231-strip-shaped protrusion; 1232-recess; 1300-first storage box; 1310-first box body; 1311-second connecting portion; 1312-third connecting portion; 13121-first connecting structure; 13122-second connecting structure; 1313-first contact surface; 1314-groove structure; 1320-second box body; 1321-fourth connecting portion; 1322-fifth connecting portion; 13221-first connecting structure; 13222-second connecting structure; 1323-second contact surface; 1331-box body; 1332-connecting piece; 1340-columnar structure; 1341-magnet column. DETAILED DESCRIPTION

[0074] To make the objectives, technical solutions, and advantages of the embodiments of the present application more clear, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Generally, the components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.

[0075] 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 present application for protection, but merely represents selected embodiments of the present application. All other embodiments obtained by persons of ordinary skill in the art based on the embodiments in the present application without making any creative efforts shall fall within the scope of protection of the present application.

[0076] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.

[0077] In the description of this application, it should be noted that the terms "center," "upper," "lower," "vertical," "horizontal," "inner," "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the product of this application is typically placed when in use. These terms are intended solely to facilitate the description of this application and to simplify the description, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "first," "second," "third," etc., are used solely to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0078] Furthermore, terms such as "horizontal," "vertical," and "overhanging" do not necessarily imply that a component must be absolutely horizontal or overhanging, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical," and does not mean that the structure must be completely horizontal, but rather that it can be slightly tilted.

[0079] It should also be noted that, in the description of this application, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to direct connections, indirect connections through an intermediate medium, or internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0080] The present application provides a tool assembly 1000 , including a tool 1100 and a tool storage 1200 .

[0081] like Figures 1 to 13As shown, the tool 1100 includes a columnar main unit 1110, wherein the main unit 1110 can be cylindrical or prismatic. The main unit 1110 includes a first end and a second end in the axial direction, and the tool 1100 also includes an accessory detachably connected to the first end of the main unit 1110. The accessory can be a drill bit, and accordingly, the tool 1100 is an electric drill; the accessory can also be a bit, and accordingly, the tool 1100 is a screwdriver, an electric screwdriver, etc. The main unit 1110 is the main body of the tool 1100, which is used for the user to grasp, and the main unit 1110 can also have a driving device inside to drive the accessory to rotate. In this application, the length dimension of the main unit 1110 is in the range of 150mm to 250mm, and the cross-sectional area of ​​the main unit 1110 is 250mm. 2 ~400mm 2 Range. The length dimension of the host 1110 is the dimension in the axial direction, and the cross section is the cross section perpendicular to the axial direction. Figure 5 The cross section of the main unit 1110 is its cross section.

[0082] By replacing the accessories connected to the first end of the main body 1110, the tool 1100 can be used for different purposes. Furthermore, in some embodiments, the tool assembly 1000 also includes a storage box for storing accessories. The tool storage member 1200 is detachably connected to the storage box, which is referred to as a first storage box 1300. The maximum dimensions of the first storage box 1300 do not exceed 300mm*90mm*25mm. In other words, the volume of the first storage box 1300 does not exceed the product of 300mm, 90mm, and 25mm.

[0083] The tool storage unit 1200 is used to store the tool 1100 or the main unit 1110 of the tool 1100. That is, when storing the tool 1100, the tool storage unit 1200 can be used to store only the main unit 1110 of the tool 1100, or the main unit 1110 with accessories connected to the first end can be stored in the tool storage unit 1200.

[0084] In some embodiments, the tool storage member 1200 has a storage portion 1210 for connecting to the tool 1100. The storage portion 1210 is a cylindrical structure, that is, the storage portion 1210 has a first storage space 1211 inside. One end of the first storage space 1211 passes through the end surface of the storage portion 1210 and forms an opening. The tool 1100 is placed in the first storage space 1211 through the opening for storage. Figure 7As shown, when tool 1100 is stored in storage portion 1210, the axis of tool 1100 is parallel to the axis of first accommodating space 1211. The axis of first accommodating space 1211 is the extension direction of first accommodating space 1211, and the axis of tool 1100 is also the axis of main body 1110. Furthermore, to limit the rotation of tool 1100 within first accommodating space 1211, the wall of first accommodating space 1211 is provided with a limiting groove 1213 extending along the axis. The limiting groove 1213 extends to the opening on the end surface of storage portion 1210. Accordingly, main body 1110 of tool 1100 is provided with a first protrusion 1111 extending axially and protruding from the circumference. It is not difficult to understand that the size of the first protruding structure 1111 should be sufficient to extend into the limiting groove 1213 of the first accommodating space 1211. In the process of storing the tool 1100, the first protruding structure 1111 is first aligned with the limiting groove 1213 of the first accommodating space 1211, and then the main unit 1110 is inserted into the first accommodating space 1211. Due to the limiting effect of the groove wall of the limiting groove 1213 on the first protruding structure 1111, the rotation angle of the main unit 1110 in the first accommodating space 1211 is limited.

[0085] Further, if Figure 1 、 2 As shown in Figures 8 and 9, in some embodiments, to better accommodate the main unit 1110 and facilitate removal of the main unit 1110 of the tool 1100 from the storage portion 1210, a first notch 1212 is provided on the sidewall of the storage portion 1210 near the opening. The first notch 1212 communicates with the first accommodating space 1211. Accordingly, a second protruding structure 1112 is provided on the circumference of one end of the main unit 1110, which can extend into the first notch 1212. It is readily understood that in this embodiment, the main unit 1110 can be completely accommodated in the first accommodating space 1211 in its axial direction. The second protruding structure 1112 in the first notch 1212 facilitates the user applying force to the main unit 1110, thereby removing the main unit 1110. The second protruding structure 1112 facilitates the user applying force to the main unit 1110, which can be a push, pull, or friction force. In some embodiments, the protrusion 1112 can be larger than the circumference of the main unit 1110, so that the second protrusion 1112 is higher than the sidewall of the first accommodating space 1211 in the radial direction of the first accommodating space 1211, or even higher than the outer surface of the storage portion 1210, so that the operator can apply a push or pull force to the main unit 1110 through the first protrusion. In other embodiments, the second protrusion 1112 can also be a textured surface provided on the circumference of the main unit 1110, such as a rough surface, so that the user can apply a large friction force to the main unit 1110 through the second protrusion 1112, thereby removing the main unit 1110 from the first accommodating space 1211.

[0086] In some embodiments of the present application, in order to better fix the tool 1100 in the storage portion 1210 for storage, the storage portion 1210 is further provided with a fixing member for fixing the tool 1100. Furthermore, the fixing member is provided at one end of the first storage space 1211 away from the opening. Figure 7 and Figure 8 In the embodiment shown, since the fixing member is arranged at the end of the first accommodating space 1211 away from the opening, the tool 1100 is fixed by the fixing member after entering the first accommodating space 1211 a sufficient distance, which has little impact on the difficulty of placing the tool 1100 into the first accommodating space 1211.

[0087] For example, the fixing member can be a magnet disposed at the end of the first storage space 1211 facing away from the opening, and an iron structural member can be disposed at the end of the host 1110 extending into the first storage space 1211. After the host 1110 is stored in the first storage space 1211, the magnet in the storage portion 1210 corresponds to the iron structural member of the host 1110, allowing the magnet to generate an attractive force on the iron structural member of the host 1110, thereby more stably securing the host 1110 in the storage portion 1210. The fixing member can be disposed within the first storage space 1211 or embedded in a solid portion of the storage portion 1210, i.e., the fixing member does not contact the first storage space 1211. Furthermore, the iron structural member of the host 1110 can be disposed at the first end, i.e., when the host 1110 is stored, the first end of the host 1110 faces the interior of the first storage space 1211, and the second end faces the exterior of the first storage space 1211. In some other embodiments, a magnet may be provided at the first end of the host 1110 and another magnet may be provided at the bottom of the first storage space 1211 of the storage portion 1210. The different polarities of the two magnets may attract each other so that the host 1110 can be better stored and fixed in the storage portion 1210. The magnet provided at the first end may make it easier for the host 1110 to connect accessories.

[0088] In some other embodiments, the fixing member may also be a structure such as a snap ring disposed in the first accommodation space 1211 to fix the host 1110 by snapping.

[0089] In addition to the embodiment in which the storage portion 1210 is a cylindrical structure, in other embodiments, the storage portion 1210 may also be a box-shaped structure, and the tool 1100 or the main unit 1110 in the tool 1100 can be stored by placing the tool 1100 into the storage portion 1210. The storage portion 1210 may also be a ring-shaped structure that can match the main unit 1110 of the tool 1100, and the main unit 1110 is fixed and stored by connecting the main unit 1110 with the storage portion 1210 in a slightly interference fit.

[0090] In some embodiments of the present application, the tool storage member 1200 further includes a first connecting portion 1220 connected to the storage portion 1210; the first storage box 1300 has a second connecting portion 1311 that can be detachably connected to the first connecting portion 1220, and the tool storage member 1200 and the first storage box 1300 are detachably connected through the connection between the first connecting portion 1220 and the second connecting portion 1311. Furthermore, in order to enable the tool assembly 1000 to be placed more stably, the setting position of the first connecting portion 1220 should meet the requirement that when the storage portion 1210 is in a connected state with the first storage box 1300 through the first connecting portion 1220, the thickness direction of the first storage box 1300 (i.e., the thickness direction of the first storage box 1300) is detachably connected. Figure 23 At least one of the two opposite surfaces in the direction indicated by the arrow Z in the middle is coplanar or tangent to the surface of the receiving portion 1210. Figure 5 As shown, the direction indicated by the arrow B in the figure is the thickness direction of the first storage box 1300. It is not difficult to understand that in an embodiment where the peripheral surface of the storage portion 1210 is an arc-shaped surface, at least one of the two opposite surfaces in the thickness direction of the first storage box 1300 is tangent to the surface of the storage portion 1210. Then, when the tool assembly 1000 is placed on a flat surface such as a desktop, both the storage portion 1210 and the first storage box 1300 can contact the desktop, and the first storage box 1300 is in surface contact with the desktop, so that the tool assembly 1000 can be placed more stably. In an embodiment where the peripheral surface of the storage portion 1210 includes multiple planes, at least one of the two opposite surfaces in the thickness direction of the first storage box 1300 is coplanar with the surface of the storage portion 1210. When the tool assembly 1000 is placed on a flat surface such as a desktop, the storage portion 1210 and the first storage box 1300 can both be in contact with the desktop, and the storage portion 1210 and the first storage box 1300 are both in surface contact with the desktop, so that the tool assembly 1000 can be placed more stably.

[0091] exist Figure 1 、 3In the embodiment shown in FIG4, the first connecting portion 1220 includes a first connecting structure 1221 and a second connecting structure 1222; the second connecting portion 1311 also includes a first connecting structure and a second connecting structure; the first connecting structure 1221 in the first connecting portion 1220 is detachably connected to the first connecting structure in the second connecting portion 1311, and the second connecting structure 1222 in the first connecting portion 1220 is detachably connected to the second connecting structure in the second connecting portion 1311. Furthermore, the first connecting structure 1221 and the second connecting structure 1222 in the first connecting portion 1220 and the first and second connecting structures in the second connecting portion 1311 all include one of matching protrusions and grooves, or all include one of matching male and female buckles, or some include one of matching protrusions and grooves and the other includes one of matching male and female buckles. The matching protrusion and groove means that the protrusion can extend into the groove, and there is a certain amount of interference between the protrusion and the groove, so that the protrusion and the groove are not easy to separate; for example, there can be a certain amount of interference between the protrusion and the ribs on the side wall of the groove. Figure 1 and Figure 6 The second connecting portion 1311 is shown as an annular protruding structure.

[0092] For example, in some embodiments, Figure 1 and Figure 6 As shown, the first connection structure 1221 in the first connection part 1220 includes a groove, and the second connection structure 1222 includes a protrusion; the first connection structure in the second connection part 1311 includes a protrusion matching the first connection structure 1221 of the first connection part 1220, and the second connection structure in the second connection part 1311 includes a groove matching the second connection structure 1222 of the first connection part 1220.

[0093] In another embodiment, the first connection structure 1221 and the second connection structure 1222 in the first connection part 1220 include a protrusion; the first connection structure in the second connection part 1311 includes a groove matching the first connection structure 1221 of the first connection part 1220, and the second connection structure in the second connection part 1311 includes a groove matching the second connection structure 1222 of the first connection part 1220.

[0094] In another embodiment, the first connection structure 1221 in the first connection part 1220 includes a male buckle, and the second connection structure 1222 includes a female buckle; the first connection structure in the second connection part 1311 includes a female buckle that matches the first connection structure 1221 of the first connection part 1220, and the second connection structure in the second connection part 1311 includes a male buckle that matches the second connection structure 1222 of the first connection part 1220.

[0095] In another embodiment, the first connection structure 1221 and the second connection structure 1222 in the first connection part 1220 both include female buckles; the first connection structure in the second connection part 1311 includes a male buckle that matches the first connection structure 1221 of the first connection part 1220, and the second connection structure in the second connection part 1311 includes a male buckle that matches the second connection structure 1222 of the first connection part 1220.

[0096] Furthermore, in some embodiments, both the tool storage member 1200 and the first storage box 1300 are provided with magnets. The magnets provided on the tool storage member 1200 and the magnets provided on the first storage box 1300 attract each other, thereby facilitating the connection between the first connecting portion 1220 and the second connecting portion 1311. For example, the first connecting structure and the second connecting structure in the first connecting portion 1220 and the second connecting portion 1311 are both magnets. In some embodiments, the first connecting portion 1220 and the second connecting portion 1311 may also include only the first connecting structure, and the first connecting structure 1221 in the first connecting portion 1220 and the first connecting structure in the second connecting portion 1311 both include magnetic structures. The first connecting structure 1221 in the first connecting portion 1220 and the first connecting structure in the second connecting portion 1311 are attracted to each other by magnetic force, thereby achieving a detachable connection between the storage portion 1210 and the first storage box 1300.

[0097] In some embodiments, the first connecting structure may be a magnet, and the second connecting structure may be a ferromagnetic structural member (e.g., a structural member made of iron, nickel, cobalt, etc.). Furthermore, the first connecting structure 1221 in the first connecting portion 1220 and the second connecting structure in the second connecting portion 1311 are attracted to each other by magnetic force, and the second connecting structure 1222 in the first connecting portion 1220 and the first connecting structure in the second connecting portion 1311 are attracted to each other by magnetic force, thereby achieving a detachable connection between the tool storage member 1200 and the first storage box 1300.

[0098] In some embodiments, as Figures 14 to 17 As shown, the first connection portion 1220 includes two claws, each of which is provided at the two ends of the receiving portion 1210. The first connection structure and the second connection structure in the second connection portion 1311 are both columnar structures 1340. Each claw in the first connection portion 1220 can be selectively engaged with a columnar structure 1340. That is, in some use states, the claw is engaged with the columnar structure 1340; in other use states, the claw is not engaged with the columnar structure 1340. Figure 14As shown, the first storage box 1300 includes a first box body 1310 and a second box body 1320. Both the first box body 1310 and the second box body 1320 are provided with a columnar structure 1340. The claw can be connected to the columnar structure 1340 in the first box body 1310, and can also be connected to the columnar structure 1340 in the second box body 1320.

[0099] Furthermore, the claw includes a first clamp 1223 and a second clamp 1224. One end of the first clamp 1223 and the second clamp 1224 are hinged and elastically connected. The ends of the first clamp 1223 and the second clamp 1224 away from the hinge can be opened to be clamped outside the columnar structure 1340, and can rebound to clamp the first clamp 1223 and the second clamp 1224 to the columnar structure 1340. Figure 17 and Figure 18 In the embodiment shown, the two first clips 1223 are located between the two second clips 1224. At the end of the first clip 1223 away from the storage portion 1210, the side of the first clip 1223 facing the second clip 1224 is a flat surface; at the end of the second clip away from the storage portion 1210, the side of the first clip 1223 facing the second clip 1224 has a second protrusion 12241, so that the first clip 1223 and the second clip 1224 form a second accommodating space 1226 with a second notch 1227, and the width dimension C of the second notch 1227 is smaller than the dimension D of the second accommodating space 1226 in the width direction of the second notch 1227, so that after the ends of the first clip 1223 and the second clip 1224 away from the hinge are opened, the columnar structure 1340 can enter the second accommodating space 1226 through the second notch 1227 to realize the connection between the first connecting portion 1220 and the second connecting portion 1311.

[0100] Furthermore, the first clip 1223 is fixedly connected to the storage portion 1210, and the second clip 1224 is rotatably connected to the storage portion 1210. In the process of sending the columnar structure 1340 into the second accommodating space 1226 through the second notch 1227, the columnar structure 1340 can push the second clip 1224 to rotate on one side to increase the width of the second notch 1227, and enter the second accommodating space 1226 on the other side by sticking to the first clip 1223.

[0101] Furthermore, an elastic member 1225 such as a tension spring or a spring is connected between the first clip 1223 and the second clip 1224 so that the ends of the first clip 1223 and the second clip 1224 away from the hinge can automatically rebound after being opened, thereby clamping the columnar structure 1340.

[0102] In some embodiments, the first clamp 1223 is further provided with a ridge 12231, and the ridge 12231 is located on the side of the first clamp 1223 facing away from the second clamp 1224. That is, when the claw is clamped outside the columnar structure 1340, the first clamp 1223 is located between the columnar structure 1340 and the first box body 1310 or the second box body 1320 provided with the columnar structure 1340; the ridge 12231 is provided on the side of the first clamp 1223 away from the clamped columnar structure 1340. The first box body 1310 or the second box body 1320 provided with the second connecting portion 1311 clamped by the claw has a groove structure 1314; Figure 16 As shown, a groove structure 1314 is provided on the first box body 1310. In other embodiments, the second box body 1320 may also be provided with a groove structure 1314. Furthermore, the groove structure 1314 satisfies the following requirements: when the rib 12231 is inserted into the groove structure 1314 in a direction perpendicular to the axis of the columnar structure 1340, the ends of the first clamp 1223 and the second clamp 1224 away from the hinge can first open and then rebound to secure the columnar structure 1340. In other words, when the claw is engaged with the columnar structure 1340, the rib 12231 and the groove structure 1314 are simultaneously engaged. In this embodiment, it is not difficult to understand that the groove structure 1314 and the rib 12231 of the first clamp 1223 cooperate with each other to prevent the claw from separating from the columnar structure 1340 along the axis of the columnar structure 1340. When a user holds one of the storage box and the tool storage member 1200 , which are connected and located at approximately the same level, the other one is not likely to fall.

[0103] Specifically, see Figure 14 and Figure 15 When the first box body 1310 and the second box body 1320 overlap, the claws are simultaneously engaged with the outside of the two overlapping columnar structures 1340 (such as Figure 14 ), the ridge 12231 of the first clip 1223 is located in the groove structure 1314 of the first box body 1310 below. When the first storage box 1300 needs to be opened, the second box body 1320 above is removed. During this process, the ridge 12231 on the first clip 1223 is still stuck in the groove structure 1314 of the first box body 1310 below (as shown in FIG. Figure 15 and Figure 16 ), which limits the movement of the storage portion 1210, and can avoid moving the storage portion 1210 together with the first storage box 1300 during the process of moving and opening, so that the storage portion 1210 remains connected to the first box body 1310.

[0104] In some embodiments where both the first connection structure and the second connection structure in the second connection portion 1311 are columnar structures 1340, such as Figure 19 and Figure 20 As shown, the first connecting portion 1220 includes two rings 1228, and the two rings 1228 are respectively arranged at the two ends of the storage portion 1210. Each ring 1228 can be optionally sleeved on the outside of a columnar structure 1340, that is, in some usage conditions, the ring 1228 is sleeved on the columnar structure 1340; in other usage conditions, the ring 1228 is not sleeved on the columnar structure 1340. In this embodiment, when the first connecting portion 1220 is connected to the second connecting portion 1311, the tool assembly 1000 moves circumferentially relative to the first box body 1310 or the second box body 1320 provided with the second connecting portion 1311. Furthermore, after the first connecting portion 1220 and the second connecting portion 1311 are connected, the tool assembly 1000 cannot be separated from the first storage box 1300 simply by moving in the radial direction of the cylindrical structure 1340. Therefore, the connection between the tool assembly 1000 and the first storage box 1300 is more reliable. In some embodiments, the outer contour of the cross section of the cylindrical structure 1340 perpendicular to its axis is circular; in other embodiments, the outer contour of the cross section of the cylindrical structure 1340 perpendicular to its axis can also be rectangular or elliptical. In cases where the outer contour is not circular, the radial direction of the cylindrical structure 1340 is the direction passing through and perpendicular to its axis.

[0105] In some embodiments, the first connecting portion 1220 includes a slide rail, and the second connecting portion 1311 includes a slide groove that is detachably connected to the slide rail; or the first connecting portion 1220 includes a slide groove, and the second connecting portion 1311 includes a slide rail that is detachably connected to the slide groove. In this embodiment, the tool storage member 1200 and the first storage box 1300 are connected via the slide rail and the slide groove, providing a more reliable connection.

[0106] In some embodiments, the tool storage unit 1200 further includes a second storage box 1230 for storing accessories. Figure 1 As shown, the first connection structure 1221 and the second connection structure 1222 in the first connection portion 1220 are both protruding from the surface of the storage portion 1210; the second storage box 1230 is disposed between the first connection structure 1221 and the second connection structure 1222. Figure 1 In the illustrated embodiment, the first connecting structure 1221 and the second connecting structure 1222 both further include a boss protruding from the surface of the receiving portion 1210 , and the groove in the first connecting structure 1221 and the protrusion in the second connecting structure 1222 are both arranged on the end surface of the boss facing away from the receiving portion 1210 .

[0107] Since both the first connection structure 1221 and the second connection structure 1222 in the first connection portion 1220 protrude from the surface of the storage portion 1210, as Figure 4 shown, after the tool storage member 1200 is connected to the first storage box 1300, the first connection portion 1220 creates a certain space between the tool storage member 1200 and the second storage box 1230, and the second storage box 1230 is located within this space, making the space utilization rate of the tool assembly 1000 higher. Also, from Figure 4 the embodiment shown, it can be easily seen that the second storage box 1230 is smaller in size than the first storage box 1300. During use, accessories that need to be used can be placed in the second storage box 1230 for separate carrying, which is more convenient to use.

[0108] In Figure 9 the embodiment shown, the second storage box 1230 is a strip structure, and a small number of accessories can be arranged inside the second storage box 1230. There are inward depressions 1232 at both ends in the length direction of the second storage box 1230. When the second storage box 1230 is installed between the first connection structure 1221 and the second connection structure 1222, the length direction of the second storage box 1230 is nearly parallel to the axial direction of the storage portion 1210. A part of the first connection structure 1221 is located in the depression 1232 at one end of the second storage box 1230, and a part of the second connection structure 1222 is located in the depression 1232 at the other end of the second storage box 1230. That is, in the length direction of the second storage box 1230, the distance between the bottoms of the depressions 1232 at both ends of the second storage box 1230 is L1, the distance between both ends of the second storage box 1230 is L2, and in the axial direction of the storage portion 1210, the distance between the first connection structure 1221 and the second connection structure is L3, where L1 < L3 < L2. When the tool storage member 1200 is connected to the first storage box 1300, the movement of the second storage box 1230 is restricted by the first storage box 1300 and the storage portion 1210, as well as the first connection structure 1221 and the second connection structure 1222, which can effectively prevent the second storage box 12333230 from falling off. Further, in order to effectively prevent the second storage box 1230 from falling off when the tool storage member 1200 is used alone, the second storage box 1230 and the first storage portion 1210 are connected by an interference connection method. That is, the above-mentioned L1 > L3. When the first connection portion 1220 is connected to the second storage box 1230, one end of the second storage box 1230 is in contact connection with the first connection structure 1221, and the other end is in contact connection with the second connection structure 1222. The interference connection method between the second storage box 1230 and the first storage portion 1210 can not only facilitate the disassembly of the second storage box 1230 but also effectively prevent the second storage box 1230 from falling off, which is convenient for storage.

[0109] Of course, in other embodiments, a groove may be provided on the outer circumference of the storage portion 1210 to accommodate the second storage box 1230; or an axially extending blind hole may be provided in the storage portion 1210, with the second storage box 1230 disposed in the blind hole. The second storage box 1230 may also have other shapes or be connected to the storage portion 1210 using other connection methods.

[0110] Further, in Figure 9 In the illustrated embodiment, the second storage box 1230 has an opening for receiving the tools 1100. Strip-shaped protrusions 1231 are provided on the surfaces of the second storage box 1230 on both sides of the opening. These strip-shaped protrusions 1231 facilitate the removal of the interference-fitted second storage box 1230 from the first connecting portion 1220. When the second storage box 1230 is connected to the storage portion 1210, the opening of the second storage box 1230 can face the storage portion 1210 or face away from it. With the opening of the second storage box 1230 facing the storage portion 1210, when the tool storage unit 1200 is used alone, it can prevent accessories from falling out of the second storage box 1230. In other words, the tool storage unit 1200 provided herein can independently store accessories and tools 1100.

[0111] In some embodiments of the tool assembly 1000 provided herein, Figure 4 As shown, the first storage box 1300 is larger in size. Compared with the second storage box 1230 , the second storage box 1230 can accommodate more types and models of accessories.

[0112] exist Figure 6In the illustrated embodiment, the first box body 1310 and the second box body 1320 are detachably connected via magnetic attraction, i.e., the first box body 1310 and the second box body 1320 are completely separable. Furthermore, the first box body 1310 has a first contact surface 1313, and the second box body 1320 has a second contact surface 1323. A first receiving slot for accommodating an accessory is provided on the first contact surface 1313, and a second receiving slot for accommodating an accessory is provided on the second contact surface 1323. A first connection state of the first box body 1310 and the second box body 1320 is achieved by the first contact surface 1313 and the second contact surface 1323 abutting against each other, i.e., the first box body 1310 and the second box body 1320 overlap each other. In this connection mode, the accessories are stored and cannot be removed for use. In some embodiments, the magnet that enables the first box body 1310 and the second box body 1320 to be detachably connected by magnetic attraction can be a cylindrical magnet, such as a cylinder, and magnets of this shape are set at the four vertex positions of the first contact surface 1313 and the second contact surface 1323. In other embodiments, the magnet that enables the first box body 1310 and the second box body 1320 to be detachably connected by magnetic attraction can also be a long strip magnet. It is not difficult to understand that the two ends of the long strip magnet have strong magnetism and opposite polarity. A long strip magnet is set on each of the two opposite sides of the first box body 1310, and the length of the long strip magnet is approximately equal to the size of the first box body 1310 in the direction in which the magnet extends. In the same way, long strip magnets are set on the corresponding sides of the second box body 1320, so that the first box body 1310 and the second box body 1320 can be connected by magnetic attraction.

[0113] The magnets for realizing the detachable connection between the first box body 1310 and the second box body 1320 by magnetic attraction may be exposed on the surface of the first box body 1310 and the second box body 1320 , or may be disposed inside the first box body 1310 and the second box body 1320 .

[0114] Furthermore, a positioning pin is provided on one of the first contact surface 1313 and the second contact surface 1323, and a positioning hole corresponding to the positioning pin is provided on the other of the first contact surface 1313 and the second contact surface 1323. The positioning pin and the positioning hole position the first box body 1310 and the second box body 1320, allowing them to be connected according to a predetermined relative position, thereby better covering the first receiving slot and the second receiving slot, and effectively preventing accessories from falling out of the first storage box 1300. Furthermore, accessories are secured in both the first and second receiving slots via magnetic attraction.

[0115] exist Figure 10 、 12In the embodiment shown in FIG13 , the first case body 1310 and the second case body 1320 further have a second connection state in which they are arranged side by side, i.e., the first contact surface 1313 of the first case body 1310 and the second contact surface 1323 of the second case body 1320 are both arranged upward, and one side of the first case body 1310 is connected to one side of the second case body 1320. In the second connection state, the first case body 1310 and the second case body 1320 can be connected solely by magnetic attraction; they can also be connected using other connection structures; or they can be connected using both magnetic attraction and other connection structures.

[0116] For example, in some embodiments, the first box body 1310 and the second box body 1320 are connected in the second connection state by a magnet provided at the top angle position of the first contact surface 1313 and the second contact surface 1323, that is, the magnet provided at the top angle position of the first contact surface 1313 and the second contact surface 1323 realizes both the first connection state of the first box body 1310 and the second box body 1320 and the second connection state of the first box body 1310 and the second box body 1320.

[0117] In some embodiments, when the first box body 1310 and the second box body 1320 are in the second connection state, the protrusion on one side of the first box body 1310 and the groove on one side of the second box body 1320 are interference fit to achieve connection; in other embodiments, the male buckle on one side of the first box body 1310 and the female buckle on one side of the second box body 1320 are fitted and connected.

[0118] In some embodiments, when the first box body 1310 and the second box body 1320 are in the second connection state, one side of the first box body 1310 is connected to the female buckle on one side of the second box body 1320 through a male buckle, and is also connected to the magnet provided on the first box body 1310 and the magnet provided on the second box body 1320 through magnetic force.

[0119] Furthermore, in some embodiments in which the first box body 1310 and the second box body 1320 have a second connection state, a second connection portion 1311 for connecting to the storage portion 1210 is provided on a first side of the first box body 1310, a third connection portion 1312 is provided on a second side of the first box body 1310, and a first contact surface 1313 is located between the first and second sides of the first box body 1310. A fourth connection portion 1321 is provided on a first side of the second box body 1320, and a fifth connection portion 1322 is provided on a second side of the second box body 1320; and the second contact surface 1323 is located between the first and second sides of the second box body 1320. The second connection portion 1311 and the fourth connection portion 1321 can cooperate with each other to achieve a detachable connection, and the third connection portion 1312 and the fifth connection portion 1322 can cooperate with each other to achieve a detachable connection. The first box body 1310 and the second box body 1320 are in the second connection state by connecting the second connection portion 1311 to the fourth connection portion 1321 or connecting the third connection portion 1312 to the fifth connection portion 1322 .

[0120] It is not difficult to understand that when the second connection part 1311 includes a first connection structure and a second connection structure, and the first connection structure and the second connection structure of the second connection part 1311 both include one of matching protrusions and grooves, or both include one of matching male buckles and female buckles, the fourth connection part 1321 also includes a first connection structure and a second connection structure, and the first connection structure in the fourth connection part 1321 cooperates with the first connection structure in the second connection part 1311 to achieve connection, and the second connection structure in the fourth connection part 1321 cooperates with the second connection structure in the second connection part 1311 to achieve connection.

[0121] Furthermore, to increase the flexibility of the connection positions between the tool storage member 1200, the first housing 1310, and the second housing 1320, in some embodiments, the first connection structure 1221 and the second connection structure 1222 in the first connection portion 1220 can be structurally coordinated with each other, and the first connection structure and the second connection structure in the second connection portion 1311 and the fourth connection portion 1321 can also be structurally coordinated with each other. That is, in an embodiment where the first connection structure 1221 in the first connection portion 1220 includes a protrusion and the second connection structure 1222 includes a groove, the first connection structure in the second connection portion 1311 includes a groove and the second connection structure includes a protrusion. Correspondingly, the first connection structure in the fourth connection portion 1321 includes a protrusion and the second connection structure includes a groove. Thus, the tool storage member 1200 can be connected not only to the second connection portion 1311 in the first housing 1310, but also to the fourth connection portion 1321 in the second housing 1320. The flexibility of the connection position of the tool storage member 1200 on the first storage box 1300 is increased.

[0122] Furthermore, in some embodiments, the second connection part 1311 and the third connection part 1312, the fourth connection part 1321 and the fifth connection part 1322 may also cooperate with each other in structure. It is not difficult to understand that the third connection part 1312 also has a first connection structure 13121 and a second connection structure 13122, and the fifth connection part 1322 also has a first connection structure 13221 and a second connection structure 13222. In the case where the first connection structure in the second connection part 1311 includes a groove and the second connection structure includes a protrusion, and the first connection structure in the fourth connection part 1321 includes a protrusion and the second connection structure includes a groove, the first connection structure 13121 in the third connection part 1312 includes a groove and the second connection structure 13122 includes a protrusion, and the first connection structure 13221 in the fifth connection part 1322 includes a protrusion and the second connection structure 13222 includes a groove. Figures 10 to 13 In the embodiment shown, the first side and the second side of the first box body 1310 and the second box body 1320 are parallel to each other and are both arranged opposite to the tool storage member 1200. In a direction perpendicular to the first side of the first box body 1310 toward the second side of the first box body 1310 (e.g., Figure 22 In the direction indicated by the arrow Y in the middle, the first connecting structure of the second connecting portion 1311 corresponds to the second connecting structure 13122 of the third connecting portion 1312, and the second connecting structure of the second connecting portion 1311 corresponds to the first connecting structure 13121 of the third connecting portion 1312. Similarly, in the second case body 1320, in a direction perpendicular to the first side of the second case body 1320 toward the second side of the second case body 1320, the first connecting structure of the fourth connecting portion 1321 corresponds to the second connecting structure 13222 of the fifth connecting portion 1322, and the second connecting structure of the fourth connecting portion 1321 corresponds to the first connecting structure 13221 of the fifth connecting portion 1322. It can be seen that the tool storage unit 1200 can be connected to the first case body 1310 not only through the second connecting portion 1311 but also through the third connecting portion 1312. It can also be connected to the second case body 1320 through the fourth connecting portion 1321 or the fifth connecting portion 1322. The flexibility of the connection position of the tool storage member 1200 on the first storage box 1300 is increased.

[0123] In some embodiments, the first and second connecting structures in the second connecting portion 1311, the third connecting portion 1312, the fourth connecting portion 1321, and the fifth connecting portion 1322 are all cylindrical structures 1340. A magnet 1341 is disposed within the cylindrical structure 1340, enabling the first and second housings 1310 and 1320 to be magnetically connected and closed. In this embodiment, taking the first housing 1310 as an example, the second connecting portion 1311 and the third connecting portion 1312 are structurally compatible when the cylindrical structure 1340 in the second connecting portion 1311 includes a magnet 1341 with a magnetic pole arranged in an opposite direction to the magnet 1341 in the third connecting portion 1312. For example, the north pole of the magnet 1341 in the first connecting portion 1311 is disposed toward the first contact surface 1313, while the south pole of the magnet 1341 in the second connecting portion 1312 is disposed toward the first contact surface 1313. Furthermore, the magnet columns 1341 with opposite magnetic poles in the second connecting portion 1311 and the third connecting portion 1312 are located at corresponding positions on both sides of the first box body 1310, that is, in the direction from the first side to the second side of the first box body 1310, the projections of the magnet columns 1341 in the second connecting portion 1311 and the magnet columns 1341 with opposite magnetic poles in the third connecting portion 1312 overlap. Figures 21 to 23 As shown, the first box body 1310 and the second box body 1320 both include a box body 1331 for storing accessories, and a Figure 22Connectors 1332 are formed at both ends of the box body 1331 (in the direction indicated by the arrow X), and the columnar structure 1340 is disposed on the connectors 1332. By housing the accessories in the box body 1331 and placing the columnar structure 1340, which is equipped with a magnet column 1341 for connection, on the connectors 1332, the effect of the magnet column 1341 on the accessories housed within the box body 1331 can be reduced. Furthermore, connectors 1332 protrude from both ends of the columnar structure 1340, and the claws connect to the portion of the columnar structure 1340 that protrudes from the connector 1332. It is readily understood that the claws can be radially coupled to the cylindrical structure 1340, i.e., one end of the claw is opened to allow the cylindrical structure 1340 to be clamped to the claws through the second notch 1227 of the claws. Alternatively, the claws can be axially coupled to the cylindrical structure 1340, i.e., the claws move relative to the cylindrical structure 1340 along the axial direction to position the cylindrical structure 1340 between the first clamp 1223 and the second clamp 1224. Furthermore, when the first and second housings 1310 and 1320 are closed, the claws can simultaneously couple to both upper and lower cylindrical structures 1340. Specifically, the upper end of the claws couple to the downwardly protruding portion of the connector 1332 in the cylindrical structure 1340 of the upper second housing 1320, while the lower end of the claws couple to the upwardly protruding portion of the connector 1332 in the cylindrical structure 1340 of the lower first housing 1310.

[0124] Of course, in other embodiments, the first connecting structure 1221 and the second connecting structure 1222 in the first connecting portion 1220 may both include one of a matching protrusion and a groove, or may both include one of a matching male and female snap. For example, if the first connecting structure 1221 and the second connecting structure 1222 in the first connecting portion 1220 both include protrusions, then the first connecting structure and the second connecting structure in the second connecting portion 1311 both include grooves matching the first connecting portion 1220; correspondingly, the first connecting structure and the second connecting structure in the fourth connecting portion 1321 both include protrusions matching the second connecting portion 1311. On this basis, if the third connecting portion 1312 and the second connecting portion 1311 are structurally compatible, the first connecting structure 13121 and the second connecting structure 13122 in the third connecting portion 1312 both include protrusions that match the second connecting portion 1311. Correspondingly, the first connecting structure 13221 and the second connecting structure 13222 in the fifth connecting portion 1322 both include grooves that match the first connecting portion 1220. Thus, the tool storage member 1200 can be connected to the first case 1310 via the second connecting portion 1311 and to the second case 1320 via the fifth connecting portion 1322, thereby increasing the flexibility of the connection position of the tool storage member 1200 on the first storage box 1300. Therefore, if the third connecting portion 1312 and the second connecting portion 1311 are structurally compatible, the flexibility of the connection position of the tool storage member 1200 on the first storage box 1300 can also be increased.

[0125] Furthermore, in some embodiments, two or more first storage boxes 1300 are included, such as Figure 11 In the embodiment shown, the first box bodies 1310 and the second box bodies 1320 of two adjacent first storage boxes 1300 are both in the first connection state, the second connection portion 1311 in one first box body 1310 is connected to the third connection portion 1312 in the other first box body 1310; the fourth connection portion 1321 in one second box body 1320 is connected to the fifth connection portion 1322 in the other first box body 1310. Figure 10 、 12 In the embodiment shown in FIG. 13 , the first box body 1310 and the second box body 1320 of the first storage box 1300 are in the second connection state, and the first box body 1310 and the second box body 1320 are alternately connected. The operator can arbitrarily combine and connect the first box body 1310 and the second box body 1320 according to actual needs during use.

[0126] exist Figure 10 、 12In the embodiment shown, the first box body 1310 and the second box body 1320 are rectangular parallelepiped structures. When the first box body 1310 and the second box body 1320 are in the second connection state, the side of the first box body 1310 where the longer side of the first contact surface 1313 is located and the side of the second box body 1320 where the longer side of the second contact surface 1323 is located are close to each other and connected. Figure 13 In the embodiment shown, when the first box body 1310 and the second box body 1320 are in the second connection state, the side where the shorter side of the first contact surface 1313 in the first box body 1310 is located and the side where the shorter side of the second contact surface 1323 in the second box body 1320 is located are close to each other and connected. The connection method between the two can be through magnetic force through magnets arranged in the first box body 1310 and the second box body 1320, or through a protrusion arranged in one of the two and a matching groove arranged in the other.

[0127] Furthermore, in some embodiments, the first box body 1310 and the second box body 1320 have the same structure.

[0128] In some other embodiments, the first storage box 1300 may also have a hinged connection on one side between the first box body 1310 and the second box body 1320, and a detachable connection on the other side via a buckle or magnet. In other embodiments, the first storage box 1300 may also have a drawer-like structure, where accessories can be taken out by pulling out the structure in the first storage box 1300.

[0129] In some other embodiments, one of the first box body 1310 and the second box body 1320 may be used to store accessories, and the other may serve as a cover to protect the stored accessories.

[0130] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.

Claims

1. A storage box, characterized in that: It includes a second connecting part, which can be detachably connected to the first connecting part of the tool storage piece; the storage box includes a first box body and a second box body, and the first box body and the second box body are covered by magnetic adsorption connection; the first box body and / or the second box body are provided with the second connecting part.

2. The storage box according to claim 1, characterized in that: The first box body has a first contact surface, and the second box body is provided with a second contact surface. The first contact surface is provided with a first accommodating groove for accommodating accessories, and the second contact surface is provided with a second accommodating groove for accommodating accessories. When the first box body and the second box body are covered, the first contact surface is in contact with the second contact surface.

3. The storage box according to claim 2, characterized in that: The first box body and the second box body are both provided with magnetic parts to achieve magnetic connection; the magnetic part in the first box body is arranged at the top corner position of the first contact surface, and the magnetic part in the second box body is arranged at the top corner position of the second contact surface.

4. The storage box according to claim 2, characterized in that: The first contact surface is provided with a positioning pin, and the second contact surface is provided with a positioning hole corresponding to the positioning pin; or the first contact surface is provided with a positioning pin and a positioning hole, and the second contact surface is also provided with a corresponding positioning hole and positioning pin.

5. The storage box according to claim 2, characterized in that: The first side of the first box body is provided with the second connecting portion, and the second side is provided with a third connecting portion that is structurally compatible with the second connecting portion; the first side of the second box body is provided with a fourth connecting portion, and the second side is provided with a fifth connecting portion that is structurally compatible with the fourth connecting portion; The first box body and the second box body can be detachably connected by the cooperation between the second connection portion and the fourth connection portion; or can be detachably connected by the cooperation between the third connection portion and the fifth connection portion.

6. The storage box according to claim 5, characterized in that: The second connecting portion, the third connecting portion, the fourth connecting portion and the fifth connecting portion all include a first connecting structure and a second connecting structure that can structurally cooperate with each other; In the direction perpendicular to the first side of the first box body to the second side of the first box body, the first connection structure in the second connection part corresponds to the second connection structure in the third connection part, and the second connection structure in the second connection part corresponds to the first connection structure in the third connection part; in the direction perpendicular to the first side of the second box body to the second side of the second box body, the first connection structure in the fourth connection part corresponds to the second connection structure in the fifth connection part, and the second connection structure in the fourth connection part corresponds to the first connection structure in the fifth connection part.

7. The storage box according to claim 6, characterized in that: The first connecting structure includes a protrusion, and the second connecting structure includes a groove matched with the protrusion; Or the first connecting structure is a male buckle in a snap-fit ​​structure, and the second connecting structure is a female buckle in a snap-fit ​​structure; or the first connecting structure and the second connecting structure are both magnets; Or the first connecting structure is a magnet, and the second connecting structure is a ferromagnetic structural member.

8. The storage box according to any one of claims 1 to 7, characterized in that: The first box body and the second box body have the same structure.

9. The storage box according to claim 5, characterized in that: The fourth connecting portion can be detachably connected to the first connecting portion of the tool storage component.

10. A tool assembly, characterized in that: It comprises a tool storage piece and the storage box according to any one of claims 1 to 9, wherein the tool storage piece comprises a storage portion and the first connecting portion connected to the storage portion, the storage portion is used to fix the tool, and the first connecting portion is used to detachably connect to the second connecting portion.

11. The tool assembly according to claim 10, wherein: The first connecting part and the second connecting part both include a first connecting structure and a second connecting structure. The first connecting structure of the first connecting part and the second connecting structure of the second connecting part are detachably connected, and the second connecting structure of the first connecting part and the first connecting structure of the second connecting part are detachably connected.

12. The tool assembly according to claim 11, wherein: The first connecting structure includes a protrusion, and the second connecting structure includes a groove matched with the protrusion; Or the first connecting structure is a male buckle in a snap-fit ​​structure, and the second connecting structure is a female buckle in a snap-fit ​​structure; or the first connecting structure and the second connecting structure are both magnets; Or the first connecting structure is a magnet, and the second connecting structure is a ferromagnetic structural member.

13. The tool assembly according to claim 10, wherein: The first connecting part includes two claws, and the two claws are arranged at both ends of the storage part; the second connecting part includes a first connecting structure and a second connecting structure, and the first connecting structure and the second connecting structure are both columnar structures. The first connecting part and the second connecting part are configured so that each claw can be selectively connected to one of the columnar structures.

14. The tool assembly according to claim 13, wherein: The clamping claw includes a first clamp and a second clamp, one end of the first clamp and the second clamp are hinged, and the two are elastically connected, and the ends of the first clamp and the second clamp away from the hinge can be opened to be clamped outside the cylindrical structure, and can rebound to clamp the first clamp and the second clamp to the cylindrical structure.

15. The tool assembly according to claim 14, wherein: A tension spring or a torsion spring is connected between the first clamp and the second clamp.

16. The tool assembly according to claim 14, wherein: When the claw is clamped outside the cylindrical structure, the first clamp is located between the cylindrical structure and the first box body or the second box body on which the cylindrical structure is provided; the first clamp is provided with a ridge on the side of the cylindrical structure away from the clamped structure, and the first box body or the second box body on which the second connecting part is clamped has a groove structure, and the claw and the first box body or the second box body on which the second connecting part is provided are configured as follows: the ridge is inserted into the groove structure in a direction perpendicular to the axis of the cylindrical structure, and the ends of the first clamp and the second clamp away from the hinge can first open and then rebound to clamp the cylindrical structure.

17. The tool assembly according to claim 10, wherein: The first connecting portion includes two rings, which are arranged at both ends of the storage portion; the second connecting portion includes a first connecting structure and a second connecting structure, and the first connecting structure and the second connecting structure are both cylindrical structures. The first connecting portion and the second connecting portion are configured so that each ring can be optionally arranged outside one of the cylindrical structures.

18. The tool assembly according to claim 10, wherein: The first connecting portion includes a slide rail, and the second connecting portion includes a slide groove that can be detachably connected to the slide rail; Alternatively, the first connecting portion includes a sliding groove, and the second connecting portion includes a sliding rail that can be detachably connected to the sliding groove.

19. A tool assembly, characterized in that: A tool storage member and the storage box according to claim 6, wherein the tool storage member comprises a storage portion and the first connecting portion connected to the storage portion, the storage portion is used to fix the tool, and the first connecting portion is detachably connected to the second connecting portion; The first connecting portion includes two claws, and the two claws are arranged at both ends of the receiving portion; the second connecting portion, the third connecting portion, the fourth connecting portion and the fifth connecting portion all include a first connecting structure and a second connecting structure that can cooperate with each other in structure; the first connecting structure and the second connecting structure are both cylindrical structures; a magnetic column is provided in the cylindrical structure, so that the first box body and the second box body are connected by magnetic adsorption to achieve covering; The first box body and the second box body each include a box body for storing accessories, and connecting pieces provided at both ends of the box body in a lengthwise direction, the columnar structure is provided on the connecting piece, and both ends of the columnar structure protrude from the connecting piece; the claw is connected to a portion of the columnar structure protruding from the connecting piece; When the first box body and the second box body are covered, the clamping claw can be connected to the upper and lower columnar structures at the same time.