Wrench storage device

By setting up multiple assembly areas and movable frame limiting parts in the wrench storage device, the problem of differences in the length of wrench handles from different manufacturers is solved, enabling effective storage of wrenches of different specifications and improving the adaptability and practicality of the device.

CN224059830UActive Publication Date: 2026-03-31HANGZHOU GREAT STAR IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing wrench storage devices cannot effectively accommodate the differences in handle lengths between wrenches produced by different manufacturers, making it impossible to randomly store wrenches of different sizes.

Method used

A wrench storage device is designed, which sets multiple assembly areas on the frame, each with a different spacing, and is equipped with a movable frame and a limiting part, allowing the movable frame to move along a first direction to accommodate wrenches of different lengths. Combined with an adjustable assembly frame and a sliding structure, it can store wrenches of different handle lengths.

Benefits of technology

It enables efficient storage of wrenches of different lengths, meets diverse user needs, and improves the compatibility and practicality of the storage device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a wrench storage device which comprises a frame body, a plurality of assembling areas are arranged on the plate face of the frame body, the multiple assembling areas are sequentially arranged in the first direction of the frame body, and each assembling area is provided with two assembling parts which are arranged in the second direction of the frame body at intervals so as to assemble wrenches. The first direction is the length direction of the wrench, the second direction is the length direction of the wrench, an angle is formed between the first direction and the second direction, the distance between the two assembling parts in the assembling areas is defined as a first distance, and the first distances of at least two assembling areas are different. According to the technical scheme, the wrenches can be arranged on the assembling areas through the assembling parts, and due to the fact that the first distances between the at least two assembling areas are different, the wrenches with different handle lengths can be stored, the storage function is increased, and the storage requirements of users for the wrenches with different lengths are better met.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of storage devices, in particular to a wrench storage device. BACKGROUND

[0002] The wrench storage device is used for storing wrenches of different specifications.

[0003] For double-head wrenches, the wrenches are generally fixed by limiting the two end heads. However, the lengths of wrench handles vary for wrenches of different uses. In addition, the lengths of wrench handles vary for wrenches produced by different manufacturers. Generally, a wrench storage device cannot randomly store wrenches of different handle lengths. CONTENT OF THE UTILITY MODEL

[0004] Therefore, it is necessary to provide a wrench storage device capable of storing wrenches of different lengths.

[0005] The present application provides a wrench storage device, which comprises a frame body. The frame body has a plurality of assembly areas on a plate surface. The assembly areas are arranged in sequence along a first direction of the frame body. Each assembly area is provided with two assembly parts arranged at intervals along a second direction of the frame body to assemble a wrench. The second direction is the length direction of the wrench. The first direction and the second direction are at an angle to each other. The spacing between the two assembly parts in the assembly area is defined as a first spacing. The first spacings of at least two assembly areas are different.

[0006] In one embodiment, the first spacings of the assembly areas are all different.

[0007] In one embodiment, the frame body is provided with a movable frame extending along the first direction. At least part of the movable frame is located between the two assembly parts of the assembly area. The movable frame is provided with at least one limiting part at a position corresponding to each assembly area. The movable frame is arranged to move relative to the frame body along the first direction, so that the limiting part has a first position to limit the wrench from leaving the frame body and a second position to release the limitation on the wrench. When the limiting part is in the first position, the wrench is located in a space enclosed by the limiting part and the assembly part. When the limiting part is in the second position, the limiting part is located on one side of the wrench in the width direction.

[0008] In one embodiment, when the first direction is a vertical direction, the limiting part is located above the wrench when the limiting part is in the second position. When the movable frame is in a downward movement position, the limiting part is switched from the second position to the first position.

[0009] In one of the embodiments, the limiting part comprises an inclined section and an extending section, the extending section is arranged on the front wall of the movable frame and extends forward, the moving direction of the movable frame from the second position of the limiting part to the first position of the limiting part is defined as the third direction, the third direction is the positive direction or the reverse direction of the first direction, the inclined section gradually inclines forward along the third direction from the front end of the extending section.

[0010] In one of the embodiments, the frame body is provided with a groove on the plate surface of the assembly area, and the movable frame is installed in the groove.

[0011] In one of the embodiments, the wrench storage device further comprises a limiting structure for restraining the movable frame and the frame body together when the limiting part is in the first position, and the limiting structure is arranged between the frame body and the movable frame.

[0012] In one of the embodiments, the limiting structure comprises a first clamping part and a second clamping part, the first clamping part is arranged on the frame body, the second clamping part is arranged on the movable frame, and the first clamping part is clamped with the second clamping part when the limiting part is in the first position.

[0013] In one of the embodiments, the first clamping part is a first elastic buckle, the second clamping part is arranged on the back surface of the movable frame away from the limiting part, and the second clamping part is a first clamping groove or a first protrusion extending backward; or, the first clamping part is arranged on the plate surface of the frame body facing the movable frame, and the first clamping part is a second clamping groove or a second protrusion extending forward, and the second clamping part is a second elastic buckle.

[0014] In one of the embodiments, the wrench storage device further comprises a guide structure, the guide structure comprises a guide part and a guide groove in a guide matching mode, the guide groove extends along the first direction, one of the guide part and the guide groove is arranged on the movable frame, and the other of the guide part and the guide groove is arranged on the frame body.

[0015] In one of the embodiments, the assembly part is a positioning column or a positioning pin in a plug-in matching mode with the wrench hole of the wrench.

[0016] In one of the embodiments, the assembly area comprises an inclined surface, the assembly part is arranged on the inclined surface and is in an inclined state, when the first direction is a vertical direction and the plate surface of the assembly area arranged on the frame body is a front plate surface, the inclined surface gradually inclines forward from top to bottom, and the assembly part gradually inclines forward from bottom to top.

[0017] In one of the embodiments, the two side walls of the frame body arranged along the second direction are both inclined walls, and when the first direction is a vertical direction, the two inclined walls are both inclined away from each other from top to bottom.

[0018] In one of the embodiments, the frame body is provided with a handle, and when the first direction is a vertical direction, the handle is located at the top of the frame body.

[0019] In one of the embodiments, the frame body is provided with a receiving groove on the back surface away from the assembly area for accommodating the handle, and the handle has an extended state of partially extending out of the frame body and a received state of being accommodated in the receiving groove.

[0020] In one of the embodiments, the handle is slidingly constrained on the groove plate of the receiving groove along the first direction, so that the handle moves to the extended state away from the receiving groove, or moves to the received state towards the receiving groove.

[0021] In one of the embodiments, the two wall plates of the handle arranged relatively apart along the second direction are both provided with sliding parts and sliding grooves matched with the corresponding groove plates of the receiving groove, the sliding grooves extend along the first direction, one of the sliding grooves and the sliding part is arranged on the wall plate of the handle, and the other of the sliding groove and the sliding part is arranged on the groove plate.

[0022] In one of the embodiments, the size of at least one of the first intervals is adjustable.

[0023] In one of the embodiments, the frame body comprises a first assembly frame, a main body frame and a second assembly frame arranged along the second direction in sequence, the main body frame extends along the first direction, and at least part of the main body frame is located between the first assembly frame and the second assembly frame, the two assembly parts of the assembly area are defined as a first assembly part and a second assembly part respectively, the part of the assembly area provided with the first assembly part is defined as a first part, and the part of the assembly area provided with the second assembly part is defined as a second part, the first part of the assembly area is located on the first assembly frame, and the second part of the assembly area is located on the second assembly frame.

[0024] In one of the embodiments, at least one of the first assembly frame and the second assembly frame is detachably mounted on the corresponding side of the main frame, the side of the main frame detachably connected with the assembly frame is used for adapting different assembly frames, the assembly frame detachably connected with the main frame is defined as a detachable frame, the main frame is spliced with the detachable frame, and the spliced position is defined as a splicing position; the distance between the splicing position and the assembly part on the same side along the second direction is defined as a second distance, and the second distances on different assembly frames are different.

[0025] In one of the embodiments, the first assembly frame and the second assembly frame are both detachably mounted on the corresponding side of the main frame, one side of the main frame is used for adapting different first assembly frames, and the other side of the main frame is used for adapting different second assembly frames.

[0026] In one of the embodiments, at least one of the first assembly frame and the second assembly frame is slidably constrained at the corresponding position of the main frame along the second direction.

[0027] In one of the embodiments, the first assembly frame and the second assembly frame both extend along the first direction, the first part of each assembly area is located on the first assembly frame, and the second part of each assembly area is located on the second assembly frame; or each assembly area corresponds to one first assembly frame and one second assembly frame.

[0028] In one of the embodiments, two assembly parts in the assembly area are arranged to be relatively movable in the second direction.

[0029] In one of the embodiments, the assembly area includes two mounting areas arranged in sequence along the second direction, each assembly part corresponds to one mounting area, the mounting area is provided with at least two assembly holes arranged at intervals along the second direction, and the assembly part is selectively inserted into the corresponding assembly hole of the corresponding mounting area on the same side.

[0030] In one of the embodiments, the assembly area includes two mounting areas arranged in sequence along the second direction, each assembly part corresponds to one mounting area, the mounting area is provided with an adjusting slot extending along the second direction, and the assembly part is slidably constrained on the adjusting slot along the second direction.

[0031] Compared with the prior art, in the wrench storage device provided by the application, the wrench can be arranged on the assembly area through the assembly part, and since the first distances of the at least two assembly areas are different, wrenches with different handle lengths can be stored, the storage function is increased, and the storage demand of users for wrenches with different lengths is better met. Attached Figure Description

[0032] To more clearly illustrate the technical solutions in the embodiments of this application or the conventional technology, the drawings used in the description of the embodiments or the conventional technology will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0033] Figure 1 This is a perspective view of an embodiment of the present application showing the limiting part in the first position and the handle in the extended state;

[0034] Figure 2 for Figure 1 A magnified view of a section at point I;

[0035] Figure 3 This is a perspective view of the limiting part in the second position in one embodiment of this application;

[0036] Figure 4 for Figure 3 Enlarged view of section II in the middle;

[0037] Figure 5 for Figure 1 A schematic diagram of the back structure;

[0038] Figure 6 for Figure 5 A magnified view of a section at point III;

[0039] Figure 7 for Figure 1 Schematic diagram of the mid-frame structure;

[0040] Figure 8 for Figure 3 A schematic diagram of the back structure when the middle handle is in its retracted state;

[0041] Figure 9 for Figure 8 Schematic diagram of the structure at point IV;

[0042] Figure 10 This is a schematic diagram of the structure of a wrench storage device according to another embodiment of this application;

[0043] Figure 11 for Figure 10 A three-dimensional exploded structural diagram of the middle part;

[0044] Figure 12 This is a schematic diagram of the structure of a wrench storage device according to another embodiment of this application;

[0045] Figure 13This is a schematic diagram of the structure of a wrench storage device according to another embodiment of this application;

[0046] Figure 14 for Figure 10 A sectional view;

[0047] Figure 15 for Figure 14 Schematic diagram of the structure at point V;

[0048] Figure 16 This is a schematic diagram of the structure of Embodiment 1 of this application;

[0049] Figure 17 This is a schematic diagram of the structure of Embodiment 2 of this application.

[0050] Reference numerals: 1. Frame; 10. Assembly area; 101. Inclined surface; 1011. Installation area; 1012. Assembly hole; 1013. Adjustment groove; 102. First assembly part; 103. Second assembly part; 11. First assembly frame; 12. Second assembly frame; 13. Main frame; 131. First assembly groove; 132. Second assembly groove; 133. Joint; 134. Groove; 14. Inclined wall; 15. Receiving groove; 151. Groove plate; 1511. Slide groove; 2. Wrench; 21. Wrench hole; 3. Handle; 31. Sliding part; 4. Movable frame; 41. Limiting part; 411. Inclined section; 412. Extension section; 5. Limiting structure; 51. First elastic buckle; 52. First protrusion; 6. Guide structure; 61. Guide part; 62. Guide groove. Detailed Implementation

[0051] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0052] It is to be noted that when a component is referred to as being "on" or "disposed on" another component, it can be directly on the other component or intervening components can also be present. When a component is referred to as being "connected" to another component, it can be directly connected to the other component or intervening components can also be present. The terms "vertical", "horizontal", "upper", "lower", "left", "right", "side", "top", "bottom", and similar terms are used herein, merely for purposes of describing particular examples of the various structures and components in the examples, but is not intended to be limiting of the application. As used in this application, the terms "upper" and "lower" are used for ease of description in relation to the examples shown in the drawings, but are not intended to be limiting of the application. These terms are used merely for purposes of illustration and are not intended to be limiting of the application. Since the disclosed embodiments can be positioned in different orientations, these directional terms are used as a matter of convenience and are in no way intended to be limiting of the application. For example, "upper" and "lower" are not necessarily defined as being opposite or consistent with the direction of gravity.

[0053] In addition, the terms "first", "second", and the like, do not denote any

[0054] In this application, unless specifically stated otherwise, the terms "on", "under", "above", and "below" can refer to direct contact between components, or indirect contact between components via an intermediate medium. Also, the terms "on", "above", and "over" can mean directly above or diagonally above, or simply mean that the first component is at a higher horizontal level than the second component. The terms "under", "below", and "underneath" can mean directly below or diagonally below, or simply mean that the first component is at a lower horizontal level than the second component.

[0055] It is to be noted that "axial arrangement" refers to the overall arrangement direction along the axial direction, including but not limited to axial extension, which can be at an angle with the axial direction.

[0056] Unless otherwise defined, all technical and scientific terms used in the specification of the present application 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 of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. The use of the terms "and / or" in the description of the present application includes a set of one or more associated listed items.

[0057] As Figures 1-17As shown in the accompanying drawings, the present application discloses a wrench storage device. As shown in the accompanying drawings Figure 7 As shown in the accompanying drawings, the wrench storage device comprises a frame body 1, the frame body 1 is provided with a plurality of assembly areas 10 on the plate surface, the plurality of assembly areas 10 are arranged in sequence along a first direction A of the frame body 1, each assembly area 10 is provided with two assembly parts arranged at intervals along a second direction B of the frame body 1 to assemble a wrench 2, the second direction B is the length direction of the wrench 2, and the first direction A and the second direction B are at an angle to each other.

[0058] In an embodiment, the assembly part is a buckle. In this embodiment, the assembly part is a positioning column or a positioning pin which is inserted into the wrench hole 21 of the wrench 2.

[0059] Specifically, as shown in the accompanying drawings Figure 7 , the assembly area 10 comprises an inclined surface 101, the assembly part is arranged on the inclined surface 101 and is in an inclined state, when the first direction A is a vertical direction and the plate surface of the frame body 1 provided with the assembly area 10 is a front plate surface, the inclined surface 101 gradually inclines forward from top to bottom, and the assembly part gradually inclines forward from bottom to top. In this way, when the first direction A is a vertical direction, that is, the frame body 1 is in a vertical state, the existence of the inclined surface 101 better supports the wrench 2, and the assembly part is arranged in an inclined state, so that the wrench 2 is not easy to fall off when the frame body 1 is in a vertical state; when the frame body 1 is in a horizontal state, the wrench 2 can be taken at any time.

[0060] In addition, as shown in the accompanying drawings Figures 1-3 , the two side walls of the frame body 1 arranged at intervals along the second direction B are both inclined walls 14, when the first direction A is a vertical direction, the two inclined walls 14 both gradually incline away from each other from top to bottom. In this way, the lengths of the wrenches 2 placed in sequence from top to bottom can gradually increase, which increases the neatness of the wrenches 2 stored.

[0061] In order to facilitate the extraction of the frame body 1, a handle 3 is arranged on the frame body 1, when the first direction A is a vertical direction, the handle 3 is located at the top of the frame body 1.

[0062] Further, as shown in the accompanying drawings Figures 1-6 , Figure 8 and Figure 9 , the frame body 1 is provided with a containing groove 15 containing the handle 3 on the back surface away from the assembly area 10, and the handle 3 has an extended state in which a part of the handle 3 extends out of the frame body 1 and a storage state in which the handle 3 is stored in the containing groove 15. In this way, when the frame body needs to be extracted, the handle is only needed to be in the extended state, and the frame body is extracted through the handle. When the handle 3 is in the storage state, the volume of the wrench storage device and the overall length along the first direction A can be reduced, which facilitates the storage of the wrench storage device.

[0063] In the embodiment, the handle 3 is slidably constrained on the groove plate 151 of the accommodating groove 15 along the first direction A, so as to move the handle 3 to the extended state away from the accommodating groove 15, as shown in Figures 1-6 or move the handle 3 to the storage state towards the accommodating groove 15, as shown in Figure 8 and Figure 9 In addition, the handle 3 can be arranged on the groove plate of the accommodating groove 15 by rotating the mounting shaft extending along the first direction A, so as to switch the extended state and the storage state by rotating the handle 3.

[0064] As shown in Figure 6 and Figure 9 The handle 3 is arranged relative to the two wall plates spaced along the second direction B, and the corresponding groove plate 151 of the accommodating groove 15 is matched with the sliding part 31 and the sliding groove 1511 in sliding fit, the sliding groove 1511 extends along the first direction A, one of the sliding groove 1511 and the sliding part 31 is arranged on the wall plate of the handle 3, and the other of the sliding groove 1511 and the sliding part 31 is arranged on the groove plate 151. In this way, the movement of the handle 3 is guided by the sliding fit of the sliding part 31 and the sliding groove 1511.

[0065] In the embodiment, the sliding part 31 is located on the outer wall surface of the wall plate of the handle 3 and extends outward, and the sliding groove 1511 is opened on the groove plate 151. Illustratively, the sliding part can be located on the groove plate 151, and the sliding groove is opened on the wall plate of the handle 3.

[0066] In the embodiment, as shown in Figures 1-6 The frame 1 is provided with a movable frame 4 extending along the first direction A, at least part of the movable frame 4 is located between the two assembly parts of the assembly area 10, the movable frame 4 is provided with at least one limiting part 41 at the position corresponding to each assembly area 10, the movable frame 4 is arranged to move relative to the frame 1 along the first direction A, so that the limiting part 41 has a first position for limiting the wrench 2 from leaving the frame 1 and a second position for releasing the wrench 2, as shown in Figure 1 and Figure 2 When the limiting part 41 is in the first position, the wrench 2 is located in the space enclosed by the limiting part 41 and the assembly part, as shown in Figure 3 and Figure 4 When the limiting part 41 is in the second position, the limiting part 41 is located on one side of the wrench 2 in the width direction.

[0067] Illustratively, each assembly area 10 corresponds to one limiting part 41 or at least two (i.e. two, three or more) limiting parts 41 arranged along the second direction B. In the embodiment, each assembly area 10 corresponds to two limiting parts 41.

[0068] Thus, when the wrench 2 needs to be stored in the wrench storage device, the wrench 2 is limited to be separated from the frame 1 by the limiting portion 41, and when the wrench storage device is moved randomly, the wrench 2 is prevented from falling off. When the wrench 2 needs to be taken out of the wrench storage device, the limiting portion 41 only needs to be moved to the second position, at this time, the limiting portion 41 is released from the limitation of the wrench 2, and the wrench 2 is conveniently taken out of the wrench storage device.

[0069] As shown in Figure 2 , Figure 4 and Figures 10-17 , the limiting portion 41 includes an inclined section 411 and an extension section 412, the extension section 412 is arranged on the front wall surface of the movable frame 4 and extends forward, the movement direction of the movable frame 4 from the second position of the limiting portion 41 to the first position of the limiting portion 41 is defined as a third direction A1, the third direction A1 is the positive direction or the reverse direction of the first direction A, that is, the first direction A includes the third direction A1 and the reverse direction of the third direction A1, for details, see Figure 3 and Figure 15 . The inclined section 411 gradually inclines forward along the third direction A1 from the front end of the extension section 412.

[0070] In other embodiments, when the first direction A is a vertical direction, the limiting portion 41 is located below the wrench 2 when the limiting portion 41 is in the second position, and the limiting portion 41 is switched from the second position to the first position when the movable frame 4 is in the upward movement position.

[0071] And in this embodiment, when the first direction A is a vertical direction, as shown in Figure 3 and Figure 4 , the limiting portion 41 is located above the wrench 2 when the limiting portion 41 is in the second position, and the limiting portion 41 is switched from the second position to the first position when the movable frame 4 is in the downward movement position, that is, the third direction A1 is a downward direction.

[0072] In addition, as shown in Figure 3 , Figure 7 and Figure 12 , the frame 1 is provided with a recess 134 opened on the plate surface of the assembly area 10, and the movable frame 4 is installed in the recess 134. Thus, the frame 1 is conveniently arranged. When the frame 1 is arranged in a split manner, the recess 134 is located on the main frame 13.

[0073] In addition, the wrench storage device further includes a limiting structure 5 for restraining the movable frame 4 and the frame 1 together when the limiting portion 41 is in the first position, and the limiting structure 5 is arranged between the frame 1 and the movable frame 4. Thus, when the limiting portion 41 is in the first position and the wrench storage device is moved randomly, the first position of the limiting portion 41 is locked by the limiting structure 5, and at this time, the wrench 2 will not fall off.

[0074] The limiting structure 5 comprises a first clamping part and a second clamping part, the first clamping part is arranged on the frame body 1, and the second clamping part is arranged on the movable frame 4. When the limiting part 41 is in the first position, the first clamping part is clamped with the second clamping part.

[0075] Specifically, as shown in Figure 14 and Figure 15 , the first clamping part is a first elastic buckle 51, the second clamping part is arranged on the back surface of the movable frame 4 away from the limiting part 41, and the second clamping part is a first clamping groove or a first protruding part 52 extending backward; or, the first clamping part is arranged on the surface of the frame body 1 facing the movable frame 4, and the first clamping part is a second clamping groove or a second protruding part extending forward, and the second clamping part is a second elastic buckle.

[0076] In addition, as shown in Figure 6 , Figure 9 and Figure 15 , the wrench storage device further comprises a guide structure 6, the guide structure 6 comprises a guide part 61 and a guide groove 62 in a guide fit, the guide groove 62 extends along the first direction A, one of the guide part 61 and the guide groove 62 is arranged on the movable frame 4, and the other of the guide part 61 and the guide groove 62 is arranged on the frame body 1. In this way, under the cooperation of the guide part 61 and the guide groove 62, the movement of the movable frame 4 can be guided, and the smoothness and reliability of the movement of the movable frame 4 are improved.

[0077] In the embodiment, the guide part 61 is arranged on the back surface of the movable frame 4 away from the limiting part 41, and the guide groove 62 is arranged on the frame body 1. Illustratively, the guide groove 62 can be arranged on the movable frame 4, and the guide part 61 can be arranged on the surface of the frame body 1 facing the movable frame 4.

[0078] The guide structure 6 is at least one row, illustratively, two rows or more than two rows. Each row has a plurality of guide structures 6 arranged at intervals along the first direction A. In this way, the smoothness and reliability of the movement of the movable frame 4 are further improved.

[0079] The frame body and the movable frame are both plastic frames. In this way, the weight of the wrench storage device is reduced.

[0080] Further, as shown in Figure 7 , the distance between the two assembly parts in the assembly area 10 is defined as the first distance L1, and the first distances L1 of the at least two assembly areas 10 are different.

[0081] It can be understood that the wrench 2 can be arranged on the assembly area 10 through the assembly part, and since the first spacing L1 of the at least two assembly areas 10 is different, the wrenches 2 with different lengths of the handle 3 can be accommodated, the accommodation function is increased, and the accommodation demand of the user for the wrenches 2 with different lengths is better met.

[0082] It should be noted that the first direction A and the second direction B are mutually acute, obtuse or right angles. In the embodiment, the first direction A and the second direction B are mutually right angles or substantially right angles.

[0083] Illustratively, the first spacing L1 of two, three, four or more assembly areas 10 is different. In the embodiment, the first spacing L1 of each assembly area 10 is different. In this way, more wrenches 2 with different lengths can be randomly accommodated, the accommodation demand of the user for the wrenches 2 with different lengths is met, and the wrench accommodating device can be compatible with the accommodation of wrenches 2 with different lengths.

[0084] The size of the at least one first spacing L1 is adjustable. In this way, the user can adjust the size of the first spacing L1 according to the length of the actual wrench 2, so as to better meet the accommodation demand of the wrench 2, and avoid the problem that the wrench 2 cannot be accommodated due to the inappropriate length.

[0085] Illustratively, the size of one, two or more first spacings L1 is adjustable. In the embodiment, the size of each first spacing L1 is adjustable.

[0086] As shown in Figure 1 and Figure 10 The frame body 1 includes a first assembly frame 11, a main body frame 13 and a second assembly frame 12 connected in sequence along the second direction B, the main body frame 13 extends along the first direction A, and at least part of the main body frame 13 is located between the first assembly frame 11 and the second assembly frame 12, the two assembly parts of the assembly area 10 are defined as a first assembly part 102 and a second assembly part 103, the part of the assembly area 10 provided with the first assembly part 102 is defined as a first part, and the part of the assembly area 10 provided with the second assembly part 103 is defined as a second part, the first part of the assembly area 10 is located on the first assembly frame 11, and the second part of the assembly area 10 is located on the second assembly frame 12. The frame body 1 can be integrally formed with the main body frame 13, the first assembly frame 11 and the second assembly frame 12, or can be separately arranged.

[0087] The present application discloses a first way to adjust the size of the first spacing L1, as shown in Figure 10 and Figure 11As shown, at least one of the first assembly frame 11 and the second assembly frame 12 is detachably mounted on the corresponding side of the main frame 13, and the side of the main frame 13 to which the assembly frame is detachably connected is used to adapt different assembly frames. The assembly frame that is detachably connected to the main frame 13 is defined as a detachable frame. The detachable frame is spliced with the main frame 13, and the splicing position is defined as a splicing position 133. The distance between the splicing position 133 and the assembly part on the same side along the second direction B is defined as a second distance L2, and the second distance L2 on different assembly frames is different. By replacing different assembly frames on at least one side of the main frame 13, the size of the first distance L1 between the two assembly parts on the same assembly area 10 can be adjusted to meet the storage needs of wrenches 2 of different lengths to adapt to wrenches 2 of different lengths.

[0088] As shown, one of the first assembly frame 11 and the second assembly frame 12 is detachably connected to the main frame 13. In this embodiment, as shown in Figure 10 and Figure 11 As shown, the first assembly frame 11 and the second assembly frame 12 are both detachably mounted on the corresponding side of the main frame 13. Then, the first assembly frame 11 and the second assembly frame 12 are both detachable frames. One side of the main frame 13 is used to adapt different first assembly frames 11, and the other side of the main frame 13 is used to adapt different second assembly frames 12.

[0089] In this way, by adapting different first assembly frames 11 on the first side of the main frame 13 and adapting different second assembly frames 12 on the second side of the main frame 13, the size of the first distance L1 between the two assembly parts on the same assembly area 10 can be adjusted to meet the storage needs of wrenches 2 of different lengths to adapt to wrenches 2 of different lengths.

[0090] There are many ways to achieve the detachable connection of the main frame and the assembly frame. The buckle connection method can be used. The connection piece connection method can also be used. Specifically, the main frame and the assembly frame are provided with mounting holes corresponding to each other, and the connection piece passes through the mounting hole to realize the mounting of the main frame and the assembly frame.

[0091] In addition, when adapting wrenches of different handle lengths, only the first assembly frame 11 and / or the second assembly frame 12 need to be replaced, and the main frame 13 does not need to be replaced, which provides convenience for factories to process wrench storage devices that adapt to wrenches of different manufacturers.

[0092] In this embodiment, the main frame 13 has a first assembly slot 131 at the position corresponding to the first assembly frame 11, and a second assembly slot 132 at the position corresponding to the second assembly frame 12. The first assembly frame 11 is detachably installed in the first assembly slot 131, and the second assembly frame 12 is detachably installed in the second assembly slot 132. The first assembly frame 11 is spliced ​​with the side edge of the first assembly slot 131, and the second assembly frame 12 is spliced ​​with the side edge of the second assembly slot 132. Alternatively, the main frame 13 can have two outer side walls arranged opposite each other along the second direction B, with the first assembly frame 11 and the second assembly frame 12 respectively disposed on the corresponding outer side walls of the main frame 13.

[0093] This application also discloses a second method for adjusting the size of the first spacing L1, such as... Figure 12 As shown, at least one of the first assembly rack 11 and the second assembly rack 12 is slidably constrained to a corresponding position on the main frame 13 along the second direction B. Schematic, only the first assembly rack 11 slides along the second direction B; only the second assembly rack 12 slides along the second direction B; or both the first assembly rack 11 and the second assembly rack 12 slide along the second direction B.

[0094] Specifically, such as Figure 12 As shown, the main frame 13 has a first assembly slot 131 at the position corresponding to the first assembly frame 11, and a second assembly slot 132 at the position corresponding to the second assembly frame 12. The first assembly frame 11 can be slidably constrained on the first assembly slot 131 along the second direction B, and the second assembly frame 12 can be slidably constrained on the second assembly slot 132 along the second direction B.

[0095] There are several ways to achieve the constraint between the assembly frame and the main frame, including using snap-fit, connecting parts, or other methods.

[0096] In both of the above methods for adjusting the size of the first spacing L1, the assembly frame can adopt the following two design methods:

[0097] The first design form: such as Figure 13 As shown, each assembly area 10 corresponds to one first assembly rack 11 and one second assembly rack 12. There are multiple first assembly racks 11, arranged sequentially along the first direction A, and each first assembly rack 11 is independent of the others. Similarly, there are multiple second assembly racks 12, arranged sequentially along the first direction A, and each second assembly rack 12 is independent of the others. It can be understood that the assembly racks in different assembly areas are independent of each other, and the first spacing can be freely or continuously adjusted.

[0098] The second design form: such as Figures 10-12As shown, the first assembly rack 11 and the second assembly rack 12 both extend along the first direction A, the first part of each assembly area 10 is located on the first assembly rack 11, and the second part of each assembly area 10 is located on the second assembly rack 12.

[0099] The assembly rack in the first method of adjusting the size of the first spacing L1 described above is preferably of the second design form, and the assembly rack in the second method of adjusting the size of the first spacing L1 described above is preferably of the first design form.

[0100] This application also discloses a third method for adjusting the size of the first gap L1, in which two assembly parts in the assembly area 10 are arranged to move relative to each other in the second direction B. It should be noted that "relative movement of two parts" includes the case where only one part moves or both parts move.

[0101] The following two examples illustrate this in detail.

[0102] Example 1: As Figure 16 As shown, the assembly area 10 includes two mounting areas 1011 arranged sequentially along the second direction B. Each assembly part corresponds to one mounting area 1011. At least two mounting holes 1012 are provided on each mounting area 1011, spaced apart along the second direction B. The assembly part can be selectively inserted into the corresponding mounting hole 1012 of the corresponding mounting area 1011. Thus, by installing the assembly part in mounting holes 1012 at different positions, the first distance L1 dimension can be adjusted, thereby adapting to wrenches 2 of different lengths.

[0103] Example 2: As Figure 17 As shown, the assembly area 10 includes two mounting areas 1011 arranged sequentially along the second direction B. Each assembly part corresponds to one mounting area 1011. An adjustment groove 1013 extending along the second direction B is provided on the mounting area 1011, allowing the assembly part to be slidably constrained onto the adjustment groove 1013 along the second direction B. Thus, by sliding the assembly part along the second direction B, the position of the assembly part is adjusted to achieve the purpose of adjusting the first gap L1 dimension, thereby adapting to wrenches 2 of different lengths.

[0104] It should be noted that the two mounting areas 1011 of the assembly area 10 are integrally formed or detachably connected separately. The two mounting areas 1011 are the first part and the second part described above, and the mounting area 1011 is a part of the inclined surface 101 described above.

[0105] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0106] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the scope of protection of this application. Therefore, the patent protection scope of this application should be determined by the appended claims.

Claims

1. A wrench storage device characterized by comprising: The rack body has a plurality of assembly areas arranged along a first direction of the rack body, each assembly area is provided with two assembly portions arranged at intervals along a second direction of the rack body, the second direction is the length direction of the wrench, the first direction and the second direction are at an angle, the interval between the two assembly portions of the assembly area is defined as a first interval, and the first intervals of at least two assembly areas are different.

2. The wrench storage device of claim 1, wherein The first intervals of the assembly areas are different.

3. The wrench storage device of claim 1, wherein The rack body is provided with a movable rack extending along the first direction, at least part of the movable rack is located between the two assembly portions of the assembly area, the movable rack is provided with at least one limiting portion at a position corresponding to each assembly area, the movable rack is arranged to move relative to the rack body along the first direction, so that the limiting portion has a first position for limiting the wrench from leaving the rack body and a second position for releasing the limitation on the wrench, when the limiting portion is in the first position, the wrench is located in a space enclosed by the limiting portion and the assembly portion, and when the limiting portion is in the second position, the limiting portion is located on one side of the wrench in the width direction.

4. The wrench storage device of claim 3, wherein When the first direction is a vertical direction, when the limiting portion is in the second position, the limiting portion is located above the wrench, and when the movable rack is in a downward movement position, the limiting portion is switched from the second position to the first position.

5. The wrench storage device of claim 3, wherein The limiting portion includes an inclined section and an extension section, the extension section is arranged on a front wall surface of the movable rack and extends forward, a movement direction of the movable rack from the second position of the limiting portion to the first position of the limiting portion is defined as a third direction, the third direction is the positive direction or the reverse direction of the first direction, and the inclined section gradually inclines forward along the third direction from the front end of the extension section.

6. The wrench storage device of claim 3, wherein The rack body is provided with a recess formed in the plate surface of the assembly area, and the movable rack is installed in the recess.

7. The wrench storage device of claim 3, wherein The wrench storage device further includes a limiting structure for restraining the movable rack and the rack body together when the limiting portion is in the first position, and the limiting structure is arranged between the rack body and the movable rack.

8. The wrench storage device of claim 7, wherein The limiting structure includes a first clamping portion arranged on the rack body and a second clamping portion arranged on the movable rack, and the first clamping portion and the second clamping portion are clamped together when the limiting portion is in the first position.

9. The wrench storage device of claim 8, wherein, The first clamping portion is a first elastic buckle, the second clamping portion is arranged on the back surface of the movable rack away from the limiting portion, and the second clamping portion is a first clamping groove or a first protrusion extending backward; or the first clamping portion is arranged on the plate surface of the rack body facing the movable rack, and the first clamping portion is a second clamping groove or a second protrusion extending forward, and the second clamping portion is a second elastic buckle.

10. The wrench storage device of claim 3, wherein The wrench storage device further comprises a guide structure, the guide structure comprises a guide groove and a guide part in a guide fit, the guide groove extends along the first direction, one of the guide part and the guide groove is arranged on the movable frame, and the other of the guide part and the guide groove is arranged on the frame body.

11. The wrench storage device of claim 1, wherein The assembly part is a positioning column or a positioning pin in a plug fit with a wrench hole of the wrench.

12. The wrench storage device of claim 1, wherein The assembly region comprises an inclined surface, the assembly part is arranged on the inclined surface and is in an inclined state, when the first direction is a vertical direction and a plate surface of the assembly region arranged on the frame body is a front plate surface, the inclined surface gradually inclines forward from top to bottom, and the assembly part gradually inclines forward from bottom to top.

13. The wrench storage device of claim 12, wherein, The two side walls of the frame body arranged along the second direction are inclined walls, when the first direction is a vertical direction, the two inclined walls gradually incline away from each other from top to bottom.

14. The wrench storage device of claim 1, wherein, The frame body is provided with a handle, when the first direction is a vertical direction, the handle is located at the top of the frame body.

15. The wrench storage device of claim 14, wherein, The frame body is provided with a containing groove containing the handle on the back surface away from the assembly region, the handle has an extended state of partially extending out of the frame body and a contained state of being contained in the containing groove.

16. The wrench storage device of claim 15, wherein, The handle is slidably constrained on a groove plate of the containing groove along the first direction, so that the handle moves to the extended state away from the containing groove, or moves to the contained state towards the containing groove.

17. The wrench storage device of claim 16, wherein, Two wall plates of the handle relatively arranged along the second direction are matched with corresponding groove plates of the containing groove, and a sliding part and a sliding groove in a sliding fit are arranged therebetween, the sliding groove extends along the first direction, one of the sliding groove and the sliding part is arranged on the wall plate of the handle, and the other of the sliding groove and the sliding part is arranged on the groove plate.

18. The wrench storage device of any one of claims 1-17, wherein, The size of at least one of the first intervals is adjustable.

19. The wrench storage device of claim 18, wherein, The frame body comprises a first assembly frame, a main body frame and a second assembly frame arranged along the second direction in sequence, the main body frame extends along the first direction, and at least part of the main body frame is located between the first assembly frame and the second assembly frame, two assembly parts of the assembly region are defined as a first assembly part and a second assembly part, a part of the assembly region provided with the first assembly part is defined as a first part, and a part of the assembly region provided with the second assembly part is defined as a second part, the first part of the assembly region is located on the first assembly frame, and the second part of the assembly region is located on the second assembly frame.

20. The wrench storage device of claim 19, wherein, At least one of the first assembly frame and the second assembly frame is detachably mounted on a corresponding side of the main body frame, a side of the main body frame and the assembly frame in a detachable connection is used for adapting different assembly frames, the assembly frame in a detachable connection with the main body frame is defined as a detachable frame, the detachable frame is spliced with the main body frame, a splicing position of the splicing is defined as a splicing position, and a distance along the second direction between the splicing position and the assembly part on the same side is defined as a second distance, and the second distances on different assembly frames are different.

21. The wrench storage device of claim 20, wherein, The first assembly frame and the second assembly frame are detachably mounted on the corresponding side of the main frame, one side of the main frame is used for adapting different first assembly frames, and the other side of the main frame is used for adapting different second assembly frames.

22. The wrench storage device of claim 19, wherein, At least one of the first assembly frame and the second assembly frame is slidably constrained at the corresponding position of the main frame along the second direction.

23. The wrench storage device of claim 19, wherein, The first assembly frame and the second assembly frame are both extended along the first direction, the first part of each assembly area is located on the first assembly frame, and the second part of each assembly area is located on the second assembly frame; or each assembly area corresponds to one first assembly frame and one second assembly frame.

24. The wrench storage device of claim 18, wherein, Two assembly parts in the assembly area are arranged to be relatively movable in the second direction.

25. The wrench storage device of claim 24, wherein, The assembly area comprises two mounting areas arranged in sequence along the second direction, each assembly part corresponds to one mounting area, at least two assembly holes are arranged on the mounting area along the second direction, and the assembly part is selectively inserted into the corresponding assembly hole of the corresponding mounting area.

26. The wrench storage device of claim 25, wherein, The assembly area comprises two mounting areas arranged in sequence along the second direction, each assembly part corresponds to one mounting area, an adjusting groove is arranged on the mounting area along the second direction, and the assembly part is slidably constrained on the adjusting groove along the second direction.