Electric screwdriver storage suite convenient to take and place

By incorporating an inner shell, slider, and snap-fit ​​structure, along with elastic elements and magnetic adsorption, the design solves the problems of complex structure and inconvenient operation of screwdriver storage kits. It enables quick and stable storage and retrieval of screwdrivers, with a compact structure and simple operation.

CN223719388UActive Publication Date: 2025-12-26SUZHOU CREATIONSPACE INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202423205731.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-26
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing screwdriver storage kits have complex structures, are inconvenient to retrieve and place, and are difficult to meet daily usage needs.

Method used

The screwdriver is quickly stored and retrieved by axial movement using an inner shell and slider structure, combined with an inner buckle and elastic element design. It is stably stored by magnetic adsorption and the inner shell is fixed by an outer buckle, simplifying the operation process.

Benefits of technology

It enables quick and stable storage and retrieval of screwdrivers, with a simple and ingenious structure, convenient operation, and a compact overall size, meeting daily usage needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electric screw driver storage suite convenient to take and place, which comprises a screw driver, the screw driver extends into an inner shell along the axial direction, a sliding block is arranged in the inner shell, the sliding block moves along the axial direction of the inner shell, and an inner buckle is arranged in the inner shell in the moving direction; the screwdriver pushes the sliding block to move in the axial direction until the screwdriver is completely contained in the inner shell, and the sliding block is locked by the inner buckle; in actual operation, force is applied to the screwdriver, the screwdriver is placed in the inner shell in the axial direction, the screwdriver pushes the sliding block to move till the sliding block is locked by the inner buckle, and storage and placement of the screwdriver in the inner shell are completed; when the screwdriver is taken out, force is applied to the end of the screwdriver in a pressing mode, the sliding block acts on the inner buckle, locking of the sliding block by the inner buckle is unlocked, the screwdriver is made to pop out relative to the inner shell, and taking operation is completed. The whole structure is simple and ingenious, operation is convenient, and practicability is good.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electric screwdriver technical field especially a kind of electric screwdriver storage kit convenient to take and place operation. BACKGROUND

[0002] As one of the most commonly used hardware tools, screwdriver is widely used in screw tightening in various scenes. Due to the numerous types and specifications of screws, many screwdrivers adopt a split structure for convenience, which separates the bit and the handle. When installing different types of screws, you only need to replace the bit, without the need to carry a large number of screwdrivers, saving space.

[0003] When carrying a screwdriver with multiple screw bits, it is usually in the form of a tool bag or a kit, which can simultaneously store the screwdriver and multiple screw bits inside. To effectively ensure the reliable storage of the screwdriver in the tool bag or the kit, a corresponding fixing or locking member is usually provided. In the prior art, the tool bag or kit with a fixing or locking member has a relatively complex structure, and the screwdriver is also relatively difficult to take and place in the tool bag or the kit, which is inconvenient for daily use. SUMMARY

[0004] To solve the above problems, the present application provides an electric screwdriver storage kit with a reasonable structure, which can conveniently and quickly take and place the electric screwdriver, and has a simple and ingenious overall structure and good practicability.

[0005] The technical solutions adopted by the utility model are as follows:

[0006] An electric screwdriver storage kit convenient to take and place, comprising a screwdriver, the screwdriver extends into an inner housing along the axial direction, a sliding block is installed in the inner housing, the sliding block moves along the axial direction of the inner housing, an inner buckle is installed in the inner housing in the moving direction; the screwdriver pushes the sliding block to move axially until the screwdriver is completely accommodated in the inner housing, and the sliding block is locked by the inner buckle.

[0007] As a further improvement of the above technical solutions:

[0008] Further comprising an elastic member, which provides a force to the sliding block in the direction of moving the screwdriver out of the inner housing; the inner housing is provided with a stop structure inside to prevent the sliding block from sliding out.

[0009] The inner housing is provided with a cavity inside for storing the screwdriver, one end of the cavity extends to the end of the inner housing to form an opening, and the sliding block is slidingly installed at the other end of the cavity; the end of the sliding block away from the cavity is installed with an elastic member between the inner housing.

[0010] The inner buckle is arranged on the outer wall of the cavity, the side arm is extended on the circumferential wall of the sliding block, and the inner buckle clamps the side arm to lock the sliding block.

[0011] The magnet is arranged in the sliding block, and the sliding block is adsorbed by the magnet.

[0012] The inner shell extends into the outer shell in the axial direction, and the inner shell is locked in the outer shell when the inner shell completely extends into the outer shell.

[0013] The plurality of accommodating grooves are arranged on the circumferential outer wall of the inner shell, the accommodating grooves accommodate the fixing accessories by magnetic force, and the accessories include but are not limited to a plurality of bits.

[0014] The outer shell is a sleeve structure with open ends, the outer end plate is arranged at one end of the outer shell, and the inner shell extends into the other end of the outer shell; the inner wall of the outer end plate extends the protruding arm, and the inner end of the inner shell is provided with the insertion hole for the protruding arm to extend into.

[0015] The outer buckle is arranged in the inner shell on the inner side of the insertion hole, and the outer buckle clamps and locks the protruding arm.

[0016] The plurality of insertion holes are sequentially arranged, the protruding arms corresponding to the insertion holes are extended on the outer end plate, and the outer buckle clamping and locking the corresponding protruding arm is arranged on the inner side of one or more insertion holes.

[0017] Compared with the prior art, the utility model has the following beneficial effects:

[0018] In actual operation, the screwdriver is put into the inner shell in the axial direction by applying force, the screwdriver pushes the sliding block to move until the sliding block is locked by the inner buckle, and the screwdriver is accommodated and placed in the inner shell; when the screwdriver is taken out, the end part of the screwdriver is pressed to apply force, the inner buckle is unlocked by the sliding block, the locking of the sliding block by the inner buckle is released, the screwdriver is popped out relative to the inner shell, and the taking operation is completed; the whole structure is simple and ingenious, convenient to operate, and good in practicality.

[0019] The utility model also has the following advantages:

[0020] After the inner buckle is unlocked to lock the sliding block, the elastic force of the elastic member stably pushes the screwdriver out of the inner shell through the sliding block, and the screwdriver is conveniently taken out of the inner shell.

[0021] The sliding block is arranged at the end of the cavity in the inner shell, which is convenient for the structure layout inside the inner shell, maintains compactness, effectively reduces the overall volume while realizing the function, reliably applies force to the sliding block by the screwdriver to be locked by the inner buckle, and effectively utilizes the elastic recovery force of the elastic member to push the unlocked screwdriver out, so that the force is stable and balanced, and the operation is smooth and smooth.

[0022] The magnet on the sliding block is arranged, the screwdriver can be adsorbed by the magnet, so that the screwdriver can move synchronously with the sliding block or be locked by the inner buckle, the stable storage of the screwdriver can be effectively ensured in the locked state, and the screwdriver can be effectively prevented from falling out when the screwdriver is pushed out of the inner shell by the elastic force of the elastic element. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is a structural schematic view of the utility model kit.

[0024] Figure 2 It is a structural schematic view of the utility model inner shell.

[0025] Figure 3 It is a structural schematic view of the utility model shell and end plate.

[0026] Figure 4 It is a schematic view when the utility model is in a completely stored and locked state.

[0027] Figure 5 It is a schematic view when the utility model screwdriver is unlocked and pushed out of the inner shell.

[0028] 1, shell; 2, screwdriver; 3, inner shell; 4, end plate;

[0029] 31, upper shell; 32, magnetic strip; 33, inner buckle; 34, magnet; 35, sliding block; 36, elastic element; 37, cover plate; 38, lower shell; 39, outer buckle;

[0030] 311, accommodating groove; 312, insertion hole; 313, through hole; 314, end plate;

[0031] 351, side arm; 352, groove;

[0032] 381, cavity; 382, fitting position; 383, stop step;

[0033] 41, convex arm. DETAILED DESCRIPTION

[0034] The specific embodiment of the utility model will be described below in combination with the drawings.

[0035] As shown in Figure 1 and Figure 2 , the utility model discloses a kind of electric screwdriver storage kits of easy to take and place operation, including screwdriver 2, screwdriver 2 is inserted into inner shell 3 along the axial direction, sliding block 35 is installed in inner shell 3, sliding block 35 moves along the axial direction of inner shell 3, inner buckle 33 is installed in the inner shell 3 in moving direction;Screwdriver 2 pushes sliding block 35 and moves along the axial direction until screwdriver 2 is completely accommodated in inner shell 3, and sliding block 35 is locked by inner buckle 33.

[0036] In the actual operation, the screwdriver 2 is put into the inner shell 3 along the axial direction by applying force to the screwdriver 2, the screwdriver 2 will push the sliding block 35 to move until the sliding block 35 is locked by the inner buckle 33, and the screwdriver 2 is placed in the inner shell 3; when the screwdriver 2 is taken out, the end of the screwdriver 2 is pressed to apply force, the inner buckle 33 is unlocked by the sliding block 35, the sliding block 35 is unlocked by the inner buckle 33, and the screwdriver 2 is pushed out of the inner shell 3, and the operation is completed.

[0037] The elastic member 36 provides the sliding block 35 with a force in the direction of moving the screwdriver 2 out of the inner shell 3; the inner shell 3 is provided with a stop structure to prevent the sliding block 35 from sliding out.

[0038] In the embodiment, after the inner buckle 33 is unlocked, the elastic force of the elastic member 36 can stably push the screwdriver 2 out of the inner shell 3 through the sliding block 35, which facilitates the taking out of the screwdriver 2 from the inner shell 3.

[0039] In Figure 4 and Figure 5 In the embodiment shown in the figure, the inner shell 3 is provided with a stop step 383 inside, when the elastic force of the elastic member 36 pushes the screwdriver 2 out of the inner shell 3 through the sliding block 35, the sliding of the sliding block 35 is limited by the stop step 383, so that the length of the screwdriver 2 pushed out of the inner shell 3 can be effectively limited, which facilitates the taking out of the screwdriver 2 and effectively prevents the screwdriver 2 from being accidentally separated.

[0040] The inner shell 3 is provided with a cavity 381 for accommodating the screwdriver 2, one end of the cavity 381 extends to the end of the inner shell 3 to form an opening, and the other end of the cavity 381 is provided with a sliding block 35, and the elastic member 36 is installed between the end of the sliding block 35 away from the cavity 381 and the inner shell 3.

[0041] In the embodiment, the sliding block 35 is arranged at the end of the cavity 381 in the inner shell 3, which not only facilitates the structural layout inside the inner shell 3 and maintains the compactness of the structure, but also effectively reduces the overall volume while realizing the function, reliably applies force to the sliding block 35 through the screwdriver 2 to be locked by the inner buckle 33, and effectively utilizes the elastic restoring force of the elastic member 36 to promote the outward pushing of the screwdriver 2 after being unlocked, and the stress is stable and balanced, which ensures smooth and smooth operation.

[0042] In the embodiment, a circumferential groove 352 can be provided on the end of the sliding block 35 according to actual needs.

[0043] The inner buckle 33 is installed on the outer wall surface of the cavity 381, the circumferential wall surface of the sliding block 35 is extended to form a side arm 351, and the inner buckle 33 clamps the side arm 351 to lock the sliding block 35.

[0044] In the embodiment, the slider 35 can be provided with side arms 351 extending symmetrically on both sides in the radial direction, and the inner clamps 33 corresponding to the side arms 351 can be symmetrically mounted on both sides of the outer wall surface of the cavity 381, so as to effectively ensure the structural balance of the slider 35, ensure the smooth sliding of the slider 35, and ensure the stable clamping of the inner clamps 33 on the slider 35.

[0045] In one of the embodiments, the inner shell 3 can be assembled by the upper shell 31 and the lower shell 38 to form an integral body, the upper shell 31 is provided with inner end plates 314 at both ends, the lower shell 38 is provided with a cavity 381 extending towards the inside of the inner shell 3, one of the inner end plates 314 is provided with a through hole 313 coaxially arranged with the cavity 381, and the other inner end plate 314 is provided with an elastic element 36 mounted between the inner end plate 314 and the slider 35, and the upper shell 31 and the lower shell 38 are assembled to form the outer shape of the inner shell 3; in actual use, the screwdriver 2 is inserted into the cavity 381 through the through hole 313.

[0046] The lower shell 38 is provided with a mounting position 382 on both sides of the cavity 381 for mounting the inner clamps 33.

[0047] In the embodiment, a cover plate 37 can be mounted on the outer wall surface of the lower shell 38 for facilitating actual molding and installation.

[0048] In another embodiment, the inner shell 3 can be formed as a whole, and the installation of the inner clamps 33 and other components on the inner shell 3 can be achieved.

[0049] The slider 35 is provided with a magnet 34, and the screwdriver 2 is attracted by the magnet 34.

[0050] In the embodiment, the screwdriver 2 can be attracted by the magnet 34, so that the screwdriver 2 can move synchronously with the slider 35, or be locked by the inner clamps 33, and the stable storage of the screwdriver 2 can be effectively ensured in the locked state, and the screwdriver 2 can be effectively prevented from falling out when the screwdriver 2 is pushed out of the inner shell 3 by the elastic element 36.

[0051] In the embodiment, the slider 35 can be provided as a sleeve structure with an open end, the inner bottom surface of the open end is provided with the magnet 34, the attraction of the screwdriver 2 after the end of the screwdriver 2 is inserted into the slider 35 is facilitated, and the synchronous movement of the slider 35 and the screwdriver 2 after the attraction is effectively ensured; the elastic element 36 is mounted on the outer end surface of the slider 35 which is not open.

[0052] The inner shell 3 extends into the outer shell 1 in the axial direction, and when the inner shell 3 completely extends into the outer shell 1, the inner shell 3 is locked in the outer shell 1, facilitating the storage and storage operation of the inner shell 3 in the outer shell 1.

[0053] The inner shell 3 is provided with a plurality of accommodation grooves 311 on the outer wall surface in the circumferential direction, and the accommodation grooves 311 accommodate and fix accessories by magnetic force, which include but are not limited to a plurality of bits.

[0054] In this embodiment, the screwdriver 2 can be stored in the inner shell 3, and a plurality of bits can be placed on the outer wall surface of the inner shell 3, so that the screwdriver 2 and the bits are separated and effectively stored in the inner shell 3, and the screwdriver 2 and the bits are convenient to take and place; and then the inner shell 3 storing the screwdriver 2 and the bits is placed in the outer shell 1 as a whole, forming a kit which is convenient to carry and has an attractive appearance.

[0055] In this embodiment, the magnetic strip 32 can be combined with the structure of the upper shell 31 and the lower shell 38 to be fitted at the accommodation groove 311, so that the accessories can be adsorbed and fixed at the accommodation groove 311.

[0056] As shown in Figure 3 The outer shell 1 is a sleeve structure with both ends open, and the outer end plate 4 is fitted at one end of the outer shell 1, and the inner shell 3 extends into the other end of the outer shell 1; the inner wall surface of the outer end plate 4 extends a protruding arm 41, and the inner end of the inner shell 3 is provided with a plug hole 312 for the protruding arm 41 to extend into.

[0057] The outer buckle 39 is installed inside the inner shell 3 on the inner side of the plug hole 312, and the protruding arm 41 is clamped and locked by the outer buckle 39, so that after the inner shell 3 is fitted into the outer shell 1, the protruding arm 41 can be locked by the outer buckle 39 to realize the fixed storage of the inner shell 3 in the outer shell 1.

[0058] In this embodiment, the outer buckle 39 can be conveniently installed inside the inner shell 3 in combination with the structure of the upper shell 31 and the lower shell 38.

[0059] The plug hole 312 is provided on the inner end plate 314 provided with the through hole 313 at the end of the upper shell 31, and the outer buckle 39 is provided on the inner side of the plug hole 312, and the protruding arm 41 is locked by the outer buckle 39 after extending into the plug hole 312.

[0060] A plurality of plug holes 312 are sequentially provided, and the protruding arm 41 corresponding to the plug hole 312 is extended on the outer end plate 4, and the outer buckle 39 clamping and locking the corresponding protruding arm 41 is installed on the inner side of one or more plug holes 312; so as to facilitate the storage operation of the inner shell 3 relative to the outer shell 1, and also realize the relative fixation between the two.

[0061] In this embodiment, the inner buckle 33 and the outer buckle 39 are both existing standard products, also known as press buckles, press self-locking buckles, door buckle switches, etc., which can realize the locking or unlocking of the fitted parts under the action of external force.

[0062] In the embodiment, in order to effectively ensure that the upper side arm 351 of the sliding block 35 can be reliably and stably clamped by the inner buckle 33 and the upper convex arm 41 of the outer end plate 4 can be reliably and stably clamped by the outer buckle 39, the end of the side arm 351 and the end of the convex arm 41 can be respectively provided with a barb structure facilitating clamping according to actual design requirements.

[0063] In the embodiment, the outer shell 1 and the inner shell 3 can both be prismatic structures, and the cross section of the prismatic structure is a triangle or a polygon with more than four sides. In order to facilitate actual operation and use, especially the convenience of putting the inner shell 3 into the outer shell 1, the cross section of the prismatic structure in the embodiment is a regular polygon, so that the inner shell 3 can be put into the outer shell 1 by only aligning the regular polygon, and the locking of the inner shell 3 in the outer shell 1 is also facilitated.

[0064] The use mode of the utility model is:

[0065] In the embodiment, the operation of pressing the end twice is used to respectively unlock and take out the inner shell 3 from the outer shell 1 and unlock and take out the screwdriver 2 from the inner shell 3, so as to complete the taking operation of the screwdriver 2.

[0066] In the embodiment, the two end pressing operations are respectively located at opposite ends, for example, as shown in Figure 4 The set is horizontally placed, the end face of the inner shell 3 at the left end of the outer shell 1 can be pressed to cause the outer buckle 39 to unlock the clamping of the convex arm 41 of the outer end plate 4, and the inner shell 3 is moved out of the outer shell 1 from the left end; and then, as shown in Figure 5 The end face of the screwdriver 2 at the right end of the inner shell 3 can be pressed to cause the inner buckle 33 to unlock the clamping of the side arm 351 of the sliding block 35, the screwdriver 2 is pushed out to the right by the elastic member 36 through the sliding block 35, so that the screwdriver 2 is taken out of the inner shell 3.

[0067] The utility model can conveniently and quickly take and put the electric screwdriver, and has simple and ingenious overall structure and good practicability.

[0068] In the description, each embodiment is described in a progressive manner, and each embodiment focuses on the difference from other embodiments, and the same and similar parts of each embodiment can be referred to each other.

[0069] The above description is an explanation of the utility model, not a limitation of the utility model, and the scope defined by the utility model is referred to the claims, and any form of modification is within the protection scope of the utility model.

Claims

1. A power screwdriver storage kit facilitating the operation of taking out and putting away, comprising a screwdriver (2), characterized in that: The screwdriver (2) extends into the inner shell (3) in the axial direction, the inner shell (3) is provided with a sliding block (35) which moves in the axial direction along the inner shell (3), and the inner shell (3) is provided with an inner buckle (33) in the moving direction; the screwdriver (2) pushes the sliding block (35) to move in the axial direction until the screwdriver (2) is completely accommodated in the inner shell (3), and the sliding block (35) is locked by the inner buckle (33).

2. The electric screwdriver storage kit for facilitating the pick-and-place operation according to claim 1, wherein: Further comprising an elastic member (36) which provides a force to the sliding block (35) in the direction of moving out of the inner shell (3); the inner shell (3) is internally provided with a stop structure for preventing the sliding block (35) from sliding out.

3. The electric screwdriver storage kit for facilitating the pick-and-place operation according to claim 1 or 2, characterized in that: The inner shell (3) is internally provided with a cavity (381) for accommodating the screwdriver (2), one end of the cavity (381) extends to the end of the inner shell (3) to form an opening, and the other end of the cavity (381) is slidably provided with the sliding block (35), and the elastic member (36) is arranged between the end of the sliding block (35) away from the cavity (381) and the inner shell (3).

4. The electric screwdriver storage kit for facilitating the pick-and-place operation according to claim 3, wherein: The inner shell (3) is internally provided with a cavity (381) for accommodating the screwdriver (2), one end of the cavity (381) extends to the end of the inner shell (3) to form an opening, and the other end of the cavity (381) is slidably provided with the sliding block (35), and the elastic member (36) is arranged between the end of the sliding block (35) away from the cavity (381) and the inner shell (3).

5. The electric screwdriver storage kit for facilitating the pick-and-place operation according to claim 1, wherein: The inner shell (3) is internally provided with a cavity (381) for accommodating the screwdriver (2), one end of the cavity (381) extends to the end of the inner shell (3) to form an opening, and the other end of the cavity (381) is slidably provided with the sliding block (35), and the elastic member (36) is arranged between the end of the sliding block (35) away from the cavity (381) and the inner shell (3).

6. The electric screwdriver storage kit for facilitating pick-and-place operation according to claim 1, wherein: The inner shell (3) is internally provided with a cavity (381) for accommodating the screwdriver (2), one end of the cavity (381) extends to the end of the inner shell (3) to form an opening, and the other end of the cavity (381) is slidably provided with the sliding block (35), and the elastic member (36) is arranged between the end of the sliding block (35) away from the cavity (381) and the inner shell (3).

7. The electric screwdriver storage kit for facilitating the pick-and-place operation according to claim 1 or 6, characterized in that: The inner shell (3) extends into the outer shell (1) in the axial direction, and the inner shell (3) is locked in the outer shell (1) when the inner shell (3) is completely inserted into the outer shell (1).

8. The electric screwdriver storage kit for facilitating pick-and-place operation according to claim 6, wherein: The inner shell (3) is circumferentially provided with a plurality of accommodating grooves (311) on the outer wall surface, and the accommodating grooves (311) accommodate and fix accessories by magnetic force, and the accessories include but are not limited to a plurality of bits.

9. The electric screwdriver storage kit for facilitating pick-and-place operation according to claim 8, wherein: The outer shell (1) is a sleeve structure with open ends, one end of the outer shell (1) is provided with an outer end plate (4), and the inner shell (3) extends into the other end of the outer shell (1); the inner wall surface of the outer end plate (4) extends a protruding arm (41), and the inner end of the inner shell (3) is provided with a insertion hole (312) for the protruding arm (41) to extend into.

10. The electric screwdriver storage kit for facilitating pick-and-place operation according to claim 9, wherein: The inner shell (3) is internally provided with a cavity (381) for accommodating the screwdriver (2), one end of the cavity (381) extends to the end of the inner shell (3) to form an opening, and the other end of the cavity (381) is slidably provided with the sliding block (35), and the elastic member (36) is arranged between the end of the sliding block (35) away from the cavity (381) and the inner shell (3). The insertion hole (312) is sequentially provided with a plurality of insertion holes, and the outer end plate (4) extends a protruding arm (41) corresponding to each insertion hole (312), and more than one insertion hole (312) is internally provided with an outer buckle (39) for clamping and locking the corresponding protruding arm (41).