Tool storage part, storage assembly and tool assembly
By designing an arm-shaped structure with accommodating space in the tool storage part, the connection problem between the tool storage box and the tool storage part is solved, and reliable connection and convenient management are achieved.
Patent Information
- Application Number
- CN202422311625.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-20
AI Technical Summary
In the prior art, there is a lack of an effective connection relationship between the tool storage box and the tool storage piece, resulting in inconvenience in management.
A tool storage member is designed, including an arm-like structure with a receiving space, through which the cylindrical structure is restricted from the radial distance of the receiving space, and realizes a reliable connection with the box.
It realizes a reliable connection between the tool storage part and the storage box, prevents separation, and improves the convenience and reliability of tool management.
Smart Images

Figure CN223057707U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of tools, and more particularly, to a tool storage member, 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 in conjunction with tools such as screwdrivers. Therefore, there are storage boxes for storing bits, and there are also tool storage members for storing a main body (such as a screwdriver).
[0003] There is no connection relationship between the storage box and the tool storage member in the prior art, which is not convenient for management. Summary of the Utility Model
[0004] The purpose of this application is to provide a tool storage member, a storage assembly, and a tool assembly, so as to facilitate the connection between the tool storage member and the storage box.
[0005] The embodiments of this application are implemented as follows:
[0006] In a first aspect, an embodiment of this application provides a tool storage member, including a storage cylinder for accommodating a main body. The storage cylinder is provided with an arm-shaped structure having an accommodating space for accommodating a cylindrical structure of a box body; the arm-shaped structure is used to restrict the cylindrical structure from radially moving away from the storage cylinder in the accommodating space.
[0007] The tool storage member provided by the above technical solution can be connected to the cylindrical structure of the box body through the arm-shaped structure having an accommodating space. Since the arm-shaped structure is used to restrict the cylindrical structure from radially moving away from the storage cylinder in the accommodating space, the arm-shaped structure and the cylindrical structure after connection are not easily separated, making the connection between the tool storage member and the box body more reliable.
[0008] In combination with the first aspect, in some alternative embodiments, a circumferentially closed and axially through accommodating space is formed in the arm-shaped structure, and the accommodating space is used to sleeved outside the cylindrical structure.
[0009] In the above technical solution, since the accommodating space is circumferentially closed and is used to sleeved outside the cylindrical structure, therefore, without damaging the arm-shaped structure or the cylindrical structure, after the arm-shaped structure and the cylindrical structure are connected, the storage box and the tool storage member cannot radially disengage from the accommodating space, making the connection between the storage box and the tool storage member more reliable.
[0010] In combination with the first aspect, in some alternative embodiments, the accommodating space has a notch. Without external force, the width dimension of the notch is A, and the maximum dimension of the accommodating space in the width direction of the notch is B, and A is less than B.
[0011] In the above technical solution, since dimension A is smaller than dimension B, it can be achieved that when the columnar structure is in the accommodation space, it is difficult for the columnar structure to escape from the accommodation space from the notch, thereby limiting the columnar structure from moving radially away from the storage tube from the accommodation space.
[0012] In combination with the first aspect, in some optional embodiments, the material of the arm-like structure is a hard elastic material, and the arm-like structure can increase the width of the notch and rebound under the action of an external force.
[0013] In the above technical solution, the arm-like structure can increase the width of the gap under the action of external force, thereby enabling the columnar structure to enter the receiving space through the gap. Afterwards, the arm-like structure rebounds, which can reduce the width of the gap, thereby limiting the columnar structure from moving away from the storage tube in the radial direction of the receiving space.
[0014] In combination with the first aspect, in some optional embodiments, the arm-like structure includes a first clip and a second clip; the first clip is hinged to one end of the second clip, and the first clip and / or the second clip are connected to the storage tube, the first clip and the second clip are elastically connected, and the ends of the first clip and the second clip away from the storage tube can be opened to increase the width of the notch, and can rebound.
[0015] In the above technical solution, the first clip and the second clip are hinged, so that one end of the first clip and the second clip can be opened to clamp outside the columnar structure, and then rebound to clamp the columnar structure. The above technical solution provides easy disassembly between the tool storage piece and the storage box.
[0016] In combination with the first aspect, in some optional embodiments, at least one of the first clip and the second clip has a protrusion protruding toward the other; and a side wall of the notch is a protruding surface of the protrusion.
[0017] In the above technical solution, a protrusion is provided on the first clip and / or the second clip, and a gap of the accommodating space is formed by the protrusion.
[0018] In combination with the first aspect, in some optional embodiments, a side of the protrusion facing away from the storage tube is a guide surface, and the guide surface has a first side close to the notch and a second side away from the notch, and the distance between the first side and the storage tube is smaller than the distance between the second side and the storage tube.
[0019] In the above technical solution, by providing a guide surface, the relative movement between the columnar structure and the arm-shaped structure can be guided during the connection between the storage box and the tool storage piece, so that the columnar structure can move more easily to the position where the notch is located.
[0020] In combination with the first aspect, in some alternative embodiments, the second clip can rotate relative to the storage cylinder, and the guiding surface is disposed on a side of the second clip away from the storage cylinder.
[0021] In the above technical solution, the guiding surface is disposed on the second clip that can rotate relative to the storage cylinder. When the cylindrical structure contacts the second clip, the acting force exerted by the cylindrical structure on the second clip can cause the second clip to rotate, so that one end of the first clip and the second clip away from the storage cylinder can open to increase the width dimension of the notch, facilitating the cylindrical structure to enter the accommodation space through the notch.
[0022] In combination with the first aspect, in some alternative embodiments, one of the arm-like structures is disposed at each end of the storage cylinder; the two first clips are located between the two second clips, and the second clip is rotatably connected to the storage cylinder.
[0023] In combination with the first aspect, in some alternative embodiments, a rib is further included. The rib is convexly connected to the storage cylinder, and the extending direction of the rib is consistent with the extending direction of the axis of the storage cylinder. The two first clips are integrally formed at both ends of the rib respectively.
[0024] In the above technical solution, the first clips are integrally formed at both ends of the rib, resulting in a relatively high overall structural strength and being able to reduce the processing difficulty of the tool storage member.
[0025] In combination with the first aspect, in some alternative embodiments, the first clip is fixedly connected to the storage cylinder, and the second clip is connected to the storage cylinder or to the first clip through an elastic member.
[0026] In combination with the first aspect, in some alternative embodiments, the second clip includes a clamping section and a connecting section. The clamping section is located on a side of the connecting section away from the storage cylinder; the clamping section is used to enclose the accommodation space with the first clip and extends in a direction away from the storage cylinder; the connecting section connects the elastic member.
[0027] In the above technical solution, the second clip includes a clamping section for enclosing the accommodation space with the first clip and a connecting section for connecting the elastic member, which can more conveniently connect the second clip to the connecting member to adjust the width of the notch of the accommodation space.
[0028] In combination with the first aspect, in some alternative embodiments, a curved surface is disposed on a side of the clamping section facing the first clip, and the curved surface is a side wall of the accommodation space.
[0029] In the above technical solution, the clamping section has a curved surface, and this curved surface is the side wall of the accommodating space. Therefore, it is convenient for the cylindrical structure to disengage from the accommodating space through the notch.
[0030] In combination with the first aspect, in some alternative embodiments, the elastic member is a tension spring or a torsion spring.
[0031] In combination with the first aspect, in some alternative embodiments, a convex rib is provided on a side of the first clip away from the second clip, and the convex rib extends from an end of the first clip away from the storage cylinder towards the storage cylinder.
[0032] In the above technical solution, the convex rib is located on a side of the first clip away from the second clip. When the first clip and the second clip clamp the cylindrical structure, the convex rib can cooperate with the groove structure in the box body to limit the relative displacement between the storage box and the tool storage member in the axial direction of the cylindrical structure or in the axial direction of the accommodating space.
[0033] In combination with the first aspect, in some alternative embodiments, the storage cylinder includes a cylinder body and a lining. The lining is used for installing the main body, and the lining is detachably connected to the inside of the cylinder body.
[0034] In the above technical solution, since the lining is used for installing the main body and the lining is detachably connected to the cylinder body, for the requirement that the tool storage member needs to accommodate different types of main bodies, only the lining needs to be replaced, which can reduce costs.
[0035] In a second aspect, an embodiment of the present application provides a storage assembly, including a storage box and the tool storage member provided in the first aspect. The storage box includes a box body and a cylindrical structure provided on the box body, and the accommodating space is selectively sleeved outside the cylindrical structure.
[0036] In the above technical solution, when the accommodating space is sleeved on the cylindrical structure, the connection between the storage box and the tool storage member can be realized.
[0037] In a third aspect, an embodiment of the present application provides a storage assembly, including a storage box and the tool storage member with a convex rib provided on the first clip in the first aspect. The storage box includes a box body and a cylindrical structure provided on the box body. The box body has a groove structure. The box body and the arm-shaped structure are configured such that during the process of the cylindrical structure entering the accommodating space from the notch, the convex rib can be inserted into the groove structure to limit the movement of the box body and the arm-shaped structure in the axial direction of the cylindrical structure.
[0038] In the above technical solution, the cylindrical structure is clamped by the first clamp and the second clamp to restrict the relative movement of the cylindrical structure in the radial direction of the accommodation space, and the relative movement of the cylindrical structure in the axial direction of the accommodation space is restricted by the mutually cooperating convex rib and groove structures, making the connection between the tool storage member and the storage box more reliable.
[0039] Combined with the second or third aspect, in some alternative embodiments, the cylindrical structure includes an outer column and a magnet column disposed inside the outer column, and the magnet column is used to magnetically connect the two box bodies.
[0040] In the above technical solution, the box bodies are connected by the magnet column, making the connection between the box bodies more convenient. The outer column can play a role in protecting the magnet column.
[0041] Combined with the second or third aspect, in some alternative embodiments, the box body includes a box body for storing accessories and connectors disposed at both ends in the length direction of the box body. The cylindrical structure is disposed on the connectors, and both ends of the cylindrical structure protrude from the connectors; the arm-like structure is connected to the part of the cylindrical structure protruding from the connectors;
[0042] When the two storage boxes overlap, the arm-like structure can be simultaneously connected to the upper and lower cylindrical structures at the overlapping part of the two storage boxes.
[0043] In the above technical solution, the box body is used to store accessories, and the cylindrical structure is disposed on the connectors at both ends of the box body, which can reduce the influence of the magnet column in the cylindrical structure on the storage of accessories. In addition, since the arm-like structure is connected to the part of the cylindrical structure protruding from the connectors, the arm-like structure can be connected to the cylindrical structure from the axial direction of the cylindrical structure or from the radial direction of the cylindrical structure.
[0044] Since the claw can be simultaneously connected to the upper and lower two cylindrical structures, it can also play a role in restricting the relative movement of the two overlapping storage boxes in the horizontal direction.
[0045] Combined with the second or third aspect, in some alternative embodiments, the box body is provided with an inclined surface, the inclined surface connects the surface and the side surface of the box body, and the inclined surface is provided with a mark.
[0046] In the above technical solution, the mark can be associated with the accessories stored in the box body, so that when in use, the user can conveniently know the type of accessories stored in the box body through the inclined surface. And the mark is set on the inclined surface, so that whether multiple storage boxes overlap or multiple storage boxes are horizontally spliced, the mark can be seen to know the types of accessories in the storage box.
[0047] In combination with the second aspect or the third aspect, in some alternative embodiments, the arm-shaped structure sleevs the outer column in the accommodation space.
[0048] In the above technical solution, the magnet column for connecting the boxes is arranged at the same position as the outer column for connecting the storage box and the tool storage member, which can reduce the space occupied by the box, make the structure of the storage box simpler, and the magnet column is located inside the outer column, and the outer column can protect the magnet column.
[0049] In combination with the second aspect or the third aspect, in some alternative embodiments, one end of the magnet column is arranged with the magnetic pole facing the upper surface of the box, and the other end is arranged with the magnetic pole facing the lower surface of the box.
[0050] In the above technical solution, the magnet column is arranged vertically in the box, which is convenient for realizing the overlap of two boxes through the magnet column.
[0051] In combination with the second aspect or the third aspect, in some alternative embodiments, the box is of a square structure, the columnar structure is located at the four corners of the box, and along the circumferential direction of the box, the N poles and S poles of the magnet columns are alternately distributed.
[0052] In the above technical solution, the columnar structure is arranged at the four corners of the box, and the magnet columns are arranged according to the above technical solution, so that the vertical overlap direction and the horizontal splicing direction of the two storage boxes are not limited.
[0053] In a fourth aspect, an embodiment of the present application provides a tool assembly, including a main body and the storage assembly provided by the second aspect or the third aspect, and the main body is detachably connected to the storage cylinder. Description of the Drawings
[0054] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required to be used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.
[0055] Figure 1 Schematic diagram of the connection between the tool storage member and the storage box provided by an embodiment of the present application;
[0056] Figure 2 For Figure 1 The enlarged view at C in
[0057] Figure 3 For the present application Figure 1 Schematic diagram of the separation between the tool storage member and the storage box in
[0058] Figure 4 Schematic diagram of the connection between the tool storage part and the storage box provided by an embodiment of the present application;
[0059] Figure 5 For Figure 4 Schematic diagram of removing the upper storage box in
[0060] Figure 6 Schematic diagram of the tool storage part provided by an embodiment of the present application;
[0061] Figure 7 Schematic diagram of the arm-shaped structure provided by an embodiment of the present application;
[0062] Figure 8 Schematic diagram of the second clip provided by an embodiment of the present application;
[0063] Figure 9 Schematic diagram of the tool storage part provided by an embodiment of the present application;
[0064] Figure 10 Schematic diagram of the arm-shaped structure provided by an embodiment of the present application;
[0065] Figure 11 Schematic diagram of the storage box provided by an embodiment of the present application;
[0066] Figure 12 For Figure 11 Top view of the storage box shown;
[0067] Figure 13 For Figure 11 Front view of the storage box shown;
[0068] Figure 14 Magnetic pole distribution diagram of the magnet posts on the upper surface of the storage box;
[0069] Figure 15 One of the schematic diagrams of two storage boxes vertically overlapped;
[0070] Figure 16 Another schematic diagram of two storage boxes vertically overlapped;
[0071] Figure 17 One of the schematic diagrams of two storage boxes spliced in the horizontal direction;
[0072] Figure 18 Another schematic diagram of two storage boxes spliced in the horizontal direction.
[0073] Icons: 100 - Tool storage; 110 - Arm - like structure; 111 - Accommodating space; 112 - Notch; 121 - First clip; 1211 - Ridge; 122 - Second clip; 1221 - Protrusion; 1222 - Guide surface; 1223 - Latching section; 1224 - Connecting section; 123 - Elastic member; 130 - Collar; 140 - Storage cylinder; 141 - Cylinder body; 142 - Rib; 200 - Storage box; 210 - Box body; 211 - Box main body; 212 - Connector; 213 - Upper surface; 214 - Lower surface; 215 - Fitting groove; 216 - Groove structure; 217 - Inclined surface; 220 - Cylindrical structure; 221 - Outer cylinder; 222 - Magnet cylinder. Detailed implementation manners
[0074] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. Usually, the components of the embodiments of the present application described and illustrated in the accompanying drawings here 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 drawings is not intended to limit the scope of the present application claimed, but merely represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts fall within the scope of protection of the present application.
[0076] It should be noted that: Similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.
[0077] In the description of the present application, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of this application is usually placed when in use. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present application. In addition, the terms "first", "second", "third", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0078] In addition, terms such as "horizontal", "vertical", "hanging", etc. do not require the components to be absolutely horizontal or hanging, but can be slightly inclined. For example, "horizontal" only means that its direction is more horizontal relative to "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.
[0079] In the description of the present application, it should also be noted that unless otherwise clearly specified and limited, the terms "set", "installed", "connected", "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.
[0080] An embodiment of the present application provides a tool assembly, including a main body and a storage assembly. Among them, as Figures 1 to 5 shown, the storage assembly includes a storage box 200 for storing accessories and a tool storage member 100 for storing the main body, and the main body is detachably connected to the tool storage member 100. In the storage assembly provided by the present application, the main body that the tool storage member 100 can store can be a screwdriver or a grinder. Correspondingly, the accessories are bits or grinding heads; the main body can also be other tools that can be used with replaceable accessories, such as an electric drill with a replaceable drill bit, etc., and the accessory is a drill bit.
[0081] Furthermore, as Figures 6 to 9 shown, the tool storage member 100 includes a storage cylinder 140 for accommodating the main body and an arm-like structure 110 connected to the storage cylinder, and the arm-like structure 110 is provided with an accommodation space 111. As Figures 11 to 13As shown, the storage box 200 includes a box body 210 and a columnar structure 220 disposed on the box body 210. The accommodating space 111 can be selectively sleeved on the columnar structure 220. When the accommodating space 111 is sleeved on the columnar structure 220, the arm-shaped structure 110 is used to limit the columnar structure 220 from being away from the storage tube 140 in the radial direction of the accommodating space 111. That is, in some use states, the accommodating space 111 is sleeved on the columnar structure 220; in other use states, the accommodating space 111 is not sleeved on the columnar structure 220. When the accommodating space 111 is sleeved on the columnar structure 220, the axial direction of the columnar structure 220 is nearly parallel to the axial direction of 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 with the axis of the accommodating space 111; the radial direction of the columnar structure 220 is a direction perpendicular to its axis and intersecting with its axis. Among them, limiting the columnar structure 220 from moving away from the storage cylinder 140 in the radial direction of the storage space 111 means that: when the arm-like structure 110 and the columnar structure 220 have a tendency to move relative to each other in the radial direction of the storage space 111, there is resistance between the arm-like structure 110 and the columnar structure 220 that hinders the relative movement of the two. When the force driving the relative movement of the arm-like structure 110 and the columnar structure 220 is less than the resistance, the arm-like structure 110 and the columnar structure 220 still maintain a connection relationship, and the columnar structure 220 can hardly move away from the storage cylinder 140; if the force driving the relative movement of the arm-like structure 110 and the columnar structure 220 is very large, it is still possible to cause the arm-like structure 110 and the columnar structure 220 to separate.
[0082] In some embodiments, a circumferentially closed and axially penetrating accommodation space 111 is formed in the arm-shaped structure 110. Figure 5 and Figure 9 As shown, the arm-like structure 110 is a collar 130, and a receiving space 111 is formed inside the collar 130. In this embodiment, during the process of disassembling the tool storage member 100 and the storage box 200, the columnar structure 220 enters or leaves the receiving space 111 along the axial direction of the receiving space 111. Without damaging the columnar structure 220 and the arm-like structure 110, the columnar structure 220 cannot move away from the storage tube 140 from the radial direction of the receiving space 111. In other embodiments, the receiving space 111 formed in the arm-like structure 110 may also be circumferentially non-enclosed and axially through; or may be circumferentially enclosed and axially non-through, such as the receiving space 111 is a blind hole in the arm-like structure 110.
[0083] In the embodiment where the accommodation space 111 formed in the arm-shaped structure 110 is not circumferentially closed and the axis is through, Figures 1 to 3 , Figure 6 and Figure 7As shown, the accommodating space 111 has a notch 112. Without external force, the width dimension of the notch 112 is A, and the maximum dimension of the accommodating space 111 in the width direction of the notch 112 is B. Since A is less than B, by reasonably setting the dimensions of the columnar structure 220, it can be ensured that on the premise that A is less than B, the columnar structure 220 can be accommodated in the accommodating space 111 but cannot pass through the notch 112. Herein, the external force refers to the force applied to the tool storage member 100 from outside the tool storage member 100 other than gravity. In this embodiment, the internal dimension of the accommodating space 111 is larger than the width dimension of the notch 112. Therefore, by selecting a columnar structure 220 with appropriate dimensions, the columnar structure 220 can be accommodated in the accommodating space 111, but when leaving the accommodating space 111, it is restricted by the arm-like structure 110. Thus, when the accommodating space 111 is sleeved outside the columnar structure 220, it can play a role in connecting the storage box 200 and the tool storage member 100.
[0084] Furthermore, in some embodiments, as Figure 10 shown, the material of the arm-like structure 110 is a rigid elastic material, that is, a material with a certain hardness to maintain its own shape and at the same time can undergo elastic deformation, such as a metal material or a plastic material, etc. And the arm-like structure 110 can increase the width dimension of the notch 112 under the action of an external force and then rebound. The process of connecting the arm-like structure 110 provided in this embodiment with the columnar structure 220 includes: making the arm-like structure 110 move relatively towards the columnar structure 220 along the radial direction of the columnar structure 220. When the columnar structure 220 is located at the notch 112, that is, when the arm-like structure 110 contacts the columnar structure 220, the force applied by the columnar structure 220 to the arm-like structure 110 causes the arm-like structure 110 to deform, so that the width dimension of the notch 112 increases, and the columnar structure 220 can enter the accommodating space 111 from the notch 112. Then, the arm-like structure 110 rebounds under the action of its own elasticity, so that the columnar structure 220 is restricted in the accommodating space 111.
[0085] Furthermore, as Figure 6As shown, the arm - shaped structure 110 includes a first clip 121 and a second clip 122. One end of the first clip 121 and the second clip 122 is hinged, and they are elastically connected between the first clip 121 and the second clip 122. The ends of the first clip 121 and the second clip 122 away from the receiving cylinder 140 can open to increase the width dimension of the notch 112 and can rebound. That is, the first clip 121 and the second clip 122 can move relative to each other under the action of a force, and after the force is removed, the first clip 121 and the second clip 122 can return to the state before the force is applied. In this embodiment, the ends of the first clip 121 and the second clip 122 away from the hinge can open to be clamped outside the cylindrical structure 220 and can rebound to clamp the cylindrical structure 220 by the first clip 121 and the second clip 122. That is, the arm - shaped structure 110 can be connected to the cylindrical structure 220 radially. When the first clip 121 and the second clip 122 are used to connect the cylindrical structure 220, in some embodiments, the first clip 121 and the second clip 122 can have a clamping effect on the cylindrical structure 220, that is, the first clip 121 and the second clip 122 apply opposite - direction forces to the cylindrical structure 220 from both sides of the cylindrical structure 220 respectively; in other embodiments, the size of the accommodation space 111 surrounded by the first clip 121 and the second clip 122 is larger than the outer dimension of the cylindrical structure 220, so that when the cylindrical structure 220 is in the accommodation space 111, it can neither contact the first clip 121 nor contact the second clip 122, and only when the cylindrical structure 220 leaves the accommodation space 111 through the notch 112, it contacts the first clip 121 and the second clip 122 at the same time.
[0086] Furthermore, it can be that the first clip 121 is connected to the receiving cylinder 140, or the second clip 122 is connected to the receiving cylinder 140, or both the first clip 121 and the second clip 122 are connected to the receiving cylinder 140.
[0087] In some embodiments, please continue to refer to 6 - Figure 8 , at least one of the first clip 121 and the second clip 122 has a protruding portion 1221 protruding towards the other; one side wall of the notch 112 is the convex surface of the protruding portion 1221. That is, the notch 112 is located at the position of the protruding portion 1221. For example, in some embodiments, only the first clip 121 is provided with a protruding portion 1221 protruding towards the second clip 122; as Figure 6 and Figure 7In the illustrated embodiment, only the second clip 122 is provided with a protruding portion 1221 protruding towards the first clip 121. In other embodiments, the protruding portion 1221 may also be provided on both the first clip 121 and the second clip 122. In this embodiment, a notch 112 is formed by the protruding portion 1221. In some other embodiments, it may also be that the C-shaped first clip 121 and the second clip 122 enclose an accommodation space 111 having a notch 112.
[0088] Furthermore, as Figures 6 to 8 shown, the surface of the protruding portion 1221 facing away from the storage cylinder 140 is a guiding surface 1222. The guiding surface 1222 has a first side close to the notch 112 and a second side far from the notch 112. The distance L1 between the first side and the storage cylinder 140 is less than the distance L2 between the second side and the storage cylinder 140. By arranging the guiding surface 1222 in this embodiment, the guiding surface 1222 can guide the relative movement between the columnar structure 220 and the arm-like structure 110 during the process of connecting the storage box 200 and the tool storage member 100, so that the columnar structure 220 can more easily move to the position where the notch 112 is located.
[0089] Furthermore, the protruding portion 1221 is provided on one of the first clip 121 and the second clip 122 that can rotate relative to the storage cylinder 140. In this embodiment, the guiding surface 1222 is provided on the one that can rotate relative to the storage cylinder 140. When the columnar structure 220 contacts the first clip 121 or the second clip 122, the acting force applied by the columnar structure 220 can cause the one of the first clip 121 and the second clip 122 that can rotate relative to the storage cylinder 140 to rotate, so that the ends of the first clip 121 and the second clip 122 away from the storage cylinder 140 can open to increase the width dimension of the notch 112, facilitating the entry of the columnar structure 220 into the accommodation space 111 through the notch 112. As Figure 7 shown in the illustrated embodiment, the second clip 122 can rotate relative to the storage cylinder 140, the protruding portion 1221 is provided on the second clip 122, and correspondingly, the guiding surface 1222 of the protruding portion 1221 is provided on the side of the second clip 122 away from the storage cylinder 140. In the embodiment where arm-like structures 110 are provided at both ends of the storage cylinder 140, the two first clips 121 are located between the two second clips 122. It may also be that the first clip 121 can rotate relative to the storage cylinder 140, and the protruding portion 1221 and the guiding surface 1222 are provided on the first clip 121.
[0090] Furthermore, in some embodiments, as Figure 7As shown, at one end of the first clip 121 away from the storage cylinder 140, the side of the first clip 121 facing the second clip 122 is a flat surface. In this embodiment, during the process of feeding the cylindrical structure 220 into the accommodation space 111 through the notch 112, the cylindrical structure 220 can enter the accommodation space 111 along the first clip 121.
[0091] In some embodiments, an arm-like structure 110 is provided at each end of the storage cylinder 140; the two first clips 121 are located between the two second clips 122, and the second clip 122 is rotatably connected to the storage cylinder 140. Further, as Figure 6 , the tool storage member includes a rib 142, and the extending direction of the rib 142 is consistent with the axial direction of the storage cylinder 140. The rib 142 protrudingly connects to the storage cylinder 140, that is, the rib 142 is connected to the storage cylinder 140 and protrudes from the surface of the storage cylinder 140. The two first clips 121 are integrally formed at both ends of the rib 142. In this embodiment, the arm-like structure 110 is provided at the end of the storage cylinder 140, and the two first clips 121 are fixedly provided at both ends of the storage cylinder 140. By integrally forming the two first clips 121 on the rib 142 and then connecting the rib 142 to the storage cylinder 140, the positional accuracy between the two first clips 121 can be improved, so as to facilitate the connection between the tool storage member 100 and the storage box 200. In addition, the obtained overall structure has high strength and can reduce the processing difficulty of the tool storage member 100.
[0092] In some embodiments, the first clip 121 located between the two second clips 122 is fixedly connected to the storage cylinder 140, and the second clip 122 is connected to the storage cylinder 140 through an elastic member 123, that is, one end of the elastic member 123 is directly connected to the storage cylinder 140 and the other end is directly connected to the second clip 122; of course, it can also be that the first clip 121 is fixedly connected to the storage cylinder 140, and the second clip 122 is connected to the first clip 121 through an elastic member 123. In other embodiments, it can also be that the two second clips 122 are fixedly connected to the storage cylinder 140 and the first clip 121 is connected to the storage cylinder 140 through an elastic member 123. Among them, the elastic member 123 can adopt springs such as extension springs and torsion springs, or other existing elastic members 123 such as rubber bands.
[0093] In some embodiments of the present application, as Figure 7 and Figure 8As shown, the second clip 122 includes a clamping section 1223 and a connecting section 1224. The clamping section 1223 is located on the side of the connecting section 1224 away from the storage cylinder 140. The clamping section 1223 is used to form the accommodation space 111 with the first clip 121 and extends in a direction away from the storage cylinder 140. The connecting section 1224 connects the elastic member 123. In this embodiment, since the part of the second clip 122 for connecting the elastic member 123 and the part for clamping the cylindrical structure 220 are respectively located at the connecting section 1224 and the clamping section 1223, it is convenient to clamp the cylindrical structure 220 while realizing the hinge connection between the first clip 121 and the second clip 122. In some embodiments, as Figure 8 shown, the connecting section 1224 is nearly perpendicular to the clamping section 1223, making the second clip 122 as a whole in an L shape.
[0094] Furthermore, in the embodiment where the second clip 122 is further provided with a protrusion 1221, the protrusion 1221 is provided at one end of the clamping section 1223 away from the connecting section 1224.
[0095] Furthermore, the side of the clamping section 1223 facing the first clip 121 has a curved surface, and the curved surface is the side wall of the accommodation space 111. Since the width dimension A of the notch 112 is smaller than the dimension B of the accommodation space 111, during the movement of the cylindrical structure 220 from the accommodation space 111 to the notch 112, the dimension of the accommodation space 111 in the width direction of the notch 112 changes. In the case where the side of the clamping section 1223 facing the first clip 121 has a curved surface, the change in the dimension of the accommodation space 111 in the width direction of the notch 112 can be made relatively gentle, and the cylindrical structure 220 can move more easily to the position where the notch 112 is located along the curved surface.
[0096] In some embodiments, as Figure 7 , a convex rib 1211 is provided on the side of the first clip 121 away from the second clip 122. The convex rib 1211 extends from the end of the first clip 121 away from the storage cylinder 140 towards the storage cylinder 140, that is, the extending direction of the convex rib 1211 is nearly parallel to the direction in which the cylindrical structure 220 enters the accommodation space 111 through the notch 112. As Figure 6 shown, the two first clips 121 are located between the two second clips 122, and a convex rib 1211 is provided on the side of the first clip 121 facing the other first clip 121. Furthermore, as Figure 2 and Figure 13 shown, the box body 210 is further provided with a groove structure 216. And in this embodiment, during the process of the cylindrical structure 220 entering the accommodation space 111 from the notch 112 (that is, the storage box 200 moves relative to the tool storage member 100 along Figure 7Move in the direction indicated by arrow D), the convex rib 1211 can be inserted into the groove structure 216. That is, during the process of clamping the arm-like structure 110 with the cylindrical structure 220, the cooperation between the convex rib 1211 and the groove structure 216 is achieved simultaneously. In this embodiment, it is not difficult to understand that after the groove structure 216 of the box body 210 and the convex rib 1211 of the first clip 121 cooperate with each other, it can play a role in restricting the separation of the arm-like structure 110 and the cylindrical structure 220 along the axial direction of the cylindrical structure 220. When the user holds one of the storage box 200 and the tool storage member 100 that are connected and roughly at the same horizontal height separately, the other one is not likely to fall. Please refer to Figures 1 to 4 , the arm-like structure 110 can be simultaneously connected to the cylindrical structures 220 in the overlapping storage boxes 200. After the upper storage box 200 is taken, the convex rib 1211 on the first clip 121 of the arm-like structure 110 is still stuck in the groove structure 216 provided on the box body 210 of the lower storage box 200 (such as Figure 2 ), restricting the movement of the storage cylinder 140, and can prevent the storage cylinder 140 from being driven to move together when moving the upper storage box 200, so that the storage cylinder 140 remains fixed on the lower storage box 200 for the access of the storage box 200.
[0097] Furthermore, the first clip 121 is fixedly connected to the storage cylinder 140 so that during the process of connecting the storage box 200 and the tool storage member 100, the relative position between the first clip 121 and the storage cylinder 140 does not change, and the convex rib 1211 can be better inserted into the groove structure 216 of the box body 210.
[0098] In some embodiments of the present application, the storage cylinder 140 includes a cylinder body 141 and a lining, and the lining is detachably connected inside the cylinder body 141. The lining is used to install the host. It is not difficult to understand that for the requirement of the tool storage member 100 to accommodate different types of hosts, only the lining needs to be replaced, which can reduce costs.
[0099] In some embodiments of the present application, the storage boxes 200 can also be magnetically connected. For example, in some embodiments, the cylindrical structure 220 includes an outer cylinder 221 and a magnet cylinder 222 provided inside the outer cylinder 221. The magnet cylinder 222 is used to magnetically connect the box bodies 210 of the two storage boxes 200. The outer cylinder 221 can play a role in protecting the magnet cylinder 222 and can also play a role in installing and positioning the magnet cylinder 222. Further, the arm-like structure 110 can be directly sleeved outside the magnet to realize the connection between the storage box 200 and the tool storage member 100, or can be sleeved outside the outer cylinder 221 to realize the connection between the storage box 200 and the tool storage member 100.
[0100] Furthermore, in some embodiments, such as Figures 11 to 13As shown, the box body 210 includes a box main body 211 for accommodating accessories and connecting members 212 provided at both ends in the length direction of the box main body 211; the columnar structure 220 is provided on the connecting members 212, and both ends of the columnar structure 220 protrude from the connecting members 212. When the columnar structure 220 is connected to the arm-like structure 110, the arm-like structure 110 is connected to the part of the columnar structure 220 that protrudes from the connecting member 212. In this embodiment, since the end of the columnar structure 220 protrudes from the connecting member 212, therefore, when the connection mode between the arm-like structure 110 and the columnar structure 220 is that the arm-like structure 110 is sleeved outside the columnar structure 220, for example, in the above embodiment where the arm-like structure 110 includes the first clip 121 and the second clip 122, the arm-like structure 110 can be connected to the columnar structure 220 axially or radially from the columnar structure 220. Further, in the case where there are two storage boxes 200 in the storage assembly, when the two storage boxes 200 overlap, the connecting member 212 can be simultaneously connected to the upper and lower columnar structures 220 at the overlapping part of the two storage boxes 200.
[0101] Further, as Figure 4 with Figure 13 shown, the box body 210 is provided with an inclined surface 217, the inclined surface 217 connects the lower surface 214 and the side surface, and a mark is provided on the inclined surface 217. Specifically, the mark can be associated with the accessories accommodated in the box body 210, so that when in use, the user can conveniently know the type of accessories accommodated in the box body 210 below through the inclined surface 217. Taking Figures 11 to 13 the structure shown as an example, the box body 210 has an accessory slot 215 for accommodating accessories, and the accessory slot 215 should have a pick-up opening for taking out the accessories. When using the storage box 200, when the pick-up opening is placed upwards, the upper surface of the box body 210 is the upper surface 213 of the box body 210, and the surface opposite to the upper surface 213 is the lower surface 214; when the pick-up opening is placed upwards, the surface of the box body 210 extending in the vertical direction is the side surface.
[0102] Further, the specific connection modes between the storage boxes 200 include vertical overlap and horizontal splicing. Among them, the vertical direction is the thickness direction of the box body 210 in the storage box 200 (that is, Figure 13 the direction indicated by the arrow Z in Figure 12 ), and the horizontal direction includes the length direction of the box body 210 in the storage box 200 (that is, Figure 12 the direction indicated by the arrow X in
[0103] For example, in some embodiments, one end of the magnet post 222 has a magnetic pole facing the upper surface 213 of the box body 210, and the other end has a magnetic pole facing the lower surface 214 of the box body 210. That is, the magnet post 222 is vertically arranged in the box body 210. When the two storage boxes 200 overlap, the upper surfaces 213 of the two storage boxes 200 may contact each other to achieve overlap, or the upper surface 213 of the lower storage box 200 may contact the lower surface 214 of the upper storage box 200 to achieve overlap. In some other embodiments, the magnet post 222 may also be arranged horizontally. For example, magnet posts 222 arranged horizontally are provided on both the upper surface 213 and the lower surface 214 of the box body 210, and the magnet posts 222 on the upper surface 213 in one box body 210 attract the magnet posts 222 on the lower surface 214 in the other box body 210 to achieve the overlap of the storage boxes 200.
[0104] Further, in some embodiments, the box body 210 has a square structure, and the columnar structure 220 is located at the four corners of the box body 210. That is, the magnets in each columnar structure 220 are close to two adjacent side surfaces of the box body 210. Further, the magnet post 222 is vertically arranged. In the circumferential direction of the box body 210, that is, in the circumferential direction of the upper surface 213 of the box body 210, as Figure 12 shown in Figure 14 shown, the N poles and S poles of the magnet posts 222 are alternately distributed. In this embodiment, the horizontal splicing of the storage boxes 200 (such as Figure 17 splicing in the width direction as shown in Figure 18 shown, and splicing in the length direction as shown in
[0105] shown) can be carried out in an unrestricted direction, and the overlapping direction is also unrestricted. Figure 16 Among them, the unrestricted vertical overlapping direction means that: as Figure 15 shown, the two storage boxes 200 can overlap by the upper surfaces 213 of the box bodies 210 contacting each other, and one end of the first box body 210 in the length direction can correspond to one end of the other box body 210, or the second end of the first box body 210 in the length direction can correspond to one end of the other box body 210; in addition, as Figure 17The splicing method shown), or the first end of the box body 210 in the length direction may correspond to the second end of another box body 210 in the length direction; when a box body 210 is spliced by contacting the first side surface with the first side surface in another box body 210, it may also be that the first end of the box body 210 in the length direction corresponds to the first end of another box body 210 in the length direction, or the first end of the box body 210 in the length direction corresponds to the second end of another 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.
[0106] The foregoing is only the preferred embodiment of the present application and is not intended to limit the present application. For those skilled in the art, the present application may have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A tool storage member, characterized in that, It includes a storage cylinder for accommodating a host, and the storage cylinder is provided with an arm-shaped structure having a receiving space for accommodating a cylindrical structure of a box body; the arm-shaped structure is used to restrict the cylindrical structure from radially moving away from the storage cylinder in the receiving space.
2. The tool storage according to claim 1, characterized in that, A circumferentially closed and axially through receiving space is formed inside the arm-shaped structure, and the receiving space is used to sleeved outside the cylindrical structure.
3. The tool storage according to claim 1, characterized in that The receiving space has a notch. Without external force, the width dimension of the notch is A, and the maximum dimension of the receiving space in the width direction of the notch is B, and A is less than B.
4. The tool storage according to claim 3, wherein, The material of the arm-shaped structure is a rigid elastic material, and the arm-shaped structure can increase the width dimension of the notch under the action of external force and can rebound.
5. The tool storage according to claim 3, characterized in that, The arm-shaped structure includes a first clip and a second clip; one end of the first clip is hinged to one end of the second clip, and the first clip or / and the second clip is connected to the storage cylinder. The first clip and the second clip are elastically connected to each other. The ends of the first clip and the second clip away from the storage cylinder can open to increase the width dimension of the notch and can rebound.
6. The tool storage according to claim 5, wherein At least one of the first clip and the second clip has a protruding portion protruding toward the other; one side wall of the notch is the protruding surface of the protruding portion.
7. The tool storage according to claim 6, characterized in that The surface of the protruding portion facing away from the storage cylinder is a guiding surface. The guiding surface has a first side close to the notch and a second side far from the notch. The distance between the first side and the storage cylinder is less than the distance between the second side and the storage cylinder.
8. The tool storage according to claim 7, characterized in that The second clip can rotate relative to the storage cylinder, and the guiding surface is arranged on the side of the second clip away from the storage cylinder.
9. The tool storage according to claim 5, characterized in that, One arm-shaped structure is arranged at each end of the storage cylinder; the two first clips are located between the two second clips, and the second clip is rotatably connected to the storage cylinder.
10. The tool storage member according to claim 9, characterized in that, It further includes a rib protruding and connected to the storage cylinder. The extending direction of the rib is the same as the extending direction of the axis of the storage cylinder. The two first clips are integrally formed at both ends of the rib respectively.
11. The tool storage according to claim 9, characterized in that, The first clip is fixedly connected to the storage cylinder, and the second clip is connected to the storage cylinder or to the first clip through an elastic member.
12. The tool storage according to claim 11, wherein, The second clip includes a clamping section and a connecting section. The clamping section is located on the side of the connecting section away from the storage cylinder; the clamping section is used to enclose the receiving space with the first clip and extends in a direction away from the storage cylinder; the connecting section connects the elastic member.
13. The tool storage according to claim 12, characterized in that, The side of the clamping section facing the first clip has a curved surface, and the curved surface is the side wall of the receiving space.
14. The tool storage according to claim 11, characterized in that, The elastic member is a tension spring or a torsion spring.
15. The tool storage according to any one of claims 5-14, characterized in that, A convex rib is arranged on the side of the first clip away from the second clip, and the convex rib extends from the end of the first clip away from the storage cylinder toward the storage cylinder.
16. The tool storage member according to any one of claims 1-14, characterized in that, The storage cylinder includes a cylinder body and a lining. The lining is used to install the host, and the lining is detachably connected to the inside of the cylinder body.
17. A storage component, characterized in that, It includes a storage box and the tool storage member according to any one of claims 1-16. The storage box includes a box body and a cylindrical structure provided on the box body, and the accommodation space can be selectively sleeved outside the cylindrical structure.
18. A storage component, characterized in that, It includes a storage box and the tool storage member according to claim 15. The storage box includes a box body and a cylindrical structure provided on the box body. The box body has a groove structure. The box body and the arm-like structure are configured such that during the process of the cylindrical structure entering the accommodation space from the notch, the convex rib can be inserted into the groove structure to limit the movement of the box body and the arm-like structure in the axial direction of the cylindrical structure.
19. The storage assembly according to claim 17 or 18, wherein The cylindrical structure includes an outer column and a magnet column provided inside the outer column. The magnet column is used to magnetically connect between the two box bodies.
20. The storage component according to claim 19, wherein The box body includes a box body for storing accessories and connectors provided at both ends in the length direction of the box body. The cylindrical structure is provided on the connectors, and both ends of the cylindrical structure protrude from the connectors. The arm-like structure is connected to the part of the cylindrical structure that protrudes from the connector. When two storage boxes overlap, the arm-like structure can be simultaneously connected to the upper and lower cylindrical structures at the overlapping part of the two storage boxes.
21. The storage component according to claim 20, wherein The box body is provided with an inclined surface. The inclined surface connects the surface and the side surface of the box body, and the inclined surface is provided with a mark.
22. The storage assembly according to claim 19, wherein, The arm-like structure sleeved the outer column in the accommodation space.
23. The storage component according to claim 22, wherein One end of the magnet column is arranged with the magnetic pole facing the upper surface of the box body, and the other end is arranged with the magnetic pole facing the lower surface of the box body.
24. The storage assembly according to claim 23, wherein, The box body is of a square structure. The cylindrical structures are located at the four corners of the box body. Along the circumferential direction of the box body, the N poles and S poles of the magnet columns are alternately distributed.
25. A tool component, characterized in that, It includes a main body and the storage assembly according to any one of claims 17-24. The main body is detachably connected to the storage cylinder.