Screwdriver storage rack and screwdriver set

By designing a repositionable screwdriver storage rack, the problem of messy screwdriver storage was solved, achieving neat storage and convenient access to screwdrivers, and reducing loss.

CN224275050UActive Publication Date: 2026-05-26YANTAI GREENERY TOOLS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YANTAI GREENERY TOOLS CO LTD
Filing Date
2025-04-22
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

In the existing technology, screwdrivers (such as Allen wrenches and screwdrivers) lack suitable storage racks, resulting in messy storage, difficulty in quickly finding the required model, and easy loss.

Method used

A screwdriver storage rack has been designed, including a base and a shelf. The base has a suspension structure and storage holes. The shelf can be switched between vertical and horizontal positions and is equipped with a locking mechanism to fix its position. It is suitable for hanging or placing on a workbench, providing a flexible storage method.

Benefits of technology

It enables the neat storage of screwdrivers, reduces loss, and improves the convenience and efficiency of screwdriver retrieval and searching. It is suitable for storing screwdrivers of different models.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application provides a screwdriver storage rack and screwdriver set. The screwdriver storage rack includes a base and a placement rack. The base has a hanging structure, and the placement rack has at least one storage hole configured for inserting screwdrivers. The placement rack is mounted on the base and has a first position and a second position on the base, and the placement rack can switch between the first position and the second position. When the placement rack is in the first position, the screwdriver inserted into the storage hole is perpendicular to or tilted at a certain angle relative to the base. When the placement rack is in the second position, the screwdriver inserted into the storage hole is approximately parallel to the base. This screwdriver storage rack can be used to store screwdrivers such as hex wrenches and screwdrivers, facilitating the neat storage and easy access of screwdrivers. Furthermore, the screwdriver storage rack can be hung on a vertical surface such as a wall or placed on a workbench, allowing users to flexibly choose the placement method according to their needs and operating space, making it more flexible to use.
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Description

Technical Field

[0001] This application relates to the field of tool storage technology, and in particular to a screwdriver storage rack and screwdriver set. Background Technology

[0002] Screwdrivers are tools that tighten or loosen objects by rotating them. Common screwdrivers include screwdrivers, hex wrenches, and T-type hex wrenches with handles attached to them.

[0003] Since screws and other fasteners come in many sizes and models, users typically carry multiple types of screwdrivers to match various screw sizes and models. However, while individual screwdrivers are usually stored separately in a toolbox or on a workbench for easy access, storing multiple screwdrivers haphazardly in a toolbox or on a workbench can lead to clutter, easy loss, and difficulty in quickly finding the required model, causing some inconvenience for users.

[0004] In related technologies, hex wrenches are usually stored in plastic holders. However, there is a lack of suitable storage holders for screwdrivers and other screwdrivers, which presents a technical problem of inconvenience in storing and accessing them. Utility Model Content

[0005] This application provides a screwdriver storage rack and screwdriver kit to solve the technical problem of inconvenient screwdriver storage and retrieval.

[0006] The embodiments of this application provide the following technical solutions to solve the above-mentioned technical problems:

[0007] This application provides a screwdriver storage rack, including a base and a placement rack. The base is provided with a suspension structure, and the placement rack is provided with at least one storage hole, which is configured to hold screwdrivers.

[0008] The placement rack is mounted on the base, and the placement rack has a first position and a second position on the base, and the placement rack is capable of switching between the first position and the second position;

[0009] When the placement rack is in the first position, the screwdriver inserted into the storage hole is perpendicular to or tilted at a certain angle relative to the base; when the placement rack is in the second position, the screwdriver inserted into the storage hole is approximately parallel to the base.

[0010] The beneficial effects of this application's embodiments: The screwdriver storage rack provided in this application's embodiments is used to store screwdrivers such as hex wrenches, T-type hex wrenches, or screwdrivers. The screwdriver storage rack can be hung on a vertical surface such as a wall, or placed on a workbench. Users can flexibly choose the placement method according to their needs and the space on the workbench, making it more flexible to use. Furthermore, the neat storage of screwdrivers such as hex wrenches, T-type hex wrenches, or screwdrivers on the screwdriver storage rack makes the storage of screwdrivers such as hex wrenches, T-type hex wrenches, or screwdrivers more organized, easier to access, and facilitates users to quickly find the required screwdriver model. It can also reduce the loss of screwdrivers.

[0011] In one possible implementation, the placement rack is rotatably connected to the base;

[0012] One of the base and the placement rack is provided with a locking mechanism, and the other is provided with a locking engagement structure;

[0013] When the placement rack needs to be repositioned, the locking mechanism unlocks from the locking engagement structure; when the placement rack is in the correct position, the locking mechanism locks into the locking engagement structure to lock the position of the placement rack.

[0014] In one possible implementation, the base is provided with a rotating mounting seat;

[0015] The placement frame is equipped with a rotating mounting component, which is detachably mounted on the rotating mounting base, and when the rotating mounting component is mounted on the rotating mounting base, the rotating mounting component can rotate on the rotating mounting base.

[0016] In one possible implementation, the rotating mount includes a ball head and a mounting neck connected together, the radial dimension of the mounting neck being smaller than the diameter of the ball head;

[0017] The rotating mounting base has a mounting hole with a first end and a second end at two axial ends. The first end has a blocking edge around its periphery. An opening is formed in the side wall of the mounting hole, which connects the first end and the second end. The width of the opening is greater than the radial dimension of the mounting neck and less than the diameter of the ball head.

[0018] The rotating mounting component can be inserted into the mounting hole from the second end, and rotated towards one side of the first end along the direction of the opening until the locking mechanism engages with the locking engagement structure; when the locking mechanism and the locking engagement structure are unlocked, the ball head can rotate freely in the mounting hole, and the blocking edge prevents the ball head from disengaging from the first end of the mounting hole.

[0019] In one possible implementation, the base has a boss along a first direction, and the locking mechanism is disposed on the boss; the placement rack is rotatably mounted on the boss.

[0020] In one possible implementation, one of the placement rack and the base is provided with a mounting groove and a through hole that passes through the mounting groove;

[0021] The locking mechanism includes a pressing locking member, which includes a pressing part and a locking hook part connected to each other. The locking mechanism is installed in the mounting groove and the through hole. The pressing part extends out from the opening of the mounting groove, and the locking hook part extends out from the through hole.

[0022] The other of the placement rack and the base is provided with a locking groove, and the opening edge of the locking groove is provided with a locking stop edge;

[0023] When the locking mechanism is engaged with the locking engagement structure, part of the locking hook extends into the locking groove and is locked to the locking stop; when the locking mechanism is unlocked from the locking engagement structure, the pressing part is pressed to push the locking hook away from the locking stop, and the placement frame is rotated to allow the locking hook to retract from the locking groove.

[0024] In one possible implementation, the locking mechanism further includes a reset member installed in the mounting groove and located between the bottom wall of the mounting groove and the pressing locking member. The reset member is configured to push the pressing locking member to reset after the force pressing the pressing part is removed.

[0025] In one possible implementation, one of the base and the placement frame is provided with a limiting protrusion, and the other is provided with a limiting groove corresponding to the limiting protrusion. When the placement frame is in the first position, the limiting protrusion extends into the limiting groove.

[0026] When the base is provided with a limiting protrusion, the other side of the placement rack is provided with a second limiting groove. When the placement rack is in the second position, the limiting protrusion extends into the second limiting groove.

[0027] When the base is provided with a limiting groove, the other side of the placement frame is provided with a second limiting protrusion. When the placement frame is in the second position, the second limiting protrusion extends into the limiting groove.

[0028] In one possible implementation, the base is provided with the limiting groove, and the limiting groove is provided in two sets, namely a first set of limiting grooves and a second set of limiting grooves. Each set of limiting grooves includes at least one of the limiting grooves. Relative to the first set of limiting grooves, the second set of limiting grooves is provided on the side of the base closer to the suspension structure.

[0029] When the placement rack is in the first position, the limiting protrusion extends into the first set of limiting grooves; when the placement rack is in the second position, the second limiting protrusion extends into the second set of limiting grooves.

[0030] In one possible implementation, the suspension structure is a suspension hole provided on a first side of the base, and the number of the suspension holes is one or more.

[0031] In one possible implementation, the storage hole is a through hole;

[0032] When the screwdriver storage rack is suspended, the handle of the screwdriver inserted into the storage hole prevents the screwdriver from passing through the storage hole.

[0033] In one possible implementation, the base is provided with at least one tool storage slot.

[0034] This application also provides a screwdriver set, which includes a screwdriver storage rack as described in any of the above claims, and at least one screwdriver.

[0035] The beneficial effects of the screwdriver set provided in this application embodiment are the same as those of the screwdriver storage rack described above, and will not be repeated here.

[0036] In addition to the technical problems solved by this application, the technical features constituting the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions as described above, other technical problems that can be solved by the screwdriver storage rack and screwdriver kit provided by this application, other technical features contained in the technical solutions, and the beneficial effects brought about by these technical features will be further explained in detail in the specific embodiments. Attached Figure Description

[0037] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0038] Figure 1 This is a schematic diagram of a screwdriver storage rack according to an embodiment of this application;

[0039] Figure 2 This is a schematic diagram of the hanging state of the screwdriver storage rack according to an embodiment of this application;

[0040] Figure 3 This is a schematic diagram of a screwdriver storage rack with a T-shaped hex wrench inserted, according to an embodiment of this application.

[0041] Figure 4 This is a schematic diagram of the screwdriver storage rack with a T-shaped hex wrench inserted, suspended in an embodiment of this application.

[0042] Figure 5This is an exploded view of the screwdriver storage rack according to an embodiment of this application;

[0043] Figure 6 This is a schematic diagram of the base according to an embodiment of this application;

[0044] Figure 7 This is a schematic diagram of the placement rack according to an embodiment of this application.

[0045] Explanation of reference numerals in the attached figures:

[0046] 100. Base;

[0047] 110. Hanging hole; 120. Locking mechanism; 130. Rotary mounting base; 140. Boss; 150. Mounting groove; 160. Through hole; 170. Tool storage groove; 180. Cover;

[0048] 121. Press-locking component; 122. Pressing part; 123. Locking hook part;

[0049] 131. Mounting hole; 132. Blocking edge; 133. Opening;

[0050] 141, limiting groove; 141', limiting groove of the second limiting groove group;

[0051] 200. Shelf;

[0052] 210 Storage hole; 220 Locking fit structure; 230 Rotating mounting part; 240 Lock groove; 250 Locking stop edge; 260 Limiting protrusion; 270 Second limiting protrusion;

[0053] 231. Ball head; 232. Neck assembly;

[0054] 300. T-type internal hex wrench;

[0055] 310. Insert the edge.

[0056] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation

[0057] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0058] like Figure 1 and Figure 2 As shown, the screwdriver storage rack provided in this embodiment includes a base 100 and a placement rack 200. The base 100 is provided with a suspension structure, allowing the screwdriver storage rack to be suspended on a vertical surface such as a wall via the suspension mechanism. For example, the suspension structure is a suspension hole 110 located on the first side of the base 100, and the number of suspension holes 110 can be one or more. For example, as... Figure 2 As shown, there are two hanging holes 110, which are spaced apart on the first side of the base 100.

[0059] Please continue to participate. Figure 1 and Figure 2 The shelf 200 is provided with at least one storage hole 210, which is configured to hold screwdrivers such as Allen wrenches, T-type Allen wrenches 300, or screwdrivers. For example, Figure 3 and Figure 4 As shown, the storage hole 210 is used to insert a T-type hex wrench 300. For example, the number of storage holes 210 can be set to one, two, three, four, or seven, etc., with one storage hole 210 storing one screwdriver. When there are one or more storage holes 210 (including two), the screwdriver is inserted into the storage hole 210, facilitating the retrieval and storage of the screwdriver. The placement position is fixed, making it easy to find the screwdriver. When there are multiple storage holes 210, the multiple storage holes 210 can have different radial dimensions to store different models of screwdrivers, making the screwdriver storage more organized, easier to retrieve, and allowing users to quickly find the required model of screwdriver, while also reducing the loss of screwdrivers. For example, as... Figure 3 and Figure 4 As shown, there are multiple storage holes 210, and the radial dimensions of the multiple storage holes 210 are different. The storage holes 210 are used to insert different models of T-type internal hex wrenches 300, thereby facilitating the storage, retrieval, and retrieval of T-type internal hex wrenches 300, and reducing the loss.

[0060] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the placement rack 200 is mounted on the base 100, and the placement rack 200 has a first position on the base 100 (e.g., Figure 1 ) and second position (e.g., Figure 2 The shelf 200 is capable of switching between a first position and a second position. When the shelf 200 is in the first position (e.g., ...), Figure 3 When the screwdriver is inserted into the storage hole 210, it is perpendicular to or tilted at a certain angle relative to the base 100; when the placement rack 200 is in the second position (e.g., Figure 4 When inserted into the storage hole 210, the screwdriver is approximately parallel to the base 100.

[0061] It should be noted that, in this embodiment, the screwdriver inserted into the storage hole 210 is perpendicular or inclined at a certain angle relative to the base 100, and the screwdriver inserted into the storage hole 210 is approximately parallel to the base 100. This means that the insertion edge 310 of the screwdriver is perpendicular or inclined at a certain angle relative to the reference plane of the base 100, and is approximately parallel to the reference plane of the base 100. The insertion edge 310 is the side of the screwdriver into the storage hole 210, such as the handle of a screwdriver or the long side of an Allen wrench. The reference plane of the base 100 refers to the bottom surface of the base 100, or a plane parallel to the bottom surface of the base 100.

[0062] Furthermore, the angle at which the screwdriver inserted into the storage hole 210 is perpendicular or tilted at a certain angle relative to the reference plane of the base 100 means that the angle is sufficient for the base 100 to support the storage rack 200 filled with screwdrivers. The phrase "approximately parallel" means that the screwdriver inserted into the storage hole 210 is parallel to the base 100, but a certain deviation is allowed; for example, a deviation of ±10° is permitted.

[0063] In this embodiment, the screwdriver storage rack provided can be hung on a vertical surface such as a wall, or placed on a workbench. Users can flexibly choose the placement method according to their needs and the space on the workbench, making it more flexible to use. Screwdrivers such as hex wrenches, T-type hex wrenches 300, or screwdrivers are neatly stored on the screwdriver storage rack, making the storage of hex wrenches, T-type hex wrenches 300, or screwdrivers more organized, easier to access, and easier for users to quickly find the required screwdriver model. It can also reduce the loss of screwdrivers.

[0064] In embodiments of this application, the storage hole 210 can be a blind hole or a through hole. To reduce the center of the screwdriver stored on the storage rack 200 when the rack 200 is in the second position, thus decreasing the deflection force exerted by the screwdriver on the rack 200 (the screwdriver's potential tendency to tilt to one side, which exerts a force on the rack 200), the storage hole 210 is, for example, a through hole. When the screwdriver storage rack is suspended, the handle of the screwdriver inserted into the storage hole 210 prevents the screwdriver from passing through the storage hole 210. For example, as... Figure 4As shown, the screwdriver storage rack is used to store T-shaped hex wrenches 300. The T-shaped handle of the T-shaped hex wrench 300 prevents it from passing through the storage hole 210. That is, when the rack 200 is in the first position, the lower end of the insertion edge 310 of the T-shaped hex wrench 300 passes through the storage hole 210 and rests against the base 100. When the rack 200 is in the second position, the lower end of the insertion edge 310 of the T-shaped hex wrench 300 passes through the storage hole 210, and the T-shaped handle of the T-shaped hex wrench 300 prevents it from passing through the storage hole 210, thus storing the T-shaped hex wrench 300 on the screwdriver storage rack. For the T-type hex wrench 300, the T-shaped shank end is heavier. Compared to the blind hole design of the storage hole 210, the through hole design of the storage hole 210 can significantly reduce the stress on the storage rack 200 and increase the service life of the screwdriver storage rack.

[0065] like Figure 1 , Figure 2 and Figure 5 As shown, in some embodiments of this application, the placement rack 200 is rotatably connected to the base 100. One of the base 100 and the placement rack 200 is provided with a locking mechanism 120, and the other with a locking engagement structure 220. That is, the locking mechanism 120 can be disposed on the base 100 or on the placement rack 200. When the locking mechanism 120 is disposed on the base 100, the locking engagement structure is disposed on the placement rack 200; when the locking mechanism 120 is disposed on the placement rack 200, the locking engagement structure is disposed on the base 100. When the placement rack 200 needs to change position, the locking mechanism 120 unlocks from the locking engagement structure 220, and the placement rack 200 is rotated to change its position. When the placement rack 200 is in the correct position, the locking mechanism 120 locks into place with the locking engagement structure 220 to lock the position of the placement rack 200. For example, when the placement rack 200 changes from the first position to the second position, the locking mechanism 120 and the locking engagement structure 220 are unlocked, the placement rack 200 is rotated to the second position, and the locking mechanism 120 and the locking engagement structure 220 are locked, thereby locking the position of the placement rack 200 in the second position. This arrangement facilitates the operation of changing the position of the placement rack 200.

[0066] For example, such as Figure 5 , Figure 6 and Figure 7As shown, the base 100 is provided with a rotating mounting seat 130, and the shelf 200 is provided with a rotating mounting component 230. The rotating mounting component 230 is detachably mounted on the rotating mounting seat 130, and when the rotating mounting component 230 is mounted on the rotating mounting seat 130, the rotating mounting component 230 can rotate on the rotating mounting seat 130. The detachable mounting of the rotating mounting component 230 allows the shelf 200 to be used as a separate component, which is convenient for storage, and the detachable design of the rotating mounting component 230 facilitates the packaging and transportation of the screwdriver storage rack.

[0067] For example, such as Figure 1 , Figure 6 and Figure 7As shown, the rotating mounting member 230 includes a ball head 231 and a mounting neck 232 connected together. The radial dimension of the mounting neck 232 is smaller than the diameter of the ball head 231. The rotating mounting base 130 has a mounting hole 131, with a first end and a second end at two axial ends. A blocking edge 132 is provided around the periphery of the first end. An opening 133 is formed in the side wall of the mounting hole 131, connecting the first end and the second end. The width of the opening 133 is greater than the radial dimension of the mounting neck 232 but smaller than the diameter of the ball head 231. Thus, the mounting neck 232 can pass through the opening 133, while the ball head 231 cannot pass through the opening 133. The rotating mounting member 230 can be inserted into the mounting hole 131 from the second end, and rotated towards the first end along the direction of the opening 133 until the locking mechanism 120 locks with the locking engagement structure 220. The blocking edge 132 prevents the ball head 231 from disengaging from the first end of the mounting hole 131, and the ball head 231 can rotate freely within the mounting hole 131. In other words, when the placement rack 200 is installed on the base 100, the rotating mounting member 230 is inserted into the mounting hole 131 from the second end of the mounting hole 131. At this time, the ball head 231 is inserted into the mounting hole 131, and the mounting neck 232 passes through the opening 133. The mounting member is rotated to one side of the first end along the direction of the opening 133, that is, the placement rack 200 is rotated. The mounting neck 232 goes around from the opening 133 to the first end of the mounting hole 131. At this time, the blocking edge 132 prevents the ball head 231 from leaving the first end of the mounting hole 131. The placement rack 200 is rotated until the locking mechanism 120 locks with the locking engagement structure 220. When the placement rack 200 needs to be repositioned, the locking mechanism 120 and the locking engagement structure 220 unlock, allowing the ball head 231 to rotate freely within the mounting hole 131. The blocking edge 132 prevents the ball head 231 from disengaging from the first end of the mounting hole 131. In other words, after the locking mechanism 120 and the locking engagement structure 220 unlock, the placement rack 200 can rotate upwards at a certain angle using the ball head as a fulcrum and then rotate backwards to the second position (when the placement rack 200 changes from the first position to the second position). During this process, the blocking edge 132 prevents the ball head 231 from disengaging from the first end of the mounting hole 131. That is, the blocking edge 132 and the edge of the opening 133 together confine the position of the ball head 231 within the mounting hole 131, ensuring that the ball head 231 can only rotate within the mounting hole 131. This design is simple, facilitates the installation of the placement rack 200 on the base 100, and allows for flexible rotation.

[0068] In some embodiments of this application, to increase the distance between the T-shaped handle and the base 100 when storing the T-shaped hex wrench 300 in the screwdriver storage rack, and to avoid interference between the T-shaped handle and the base 100, or between the T-shaped handle and the wall surface, such as... Figure 6As shown, a boss 140 is provided on the base 100 along the first direction, and a locking mechanism 120 is provided on the boss 140. The mounting bracket 200 is rotatably mounted on the boss 140. That is, after the mounting bracket 200 is installed on the base 100, the mounting bracket 200 is located on the boss 140. When the mounting bracket 200 is in the second position, the boss 140 pushes the mounting bracket 200 out a certain distance (i.e., the thickness of the boss 140), thereby increasing the distance between the T-shaped handle of the T-shaped hex wrench 300 and the base 100.

[0069] For example, such as Figure 5 , Figure 6 and Figure 7 As shown, in some embodiments of this application, one of the placement rack 200 and the base 100 is provided with a mounting groove 150 and a through hole 160 passing through the mounting groove 150. The locking mechanism 120 includes a pressing locking member 121, which includes a pressing part 122 and a locking hook part 123 connected to each other. The locking mechanism 120 is mounted in the mounting groove 150 and the through hole 160. The pressing part 122 extends from the opening 133 of the mounting groove 150, and the locking hook part 123 extends from the through hole 160. The other of the placement rack 200 and the base 100 is provided with a locking groove 240, and the edge of the opening 133 of the locking groove 240 is provided with a locking stop edge 250. When the locking mechanism 120 is engaged with the locking engagement structure 220, part of the locking hook portion 123 extends into the locking groove 240 and locks against the locking stop edge 250. When the locking mechanism 120 is unlocked from the locking engagement structure 220, pressing the pressing part 122 pushes the locking hook portion 123 away from the locking stop edge 250, and rotating the placement frame 200 causes the locking hook portion 123 to retract from the locking groove 240. In other words, when the locking mechanism 120 is mounted on the base 100, the base 100 has a mounting groove 150 and a through hole 160 that passes through the mounting groove 150. The locking mechanism 120 is mounted in the mounting groove 150 and the through hole 160, and the placement frame 200 has a locking groove 240. The locking mechanism 120 can also be set on the placement rack 200. When the locking mechanism 120 is set on the placement rack 200, the placement rack 200 is provided with a mounting groove 150 and a through hole 160 that passes through the mounting groove 150. The locking mechanism 120 is installed in the mounting groove 150 and the through hole 160, and the base 100 is provided with a locking groove 240.

[0070] For example, the locking mechanism 120 also includes a reset member (not shown in the figure). The reset member is installed in the mounting groove 150 and is located between the bottom wall of the mounting groove 150 and the pressing locking member 121. The reset member is configured such that after the force of the pressing part 122 is released, the reset member pushes the pressing locking member 121 to reset. That is, the normal state of the locking mechanism 120 is the locked state, and the pressing part 122 is pressed to unlock it. That is, when changing the position of the placement rack 200, the pressing part 122 is pressed to unlock the locking mechanism 120 and the locking engagement structure 220. When the placement rack 200 is rotated, the pressing part 122 is pressed when the placement rack 200 is almost in the changed position, or the pressing part 122 is maintained during the rotation of the placement rack 200. After the placement rack 200 is in the changed position, the force of the pressing part 122 is released, and the locking mechanism 120 and the locking engagement structure 220 are locked. The reset member facilitates the operation of the locking mechanism 120.

[0071] To increase the stability of the mounting rack 200 on the base 100, reduce the shaking of the mounting rack 200, reduce the force on the locking mechanism 120 and the locking engagement structure 220, and reduce the force at the rotating connection between the mounting rack 200 and the base 100, thereby extending the service life of the screwdriver storage rack and reducing its damage rate, such as... Figure 5 , Figure 6 and Figure 7As shown, one of the base 100 and the placement rack 200 is provided with a limiting protrusion 260, and the other is provided with a limiting groove 141 corresponding to the limiting protrusion 260. When the placement rack 200 is in the first position, the limiting protrusion 260 extends into the limiting groove 141. When the base 100 is provided with the limiting protrusion 260, the other side of the placement rack 200 is provided with a second limiting groove 141. When the placement rack 200 is in the second position, the limiting protrusion 260 extends into the second limiting groove 141. When the base 100 is provided with the limiting groove 141, the other side of the placement rack 200 is provided with a second limiting protrusion 270. When the placement rack 200 is in the second position, the second limiting protrusion 270 extends into the limiting groove 141. In other words, the limiting protrusion 260 is set on the base 100 or the placement rack 200. When the limiting protrusion 260 is set on the base 100, a limiting groove 141 is provided on one side of the placement rack 200, and a second limiting groove 141 is provided on the other side. When the placement rack 200 is in the first position, the limiting protrusion 260 extends into the limiting groove 141. The limiting groove 141 and the limiting protrusion 260 cooperate to limit the position of the placement rack 200 and reduce the shaking of the placement rack 200. When the placement rack 200 is in the second position, the limiting protrusion 260 extends into the second limiting groove 141. The limiting protrusion 260 and the second limiting groove 141 cooperate to limit the position of the placement rack 200 and reduce the shaking of the placement rack 200. When the limiting protrusion 260 is set on the placement rack 200, a second limiting protrusion 270 is provided on the other side of the placement rack 200, and a limiting groove 141 is provided on the base 100. When the placement rack 200 is in the first position, the limiting protrusion 260 extends into the limiting groove 141. The limiting groove 141 and the limiting protrusion 260 cooperate to limit the position of the placement rack 200 and reduce the shaking of the placement rack 200. When the placement rack 200 is in the second position, the second limiting protrusion 270 extends into the limiting groove 141. The second limiting protrusion 270 and the limiting groove 141 cooperate to limit the position of the placement rack 200 and reduce the shaking of the placement rack 200.

[0072] For example, to increase the stability of the placement rack 200 when it is in the second position, the outward tilt of the placement rack 200 (the upper part of the placement rack 200 rotates away from the base 100) is reduced, such as... Figure 5 , Figure 6 and Figure 7 As shown, the base 100 is provided with limiting grooves 141, and there are two sets of limiting grooves 141, namely a first set of limiting grooves and a second set of limiting grooves. Each set of limiting grooves includes at least one limiting groove 141. The limiting groove of the first set of limiting grooves is as follows: Figure 5 and Figure 6 Number 141 in the diagram, the second set of limiting grooves, the limiting groove is as follows: Figure 5 and Figure 6Reference numeral 141' indicates that, relative to the first set of limiting grooves, the second set of limiting grooves is located on the side of the base 100 near the suspension structure. When the placement frame 200 is in the first position, the limiting protrusion 260 extends into the first set of limiting grooves, and when the placement frame 200 is in the second position, the second limiting protrusion 270 extends into the second set of limiting grooves. The second set of limiting grooves positions the second limiting protrusion 270 closer to the center of the width direction of the mounting rack 200. Therefore, when the screwdriver storage rack is suspended on the wall, because the second limiting protrusion 270 is closer to the center of the width direction of the mounting rack 200, compared to the second limiting protrusion 270 extending into the first set of limiting grooves, the outward tilt of the mounting rack 200 can be reduced, as can the force on the locking mechanism 120 and the locking engagement structure 220 when the mounting rack 200 tilts outward, and the force on the rotational connection between the mounting rack 200 and the base 100 when the mounting rack 200 tilts outward, thus extending the service life of the screwdriver storage rack and reducing the damage rate of the screwdriver storage rack.

[0073] like Figure 5 As shown, in some embodiments of this application, in order to make full use of the space of the base 100 and facilitate the placement of some small parts, the base 100 is provided with at least one tool storage slot 170.

[0074] For example, the tool storage slot 170 is provided with a cover 180 to cover the tool storage slot 170.

[0075] This application also provides a screwdriver set, which includes a screwdriver storage rack as described above, and at least one screwdriver. The screwdriver can be an Allen wrench, a T-type Allen wrench, and / or a screwdriver, etc. That is, the screwdriver set can include a screwdriver storage rack and one type of screwdriver, or it can include a screwdriver storage rack and multiple types of screwdrivers. For example, the screwdriver set includes a screwdriver storage rack and multiple T-type Allen wrenches. As another example, the screwdriver set includes a screwdriver storage rack, multiple T-type Allen wrenches, multiple screwdrivers, etc. "Multiple" includes two.

[0076] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this application are indicated by the following claims.

[0077] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.

Claims

1. A screwdriver storage rack, characterized in that, It includes a base and a shelf, the base having a suspension structure and the shelf having at least one storage hole configured for inserting a screwdriver; The placement rack is mounted on the base, and the placement rack has a first position and a second position on the base, and the placement rack is capable of switching between the first position and the second position; When the placement rack is in the first position, the screwdriver inserted into the storage hole is perpendicular to or tilted at a certain angle relative to the base; when the placement rack is in the second position, the screwdriver inserted into the storage hole is approximately parallel to the base.

2. The screwdriver storage rack according to claim 1, characterized in that, The placement rack is rotatably connected to the base; One of the base and the placement rack is provided with a locking mechanism, and the other is provided with a locking engagement structure; When the placement rack needs to be repositioned, the locking mechanism unlocks from the locking engagement structure; when the placement rack is in the correct position, the locking mechanism locks into the locking engagement structure to lock the position of the placement rack.

3. The screwdriver storage rack according to claim 2, characterized in that, The base is equipped with a rotating mounting seat; The placement frame is equipped with a rotating mounting component, which is detachably mounted on the rotating mounting base, and when the rotating mounting component is mounted on the rotating mounting base, the rotating mounting component can rotate on the rotating mounting base.

4. The screwdriver storage rack according to claim 3, characterized in that, The rotating mounting component includes a ball head and a mounting neck connected together, wherein the radial dimension of the mounting neck is smaller than the diameter of the ball head; The rotating mounting base has a mounting hole with a first end and a second end at two axial ends. The first end has a blocking edge around its periphery. An opening is formed in the side wall of the mounting hole, which connects the first end and the second end. The width of the opening is greater than the radial dimension of the mounting neck and less than the diameter of the ball head. The rotating mounting component can be inserted into the mounting hole from the second end, and rotated towards one side of the first end along the direction of the opening until the locking mechanism engages with the locking engagement structure; when the locking mechanism and the locking engagement structure are unlocked, the ball head can rotate freely in the mounting hole, and the blocking edge prevents the ball head from disengaging from the first end of the mounting hole.

5. The screwdriver storage rack according to claim 2, characterized in that, The base has a boss along the first direction, and the locking mechanism is located on the boss; the placement rack is rotatably mounted on the boss.

6. The screwdriver storage rack according to claim 2, characterized in that, One of the placement rack and the base is provided with a mounting groove and a through hole that passes through the mounting groove; The locking mechanism includes a pressing locking member, which includes a pressing part and a locking hook part connected to each other. The locking mechanism is installed in the mounting groove and the through hole. The pressing part extends out from the opening of the mounting groove, and the locking hook part extends out from the through hole. The other of the placement rack and the base is provided with a locking groove, and the opening edge of the locking groove is provided with a locking stop edge; When the locking mechanism is engaged with the locking engagement structure, part of the locking hook extends into the locking groove and is locked to the locking stop; when the locking mechanism is unlocked from the locking engagement structure, the pressing part is pressed to push the locking hook away from the locking stop, and the placement frame is rotated to allow the locking hook to retract from the locking groove.

7. The screwdriver storage rack according to claim 6, characterized in that, The locking mechanism further includes a reset member, which is installed in the mounting groove and located between the bottom wall of the mounting groove and the pressing locking member. The reset member is configured such that after the force pressing the pressing part is removed, the reset member pushes the pressing locking member to reset.

8. The screwdriver storage rack according to any one of claims 1-7, characterized in that, One of the base and the placement frame is provided with a limiting protrusion, and the other is provided with a limiting groove corresponding to the limiting protrusion. When the placement frame is in the first position, the limiting protrusion extends into the limiting groove. When the base is provided with a limiting protrusion, the other side of the placement rack is provided with a second limiting groove. When the placement rack is in the second position, the limiting protrusion extends into the second limiting groove. When the base is provided with a limiting groove, the other side of the placement frame is provided with a second limiting protrusion. When the placement frame is in the second position, the second limiting protrusion extends into the limiting groove.

9. The screwdriver storage rack according to claim 8, characterized in that, The base is provided with the limiting groove, and the limiting groove is provided in two sets, namely the first set of limiting grooves and the second set of limiting grooves. Each set of limiting grooves includes at least one of the limiting grooves. Relative to the first set of limiting grooves, the second set of limiting grooves is provided on the side of the base close to the suspension structure. When the placement rack is in the first position, the limiting protrusion extends into the first set of limiting grooves; when the placement rack is in the second position, the second limiting protrusion extends into the second set of limiting grooves.

10. The screwdriver storage rack according to any one of claims 1-7, characterized in that, The suspension structure is a suspension hole located on the first side of the base, and the number of suspension holes is one or more.

11. The screwdriver storage rack according to any one of claims 1-7, characterized in that, The storage hole is a through hole; When the screwdriver storage rack is suspended, the handle of the screwdriver inserted into the storage hole prevents the screwdriver from passing through the storage hole.

12. The screwdriver storage rack according to any one of claims 1-7, characterized in that, The base is provided with at least one tool storage slot.

13. A screwdriver set, characterized in that, It includes the screwdriver storage rack as described in any one of claims 1-12, and at least one screwdriver.