Screwdriver storage container and screwdriver set

By designing a screwdriver storage container, screwdrivers can be inserted vertically for easy retrieval and stored horizontally for easy organization, solving the problem of inconvenient screwdriver storage and achieving convenient operation and space utilization.

CN224391094UActive Publication Date: 2026-06-23YANTAI GREENERY TOOLS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YANTAI GREENERY TOOLS CO LTD
Filing Date
2025-06-19
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

The way screwdrivers are stored lying flat in the toolbox makes them inconvenient to access.

Method used

Design a screwdriver storage container, comprising a container body and an insertion hole. The screwdriver can be inserted vertically into the insertion hole for easy access, and stored horizontally in the storage cavity. It is equipped with a charging mother that can be detachably installed in the insertion hole for charging.

Benefits of technology

It enables convenient access and storage of screwdrivers, preventing loss, making full use of space, meeting the charging needs of electric screwdrivers, and has a simple structure that is easy to operate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a screwdriver storage container and a screwdriver set. The screwdriver storage container comprises a container body, the container body comprises a top surface and a bottom surface, the bottom surface is provided with a storage cavity, the storage cavity is configured to be capable of placing at least one screwdriver in a horizontal manner, and the top surface is provided with an insertion hole, the insertion hole is configured to be capable of inserting and placing a screwdriver. The screwdriver storage container can facilitate the taking of the screwdriver during use and the storage of the screwdriver during non-use.
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Description

Technical Field

[0001] This application relates to the technical field of devices for facilitating the storage and retrieval of tools, and more particularly to a screwdriver storage container and screwdriver set. Background Technology

[0002] Screwdrivers, as basic hand tools, are widely used in mechanical repair, electronic assembly, woodworking, and daily home maintenance.

[0003] In related technologies, screwdrivers are usually stored lying flat in a toolbox, which contains various types of bits for use with the screwdriver. When using the screwdriver, the user takes it out of the toolbox along with the required type of bit.

[0004] However, storing screwdrivers flat in the toolbox makes them inconvenient to access. Utility Model Content

[0005] This application provides a screwdriver storage container and screwdriver set to solve the technical problem that the storage method of placing screwdrivers flat in a toolbox makes it inconvenient to take them out.

[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 container, which includes a container body with a top surface and a bottom surface. The bottom surface has a storage cavity configured to at least hold a screwdriver flat, and the top surface has an insertion hole configured to insert the screwdriver.

[0008] The beneficial effects of this application's embodiments: The screwdriver storage container provided in this application's embodiments facilitates both the retrieval of screwdrivers during use and their storage when not in use. When in use, the screwdriver is vertically inserted into the insertion hole for easy retrieval and return, simplifying operation. During storage or packaging and transportation, the screwdriver is stored horizontally within the storage cavity, ensuring a fixed storage location even during storage and transportation. This design minimizes the risk of losing screwdrivers used with the storage container, facilitating screwdriver storage, retrieval, and packaging.

[0009] In one possible implementation, the storage cavity is provided with a screwdriver storage position for storing screwdrivers, and the insertion hole communicates with the screwdriver storage position.

[0010] In one possible implementation, the screwdriver storage compartment is configured to store an electric screwdriver;

[0011] The screwdriver storage container also includes a charging female component, which is detachably installed in the insertion hole from the screwdriver storage position. Part of the charging female component is exposed in the screwdriver storage position. The charging female component is configured to be connected to a power source.

[0012] The charging female component is stored in the storage cavity of the screwdriver storage container in the storage and transportation state, and is installed in the insertion hole of the screwdriver storage container in the use state. The charging female component is in contact with the electric screwdriver inserted in the insertion hole and charges the electric screwdriver.

[0013] In one possible implementation, the insertion hole has an internal thread, the charging female component has an external thread, and the charging female component is threadedly connected to the insertion hole.

[0014] In one possible implementation, the charging female component has a blocking protrusion in the middle, and the external thread is provided on one side of the blocking protrusion. When the charging female component is installed in the insertion hole, the blocking protrusion abuts against the edge of the insertion hole.

[0015] In one possible implementation, both the top surface and the bottom surface are circular structures;

[0016] The screwdriver storage location extends radially on the bottom surface.

[0017] In one possible implementation, the insertion hole is located at the center of the top surface;

[0018] The top surface is provided with multiple bit placement positions around the insertion hole, and the bit placement positions are configured to place the bit flat.

[0019] In one possible implementation, the screwdriver storage container further includes a top cover that covers the top surface and covers the bit placement area. The top cover has a through hole that corresponds to the insertion hole, through which the screwdriver passes.

[0020] In one possible implementation, the top surface is provided with an annular groove surrounding the insertion hole;

[0021] Each bit placement position extends radially outward from the insertion hole as the center, and the head of the bit installed in the bit placement position points to the insertion hole and extends into the annular groove.

[0022] In one possible implementation, the container body includes a base and a rotating seat connected to the base, the rotating seat being rotatable about the axis of the insertion hole;

[0023] The top surface of the container body corresponds to the side of the rotating seat facing away from the base, and the bottom surface of the container body corresponds to the side of the base facing away from the rotating seat.

[0024] In one possible implementation, the rotation center of the rotating seat is provided with a through hole;

[0025] The base is provided with mounting holes, which communicate with the storage cavity;

[0026] The screwdriver storage container also includes a connector. The first end of the connector is detachably installed in the mounting hole, and the second end of the connector is provided with an extended limiting edge. The extended limiting edge abuts against the circumferential edge of the through hole. The connector serves as the pivot of the rotating seat.

[0027] The insertion hole is located on the connector.

[0028] In one possible implementation, the screwdriver storage container further includes a bottom cover configured to either seal or open the storage cavity.

[0029] This application embodiment also provides a screwdriver set, which includes a screwdriver and a screwdriver storage container as described in any of the above embodiments.

[0030] The beneficial effects of the screwdriver set provided in this application embodiment are the same as those of the screwdriver storage container described above, and will not be repeated here.

[0031] 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 solved by the screwdriver storage container and screwdriver set provided by this application, other technical features included 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

[0032] 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.

[0033] Figure 1 This is a schematic diagram of the container body according to an embodiment of this application;

[0034] Figure 2 This is a schematic diagram showing the bottom cover of the screwdriver storage container opened according to an embodiment of this application;

[0035] Figure 3 This is an exploded view of the screwdriver storage container according to an embodiment of this application;

[0036] Figure 4This is a schematic diagram of the charging female component according to an embodiment of this application;

[0037] Figure 5 This is a schematic diagram of a screwdriver storage container for inserting screwdrivers according to an embodiment of this application;

[0038] Figure 6 This is a schematic diagram of the connector in an embodiment of this application.

[0039] Explanation of reference numerals in the attached figures:

[0040] 100. Container body;

[0041] 110. Top surface; 120. Bottom surface; 130. Charging female component; 140. Top cover; 150. Base; 160. Rotating seat; 170. Connector; 180. Bottom cover;

[0042] 111. Insertion hole; 112. Bit placement position; 113. Annular groove;

[0043] 121. Storage cavity; 122. Screwdriver storage compartment;

[0044] 131. Blocking protruding edges;

[0045] 141. Through hole;

[0046] 151. Mounting holes;

[0047] 161. Through hole;

[0048] 171. Extensional limiting edge;

[0049] 200. Screwdriver;

[0050] 300. Bits.

[0051] 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

[0052] 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.

[0053] like Figure 1 and Figure 2As shown, the screwdriver storage container provided in this embodiment of the application includes a container body 100, which includes a top surface 110 and a bottom surface 120. The bottom surface 120 is provided with a storage cavity 121, which is configured to at least be able to hold a screwdriver 200 flat. The top surface 110 is provided with an insertion hole 111, which is configured to be able to insert a screwdriver 200. In other words, the container body 100 has a storage cavity 121 on its bottom surface 120, which is used to place the screwdriver on the workbench, and an insertion hole 111 on its top surface 110, which is opposite to the bottom surface 120. When the screwdriver storage container is in use, it is placed on the workbench with the top surface 110 facing upwards, and the screwdriver 200 can be vertically inserted into the insertion hole 111 for easy access and return by the user. However, when the screwdriver 200 is not in use and needs to be stored away, or when the screwdriver storage container with the screwdriver 200 is being packaged and transported, it is inconvenient to store and transport the screwdriver 200 by placing it in the insertion hole 111. In this case, the screwdriver 200 is stored horizontally in the storage cavity 121, so that the screwdriver 200 has a fixed storage position even when stored and transported. This setting facilitates the storage of the screwdriver 200, avoids the loss of the screwdriver 200 due to separation from the screwdriver storage container, and facilitates packaging and transport by storing the screwdriver 200 inside the container body 100.

[0054] In some embodiments of this application, the storage cavity 121 is provided with a screwdriver storage position 122 for storing a screwdriver 200, and the insertion hole 111 communicates with the screwdriver storage position 122. The screwdriver storage position 122 better engages the screwdriver 200, preventing it from shaking or shifting within the storage cavity 121. The communication between the insertion hole 111 and the screwdriver storage position 122 allows the lower end of the screwdriver 200 to extend into the screwdriver storage position 122 when inserted into the insertion hole 111, thereby increasing the depth of insertion and allowing the screwdriver 200 to be placed more stably in the screwdriver storage container, reducing the risk of tipping over. Furthermore, since both the insertion hole 111 and the screwdriver storage position 122 are used to store the screwdriver 200, the insertion hole... There is no interference between the use of slot 111 and the screwdriver storage slot 122. When the screwdriver 200 is inserted into slot 111, the screwdriver storage slot 122 is idle. The screwdriver 200 can pass through slot 111 and extend into the screwdriver storage slot 122. When the screwdriver 200 is stored in the screwdriver storage slot 122, slot 111 is idle. The screwdriver 200 can be placed horizontally in the screwdriver storage slot 122 without obstruction. This design cleverly and fully utilizes the space of the screwdriver storage container, so that the screwdriver storage slot 122 can be used for horizontal storage of the screwdriver 200, and can also be used in conjunction with slot 111 for vertical insertion of the screwdriver 200.

[0055] In some embodiments of this application, such as Figure 2 and Figure 3 As shown, the screwdriver storage compartment 122 is configured to store an electric screwdriver 200. The screwdriver storage container also includes a charging female component 130, which is detachably mounted from the screwdriver storage compartment 122 to the insertion hole 111. A portion of the charging female component 130 is exposed in the screwdriver storage compartment 122. The charging female component 130 is configured to be connected to a power source. For example, the charging female component 130 can be connected to a power source by directly plugging it into a socket via a charging cable, so that when the charging end of the electric screwdriver 200 contacts the charging female component 130, the charging female component 130 can charge the electric screwdriver 200. Alternatively, the charging female component 130 can be connected to a battery located inside the screwdriver storage container, so that when the charging end of the electric screwdriver 200 contacts the charging female component 130, the charging female component 130 can charge the electric screwdriver 200.

[0056] In this embodiment, the charging female component 130 is stored in the storage cavity 121 when the screwdriver storage container is in storage and transportation state, and is installed in the insertion hole 111 when the screwdriver storage container is in use state. The charging female component 130 is in contact with the electric screwdriver 200 inserted in the insertion hole 111 and charges the electric screwdriver 200. In other words, in this embodiment, the electric screwdriver 200 can be inserted into the insertion hole 111 for charging, or it can be stored and transported in the storage cavity 121. In order to make full use of the space of the screwdriver storage container and enable the screwdriver storage container to store more parts and tools in a limited space, the charging mother component 130 is set to be detachable. When the screwdriver storage container is in use, the electric screwdriver 200 is inserted into the insertion hole 111, and the screwdriver storage position 122 is idle. This application makes full use of the space when the screwdriver storage position 122 is idle, and the charging mother component 130 is installed from the screwdriver storage position 122 into the insertion hole 111, with part of it exposed in the screwdriver storage position 122. The exposed setting of the charging mother component 130 facilitates the disassembly and assembly of the charging mother component 130. When the screwdriver storage container is in its transport and storage state, the charging mother component 130 is disassembled and stored in the storage cavity 121. At this time, the charging mother component 130 no longer interferes with the electric screwdriver 200 being stored in the screwdriver storage position 122. Thus, the electric screwdriver 200 can be stored in the screwdriver storage position 122, which is convenient for storing the screwdriver 200. Furthermore, the charging mother component 130 is stored in the storage cavity 121, which is convenient for storing the charging mother component 130 and prevents it from being lost. This structure is simple but makes full use of space.

[0057] For example, in some embodiments, the charging female component 130 is a magnetic connector, and the charging end of the electric screwdriver 200 is provided with a contact magnetic interface.

[0058] For example, the insertion hole 111 is provided with an internal thread, and the charging female component 130 is provided with an external thread. The charging female component 130 is detachably connected to the insertion hole 111 by means of a threaded connection. This setting is convenient for disassembly and assembly, easy to operate, and the connection is firm. The charging female component 130 can better support the electric screwdriver 200 inserted into the insertion hole 111.

[0059] like Figure 2 and Figure 4 As shown, the charging female component 130 has a blocking protrusion 131 in the middle, and an external thread is provided on one side of the blocking protrusion 131. When the charging female component 130 is installed in the insertion hole 111, the blocking protrusion 131 abuts against the edge of the insertion hole 111. The blocking protrusion 131 plays a limiting role, enabling the charging female component 130 to be installed quickly into place.

[0060] For example, such as Figure 1 and Figure 2 As shown, both the top surface 110 and the bottom surface 120 are circular structures, and the screwdriver storage space 122 extends radially from the bottom surface 120. Since the screwdriver 200 is a slender tool, the radial dimension of the bottom surface 120 of the container body 100 is the maximum lateral dimension of the container body 100. Providing the screwdriver storage space 122 radially from the bottom surface 120 minimizes the size of the container body 100, making it more compact.

[0061] For example, the container body 100 is a cylindrical structure.

[0062] Continue reading Figure 1 In some embodiments of this application, the insertion hole 111 is located at the center of the top surface 110, and the top surface 110 is provided with a plurality of bit placement positions 112 around the insertion hole 111. The bit placement positions 112 are configured to hold bit 300 flat. The screwdriver 200 is usually used in conjunction with the bit 300. A ring of bit 300 is provided around the screwdriver 200 to facilitate the use of the screwdriver 200 and the bit 300.

[0063] In some embodiments of this application, such as Figure 3 and Figure 5 As shown, the screwdriver storage container also includes a top cover 140, which covers the top surface 110 and conceals the bit placement position 112. The top cover 140 has a through hole 141, which corresponds to the insertion hole 111, allowing the screwdriver 200 to pass through. The through hole 141 on the top cover 140 allows the screwdriver storage container to be closed while the electric screwdriver 200 is still inserted in the insertion hole 111 when it is not in use.

[0064] In some embodiments of this application, such as Figure 1As shown, an annular groove 113 is provided around the insertion hole 111 on the top surface 110. Each bit placement position 112 extends radially outward from the insertion hole 111 as the center. The head of the bit 300 installed in the bit placement position 112 points towards the insertion hole 111 and extends into the annular groove 113. The annular groove 113 facilitates the use of the bit 300.

[0065] like Figure 1 and Figure 3 As shown, the container body 100 includes a base 150 and a rotating seat 160 connected to the base 150. The rotating seat 160 can rotate around the axis of the insertion hole 111. The top surface 110 of the container body 100 corresponds to the side of the rotating seat 160 facing away from the base 150, and the bottom surface 120 of the container body 100 corresponds to the side of the base 150 facing away from the rotating seat 160. After the screwdriver 200 is inserted into the insertion hole 111, the bit 300 located behind the screwdriver 200 will be obscured, making it difficult for the user to identify the bit model. In this embodiment, by rotatably mounting the rotating seat 160 on the base 150, the bit 300 located behind the screwdriver 200 can be rotated to the front of the screwdriver 200, making it easier for the user to observe and identify the bit 300 in each position.

[0066] In some embodiments of this application, such as Figure 3 and Figure 6As shown, the rotating base 160 has a through hole 161 at its rotation center, and the base 150 has a mounting hole 151 that communicates with the storage cavity 121. The screwdriver storage container also includes a connector 170. The first end of the connector 170 is detachably installed in the mounting hole 151, and the second end of the connector 170 has an extended limiting edge 171 that abuts against the circumferential edge of the through hole 161. The connector 170 serves as the pivot of the rotating base 160, and an insertion hole 111 is located on the connector 170. In other words, the rotating base 160 and the base 150 are connected by the connector 170. One end of the connector 170 is connected to the base 150, and the other end prevents the rotating base 160 from moving away from the base 150. In addition, the connector 170 passes through the through hole 161, and the connector 170 engages with the side wall of the through hole 161 to allow the rotating base 160 to rotate around the connector 170. In other words, in this embodiment, the connector 170 serves both as a connecting component between the rotating base 160 and the base 150, and as the pivot of the rotating base 160, allowing the rotating base 160 to be rotatably connected to the base 150. Furthermore, the insertion hole 111 is provided on the connector 170. When the rotating base 160 rotates around the connector 170, the connector 170 remains stationary, while the rotating base 160 rotates around the connector 170. The insertion hole 111 ensures that the screwdriver 200 inserted into the insertion hole 111 remains stationary when the rotating base 160 rotates, preventing the screwdriver 200 from interfering with the rotation of the rotating base 160. This structure is simple, easy to assemble, and allows the rotating base 160 to rotate smoothly.

[0067] like Figure 2 As shown, the screwdriver storage container also includes a bottom cover 180, which is configured to either seal or open the storage cavity 121.

[0068] This application embodiment also provides a screwdriver 200 set, which includes screwdrivers 200 and a screwdriver storage container of any of the above-described embodiments.

[0069] 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.

[0070] 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 container, characterized in that, The device includes a container body, which has a top surface and a bottom surface. The bottom surface has a storage cavity configured to at least hold a screwdriver flat. The top surface has an insertion hole configured to hold the screwdriver.

2. The screwdriver storage container according to claim 1, characterized in that, The storage cavity is provided with a screwdriver storage position for storing screwdrivers, and the insertion hole is in communication with the screwdriver storage position.

3. The screwdriver storage container according to claim 2, characterized in that, The screwdriver storage compartment is configured to store an electric screwdriver; The screwdriver storage container also includes a charging female component, which is detachably installed in the insertion hole from the screwdriver storage position. Part of the charging female component is exposed in the screwdriver storage position. The charging female component is configured to be connected to a power source. The charging female component is stored in the storage cavity of the screwdriver storage container in the storage and transportation state, and is installed in the insertion hole of the screwdriver storage container in the use state. The charging female component is in contact with the electric screwdriver inserted in the insertion hole and charges the electric screwdriver.

4. The screwdriver storage container according to claim 3, characterized in that, The insertion hole has an internal thread, and the charging female component has an external thread. The charging female component is threadedly connected to the insertion hole.

5. The screwdriver storage container according to claim 4, characterized in that, The charging female component has a blocking protrusion in the middle, and the external thread is provided on one side of the blocking protrusion. When the charging female component is installed in the insertion hole, the blocking protrusion abuts against the edge of the insertion hole.

6. The screwdriver storage container according to any one of claims 1-5, characterized in that, Both the top surface and the bottom surface are circular structures; The screwdriver storage location extends radially on the bottom surface.

7. The screwdriver storage container according to claim 6, characterized in that, The insertion hole is located at the center of the top surface; The top surface is provided with multiple bit placement positions around the insertion hole, and the bit placement positions are configured to place the bit flat.

8. The screwdriver storage container according to claim 7, characterized in that, The screwdriver storage container also includes a top cover, which covers the top surface and covers the bit placement position. The top cover has a through hole that corresponds to the insertion hole, and the through hole allows the screwdriver to pass through.

9. The screwdriver storage container according to claim 7, characterized in that, The top surface is provided with an annular groove surrounding the insertion hole; Each bit placement position extends radially outward from the insertion hole as the center, and the head of the bit installed in the bit placement position points to the insertion hole and extends into the annular groove.

10. The screwdriver storage container according to claim 9, characterized in that, The container body includes a base and a rotating seat connected to the base, the rotating seat being rotatable about the axis of the insertion hole; The top surface of the container body corresponds to the side of the rotating seat facing away from the base, and the bottom surface of the container body corresponds to the side of the base facing away from the rotating seat.

11. The screwdriver storage container according to claim 10, characterized in that, The rotating seat has a through hole at its rotation center; The base is provided with mounting holes, which communicate with the storage cavity; The screwdriver storage container also includes a connector. The first end of the connector is detachably installed in the mounting hole, and the second end of the connector is provided with an extended limiting edge. The extended limiting edge abuts against the circumferential edge of the through hole. The connector serves as the pivot of the rotating seat. The insertion hole is located on the connector.

12. The screwdriver storage container according to any one of claims 1-5, characterized in that, The screwdriver storage container also includes a bottom cover, which is configured to either seal or open the storage cavity.

13. A screwdriver set, characterized in that, Includes screwdrivers, and the screwdriver storage container as described in any one of claims 1-12.