Wrench mounting rack and wrench combination

By designing a wrench mounting bracket that uses a locking shaft and a snap-fit ​​mechanism, the problems of large size and unstable locking in existing wrench mounting brackets are solved, enabling convenient locking and carrying of wrenches of various sizes.

CN223685303UActive Publication Date: 2025-12-19SHANGHAI XIMAN TESTING CO LTD
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Patent Information

Application Number
CN202423089017.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-15
Publication Date
2025-12-19
Estimated Expiration
2034-12-15

AI Technical Summary

Technical Problem

Existing hex wrench mounting brackets are bulky and inconvenient to carry, and they cannot effectively lock and prevent the wrench from slipping, resulting in inconvenience in use.

Method used

A wrench mounting bracket is designed, comprising a main body, a locking shaft, a snap fastener, and an elastic element. The wrench is locked and unlocked by the cooperation of the snap teeth and snap holes. The locking shaft slides axially to accommodate wrenches of different sizes. The snap fastener can lock the wrench at any angle and provides a restoring force through the elastic element.

Benefits of technology

It achieves the ability to lock multiple wrenches of different sizes without increasing size, and to lock and unlock at any angle, improving the convenience of carrying and using.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a spanner installation frame and spanner combination, belongs to hand-operated tool field, including main part, locking shaft and buckle piece, locking shaft is installed in the main part along the axial sliding, locking shaft includes the rod body and a plurality of latches of protruding the rod body, the plurality of latches are spaced along the axial direction, form the gap between every two adjacent latches, and the buckle piece is fixed on the main part. The buckling piece comprises a buckling part and an installation part fixedly connected with the buckling part, the buckling part is rotationally installed on the rod body, the installation part is used for installing a wrench body, the buckling part is provided with a buckling hole, the buckling hole and the clamping teeth are buckled so that the buckling piece and the wrench can be locked relative to the body, the locking shaft slides relative to the body in the axial direction, and the buckling part is located in the gap. When the wrench is rotated, the buckle hole is separated from the latch, the buckle piece and the wrench are unlocked relative to the main body, and the buckle piece and the wrench can rotate relative to the main body, so that the wrench can be locked at any angle relative to the wrench mounting frame.
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Description

Technical Field

[0001] This utility model relates to the field of hand tools, and more particularly to a wrench mounting bracket and a wrench assembly including the aforementioned wrench mounting bracket. Background Technology

[0002] Currently, existing hex wrenches apply force to screws through torque, greatly reducing the amount of force required by the user. Therefore, among the installation tools used in modern industry, hex wrenches have become one of the most convenient tools. However, due to the variety of sizes of hex screws, multiple hex wrenches of different sizes need to be carried during installation, which is inconvenient.

[0003] Currently, mounting brackets capable of holding multiple hex wrenches of different sizes have emerged. However, these brackets are generally sleeve-type, box-type, or three-dimensional support type. Sleeve-type or box-type brackets are bulky and inconvenient to carry. With three-dimensional support type brackets, the hex wrenches can rotate freely when mounted on the bracket and cannot be locked, making it inconvenient to handle and potentially causing them to slip off the bracket. Summary of the Invention

[0004] In order to overcome the shortcomings of the prior art, one of the objectives of this utility model is to provide a wrench mounting bracket that can lock an internal hex wrench onto a mounting bracket.

[0005] To overcome the shortcomings of the prior art, the second objective of this utility model is to provide a wrench assembly that can lock an internal hex wrench onto a mounting bracket.

[0006] One of the objectives of this utility model is achieved through the following technical solution:

[0007] A wrench mounting bracket includes a main body, a locking shaft, and a latching component. The locking shaft is slidably mounted on the main body along the axial direction. The locking shaft includes a rod and multiple teeth protruding from the rod. The multiple teeth are spaced apart along the axial direction, with a gap between adjacent teeth. The latching component includes a latching part and a mounting part fixedly connected to the latching part. The latching part is rotatably mounted on the rod. The mounting part is used to mount the wrench body. The latching part has a latching hole. The latching hole and the teeth engage to lock the latching component and the wrench relative to the main body. The locking shaft slides axially relative to the main body. The latching part is located in the gap. The latching hole separates from the teeth, unlocking the latching component and the wrench relative to the main body. The latching component and the wrench can rotate relative to the main body.

[0008] Furthermore, the wrench mounting bracket also includes an elastic element, the two ends of which abut against the main body and the locking shaft, respectively.

[0009] Further, the wrench mounting frame further comprises a button, the button is mounted on the main body, the button and the elastic member are respectively mounted on opposite ends of the locking shaft, the button enables the locking shaft to slide along the axial direction relative to the main body.

[0010] Further, the wrench mounting frame further comprises a gasket, the gasket is located between the button and the locking shaft.

[0011] Further, the main body is provided with a limiting hole, part of the clamping teeth is located in the limiting hole to position the locking shaft relative to the main body in the circumferential direction.

[0012] Further, the main body comprises an upper cover and a lower cover fixedly connected with the upper cover, the lower cover comprises a base, the base is provided with a mounting hole and the limiting hole, the limiting hole is communicated with the mounting hole, and the end of the locking shaft is located in the mounting hole.

[0013] Further, the lower cover further comprises a mounting shaft, one end of the mounting shaft is fixed to the base, and the other end of the mounting shaft is fixed to the upper cover, the locking shaft is a hollow structure, and the locking shaft is slidably mounted on the mounting shaft.

[0014] Further, the main body further comprises a resting frame, the resting frame is located between the upper cover and the lower cover, the resting frame comprises a plate body and a plurality of spacers extending from the plate body, the spacers are located between adjacent clamping members, and the spacers separate adjacent wrenches.

[0015] Further, the distance between adjacent spacers is different along the axial direction of the locking shaft.

[0016] Further, the number of the locking shafts is two, the two locking shafts are respectively located on two sides of the main body, and the plurality of spacers are arranged in two rows, and the two rows of spacers are respectively located on two sides of the main body and on two sides of the plate body.

[0017] Further, the spacer comprises a resting portion, an extension portion and a spacing portion, the resting portion extends from the plate body, the extension portion is located between the resting portion and the spacing portion, the spacing portion is provided with a first through hole, part of the locking shaft is located in the first through hole, and the space between the spacing portions of adjacent spacers forms a space for accommodating an annular portion of a wrench, and the resting portion can bear the wrench body.

[0018] Further, the extension direction of the spacer is perpendicular to the axis of the locking shaft.

[0019] Further, the clamping portion is in the shape of a sheet, the mounting portion is in the shape of a U, and a slot is formed between the mounting portion and the clamping portion.

[0020] The second objective of this utility model is achieved by the following technical solution:

[0021] A wrench assembly includes a wrench and any of the aforementioned wrench mounting brackets. The wrench includes an annular portion and a body extending from the annular portion. The body is linear. The annular portion is rotatably mounted on the locking shaft, and the body portion is located at the mounting portion.

[0022] Furthermore, the number of wrenches is multiple, and the multiple wrenches have different specifications.

[0023] Compared with the prior art, the wrench mounting bracket of this utility model has the following advantages:

[0024] (1) The buckle hole of the buckle and the buckle tooth of the locking shaft buckle together to lock the buckle and the wrench relative to the main body. The locking shaft slides relative to the main body along the axial direction. The buckle part is in the gap. The buckle hole and the buckle tooth are separated. The buckle and the wrench are unlocked relative to the main body. The buckle and the wrench can rotate relative to the main body, so that the wrench can be locked relative to the wrench mounting bracket at any angle.

[0025] (2) There are two locking shafts, which are located on both sides of the main body. Multiple spacers are arranged in two columns, which are located on both sides of the main body and on both sides of the plate, so that wrenches can be installed on both sides of the wrench mounting bracket.

[0026] (3) The different distances between the two spacers allow the wrench mounting bracket to install wrenches of different sizes;

[0027] (4) The snap-fit ​​part is plate-shaped, the mounting part is U-shaped, and a groove is formed between the mounting part and the snap-fit ​​part to facilitate the installation of the wrench. Attached Figure Description

[0028] Figure 1 This is a perspective view of the wrench assembly of this utility model;

[0029] Figure 2 for Figure 1 A 3D view of the wrench mounting bracket for the wrench assembly;

[0030] Figure 3 for Figure 2 A three-dimensional view of the wrench mounting bracket from another perspective;

[0031] Figure 4 for Figure 2 Exploded view of the wrench mounting bracket;

[0032] Figure 5 for Figure 2 A three-dimensional view of the main body of the wrench mounting bracket;

[0033] Figure 6 forFigure 2 partial structure perspective view of the wrench mounting rack;

[0034] Figure 7 partial structure perspective view of the wrench mounting rack; Figure 1 partial structure perspective view of the wrench mounting rack;

[0035] Figure 8 partial structure perspective view of the wrench mounting rack; Figure 1 partial structure perspective view of the wrench mounting rack;

[0036] Figure 9 partial structure perspective view of the wrench mounting rack. Figure 1 partial structure perspective view of the wrench mounting rack.

[0037] In the figure: 100, wrench mounting rack; 10, main body; 11, upper cover; 12, first connecting piece; 13, resting rack; 130, plate body; 131, spacer; 1310, resting part; 1311, extension part; 1312, spacing part; 1313, first through hole; 14, second connecting piece; 15, lower cover; 150, base; 1501, mounting hole; 1502, limiting hole; 151, mounting shaft; 20, button; 30, locking shaft; 31, rod body; 32, clamping tooth; 33, gap; 40, buckle piece; 41, buckling part; 410, second through hole; 411, buckling hole; 42, mounting part; 420, slot; 50, gasket; 60, elastic piece; 200, wrench; 201, annular part; 202, body. DETAILED DESCRIPTION

[0038] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0039] It should be noted that when a component is referred to as being "fixed" to another component, it can be directly on the other component or can be fixed thereto by another intermediate component. When a component is referred to as being "connected" to another component, it can be directly connected to the other component or can be connected thereto by another intermediate component. When a component is referred to as being "provided on" another component, it can be directly provided on the other component or can be provided thereon by another intermediate component. The terms "vertical", "horizontal", "left", "right", and the like used herein are for illustrative purposes only.

[0040] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description herein is for describing particular embodiments only and is not intended to be limiting of the application. As used in this description, the singular forms "a", "an" and "the" include plural references unless the context clearly dictates otherwise.

[0041] Please refer to Figure 1 , the wrench combination comprises a wrench mounting frame 100 and wrenches 200, the wrench mounting frame 100 is used for mounting the wrenches 200 and enabling the wrenches 200 to be locked at any angle relative to the wrench mounting frame 100. The number of the wrenches 200 is multiple, the multiple wrenches 200 are different in specification, and the multiple wrenches 200 of different specifications are mounted on both sides of the wrench mounting frame 100, so that the wrench mounting frame 100 can mount more wrenches 200 under the premise of not increasing the volume.

[0042] Please refer to Figures 2 to 4 , the wrench mounting frame 100 comprises a main body 10, a button 20, locking shafts 30, buckle members 40, gaskets 50 and elastic members 60. The locking shafts 30 are slidably mounted on the main body 10 in the axial direction, and the locking shafts 30 are circumferentially locked with the main body 10. The button 20 is movably mounted on the main body 10, and the button 20 abuts against the locking shafts 30 to make the locking shafts 30 slide in the axial direction. The buckle members 40 are used for mounting the wrenches 200, the buckle members 40 can rotate relative to the locking shafts 30 and are locked with the locking shafts 30, so that the wrenches 200 can be locked at any angle relative to the wrench mounting frame 100. The gaskets 50 are located between the button 20 and the locking shafts 30 to reduce the abrasion of the locking shafts 30. The elastic members 60 have two ends respectively abutting against the main body 10 and the locking shafts 30 to provide the locking shafts 30 with a restoring elastic force.

[0043] Please continue to refer to Figure 2 , Figure 4 and Figure 5 , the main body 10 comprises an upper cover 11, a first connecting plate 12, a resting frame 13, a second connecting plate 14 and a lower cover 15. The upper cover 11 is used for mounting the button 20, and the first connecting plate 12 is used for connecting the two locking shafts 30 to enhance the strength of the main body structure of the wrench mounting frame 100.

[0044] The shelf 13 is mounted between the upper cover 11 and the lower cover 15, and is used to carry the wrenches 200 and separate adjacent two wrenches 200. The shelf 13 comprises a plate body 130 and a plurality of spacers 131 extending from the plate body 130, and the wrenches 200 are located between two spacers 131. The spacers 131 are located on opposite sides of the plate body 130, so that the wrench mounting rack 100 can be mounted with the wrenches 200 on both sides. The distance between adjacent two spacers 131 is different along the height direction of the wrench mounting rack 100 (i.e. the axial direction of the locking shaft 30), so that the wrench mounting rack 100 can be mounted with wrenches 200 of different specifications.

[0045] Each spacer 131 comprises a resting portion 1310, an extension portion 1311 and a spacing portion 1312. The resting portion 1310 extends from the plate body 130, the extension portion 1311 is located between the resting portion 1310 and the spacing portion 1312, and the spacing portion 1312 is located on the side of the plate body 130. The plate body 130, the resting portion 1310, the extension portion 1311 and the spacing portion 1312 are integrally formed. The spacing portion 1312 is provided with a first through hole 1313 for the locking shaft 30 to pass through. The spacing portion 1312 separates adjacent two wrenches 200. A plurality of spacing portions 1312 are parallel to each other. The extension direction of the spacer 131 is perpendicular to the extension direction of the locking shaft 30. A plurality of spacers 131 are respectively located on opposite sides and front and back surfaces of the plate body 130.

[0046] The second connecting piece 14 is used to connect two locking shafts 30, and enhances the strength of the main body structure of the wrench mounting rack 100.

[0047] Please continue to refer to Figure 6 The lower cover 15 comprises a base 150 and a mounting shaft 151 fixed to the base 150. The base 150 is parallel to the upper cover 11, and the base 150 and the upper cover 11 form the upper and lower ends of the wrench mounting rack 100, respectively. The two ends of the base 150 are respectively provided with a mounting hole 1501 and a limiting hole 1502. The limiting hole 1502 communicates with the mounting hole 1501, and surrounds the mounting hole 1501. The mounting hole 1501 is used to accommodate the elastic member 60 and the locking shaft 30, and the locking teeth 32 of the locking shaft 30 are located in the limiting hole 1502, so that the locking shaft 30 is locked in the circumferential direction with the base 150, and the locking shaft 30 can only move in the axial direction relative to the base 150. The mounting shaft 151 is fixed to the mounting hole 1501, is perpendicular to the base 150, and is used to mount and guide the locking shaft 30.

[0048] Please continue to refer to Figure 7The locking shaft 30 comprises a rod body 31 and a plurality of clamping teeth 32 extending from the outer wall of the rod body 31. In the embodiment, the cross section of the clamping teeth 32 is triangular. The clamping teeth 32 are arranged at intervals along the extending direction of the rod body 31, and gaps 33 are formed between adjacent clamping teeth 32 along the extending direction of the rod body 31. The clamping teeth 32 are arranged at intervals and located on a circumference along the circumferential direction of the rod body 31, thereby enhancing the clamping strength of the clamping member 40 and the locking shaft 30. When the clamping teeth 32 move into the clamping holes 411 of the clamping member 40, the clamping member 40 is locked with the locking shaft 30, and the wrench 200 mounted on the clamping member 40 cannot rotate relative to the wrench mounting frame 100. When the clamping teeth 32 move out of the clamping holes 411 of the clamping member 40, the clamping member 40 can rotate relative to the locking shaft 30, and the wrench 200 mounted on the clamping member 40 can rotate relative to the wrench mounting frame 100. The number of the locking shafts 30 is two, and the two locking shafts 30 are mounted on the two ends of the lower cover 15, so that the wrenches 200 can be mounted on the two ends of the wrench mounting frame 100.

[0049] The clamping member 40 comprises a clamping portion 41 and a mounting portion 42 fixedly connected with the clamping portion 41. The clamping portion 41 is in a sheet shape, and the clamping portion 41 is provided with a second through hole 410 for mounting the rod body 31 and clamping holes 411 communicating with the second through hole 410 for clamping the clamping teeth 32. The mounting portion 42 is in a U shape, and a slot 420 is formed between the mounting portion 42 and the clamping portion 41, so that the body 202 of the wrench 200 can be mounted on the mounting portion 42.

[0050] The elastic member 60 is a spring.

[0051] The shape of the wrench 200 is substantially the same as that of the number 9. The wrench 200 comprises a ring portion 201 and a body 202 extending from the ring portion 201. The ring portion 201 is in a circular ring shape and is provided with an opening, and the body 202 is in a straight line type. The ring portion 201 is rotatably mounted on the locking shaft 30, and the ring portion 201 is located between the clamping portion 41 and the spacing portion 1312. The body 202 is mounted on the mounting portion 42.

[0052] Please continue to refer to Figure 8 and Figure 9In the initial state, the plurality of different specifications of wrenches 200 are installed on the wrench mounting rack 100, the body 202 of the wrench 200 is located on the resting portion 1310, at this time the buckle hole 411 of the buckle member 40 is locked with the locking teeth 32 of the locking shaft 30, and the wrench 200 cannot rotate relative to the wrench mounting rack 100. When it is needed to rotate the wrench 200, the button 20 is pressed, the button 20 presses the locking shaft 30 through the gasket 50, the locking shaft 30 moves along the axial direction, the locking teeth 32 move out of the buckle hole 411 of the buckle portion 41, at this time the buckle portion 41 is located in the gap 33, the buckle portion 41 can rotate relative to the locking shaft 30, and the wrench 200 installed on the buckle member 40 can rotate relative to the wrench mounting rack 100. When the wrench 200 is rotated to a preset angle, the button 20 is released, the elastic force of the elastic member 60 drives the locking shaft 30 to move reversely, when the locking teeth 32 move into the buckle hole 411 of the buckle portion 41, the buckle member 40 is locked with the locking shaft 30, and the wrench 200 installed on the buckle member 40 cannot rotate relative to the wrench mounting rack 100, at this time the wrench 200 is locked with the wrench mounting rack 100 after being rotated to the preset angle.

[0053] The buckle hole 411 of the buckle member 40 of the wrench mounting rack 100 is buckled with the locking teeth 32 of the locking shaft, so that the buckle member 40 and the wrench 200 are locked relative to the main body 10, the locking shaft 30 slides along the axial direction relative to the main body 10, the buckle portion 41 is located in the gap 33, the buckle hole 411 is separated from the locking teeth 32, the buckle member 40 and the wrench 200 are unlocked relative to the main body 10, and the buckle member 40 and the wrench 200 can rotate relative to the main body 10, so that the wrench 200 can be locked at any angle relative to the wrench mounting rack 100; the number of the locking shafts 30 is two, the two locking shafts 30 are located on the two sides of the main body 10 respectively, the plurality of spacing members 131 are arranged in two rows, the two rows of spacing members 131 are located on the two sides of the main body 10 and on the two sides of the plate body 130, so that the wrench mounting rack 100 can install the wrench 200 on both sides; the distance between the two spacing members 131 is different, so that the wrench mounting rack 100 can install the wrench 200 of different specifications; the buckle portion 41 is in a sheet shape, the mounting portion 42 is in a U shape, and the mounting portion 42 and the buckle portion 41 form a slot 420 therebetween, so as to facilitate the installation of the wrench 200.

[0054] The above embodiments only express several implementation manners of the utility model, the description is more specific and detailed, but it cannot be understood as the limitation of the utility model patent range. It should be pointed out that, for ordinary skilled persons in the art, without departing from the concept of the utility model, a plurality of deformations and improvements and evolutions can be made, which are equivalent modifications and evolutions of the above embodiments according to the essential technology of the utility model, and these all belong to the protection range of the utility model.

Claims

1. A spanner mounting bracket comprising a main body characterised in that: The wrench mounting frame further comprises a locking shaft and a buckle, the locking shaft is slidably mounted on the main body in the axial direction, the locking shaft comprises a rod body and a plurality of clamping teeth protruding from the rod body, the clamping teeth are arranged in the axial direction, and gaps are formed between adjacent clamping teeth, the buckle comprises a buckle part and a mounting part fixedly connected with the buckle part, the buckle part is rotatably mounted on the rod body, the mounting part is used to mount the body of the wrench, the buckle part is provided with a buckle hole, the buckle hole is buckled with the clamping teeth to lock the buckle and the wrench relative to the main body, the locking shaft slides relative to the main body in the axial direction, the buckle part is located in the gap, the buckle hole is separated from the clamping teeth, the buckle and the wrench are unlocked relative to the main body, and the buckle and the wrench can rotate relative to the main body.

2. The wrench mount of claim 1, wherein: The wrench mounting frame further comprises a resilient member, and the resilient member is in contact with the main body and the locking shaft at both ends.

3. The wrench mount of claim 2, wherein: The wrench mounting frame further comprises a button, the button is mounted on the main body, the button and the resilient member are mounted on opposite ends of the locking shaft respectively, and the button makes the locking shaft slide relative to the main body in the axial direction.

4. The wrench mount of claim 3, wherein: The wrench mounting frame further comprises a gasket, and the gasket is located between the button and the locking shaft.

5. The wrench mount of claim 1, wherein: The main body is provided with a limiting hole, and part of the clamping teeth are located in the limiting hole to position the locking shaft relative to the main body in the circumferential direction.

6. The wrench mount of claim 5, wherein: The main body comprises an upper cover and a lower cover fixedly connected with the upper cover, the lower cover comprises a base, the base is provided with a mounting hole and the limiting hole, the limiting hole is communicated with the mounting hole, and the end of the locking shaft is located in the mounting hole.

7. The wrench mount of claim 6, wherein: The lower cover further comprises a mounting shaft, one end of the mounting shaft is fixed to the base, the other end of the mounting shaft is fixed to the upper cover, the locking shaft is a hollow structure, and the locking shaft is slidably mounted on the mounting shaft.

8. The wrench mount of claim 6, wherein: The main body further comprises a resting rack, the resting rack is located between the upper cover and the lower cover, the resting rack comprises a plate body and a plurality of spacers extending from the plate body, the spacers are located between adjacent buckles, and the spacers separate adjacent wrenches.

9. The wrench mount of claim 8, wherein: The distance between adjacent spacers is different in the axial direction of the locking shaft.

10. The wrench mount of claim 8, wherein: The number of the locking shafts is two, the two locking shafts are located on both sides of the main body respectively, a plurality of spacers are arranged in two rows, and the two rows of spacers are located on both sides of the main body and on both sides of the plate body.

11. The wrench mount of claim 8, wherein: The spacer comprises a resting part, an extension part and a spacing part, the resting part extends from the plate body, the extension part is located between the resting part and the spacing part, the spacing part is provided with a first through hole, part of the locking shaft is located in the first through hole, a space for accommodating an annular part of the wrench is formed between the spacing parts of adjacent spacers, and the resting part can bear the body of the wrench.

12. The wrench mount of claim 11, wherein: The extension direction of the spacer is perpendicular to the axis of the locking shaft.

13. The wrench mount of claim 1, wherein: The buckle part is in the shape of a sheet, the mounting part is in the shape of a U, and a slot is formed between the mounting part and the buckle part.

14. A combination of spanners comprising a spanner characterised in that: The wrench assembly further comprises the wrench mounting frame as claimed in any one of claims 1-13, the wrench comprising a ring-shaped portion and a body extending from the ring-shaped portion, the body being linear, the ring-shaped portion being rotatably mounted on the locking shaft, and the body being partially located in the mounting portion.

15. The combination of claim 14 wherein: The wrenches are multiple in number, and the multiple wrenches are different in size.