Storage assembly and tool assembly
By setting a detachable connecting part and a magnetic clamping structure between the storage box and the tool storage part, the management difficulties caused by the independence of the storage box and the tool storage part in the prior art are solved, and convenient tool storage and management are realized.
Patent Information
- Application Number
- CN202422308377.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-09-20
AI Technical Summary
In the prior art, the storage box and the tool storage part are independent of each other, which makes it inconvenient to store and manage after the tool is used.
A storage assembly is provided, including a tool storage member and at least two storage boxes. The connection between the storage box and the tool storage member is realized through the removable connecting part. The magnetic connection and clamping structure make the storage box and the tool storage member connected into an integral structure, which is convenient for management.
It realizes convenient connection and management between the storage box and the tool storage parts, and improves the storage efficiency and convenience of the tool.
Smart Images

Figure CN223289784U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of tools, and in particular, to a storage assembly and a tool assembly. Background Art
[0002] 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.).
[0003] Since the storage boxes in the prior art are independent of each other and the storage boxes and the tool storage members are independent of each other, it is inconvenient to store and manage the tools after use. Utility Model Content
[0004] The purpose of this application is to provide a storage assembly and a tool assembly to facilitate the management of storage boxes and tool storage pieces.
[0005] The embodiment of the present application is implemented as follows:
[0006] In a first aspect, an embodiment of the present application provides a storage assembly, comprising a tool storage piece and at least two storage boxes, wherein the tool storage piece has a first connecting portion; each of the storage boxes comprises a box body, wherein the box body has a first side and a second side opposite to each other, 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 of the storage boxes 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.
[0007] 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 structurally detachably connected, it is possible to conveniently connect two storage boxes by connecting the second connecting portion of one storage box with 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 are detachably connected, that is, the storage box can be connected not only to the tool storage member on one side, but also to another storage box on the other side, so that the storage box and the tool storage member can be connected to form an integral structure, which is convenient for storage and management.
[0008] In some optional embodiments, the second connecting part and the third connecting part both include a sub-component and a mother component, and the sub-component and the mother component can be matched to achieve connection; the sub-component in the second connecting part corresponds to the position of the mother component in the third connecting part, and the mother component in the second connecting part corresponds to the position of the sub-component in the third connecting part; the first connecting part is detachably connected to the sub-component and the mother component.
[0009] In the above technical solution, the child and mother components in the second connecting portion of one storage box can be connected to the mother and child components in the third connecting portion of another storage box, that is, there can be two connection positions when the two storage boxes are connected, making the connection more reliable. Because the first connecting portion can be connected to the child and mother components, and the second connecting portion on the first side of the box body and the third connecting portion on the second side are both provided with child and mother components, the tool storage component can be connected to the storage box from both the first side of the box body and the second side of the box body; that is, after two adjacent storage boxes are connected, the tool storage component can be connected to either one of the two storage boxes or the other.
[0010] In some optional embodiments, one of the storage boxes can be magnetically connected to another of the storage boxes via the sub-component and the main component.
[0011] In the above technical solution, the storage boxes are connected magnetically, which makes the connection and disassembly easy.
[0012] In some optional embodiments, the box body further has a first surface and a second surface relative to each other, the sub-component and the mother component are both cylindrical structures, and the cylindrical structure extends in the direction from the first surface to the second surface, and the first connecting portion is detachably connected to one or two of the cylindrical structures on the same side of the box body.
[0013] In the above technical solution, the sub-assembly and the main assembly are cylindrical structures and extend from the first surface to the second surface. This allows the two storage boxes to overlap vertically and be connected magnetically. Furthermore, because the sub-assembly and the main assembly are provided on both the first and second sides of the box body, the storage boxes can not only overlap vertically but also be connected horizontally.
[0014] In some optional embodiments, the columnar structure includes a magnet column, the magnetic pole of the magnet column in the sub-component close to the first surface is the N pole, and the magnetic pole of the magnet column in the mother component close to the first surface is the S pole; the sub-component and the mother component in the second connecting part of one box body can attract each other with the sub-component and the mother component in the third connecting part of another adjacent box body to achieve magnetic connection between the two adjacent box bodies.
[0015] In some optional embodiments, the columnar structure further includes an outer column, and the magnet column is disposed inside the outer column; and the first connecting portion is detachably connected to the outer column on the same side.
[0016] In the above technical solution, the magnet column needs to be installed after the box body is manufactured. The outer column not only serves to mount the magnet, but also allows for detachable connection to the first connecting portion. Furthermore, both the location for mounting the magnet column and the location for connection to the first connecting portion are located on the outer column, which can reduce the space occupied by the box body and simplify the box structure.
[0017] In some optional embodiments, the sub-component includes a magnet column, the main component includes a ferromagnetic column, and the first connecting portion is detachably connected to the magnet column and the ferromagnetic column on the same side of the box body.
[0018] In some optional embodiments, the box body is a square structure, and each box body is provided with four columnar structures, which are located at the four corners of the box body. Along the circumference of the box body, the sub-component, the mother component, another sub-component, and another mother component are arranged in sequence; the first connecting part and the two columnar structures on the same side of the box body can be detachably connected.
[0019] In the above technical solution, since the four corners of the box body are provided with columnar structures, when the storage boxes are stacked, there can be four connection positions between the upper and lower storage boxes, making the connection more reliable. In addition, the above arrangement of the sub-component and the main component can achieve the direction in which the two storage boxes can overlap without restriction.
[0020] In some optional embodiments, the box body includes a box body for storing accessories, and connecting parts arranged at both ends of the box body in the length direction, the columnar structure is arranged on the connecting part, and both ends of the columnar structure protrude from the connecting part; the first connecting part is connected to the part of the columnar structure protruding from the connecting part; when the two storage boxes overlap, the first connecting part can be simultaneously connected to the upper and lower columnar structures at the overlapping part of the two storage boxes.
[0021] In the above technical solution, the box body is used to store accessories, and the cylindrical structures are provided on the connectors at both ends of the box body, which can reduce the impact of the magnetic columns in the cylindrical structure on the storage of accessories. In addition, because the first connecting portion is connected to the portion of the cylindrical structure that protrudes from the connector, the first connecting portion can be connected to the cylindrical structure in the axial direction or in the radial direction of the cylindrical structure.
[0022] In some optional embodiments, the box body is provided with an inclined surface, the inclined surface connects the second surface and the side surface, and the inclined surface is provided with a mark.
[0023] In the above technical solution, the label can be associated with the accessories stored in the box, so that the user can easily know the type of accessories stored in the box through the inclined surface during use. Moreover, the label is set on the inclined surface, so whether multiple storage boxes are stacked or multiple storage boxes are spliced horizontally, the label can be seen to know the type of accessories in the storage box.
[0024] In some optional embodiments, the tool storage member includes a storage tube for storing the host, and the first connecting portion includes two claws, which are arranged at both ends of the storage tube, and one claw can be optionally clamped outside one of the columnar structures.
[0025] In the above technical solution, the claws are arranged at both ends of the storage tube, that is, both ends of the tool storage piece are connected to the storage box, so that the tool storage piece is more stable after being connected and is not prone to shaking.
[0026] In some optional embodiments, the claw includes a first clamp and a second clamp, the first clamp and one end of the second clamp are hinged, and the two are elastically connected, the ends of the first clamp and the second clamp away from the hinge can be opened to clamp outside the columnar structure, and can rebound to clamp the first clamp and the second clamp to the columnar structure.
[0027] In the above technical solution, the claws are clamped with the cylindrical structure in the storage box, and the first clamp and the second clamp of the claw are hinged, so that one end of the first clamp and the second clamp can be opened to clamp outside the cylindrical structure, and then rebound to clamp the cylindrical structure, making the connection and disassembly between the tool storage piece and the storage box more convenient.
[0028] In some optional embodiments, a tension spring or a torsion spring is connected between the first clamp and the second clamp.
[0029] In some optional embodiments, when the claw is clamped outside the cylindrical structure, a ridge is provided on the side of the first clamp facing away from the cylindrical structure, and the box body is provided with a groove structure. The claw and the storage box 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.
[0030] In the above technical solution, the box body and the first clamp are respectively provided with a groove structure and a ridge, and the process of inserting the ridge into the groove structure can simultaneously realize the process of the first clamp and the second clamp clamping the columnar structure, that is, after the claw is connected to the columnar structure, the ridge is located in the groove structure, and therefore, the displacement between the connected tool storage part and the storage box along the axial direction of the columnar structure can be limited.
[0031] In some optional embodiments, the first connecting portion includes two rings, and the two rings are provided at both ends of the tool storage component, and one ring can be optionally provided outside the cylindrical structure at one end.
[0032] 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.
[0033] In some optional embodiments, the sub-component and the mother component are both columnar structures, and the second connecting part and the third connecting part can be magnetically connected through the magnetic force between the sub-component and the mother component; the sub-component and the mother component in the second connecting part both include a columnar outer column, and a ferromagnetic column arranged in the outer column; the sub-component and the mother component in the third connecting part both include a columnar outer column, and a magnet column arranged in the outer column; the first connecting part and the outer column on the same side of the box body are detachably connected.
[0034] In some optional embodiments, the sub-component and the mother component are both columnar structures, and the second connecting part and the third connecting part can be magnetically connected through the magnetic force between the sub-component and the mother component; the sub-component in the second connecting part and the sub-component in the third connecting part both include a columnar outer column, and a magnet column arranged in the outer column; the mother component in the second connecting part and the mother component in the third connecting part both include a columnar outer column, and a ferromagnetic column arranged in the outer column; the first connecting part and the outer column on the same side of the box body are detachably connected.
[0035] In some optional embodiments, the sub-component and the mother component are both columnar structures, and the second connecting part and the third connecting part can be magnetically connected through the magnetic force between the sub-component and the mother component; the sub-component and the mother component both include a columnar outer column, and a magnet column arranged in the outer column; the first connecting part is detachably connected to the outer column on the same side of the box body.
[0036] In some optional embodiments, in the box body, the setting position of the sub-component located on the same side is symmetrical with the setting position of the mother component along the center line extending vertically in the corresponding side surface, the sub-component is a socket, and the mother component is a plug-in that can be structurally connected to the sub-component.
[0037] In the above technical solution, the connection between the two storage boxes can be achieved by plugging the sub-component into the mother component. Because the sub-component and the mother component on the same side are symmetrical along the vertically extending midline of that side, the ends of the two storage boxes can be aligned in the horizontal direction after being connected by the sub-component and the mother component.
[0038] In some optional embodiments, the end of the plug has a bent portion, and the plug and the socket are configured so that the plug can slide relative to each other after being inserted into the socket, so that the bent portion is hooked on the hole wall of the socket.
[0039] In the above technical solution, by providing the bending portion, the plug-in can be more reliably connected to the socket, making the connection between the two storage boxes more reliable.
[0040] In some optional embodiments, a groove is provided in an area near the socket in the inner wall of the box body, the bent portion extends toward the box body and forms a hook-shaped structure, and the plug-in and the socket are configured as follows: the plug-in is inserted into the socket and slid perpendicular to the insertion direction, so that the hook-shaped structure can hook the groove.
[0041] In the above technical solution, the groove is hooked by the hook-shaped structure, which can further improve the reliability of the plug-in connection between the sub-component and the mother component.
[0042] In some optional embodiments, the end 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 ends of the free ends have chamfers; when the plug is connected to the socket, the two free ends can be squeezed toward the gap to simultaneously extend into one of the sockets, and can rebound away from each other to have an interference fit with the socket.
[0043] In the above technical solution, since the end of the free end has a chamfered structure, the plug-in can enter the socket more easily; since there is a gap between the two free ends, space is provided for the deformation of the free end so that the free end can extend into the socket; after the free end rebounds, it has an interference fit with the socket, which can make the connection relatively stable.
[0044] In the above-mentioned embodiment where the second connecting part and the third connecting part include a sub-part and a mother part, and the sub-part is a socket and the mother part is a plug-in, the first connecting part of the tool storage part may also include a sub-part and a mother part, the sub-part in the first connecting part is connected to the mother part in the second connecting part or the mother part in the third connecting part; the mother part in the first connecting part is connected to the sub-part in the second connecting part or the sub-part in the third connecting part.
[0045] In some optional embodiments, the first connection portion and the third connection portion include a slide groove structure, and the second connection portion includes a slide rail structure that can be slidably connected to the slide groove structure.
[0046] Alternatively, the first connecting portion and the third connecting portion include a slide rail structure, and the second connecting portion includes a slide groove structure that can be structurally connected to the slide rail structure in a sliding manner.
[0047] In the above technical solution, a slide groove structure and a slide rail structure are used to achieve detachable connection between the tool storage piece and the storage box, as well as between two adjacent storage boxes. Since the slide groove structure and the slide rail structure have a longer contact position, the connection between the tool storage piece and the storage box, and between the storage boxes can be made more stable and reliable.
[0048] In combination with the first aspect, in some optional embodiments, the first connecting portion is magnetically connected to the second connecting portion.
[0049] In a second aspect, an embodiment of the present application provides a tool assembly, comprising a main body and the storage assembly provided in the first aspect, wherein the main body and the tool storage component are detachably connected.
[0050] In a third aspect, an embodiment of the present application provides a storage assembly, comprising a tool storage piece and a storage box, wherein the tool storage piece is provided with a first connecting portion; the storage box comprises a box body, wherein a second connecting portion is provided on a first side of the box body, and a third connecting portion is provided on an opposite second side of the box body, and the first connecting portion can be selectively detachably connected to the second connecting portion or the third connecting portion.
[0051] In the above technical solution, the tool storage member is used to store the main machine, and the storage box is used to store accessories. Because the first connecting portion of the tool storage member can be selectively detachably connected to the second connecting portion or the third connecting portion, the tool storage member can be connected to either the first side or the second side of the storage box, providing more diverse connection methods between the tool storage member and the storage box. Therefore, the tool storage member and the storage box can be connected more conveniently and quickly, shortening storage time and improving storage convenience.
[0052] In some optional embodiments, the second connecting portion and the third connecting portion each include two cylindrical structures, the tool storage member includes a storage tube, and the first connecting portion includes two connecting structures, the two connecting structures are spaced apart in the storage tube, and one connecting structure at least partially surrounds the outer periphery of one cylindrical structure for connection.
[0053] In the above technical solution, the second connecting part and the third connecting part each include two columnar structures, and the connecting structure in the first connecting part can be connected to one columnar structure respectively, that is, there are at least two connection positions between the tool storage part and the storage box, making the connection between the storage box and the tool storage part more reliable.
[0054] In some optional embodiments, the box body includes a box body for storing accessories, and connecting parts arranged at both ends of the box body in the length direction, the columnar structure is arranged on the connecting part, and both ends of the columnar structure protrude from the connecting part along the thickness direction; when the two storage boxes overlap, the connecting structure can be simultaneously connected to the upper and lower columnar structures at the overlapping part of the two storage boxes.
[0055] In the above technical solution, the accessories are housed within the box body and the cylindrical structure is mounted on the connecting member. This can reduce the impact of the first connecting portion connecting to the cylindrical structure on the process of removing and placing the accessories. Because both ends of the cylindrical structure protrude from the connecting member along the thickness direction, the connecting structure in the first connecting portion can surround the outer circumference of the cylindrical structure both radially and axially.
[0056] In some optional embodiments, each of the connecting structures includes a claw, and one of the claws can be selectively clamped outside one of the cylindrical structures.
[0057] In the above technical solution, the first connecting portion and the second connecting portion are connected by a snap connection, which is convenient for assembly and disassembly.
[0058] In some optional embodiments, one of the connecting structures includes a ring, and the other connecting structure includes a claw. One of the rings can be selectively sleeved on the outside of one of the cylindrical structures, and the other claw can be selectively sleeved on the outside of the other of the cylindrical structures.
[0059] In some optional embodiments, each of the columnar structures includes an outer column and a magnet column arranged inside the outer column, and the magnet column is used to connect the two box bodies through magnetic force; one of the connecting structures at least partially surrounds the outer periphery of one of the outer columns.
[0060] In the above technical solution, the storage boxes are connected by the magnetic force of the magnet column, and the storage box and the tool storage piece are connected by the connecting structure in the first connecting part and the outer column in the columnar structure of the storage box. That is, the magnet column and the outer column used to connect the storage boxes are arranged at the same position, which can reduce the space occupied and make the structure of the storage box simpler. The magnet column is located inside the outer column, and the outer column can protect the magnet column.
[0061] In some optional embodiments, the first connecting portion can be selectively detachably connected to the second connecting portion or the third connecting portion through magnetic adsorption; the magnetic adsorption is adsorption between magnets or between magnets and ferromagnetic structural parts.
[0062] In the above technical solution, the first connecting part can be connected to the second connecting part or to the third connecting part through magnetic force. The tool storage part and the storage box are detachably connected by magnetic adsorption, which makes disassembly more convenient.
[0063] In some optional embodiments, the first connecting part, the second connecting part and the third connecting part all include sub-components and mother components. 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 and the mother component of the second connecting part or the third connecting part can be detachably connected, and the mother component of the first connecting part and the sub-component of the second connecting part or the third connecting part can be detachably connected.
[0064] In the above technical solution, the first connecting part, the second connecting part, and the third connecting part all include a sub-part and a mother part, and the sub-part and the mother part are arranged according to the above technical solution, so that the tool storage part is connected to the storage box through the sub-part and the mother part, and there are at least two connections between the tool storage part and the storage box, that is, one connection is at the position where the sub-part is located in the tool storage part, and the other is at the position where the mother part is located in the tool storage part, so that the connection between the tool storage part and the storage box is more reliable. BRIEF DESCRIPTION OF THE DRAWINGS
[0065] 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.
[0066] Figure 1 A schematic diagram of a storage box connected to a tool storage member on one side and connected to another storage box on the other side in one embodiment;
[0067] Figure 2 A schematic diagram of the connection between the tool storage member and the storage box in one embodiment;
[0068] Figure 3 A schematic diagram of the connection between the tool storage member and the storage box in one embodiment;
[0069] Figure 4 A schematic diagram of the connection between the tool storage member and the storage box in one embodiment;
[0070] Figure 5 A schematic diagram of a storage box connected to a tool storage member on one side and connected to another storage box on the other side in one embodiment;
[0071] Figure 6 A schematic diagram of the connection between the tool storage member and the storage box in one embodiment;
[0072] Figure 7 A schematic diagram of the structure of a tool storage member in one embodiment;
[0073] Figure 8 Schematic diagram of the structure of the clamping claw in one embodiment;
[0074] Figure 9 A schematic diagram of the structure of a tool storage member in one embodiment;
[0075] Figure 10 A schematic diagram of the structure of a tool storage member in one embodiment;
[0076] Figure 11 This is a structural diagram of a storage box in one embodiment;
[0077] Figure 12 for Figure 11 Top view of the middle storage box;
[0078] Figure 13 for Figure 11 Main view of the middle storage box;
[0079] Figure 14 This is a structural diagram of a storage box in one embodiment;
[0080] Figure 15 This is a structural diagram of a storage box in one embodiment;
[0081] Figure 16 This is a schematic diagram of the structure of a plug-in in one embodiment;
[0082] Figure 17 This is a schematic diagram of the structure of a plug-in in one embodiment;
[0083] Figure 18 A schematic diagram of stacking storage boxes in one embodiment;
[0084] Figure 19 A schematic diagram of stacking storage boxes in one embodiment;
[0085] Figure 20 A schematic diagram of a storage box being spliced in the width direction of the box body in one embodiment;
[0086] Figure 21 A schematic diagram of a storage box being spliced in the length direction of the box body in one embodiment;
[0087] Figure 22 A schematic diagram of a storage box being spliced in the width direction of the box body in one embodiment;
[0088] Figure 23This is a schematic diagram of the connection between the claw and the columnar structure after the ridge of the first clip is inserted into the groove structure of the box body.
[0089] Icons: 100-tool storage part; 110-first connecting part; 111-accommodating space; 120-claw; 121-first clamp; 1211-rib; 122-second clamp; 123-elastic part; 130-ring; 140-storage tube; 200-storage box; 210-box body; 211-second connecting part; 212-third connecting part; 213-box body; 214-connecting part; 215-first surface; 216-accessory slot; 217-slot structure; 218-inclined surface; 310-sub-component; 311-socket; 3111-groove; 320-mother part; 321-plug-in; 3211-bending part; 3212-free end; 3213-spacer; 330-columnar structure; 331-outer column; 332-magnet column. DETAILED DESCRIPTION
[0090] 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.
[0091] 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.
[0092] 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.
[0093] 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.
[0094] 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.
[0095] 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.
[0096] The embodiment of the present application provides a tool assembly, including a main unit and a storage assembly. Figures 1 to 6 As shown, the storage assembly includes a tool storage member 100 and a storage box 200. The tool storage member 100 is used to store a main unit, and the storage box 200 is used to store accessories. In some embodiments, the main unit that the tool storage member 100 can store is a screwdriver, and accordingly, the accessories stored in the storage box 200 can be screwdriver bits. In other embodiments, the main unit that the tool storage member 100 can store is an electric grinder, and the accessories stored in the storage box 200 can be electric grinder heads. In other embodiments, the main unit that the tool storage member 100 can store is an electric drill, and the accessories stored in the storage box 200 can be drill bits.
[0097] In this application, the storage component includes a tool storage component 100 and at least two storage boxes 200. The storage box 200 can be connected to another storage box 200 and can also be connected to the tool storage component 100 at the same time, so that the storage box 200 and the tool storage component 100 can be connected into an integral structure for easy storage and management.
[0098] In some embodiments, as Figures 7 to 10 As shown, the tool storage member 100 has a first connection portion 110. The storage box 200 includes a box body 210, which has a first side and a second side opposite to each other. The first side of the box body 210 is provided with a second connection portion 211, and the second side of the box body 210 is provided with a third connection portion 212. Figures 11 to 15As shown, the first connecting portion 110 of the tool storage member 100 can be detachably connected to the second connecting portion 211 of the box body 210, thereby connecting the storage box 200 and the tool storage member 100. The third connecting portion 212 of the storage box 200 can be detachably connected to the second connecting portion 211 of the adjacent storage box 200. The second connecting portion 211 being provided on the first side means that the second connecting portion 211 is provided near the side of the box body 210, and can be provided on the side of the box body 210 or in an area inside the box body 210 near the side.
[0099] It is not difficult to understand that in the above embodiment, a storage box 200 can be connected to the first connection part 110 of the tool storage part 100 through the second connection part 211, and at the same time connected to the second connection part 211 of another storage box 200 through the third connection part 212, so that the storage box 200 and the tool storage part 100 can be connected into an integral structure for easy storage and management.
[0100] In some embodiments, as Figure 11 、 Figure 12 and Figure 14 As shown, the second connection part 211 and the third connection part 212 both include a sub-component 310 and a mother component 320, and the sub-component 310 and the mother component 320 can be matched to achieve connection, and the sub-component 310 in the second connection part 211 corresponds to the mother component 320 in the third connection part 212 in position, and the mother component 320 in the second connection part 211 corresponds to the sub-component 310 in the third connection part 212 in position, that is, the distance between the sub-component 310 in the second connection part 211 and the end of the box body 210 is equal to the distance between the mother component 320 in the third connection part 212 and the end of the box body 210; or along the first side to the second side of the box body 210, the projection of the sub-component 310 of the second connection part 211 at least partially overlaps with the projection of the mother component 320 on the other side, and the projection of the mother component 320 of the second connection part 211 at least partially overlaps with the projection of the sub-component 310 on the other side. Furthermore, when the tool storage member 100 is connected to the storage box 200, the tool storage member 100 can be connected to the sub-member 310 and the female member 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 the sub-member 310 and the female member 320, the tool storage member 100 can also be connected via the sub-member 310 and the female member 320 in the third connecting portion 212. That is, in this embodiment, the tool storage member 100 can be connected to either 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, allowing for more flexible connection between the tool storage member 100 and the storage box 200.
[0101] In some embodiments, the connection between the two storage boxes 200 is a magnetic connection, that is, at least one of the second connection portion 211 and the third connection portion 212 has a magnet; optionally, the box body 210 has a first surface 215 and a second surface opposite to each other, such as Figures 11 to 13 As shown, both the sub-assembly 310 and the mother assembly 320 are cylindrical structures 330, and the cylindrical structures 330 extend from the first surface 215 to the second surface. The cylindrical structures 330 between the two storage boxes 200 can be magnetically connected. The first surface 215 is the upper surface of the box body 210, and the second surface is the lower surface of the box body 210. Figure 11 Taking the structure shown as an example, the box body 210 has an accessory slot 216 for accommodating accessories. The accessory slot 216 should have an access port for taking out the accessories. When the storage box 200 is used, when the access port is placed upward, the upper surface of the box body 210 is the upper surface of the box body 210, and the surface opposite to the upper surface is the lower surface; when the access port is placed upward, the surface of the box body 210 extending in the vertical direction is the side surface (taking the box body 210 as a square as an example, that is, when the box body 210 is roughly a rectangular parallelepiped, the box body 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 body 210; the columnar structure 330 extending from the first surface 215 to the second surface merely indicates the extension direction of the columnar structure 330, and there is no restriction on the starting position of the extension of the columnar structure 330. In other words, there is no restriction on one end of the columnar structure 330 being located on the first surface 215 or flush with the first surface 215, and the other end being located on the second surface or flush with the second surface. Furthermore, the first connecting portion 110 can be connected to two columnar structures 330 on the same side of the box body 210, or it can be connected to only one columnar structure 330.
[0102] In this embodiment, the first connecting portion 110 and the cylindrical structure 330 on the same side of the box body 210 are detachably connected. Because the cylindrical structure 330 has a certain strength, the connection between the storage box 200 and the tool storage unit 100 is relatively reliable. Furthermore, the connection between the first connecting portion 110 and the cylindrical structure 330 can be formed by inserting the first connecting portion 110 outside the cylindrical structure 330. In other embodiments, the first connecting portion 110 and the cylindrical structure 330 can also be connected in other detachable ways.
[0103] In conjunction with the aforementioned embodiment in which the sub-assembly 310 and the main assembly 320 are cylindrical structures 330, and the connection between the two storage boxes 200 is magnetic, in some embodiments, both the sub-assembly 310 and the main assembly 320 include a magnet column 332 and an outer column 331, with the magnet column 332 located inside the outer column 331; that is, the cylindrical structure 330 includes the magnet column 332 and the outer column 331. The magnet column 332 is used to connect the storage boxes 200, while the outer column 331 is used to connect the storage box 200 to the tool storage unit 100. Specifically, the first connecting portion 110 and the outer column 331 are detachably connected. It is readily understood that in this embodiment, the magnet column 332 used to connect the storage boxes 200 and the outer column 331 used to connect the storage box 200 to the tool storage unit 100 are located in the same location, simplifying the structure of the box body 210. Furthermore, the outer column 331 can provide some protection for the magnet column 332. Of course, in some other embodiments, the outer column 331 may not be provided outside the magnet column 332. That is, the first connecting portion 110 may be directly connected to the magnet column 332. The specific connection method may be a snap connection, or a detachable connection such as a magnetic connection. For example, in some embodiments, the first connecting portion 110 is magnetically connected to the magnet column 332 in the second connecting portion 211. Specifically, the first connecting portion 110 may include a magnetic body, and the tool storage member 100 and the storage box 200 are detachable through the magnetic connection between the magnetic body and the magnet column 332. The magnetic body may be a magnet or a ferromagnetic structural member.
[0104] Further, in some embodiments, Figure 12 As shown, the magnetic pole of the magnet pillar 332 in the sub-component 310, which is closer to the first surface 215, is the north pole, and the magnetic pole of the magnet pillar 332 in the mother component 320, which is closer to the first surface 215, is the south pole. The sub-component 310 and mother component 320 in the second connecting portion 211 of one storage box 200 can attract the sub-component 310 and mother component 320 in the third connecting portion 212 of another storage box 200, thereby magnetically connecting the two adjacent boxes 210. It is not difficult to understand that because the sub-component 310 and mother component 320 in the second connecting portion 211 and the third connecting portion 212 are positioned correspondingly, and the magnetic poles of the magnet pillar 332 are arranged in opposite directions, when the second connecting portion 211 of one storage box 200 is close to the third connecting portion 212 of another storage box 200, the magnet pillars 332 in the second connecting portion 211 and the third connecting portion 212 attract each other, thereby magnetically connecting the two storage boxes 200.
[0105] Furthermore, in some embodiments, the box body 210 is a square structure, and the box body 210 is provided with four columnar structures 330, and the four columnar structures 330 are located at the four corners of the box body 210, that is, the arrangement positions of the four columnar structures 330 are symmetrical about the midline of the first surface 215 in the length direction of the box body 210, and also symmetrical about the midline of the first surface 215 in the width direction of the box body 210. In the circumference of the box body 210, the sub-component 310, the mother component 320, another sub-component 310, and another mother component 320 are arranged in sequence, that is, at a position close to the first surface 215, along the circumference of the box body 210, the N pole and S pole of the magnet column 332 in the second connecting portion 211, and the N pole and S pole of the magnet column 332 in the third connecting portion 212 are arranged alternately. In this embodiment, the space between the two storage boxes 200 can be Figure 18 or Figure 19 The vertical overlap shown can also be Figure 20 and Figure 21 The vertical direction is the thickness direction of the box body 210 (i.e. Figure 13 The horizontal direction includes the length direction of the box body 210 (ie Figure 12 direction indicated by the arrow X) and the width direction (i.e. Figure 12 In the direction indicated by the arrow Y). Moreover, the two storage boxes 200 are not restricted in the vertical overlapping direction and the horizontal splicing direction. Figure 3 or Figure 19 As shown, the box body 210 is also provided with a slope 218, which connects the second surface and a side surface, and a mark is also provided on the slope 218. When two storage boxes 200 overlap, if the second surface of the storage box 200 located below is facing upward, the user can still understand the type of accessories contained in the storage box 200 located below through the mark provided on the slope 218.
[0106] The vertical overlapping direction is not restricted, which means: Figure 19 As shown, the two storage boxes 200 can overlap by contacting each other through the first surface 215 of the box body 210, and the first end of one box body 210 in the length direction can correspond to the first end of the other box body 210, or the second end of one box body 210 in the length direction can correspond to the first end of the other box body 210; in addition, as shown in FIG. Figure 18As shown, the two storage boxes 200 can also overlap by having the first surface 215 of one box body 210 contact the second surface of the other box body 210, and in this overlapping manner, the first end of one box body 210 in the length direction may correspond to the first end of the other box body 210 in the length direction, or the second end of one box body 210 in the length direction may correspond to the first end of the other box body 210 in the length direction. Taking the width direction of the box body 210 as an example, the direction of horizontal splicing is not limited and includes: one box body 210 can be spliced by contacting the first side surface with the second side surface of the other box body 210 (that is, the second connecting portion 211 of one box body 210 is connected to the third connecting portion 212 of the other box body 210), and the first end of the box body 210 in the length direction may correspond to the first end of the other box body 210 in the length direction (that is, Figure 20 As shown), the first end of the box body 210 in the length direction may correspond to the second end of the other box body 210 in the length direction; one box body 210 may also be spliced by contacting the first side surface with the first side surface of the other box body 210 (that is, the second connection portion 211 of one box body 210 is connected to the second connection portion 211 of the other box body 210), and the first end of the box body 210 in the length direction may correspond to the first end of the other box body 210 in the length direction, or the first end of the box body 210 in the length direction may correspond to the second end of the other box body 210 in the length direction; wherein, the first side surface and the second side surface of the box body 210 are two opposite side surfaces.
[0107] Furthermore, in the case where the second connecting portion 211 and the third connecting portion 212 are magnetically connected, and the sub-component 310 and the mother component 320 are columnar structures 330, in some other embodiments, the sub-component 310 includes a magnetic column 332, and the mother component 320 includes a ferromagnetic column (i.e., a columnar ferromagnetic structural member, such as an iron column, a nickel column, a cobalt column, etc.); that is, part of the columnar structure 330 includes a magnetic column 332 and an outer column 331, and another part of the columnar structure 330 includes a ferromagnetic column and an outer column 331. It is not difficult to understand that when the second connecting portion 211 of one storage box 200 is close to the third connecting portion 212 of another storage box 200, the magnetic columns 332 in the second connecting portion 211 and the third connecting portion 212 attract the ferromagnetic column, thereby magnetically connecting the two storage boxes 200. Furthermore, in this embodiment, an outer column 331 may be provided outside the magnet column 332 and the ferromagnetic column. That is, the columnar structure 330 of the sub-component 310 includes the outer column 331 and the magnet column 332 disposed inside the outer column 331, and the columnar structure 330 of the mother component 320 includes the outer column 331 and the ferromagnetic column disposed inside the outer column 331. Of course, in other embodiments, the outer column 331 may not be provided outside the magnet column 332 and the ferromagnetic column. That is, the first connecting portion 110 may directly connect to the magnet column 332 and the ferromagnetic column located on the same side of the box body 210. The specific connection method may be a snap connection, a sleeve connection, or a detachable connection such as a magnetic connection. Alternatively, the first connecting portion 110 may connect to the outer column 331 outside the magnet column 332 or the outer column 331 outside the ferromagnetic column. The specific connection method may be a snap connection, a sleeve connection, or other detachable connection.
[0108] In some embodiments, the box body 210 includes a box body 213 and a connector 214. The box body 213 is used to store accessories; the columnar structure 330 is provided on the connector 214, and the connector 214 is provided in the length direction of the box body 213 (i.e. Figure 12 When the storage boxes 200 are connected magnetically, that is, when the columnar structure 330 is provided with a magnet column 332, the accessories are stored in the box body 213 and the columnar structure 330 is provided in the connecting pieces 214 at both ends of the box body 213 in this embodiment, which can reduce the impact of the magnet column 332 on the accessories.
[0109] Further, in some embodiments, Figure 13As shown, both ends of the cylindrical structure 330 protrude from the connector 214; the first connecting portion 110 is connected to the portion of the cylindrical structure 330 that protrudes from the connector 214. In this embodiment, since the ends of the cylindrical structure 330 protrude from the connector 214, when the first connecting portion 110 is connected to the cylindrical structure 330 by being inserted outside the cylindrical structure 330, the first connecting portion 110 can be connected to the cylindrical structure 330 axially or radially. In some embodiments, the outer contour of the cross section of the cylindrical structure 330 perpendicular to its axis is circular; in other embodiments, the outer contour of the cross section of the cylindrical structure 330 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 330 is the direction passing through and perpendicular to its axis. When the columnar structure 330 includes the above-mentioned outer column 331 and the magnetic column 332, or includes the above-mentioned outer column 331 and the ferromagnetic column, only the protruding connectors 214 are required at both ends of the outer column 331. Furthermore, in order to facilitate the magnetic connection between the storage boxes 200, the magnetic column 332 and the ferromagnetic column can also have protruding connectors 214 at both ends.
[0110] Furthermore, in some embodiments, when two storage boxes 200 overlap, the first connecting portion 110 can be simultaneously connected to the upper and lower columnar structures 330 at the overlapping portion of the two storage boxes 200. For example, when the columnar structures 330 include magnet columns 332, when the two storage boxes 200 overlap, the axes of the upper and lower columnar structures 330 at the overlapping portion of the two storage boxes 200 are approximately aligned, and the first connecting portion 110 is partially connected to the upper columnar structure 330 and the other part is connected to the lower columnar structure 330. In this way, the horizontal displacement that may occur after the two storage boxes 200 are vertically overlapped can be limited.
[0111] In some embodiments, as Figure 7As shown, the tool storage member 100 includes a storage tube 140 for storing the main machine, and the first connecting portion 110 includes two claws 120, which are respectively arranged at the two ends of the storage tube 140. One claw 120 can be selectively clamped to the outside of a columnar structure 330 in the second connecting portion 211. That is, in some use states, the claw 120 is clamped to the outside of the columnar structure 330, and in other use states, the claw 120 is not clamped to the columnar structure 330. In this embodiment, the connection between the first connecting portion 110 and the second connecting portion 211 is a clamping connection, which is easy to disassemble. In other embodiments where the first connecting portion 110 and the second connecting portion 211 are clamped, the number of claws 120 in the first connecting portion 110 and the columnar structure 330 in the second connecting portion 211 can also be other numbers. Furthermore, when the columnar structure 330 includes an outer column 331 and a magnet column 332 or a ferromagnetic column disposed outside, the claw 120 can be connected to the outer column 331 or the magnet column 332 or the ferromagnetic column.
[0112] Furthermore, the claw 120 includes a first clip 121 and a second clip 122. The first clip 121 and the second clip 122 are hinged at one end and elastically connected to each other. This means that the first clip 121 and the second clip 122 can move relative to each other under a force, and after the force is removed, the first clip 121 and the second clip 122 can return to their pre-force state. The ends of the first clip 121 and the second clip 122, away from the hinge, can open to engage the outside of the cylindrical structure 330 and can rebound to clamp the first clip 121 and the second clip 122 within the cylindrical structure 330. In other words, the claw 120 can be radially connected to the cylindrical structure 330.
[0113] Specifically, if Figure 8In one embodiment shown, the first and second clips 121, 122 form a receiving space 111 for accommodating the columnar structure 330. This receiving space 111 has a notch at a first end away from the hinged connection between the first and second clips 121, 122. When no force is applied to the claw 120, the elastic connection between the first and second clips 121, 122 ensures that the notch is smaller than the size of the columnar structure 330. When force is applied to the claw 120, the first and second clips 121, 122 open at their ends away from the hinged connection, increasing the size of the notch to accommodate the columnar structure 330. The process of connecting the claw 120 provided in this embodiment to the cylindrical structure 330 includes: moving the claw 120 toward the cylindrical structure 330 along the radial direction of the cylindrical structure 330. When the cylindrical structure 330 is located in 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 the first clip 121 and the second clip 122 to open at one end away from the hinge, thereby allowing the cylindrical structure 330 to enter the accommodating space 111 between the first clip 121 and the second clip 122. Thereafter, the first clip 121 and the second clip 122 rebound under the action of the elastic connection, so that the cylindrical structure 330 is confined within the accommodating space 111. The first clip 121 and the second clip 122 can prevent the cylindrical structure 330 from escaping radially from the accommodating space 111. The radial direction of the accommodating space 111 is a direction perpendicular to the axial direction of the accommodating space 111 and intersecting the axis of the accommodating space 111. The restriction means that the first clip 121 and the second clip 122 can exert a certain resistance on the columnar structure 330 during the process of the columnar structure 330 being removed from the receiving space 111. Depending on the actual external force, the columnar structure 330 may or may not be removed from the receiving space 111 under the restriction of the first clip 121 and the second clip 122.
[0114] Further, if Figure 8 As shown, the elastic connection between the first clip 121 and the second clip 122 can be achieved 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 of the first clip 121 and the second clip 122, or the other end is connected to other fixed structures such as the storage tube 140.
[0115] In some embodiments, the first clamp 121 is fixedly connected to the storage tube 140, and the first clamp 121 is further provided with a ridge 1211. When the claw 120 is clamped outside the columnar structure 330, the side of the first clamp 121 facing away from the columnar structure 330 is provided with the ridge 1211. Figure 23 As shown, the box body 210 is provided with a groove structure 217, and the rib 1211 is inserted into the groove structure 217 in a direction perpendicular to the axis of the columnar structure 330 (ie, the storage box 200 is inserted into the groove structure 217 in a direction perpendicular to the axis of the columnar structure 330). Figure 8 In the process of movement relative to the tool storage unit 100 in the direction indicated by the arrow A in the figure), the ends of the first clamp 121 and the second clamp 122 away from the hinge can first open and then rebound to clamp the columnar structure 330. That is, in the process of clamping the claw 120 with the columnar structure 330, the ridge 1211 and the groove structure 217 are matched at the same time. In this embodiment, it is not difficult to understand that after the groove structure 217 of the box body 210 and the groove structure 217 of the first clamp 121 cooperate with each other, they can play a role in limiting the separation of the claw 120 and the columnar structure 330 along the axial direction of the columnar structure 330. When the user holds one of the storage box 200 and the tool storage unit 100, which are connected and located at approximately the same level, the other one is not likely to fall. Please refer to Figure 1 and Figure 2 When the two storage boxes 200 overlap, the claws 120 are simultaneously engaged with the outside of the two overlapping columnar structures 330 (such as Figure 3 ), when the storage box 200 needs to be opened, remove the upper storage box 200 and then horizontally splice it next to the lower storage box 200 (such as Figure 1 and Figure 2 ), at this time, the ridge 1211 on the first clamp 121 of the claw 120 is still stuck in the groove structure 217 provided on the box body 210 of the storage box 200 below (such as Figure 2 ), which limits the movement of the storage tube 140, and can avoid moving the storage tube 140 when the upper storage box 200 is moved, so that the storage tube 140 is still fixed on the lower storage box 200 to facilitate the use of the storage box 200.
[0116] In some embodiments, the first connection portion 110 is connected to the second connection portion 211 in a sleeve manner. Figure 9 As shown, the first connecting portion 110 includes two collars 130, which are disposed at both ends of the storage tube 140. One collar 130 can be selectively sleeved on the outside of the columnar structure 330 located at one end of the box body 210 in the second connecting portion 211. That is, in some usage states, the collar 130 is sleeved on the outside of the columnar structure 330, while in other usage states, the collar 130 is not sleeved on the columnar structure 330. Furthermore, in the case where the columnar structure 330 includes an outer column 331 and a magnet column 332 or a ferromagnetic column disposed within the outer column 331, the collar 130 can be connected to the outer column 331, or it can be connected to the magnet column 332 or the ferromagnetic column.
[0117] According to the above embodiment of the connection method between the second connection part 211 and the third connection part 212, it is not difficult to understand that the second connection part 211 and the third connection part 212 both include a sub-component 310 and a mother component 320, and the sub-component 310 and the mother component 320 can be matched to achieve connection.
[0118] In some embodiments, the sub-component 310 and the mother component 320 are both columnar structures 330, and the second connecting part 211 and the third connecting part 212 can be magnetically connected through the magnetic force between the sub-component 310 and the mother component 320; the sub-component 310 and the mother component 320 in the second connecting part 211 both include a columnar outer column 331, and a ferromagnetic column arranged in the outer column 331; the sub-component 310 and the mother component 320 in the third connecting part 212 both include a columnar outer column 331, and a magnet column 332 arranged in the outer column 331. In this embodiment, the magnetic column 332 of the sub-component 310 in the second connecting part 211 and the ferromagnetic column of the mother component 320 in the third connecting part 212 can be matched by being close to each other, thereby connecting the sub-component 310 and the mother component 320; further, the first connecting part 110 and the outer column 331 on the same side of the box body 210 are detachably connected, and can be detachably connected to the outer column 331 in the second connecting part 211 on one side of the box body 210, or can be detachably connected to the outer column 331 in the third connecting part 212 on the other side of the box body 210.
[0119] In some embodiments, the sub-component 310 and the mother component 320 are both columnar structures 330, and the second connecting part 211 and the third connecting part 212 can be magnetically connected through the magnetic force between the sub-component 310 and the mother component 320; the sub-component 310 in the second connecting part 211 and the sub-component 310 in the third connecting part 212 both include a columnar outer column 331 and a magnet column 332 arranged in the outer column 331; the mother component 320 in the second connecting part 211 and the mother component 320 in the third connecting part 212 both include a columnar outer column 331 and a ferromagnetic column arranged in the outer column 331. In this embodiment, the magnet column 332 in the sub-component 310 and the ferromagnetic column of the mother component 320 can be matched by being close to each other, thereby connecting the sub-component 310 to the mother component 320; further, the first connecting portion 110 is detachably connected to the outer column 331 on the same side of the box body 210, and can be detachably connected to the outer column 331 in the second connecting portion 211 on one side of the box body 210, or can be detachably connected to the outer column 331 in the third connecting portion 212 on the other side of the box body 210.
[0120] In some embodiments, the sub-component 310 and the mother component 320 are both columnar structures 330, and the second connecting portion 211 and the third connecting portion 212 can be magnetically connected through the magnetic force between the sub-component 310 and the mother component 320; the sub-component 310 and the mother component 320 both include a columnar outer column 331 and a magnet column 332 disposed in the outer column 331; the first connecting portion 110 and the outer column 331 on the same side of the box body 210 are detachably connected. In this embodiment, the north pole of the magnet column 332 in the sub-component 310 and the south pole of the magnet column 332 in the mother component 320 can be matched by being close to each other, thereby connecting the sub-component 310 to the mother component 320; further, the first connecting portion 110 is detachably connected to the outer column 331 on the same side of the box body 210, and can be detachably connected to the outer column 331 in the second connecting portion 211 on one side of the box body 210, or can be detachably connected to the outer column 331 in the third connecting portion 212 on the other side of the box body 210.
[0121] In other embodiments, the second connection portion 211 and the third connection portion 212 are connected by plugging. Figure 14 As shown, the sub-component 310 is a socket 311, and the mother component 320 is a plug-in 321 that can be plugged into the sub-component 310 in structure. The sub-component 310 can be matched with the mother component 320 by inserting the sub-component 310 into the socket 311, thereby achieving connection. Furthermore, the setting position of the sub-components 310 and the setting position of the mother component 320 on the same side of the box body 210 are symmetrical along the vertically extending midline of the corresponding side surface, so that when the sub-component 310 and the mother component 320 in the second connecting portion 211 of one storage box 200 are respectively connected to the mother component 320 and the sub-component 310 in the third connecting portion 212 of another storage box 200, the two ends of the storage box 200 in the length direction can be aligned, that is, Figure 22 shown.
[0122] Furthermore, in some embodiments where the sub-component 310 is a socket 311 and the mother component 320 is a plug-in 321, Figure 15 and Figure 16 As shown, one end of the plug 321 further has a bent portion 3211, which extends toward the box body 210 and forms a hook-shaped structure. After the plug 321 is inserted into the socket 311, it can slide relative to the socket 311 so that the bent portion 3211 hooks onto the wall of the socket 311. It is easy to understand that since the bent portion 3211 hooks onto the wall of the socket 311, the connection between the socket 311 and the plug 321 is more reliable.
[0123] like Figure 16As shown, in some embodiments, a groove 3111 is provided on the inner wall of the box body 210 near the insertion hole 311. Inserting the plug 321 into the insertion hole 311 and sliding the plug 321 perpendicular to the insertion direction can cause the end of the bent portion 3211 to enter the groove 3111, thereby limiting the relative movement between the two storage boxes 200 and making the connection between the two storage boxes 200 more secure. In another embodiment, the bent portion 3211 of the plug 321 has a certain degree of elasticity. When the plug 321 is inserted into the insertion hole 311, the bent portion 3211 elastically deforms under the action of the opening of the insertion hole 311; when the bent portion 3211 deforms and enters the area within the groove 3111, the bent portion 3211 rebounds and hooks onto the groove 3111 at the opening of the insertion hole 311, thereby making the connection between the insertion hole 311 and the plug 321 more secure.
[0124] In some embodiments, as Figure 17 As shown, the end of the plug 321 away from the box body 210 has two protruding free ends 3212, and a gap 3213 is formed between the two free ends 3212. This allows the two free ends 3212 to approach each other when the plug 321 is connected to the socket 311, so as to simultaneously extend into the socket 311, and to move away from each other to achieve rebound and thus form an interference fit with the socket 311. It is not difficult to understand that the plug 321 has two free ends 3212 and the gap 3213 between the two free ends 3212, which provide space for the deformation of the free ends 3212. Therefore, the plug 321 has an elastic structure, so that after entering the socket 311, the plug 321 has a tendency to rebound under the action of its own elastic deformation, forming an interference fit with the socket 311. Furthermore, to facilitate insertion of the plug 321 into the socket 311, the end surface of the free end 3212 is chamfered. This chamfered structure can serve as a guide, allowing the plug 321 to be better inserted into the socket 311. In some embodiments, the gap 3213 can be a horizontal gap 3213, i.e., the two free ends 3212 are arranged side by side in the horizontal direction; in other embodiments, the gap 3213 can be a vertical gap 3213, i.e., the two free ends 3212 are arranged vertically. 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 be arched, cylindrical, or other shapes, wherein the cross-section of the free end 3212 is perpendicular to the direction of insertion of the plug 321 into the socket 311.
[0125] In some embodiments, the storage boxes 200 are connected to each other and the storage boxes 200 and the tool storage unit 100 are connected via a slide rail structure and a slide groove structure.
[0126] For example, in some embodiments, the first connecting portion 110 and the third connecting portion 212 include a slide groove structure, and the second connecting portion 211 includes a slide rail structure that can be structurally connected to the slide groove structure. Furthermore, the first connecting portion 110 may include two parallel slide groove structures, and accordingly, the second connecting portion 211 includes two slide rail structures, and the third connecting portion 212 includes two slide groove structures. The two slide rail structures of the second connecting portion 211 may extend along the thickness direction of the box body 210, or may extend in a direction perpendicular to the thickness of the box body 210. In other embodiments, the second connecting portion 211 may have only one slide rail structure, and preferably, the slide rail structure extends in a direction perpendicular to the thickness of the box body 210.
[0127] In some other embodiments, the first connection portion 110 and the third connection portion 212 include a slide rail structure, and the second connection portion 211 includes a slide groove structure that can be slidably connected to the slide rail structure.
[0128] 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 assembly, characterized in that: The tool storage device comprises a tool storage member and at least two storage boxes, wherein the tool storage member has a first connecting portion; Each of the storage boxes includes a box body having a first side and a second side opposite to each other, the first side being provided with a second connecting portion, the second side being provided with a third connecting portion, the second connecting portion of one storage box being detachably connected to the first connecting portion, and the third connecting portion of the storage box being detachably connected to the second connecting portion of an adjacent storage box.
2. The storage assembly according to claim 1, wherein: The second connecting part and the third connecting part both include a sub-component and a mother component, and the sub-component and the mother component can be matched to achieve connection; the sub-component in the second connecting part corresponds to the position of the mother component in the third connecting part, and the mother component in the second connecting part corresponds to the position of the sub-component in the third connecting part; the first connecting part is detachably connected to the sub-component and the mother component.
3. The storage assembly according to claim 2, characterized in that: One storage box and another storage box can be magnetically connected to the mother component through the child component.
4. The storage assembly according to claim 3, wherein: The box body also has a first surface and a second surface relative to each other. The sub-component and the mother component are both cylindrical structures, and the cylindrical structures extend from the first surface to the second surface. The first connecting portion is detachably connected to one or two cylindrical structures on the same side of the box body.
5. The storage assembly according to claim 4, characterized in that: The columnar structure includes a magnet column, the magnetic pole of the magnet column in the sub-component close to the first surface is the N pole, and the magnetic pole of the magnet column in the mother component close to the first surface is the S pole; the sub-component and the mother component in the second connecting part of one box body can attract the sub-component and the mother component in the third connecting part of another adjacent box body to achieve magnetic connection between the two adjacent box bodies.
6. The storage assembly according to claim 5, characterized in that: 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.
7. The storage assembly according to claim 4, wherein: The sub-component includes a magnet column, the main component includes a ferromagnetic column, and the first connecting portion is detachably connected to the magnet column and the ferromagnetic column on the same side of the box body.
8. The storage assembly according to claim 5, wherein: The box body is a square structure, and each box body is provided with four columnar structures, which are located at the four corners of the box body. Along the circumference of the box body, the sub-component, the mother component, another sub-component, and another mother component are arranged in sequence; the first connecting part and the two columnar structures on the same side of the box body can be detachably connected.
9. The storage assembly according to claim 8, wherein: The box body includes 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 first connecting portion is connected to the portion of the columnar structure protruding from the connecting piece. When the two storage boxes overlap, the first connecting portion can be simultaneously connected to the upper and lower columnar structures at the overlapping position of the two storage boxes.
10. The storage assembly according to claim 9, wherein: The box body is provided with an inclined surface, the inclined surface connects the second surface and the side surface, and the inclined surface is provided with a mark.
11. The storage assembly according to any one of claims 4 to 10, characterized in that: The tool storage member includes a storage tube for storing the main machine. The first connecting portion includes two claws. The two claws are arranged at both ends of the storage tube. One claw can be optionally clamped outside one of the columnar structures.
12. The storage assembly according to claim 11, 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, 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 so that the first clamp and the second clamp clamp the cylindrical structure.
13. The storage assembly according to claim 12, wherein: A tension spring or a torsion spring is connected between the first clamp and the second clamp.
14. The storage assembly according to claim 12, wherein: When the claw is clamped outside the cylindrical structure, a ridge is provided on the side of the first clamp facing away from the cylindrical structure, and the box body is provided with a groove structure. The claw and the storage box 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.
15. The storage assembly according to claim 9, wherein: The first connecting portion includes two collars, which are arranged at both ends of the tool storage component, and one collar can be optionally sleeved outside the cylindrical structure at one end.
16. The storage assembly according to claim 2, wherein: The sub-component and the mother component are both columnar structures, and the second connecting portion and the third connecting portion can be magnetically connected by the magnetic force between the sub-component and the mother component; the sub-component and the mother component in the second connecting portion both include a columnar outer column and a ferromagnetic column disposed within the outer column; the sub-component and the mother component in the third connecting portion both include a columnar outer column and a magnetic column disposed within the outer column; the first connecting portion is detachably connected to the outer column on the same side of the box body; Alternatively, the sub-component and the mother component are both columnar structures, and the second connecting portion and the third connecting portion can be magnetically connected via the magnetic force between the sub-component and the mother component; the sub-component in the second connecting portion and the sub-component in the third connecting portion both include a columnar outer column and a magnetic column disposed within the outer column; the mother component in the second connecting portion and the mother component in the third connecting portion both include a columnar outer column and a ferromagnetic column disposed within the outer column; the first connecting portion is detachably connected to the outer column on the same side of the box body; Alternatively, the sub-component and the mother component are both columnar structures, and the second connecting part and the third connecting part can be magnetically connected through the magnetic force between the sub-component and the mother component; the sub-component and the mother component both include a columnar outer column and a magnet column arranged in the outer column; the first connecting part is detachably connected to the outer column on the same side of the box body.
17. The storage assembly according to claim 2, wherein: In the box body, the setting position of the sub-component located on the same side is symmetrical with the setting position of the mother component along the center line extending vertically in the corresponding side surface. The sub-component is a socket, and the mother component is a plug-in that can be structurally connected to the sub-component.
18. The storage assembly according to claim 17, wherein: The end of the plug-in has a bent portion, and the plug-in and the socket are configured so that the plug-in can slide relative to each other after being inserted into the socket, so that the bent portion is hooked on the hole wall of the socket.
19. The storage assembly according to claim 18, wherein: A groove is provided in the area near the insertion hole in the inner wall of the box body, the bent portion extends toward the box body and forms a hook-shaped structure, and the plug-in and the insertion hole are configured as follows: when the plug-in is inserted into the insertion hole and the plug-in is slid perpendicular to the insertion direction, the hook-shaped structure can hook the groove.
20. The storage assembly according to claim 17, wherein: The end of the plug-in unit away from the box body has two protruding free ends, and there is a gap between the two free ends, and the ends of the free ends have chamfers; When the plug-in is connected to the socket, the two free ends can be pressed toward the gap to simultaneously extend into one of the sockets, and can rebound away from each other to achieve interference fit with the socket.
21. The storage assembly according to claim 1, wherein: The first connecting portion and the third connecting portion include a slide groove structure, and the second connecting portion includes a slide rail structure that can be slidably connected to the slide groove structure; Alternatively, the first connecting portion and the third connecting portion include a slide rail structure, and the second connecting portion includes a slide groove structure that can be structurally connected to the slide rail structure in a sliding manner.
22. The storage assembly according to claim 1, wherein: The first connecting portion is magnetically connected to the second connecting portion.
23. A tool assembly, characterized in that It comprises a main unit and a storage assembly according to any one of claims 1 to 22, wherein the main unit and the tool storage unit are detachably connected.