Tool box

Through the sliding connection between the tool box cover and the box body and the limit structure design, the box body can be erected at a certain angle, solving the problem of users having difficulty observing and accessing tools, and realizing convenient tool display and placement.

CN223354237UActive Publication Date: 2025-09-19YANTAI GREENERY TOOLS CO LTD
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Patent Information

Application Number
CN202422819241.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-09-19
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

When the tool box is placed flat on the table, it is difficult for users to quickly and clearly observe the tools inside, resulting in inconvenience in access.

Method used

The cover of the tool box is slidably connected to the box body. After sliding to the sliding end, it flips to the limit of the limit structure. The box body is erected at a certain angle. The cover is placed on the workbench, and the box body is erected at a certain angle relative to the cover, which is convenient for users to observe and take and put tools.

Benefits of technology

The user's observation clarity of the tools in the tool box and the convenience of taking and placing are improved, thereby improving the user experience.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223354237U_ABST
    Figure CN223354237U_ABST
Patent Text Reader

Abstract

The utility model provides a tool box. The tool box comprises a box body, a cover body and a limiting structure. The cover body is in sliding connection with the box body, and the cover body can rotate relative to the box body at least at the sliding tail end of the cover body; when the tool box is in a closed state, the box body is covered with the cover body; when the tool box is in an open use state, the cover body slides to the sliding tail end and is overturned to the position where the limiting structure limits the box body and the cover body, so that the box body is erected at a certain angle relative to the cover body. According to the tool box, all tools in the box body can be better displayed, and a user can conveniently and clearly observe all the tools placed in the box body, so that the user can more conveniently take and place all the tools.
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Description

Technical Field

[0001] The embodiments of the present application relate to the technical field of tool storage containers, and in particular to a tool box. Background Art

[0002] Tool boxes are containers for storing and carrying various tools and are commonly used in a variety of situations, including home repairs, gardening, car maintenance, appliance repairs, and electronic product repairs.

[0003] In the related art, a tool box usually includes a first box body and a second box body, the first box body and the second box body are pivotally connected, and both the first box body and the second box body are provided with placement positions for placing tools. When the tool box is used, the user opens the first box body and the second box body, and then places the first box body and the second box body flat on the table.

[0004] However, when the tool box is placed flat on a table, it is difficult for the user to quickly and clearly observe the various tools in the tool box, making it inconvenient for the user to access the tools. Utility Model Content

[0005] The embodiment of the present application provides a tool box to solve the technical problem that when the tool box is placed flat on a table, it is difficult for the user to quickly and clearly observe the various tools in the tool box, making it inconvenient for the user to access the tools.

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

[0007] The embodiment of the present application provides a tool box, which includes a box body, a cover body and a limiting structure;

[0008] The cover is slidably connected to the box body, and at least at a sliding end of the cover, the cover is capable of rotating relative to the box body;

[0009] When the tool box is in a closed state, the cover covers the box body;

[0010] When the tool box is in an open state for use, the cover slides to a sliding end and flips over to a position where the limiting structure restricts the box body and the cover body, so that the box body stands upright at a certain angle relative to the cover body.

[0011] The beneficial effects of the embodiments of the present application: the lid and the box body of the tool box provided in the embodiments of the present application are slidably connected. When the tool box is opened, the lid slides to the sliding end relative to the box body with the box body as a reference, and then flips to the position where the limiting structure limits the box body and the lid. At this time, the box body is erected at a certain angle relative to the lid body. When the tool box is placed on the workbench, the lid is placed on the workbench, and the box body is erected at a certain angle relative to the lid body. At this time, the box body is in an upright state facing the user. Compared with the box body placed flat on the table, the user can more easily observe the various tools placed in the box body, that is, it is more conducive to the display of the various tools in the box body, and it is more conducive to taking and placing the various tools, so that the user can take and place the various tools more conveniently, improve the user experience, and improve the function of the tool box.

[0012] In a possible embodiment, both sides of the tool box in the first direction are provided with a sliding fitting mechanism;

[0013] The sliding fitting mechanism includes a first sliding portion and a second sliding portion, wherein the first sliding portion is provided on the box body, and the second sliding portion is provided on the cover body, and the first sliding portion and the second sliding portion are slidably connected.

[0014] In a possible embodiment, the first sliding portion is a guide plate provided on the cover body, and the guide plate is provided with a guide slot;

[0015] The second sliding portion is a sliding member provided on the box body, and the sliding member extends into the guide slot and can slide in the guide slot.

[0016] In a possible embodiment, the guide slot has a first end and a second end in its extension direction, and the second end is a sliding end of the cover body;

[0017] The limiting structure includes a first limiting structure and a second limiting structure, wherein the first limiting structure is an edge of the second end of the guide slot, and the second limiting structure is a first extension portion of the guide plate extending from the area near the first end toward a side away from the cover body;

[0018] When the tool box is in an open state for use, the first limiting structure abuts against the sliding member, and the second limiting structure abuts against the box body.

[0019] In a possible embodiment, the box body is provided with a communicating clearance opening and a clearance groove;

[0020] The sliding member is arranged on the side wall of the clearance opening;

[0021] When the tool box is in a closed state, the guide plate is located in the give way opening and the give way groove; when the tool box is in an open and usable state, the guide plate is pulled out from the give way opening and the give way groove until the first limiting structure abuts against the sliding member, and the cover body is flipped over until the second limiting structure abuts against the outer side surface of the bottom wall of the give way groove.

[0022] In a possible embodiment, the box body includes an outer shell and an inner liner, the inner liner is installed in the outer shell, and the inner liner is provided with a tool placement position for placing tools;

[0023] The evacuation opening and the evacuation groove are formed between the outer shell and the inner lining;

[0024] The sliding member is arranged on the lining.

[0025] In a possible embodiment, the guide plate extends along the extension direction of the guide slot in a direction away from the second end of the guide slot to form a second extension portion;

[0026] The inner lining is sunk into the outer shell;

[0027] When the tool box is in a closed state, the second extension portion extends into the outer shell.

[0028] In a possible implementation manner, the second extension portion is provided with a first clamping portion;

[0029] A second clamping portion is provided on a side wall of the outer shell opposite to the second extension portion;

[0030] When the tool box is in a closed state, the first clamping portion and the second clamping portion are clamped.

[0031] In a possible implementation, the tool box further includes a first locking structure, and when the tool box is in a closed state, the first locking structure locks the box body and the cover body together.

[0032] In a possible embodiment, at least one of the two opposite side walls of the guide slot near the first end is provided with a latching protrusion protruding into the guide slot, the latching protrusion being the first locking structure, and the latching protrusion preventing the sliding member from sliding through;

[0033] The guide slot portion between the latching protrusion and the end portion of the first end of the guide slot is a locking space, and the locking space accommodates the sliding member;

[0034] When the locking protrusion contacts the sliding member, the box body and / or the cover body are pushed with force, and the sliding member slides over the locking protrusion and slides into the locking space.

[0035] In a possible embodiment, a tool placement position for placing tools is provided in the box body;

[0036] When the tool box is in an open state for use, an angle between a surface of the box body where the tool placement position is provided and the cover body is 90°-150°.

[0037] In a possible embodiment, the box body includes an outer shell and an inner lining, the inner lining is installed in the outer shell, the tool placement position is set in the inner lining, and the tool placement position includes a plurality of bit placement positions;

[0038] The outer shell has an opening and a first shell wall, wherein the first shell wall is opposite to the opening;

[0039] An accommodating space is defined between a surface of the liner facing the first shell wall and the first shell wall;

[0040] The bit placement position includes a long mounting hole arranged on the lining and a clamping structure arranged on the edge of the long mounting hole; the bit placement position is configured so that when the bit is stored, the tail end of the bit is inserted into the third end of the long mounting hole and extends into the accommodating space, and the bit is rotated toward the fourth end of the long mounting hole until the clamping structure clamps the bit, and the tail end of the bit is against the edge of the third end of the long mounting hole. The third end and the fourth end of the long mounting hole are the two ends of the long mounting hole in the extension direction.

[0041] In a possible implementation, the elongated mounting hole extends in a direction in which the box body stands upright relative to the cover body.

[0042] In a possible embodiment, the clamping structure includes two clamping blocks, which are arranged opposite to each other, one of the clamping blocks is arranged on a first side of the elongated mounting hole, and the other clamping block is arranged on a second side of the elongated mounting hole;

[0043] The two clamping blocks are both provided with a clamping protrusion, the two clamping protrusions are arranged opposite to each other, and a first shrinkage space is formed between the two clamping protrusions, and the bit is clamped between the two clamping protrusions in an interference fit manner.

[0044] In a possible embodiment, the bit placement position also includes a limit plate for limiting excessive insertion of the tail end of the bit, and the limit plate is arranged on the side of the lining facing the first shell wall, and is arranged on the side of the elongated mounting hole away from the fourth end, and there is a clearance distance between the limit plate and the edge of the third end of the elongated mounting hole.

[0045] In a possible embodiment, the bit placement position further includes two limit blocks, which are arranged opposite to each other, one of the limit blocks is arranged on the first side of the long strip mounting hole, and the other limit block is arranged on the second side of the long strip mounting hole;

[0046] Both of the limit blocks are provided with a limit protrusion, the two limit protrusions are arranged opposite to each other, and the distance between the two limit protrusions is smaller than the radial dimension of the bit; when the bit is clamped at the clamping structure, the two limit protrusions abut against the bit and prevent the bit from continuing to rotate.

[0047] In a possible implementation, the first shell wall is provided with an identification layer, and the color of the identification layer is different from the color of the inner lining and the outer shell.

[0048] In a possible embodiment, the cover is provided with a magnetic sheet placement position, and a magnetic sheet is fixedly provided on the magnetic sheet placement position. The magnetic sheet is located on the front side of a side of the box body where the tool placement position is provided.

[0049] In a possible embodiment, one end of the cover in the sliding direction is folded to one side to form an arc-shaped curling edge, and an arc-shaped space is formed in the arc-shaped curling edge;

[0050] One end of the box body in the sliding direction of the cover body is a curved surface structure;

[0051] When the tool box is in a closed state, the curved surface structure moves into the arc-shaped space.

[0052] In addition to the technical problems solved by the present application, the technical features that constitute the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions described above, other technical problems that can be solved by the tool box provided by the present application, other technical features included in the technical solutions, and the beneficial effects brought about by these technical features will be further described in detail in the specific implementation methods. BRIEF DESCRIPTION OF THE DRAWINGS

[0053] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0054] Figure 1 This is a schematic diagram of the tool box in the closed state according to an embodiment of the present application;

[0055] Figure 2 This is a schematic diagram of the tool box in the embodiment of the present application in the open state;

[0056] Figure 3 A schematic diagram of a cover of a tool box according to an embodiment of the present application;

[0057] Figure 4 for Figure 3 Enlarged view of point A in the middle;

[0058] Figure 5 A schematic diagram of a tool box body according to an embodiment of the present application;

[0059] Figure 6 A schematic diagram of the outer shell of the tool box according to an embodiment of the present application;

[0060] Figure 7 This is a front view schematic diagram of the inner lining of the tool box according to an embodiment of the present application;

[0061] Figure 8 This is a schematic rear view of the inner lining of the tool box according to an embodiment of the present application;

[0062] Figure 9 for Figure 8 Enlarged view of point B in the middle.

[0063] Description of reference numerals:

[0064] 100, box body;

[0065] 110, clearance opening; 120, clearance groove; 130, outer shell; 140, inner lining; 150, tool placement; 160, bit placement;

[0066] 131. First shell wall; 132. Identification layer; 133. Second clamping portion;

[0067] 141, sliding parts;

[0068] 161. Long mounting hole; 162. Clamping structure; 163. Limiting plate; 164. Limiting block; 165. Limiting cam;

[0069] 1611, third end; 1612, fourth end;

[0070] 1621, clamping block; 1622, clamping convex;

[0071] 200, cover;

[0072] 210, magnetic sheet; 220, arc-shaped curling edge; 230, arc-shaped space;

[0073] 300, guide plate;

[0074] 310, guide chute; 320, first extension; 330, second extension;

[0075] 311, first end; 312, second end; 313, latching protrusion; 314, locking space;

[0076] 331, first clamping portion;

[0077] 400. Screwdriver bit.

[0078] The above drawings illustrate specific embodiments of the present application, which will be described in more detail below. These drawings and the textual description are not intended to limit the scope of the present application in any way, but rather to illustrate the concepts of the present application to those skilled in the art by reference to specific embodiments. DETAILED DESCRIPTION

[0079] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0080] like Figure 1 and Figure 2 As shown, the tool box provided in this embodiment includes a box body 100, a cover 200, and a limiting structure. The cover 200 is slidably connected to the box body 100, and at least at the sliding end of the cover 200, the cover 200 can rotate relative to the box body 100. In other words, the cover 200 and the box body 100 are slidably connected, and the cover 200 can rotate relative to the box body 100 at least at the sliding end where it slides relative to the box body 100. The cover 200 can rotate relative to the box body 100 at the sliding end, and at other sliding positions, the cover 200 can rotate relative to the box body 100 or not. It is sufficient that the cover 200 can rotate relative to the box body 100 at the sliding end.

[0081] The tool box has a closed state and an open state. When the tool box is in the closed state, the cover 200 covers the box body 100. When the tool box is in the open state, the cover 200 slides to the end of the slide and flips to a position where the limiting structure restricts the box body 100 and the cover 200, so that the box body 100 stands upright at a certain angle relative to the cover 200. In other words, when the tool box is in the open state, the box body 100 stands upright at a certain angle relative to the cover 200. When the cover 200 is placed on a workbench, the box body 100 is in an upright state facing the user. Compared with the box body 100 placed flat on the table in the related art, the user can more clearly observe the various tools placed in the box body 100, that is, it is more convenient to display the various tools in the box body 100 and to facilitate the removal and placement of the various tools, allowing the user to more conveniently remove and place the various tools, thereby improving the user experience and the function of the tool box.

[0082] It should be noted that, in the present application, the movement of the cover 200 and the box body 100 is relative, that is, the cover 200 can slide relative to the box body 100, and similarly, the box body 100 can also slide relative to the cover 200. When opening the tool box, the user can push the cover 200 to slide and flip the cover 200 to open the tool box, or push the box body 100 to slide and flip the box body 100 to open the tool box. The above-mentioned cover 200 slides to the sliding end and flips to the position where the limit structure limits the box body 100 and the cover 200 is based on the box body 100 as a reference, and the cover 200 moves and flips relative to the box body 100. In addition, the above-mentioned cover body 200 slides to the sliding end and flips to the position where the limiting structure restricts the box body 100 and the cover body 200. There is no distinction between the order of these two processes. In the present application, the cover body 200 can slide to the sliding end and then flip to the position where the limiting structure restricts the box body 100 and the cover body 200. The cover body 200 can also first slide to any position where the cover body 200 can be flipped relative to the box body 100, first flip the cover body 200, and then slide to the sliding end.

[0083] In some embodiments of the present application, the tool box is in a first direction (eg, Figure 2 A sliding fitting mechanism is provided on both sides of the box body 100 (in the X direction), and the sliding fitting mechanism includes a first sliding portion and a second sliding portion. The first sliding portion is provided on the box body 100, and the second sliding portion is provided on the cover body 200. The first sliding portion and the second sliding portion are slidably connected.

[0084] For example, Figure 3 、 Figure 4 and Figure 5 As shown, the first sliding portion is a guide plate 300 disposed on the cover body 200, and a guide groove 310 is disposed on the guide plate 300. The second sliding portion is a sliding member 141 disposed on the box body 100. The sliding member 141 extends into the guide groove 310 and is capable of sliding within the guide groove 310. Exemplarily, the sliding member 141 is a sliding column. In this embodiment, the sliding member 141 can slide within the guide groove 310, that is, push the box body 100 so that the box body 100 slides relative to the cover body 200. In addition, the sliding member 141 can also limit the sliding direction of the cover body 200, that is, push the cover body 200 so that the cover body 200 slides along the length of the guide groove 310.

[0085] like Figure 3As shown, the guide slot 310 has a first end 311 and a second end 312 along its extension direction. The second end 312 serves as the sliding end of the cover 200. The limiting structure includes a first limiting structure and a second limiting structure. The first limiting structure is the edge of the second end 312 of the guide slot 310, and the second limiting structure is a first extension 320 extending from the area of ​​the guide plate 300 near the first end 311 toward the side facing away from the cover 200. When the tool box is opened for use, the first limiting structure abuts against the sliding member 141, and the second limiting structure abuts against the box body 100. That is, when the tool box is in the open state, the first limiting mechanism limits the position of the sliding member 141, preventing the sliding member 141 from continuing to move in the direction away from the first end 311, and the second limiting structure prevents the box body 100 from continuing to flip downward. The first limiting structure and the second limiting structure cooperate to limit the position of the box body 100, so that the positions of the box body 100 and the cover body 200 remain unchanged, so that the box body 100 is erected at a certain angle relative to the cover body 200. For example, the box body 100 is set to the tool placement position 15 The angle between the side of the tool box 100 provided with the tool placement position 150 and the cover 200 is 90°-150°, that is, the angle between the side of the box body 100 provided with the tool placement position 150 and the cover 200 located in front of the side of the box body 100 provided with the tool placement position 150 is 90°-150°, that is, the side of the box body 100 provided with the tool placement position 150 is tilted backward relative to the cover 200, so that when the user looks at the side of the tool placement position 150, the user's side is the front, thereby allowing the user to clearly observe the various tools in the tool box at a glance. The tool box is provided with two limiting structures to limit the front and back of the tool box, so that the tool box can neither slide forward nor flip backward, so that the position of the box body 100 is limited to a state of being upright at a certain angle relative to the cover 200.

[0086] like Figure 5 As shown, the box body 100 is provided with a communicating clearance opening 110 and a clearance groove 120, and a sliding member 141 is provided on the side wall of the clearance opening 110. When the tool box is in a closed state, the guide plate 300 is located in the clearance opening 110 and the clearance groove 120. When the tool box is opened for use, the guide plate 300 is withdrawn from the clearance opening 110 and the clearance groove 120 until the first limiting structure abuts against the sliding member 141, and the cover body 200 flips over so that the second limiting structure abuts against the outer side of the bottom wall of the clearance groove 120. In other words, when the tool box is in a closed state, the clearance groove 120 gives way to the guide plate 300, and the clearance opening 110 gives way to the guide plate 300 and the first extension 320. When the tool box is opened for use, the clearance opening 110 gives way to the guide plate 300, allowing the cover body 200 to flip over so that the second limiting structure abuts against the outer side of the bottom wall of the clearance groove 120. The second limiting structure is arranged in the area of ​​the guide plate 300 close to the first end 311. This arrangement enables the box body 100 to be tilted backward when opened for use, making it easier for the user to observe and take tools.

[0087] It is worth noting that the bottom wall of the give way groove 120 refers to the wall opposite to the opening of the give way groove 120, and the outer side surface of the bottom wall of the give way groove 120 refers to the side of the box body 100 part that forms the bottom wall of the give way groove 120 facing away from the give way groove 120.

[0088] In an embodiment, the box body 100 can be an integrated structure, and a tool placement position 150 is set in the box body 100. The box body 100 can also include an outer shell 130 and an inner lining 140. The inner lining 140 is installed in the outer shell 130, and the tool placement position 150 is set in the inner lining 140. The way the box body 100 is provided with the inner lining 140 enables the same box body 100 to install different memories, so that the tool box can store different types of tools.

[0089] In an embodiment, Figure 4 、 Figure 5 and Figure 6 As shown, the box body 100 includes an outer shell 130 and an inner lining 140. The inner lining 140 is provided with a tool placement 150 for placing tools. For example, the tool placement 150 may include but is not limited to a bit placement 160, a screwdriver handle placement position, a pry bar placement position, a tweezers placement position, etc. A clearance opening 110 and a clearance groove 120 are formed between the outer shell 130 and the inner lining 140, and a sliding member 141 is provided on the inner lining 140. That is, an opening is provided on the outer shell 130 corresponding to the clearance opening 110. When the liner 140 is installed on the outer shell 130, the sidewalls of the liner 140 and the sidewalls of the outer shell 130 are opposite to form the clearance opening 110 and the clearance groove 120 at the location where the box body 100 forms the clearance opening 110 and the clearance groove 120. That is, after the liner 140 is installed on the outer shell 130, the liner 140 and the outer shell 130 cooperate to form the clearance opening 110 and the clearance groove 120. This arrangement reduces the difficulty and cost of manufacturing the box body 100. In addition, the sliding member 141 is provided on the liner 140, that is, the sliding member 141 is provided on the sidewall of the clearance opening 110 away from the edge of the box body 100. This arrangement makes the structure of the box body 100 more stable, reduces the possibility of the sliding member 141 breaking during the sliding process, and increases the service life of the tool box.

[0090] In order to reduce the shaking of the cover 200 during the sliding process and to reduce the occurrence of the sliding member 141 being stuck in the guide slot 310, in some embodiments of the present application, such as Figure 3As shown, the guide plate 300 extends along the extension direction of the guide slot 310 in the direction away from the second end 312 of the guide slot 310, forming a second extension portion 330, and the lining 140 is sunk into the outer shell 130. When the tool box is in the closed state, the second extension portion 330 extends into the outer shell 130. When the tool box is turned from the open use state to the closed state, the cover 200 is first turned to face the side of the lining 140 where the tool placement position 150 is set. At this time, the second extension portion 330 extends into the outer shell 130, and the second extension portion 330 limits the position of the cover 200, reducing the cover 200 in the first direction ( Figure 2 The shaking in the X direction (in the X direction) enables the cover body 200 to slide smoothly along the direction in which the guide slot 310 extends to cover the box body 100.

[0091] For example, Figure 3 As shown, to prevent the tool box from being opened accidentally when closed, the second extension 330 is provided with a first engaging portion 331, and the side wall of the outer shell 130 opposite the second extension 330 is provided with a second engaging portion 133. When the tool box is closed, the first engaging portion 331 and the second engaging portion 133 engage, thereby locking the cover 200 and the box body 100 together, preventing the tool box from being opened accidentally when closed. For example, the first engaging portion 331 is a slot, and the second engaging portion 133 is a protrusion that cooperates with the slot.

[0092] In some embodiments of the present application, the tool box further includes a first locking structure that locks the box body 100 and the cover 200 together when the tool box is in the closed state. The first locking structure cooperates with the first engaging portion 331 and the second engaging portion 133 to lock the tool box more securely in the closed state and prevent it from sliding open easily, thereby preventing the tool box from opening on its own when placed in a tool bag for transportation.

[0093] For example, Figure 3 and Figure 4As shown, at least one of the two opposing sidewalls of the guide slot 310 near the first end 311 is provided with a latching protrusion 313 that protrudes into the guide slot 310. This latching protrusion 313 serves as a first locking structure, preventing the sliding member 141 from sliding through. The portion of the guide slot 310 between the latching protrusion 313 and the end of the first end 311 of the guide slot 310 forms a locking space 314, which accommodates the sliding member 141. When the latching protrusion 313 abuts the sliding member 141, the case body 100 and / or cover 200 is pushed forcefully, causing the sliding member 141 to slide past the latching protrusion 313 and into the locking space 314. That is, when a latching protrusion 313 is provided on one sidewall of the guide slot 310, a contraction space is formed between the latching protrusion 313 and the sidewall of the guide slot 310 not provided with the latching protrusion 313. The slider 141 slides through the contraction space and into the locking space 314 due to the deformation of the sidewall of the guide slot 310. When the slider 141 is not subjected to external force, the slider 141 is blocked by the latching protrusion 313 and its position is restricted within the locking space 314. Similarly, when latching protrusions 313 are provided on both opposing sidewalls of the guide slot 310, a contraction space is formed between the two latching protrusions 313. The two latching protrusions 313 restrict the position of the slider 141, so that when the slider 141 is not subjected to external force, the slider 141 is blocked by the latching protrusion 313 and its position is restricted within the locking space 314. That is to say, in the embodiment of the present application, the front side of the tool box in the extension direction of the guide slot 310 is engaged with the first engaging portion 331 and the second engaging portion 133, and the rear side of the tool box in the extension direction of the guide slot 310 is limited by the engaging protrusion 313 to limit the position of the sliding member 141, so that the tool box can be locked more firmly in the closed state and will not be easily slid open, so that the tool box will not open by itself during the transportation process when it is placed in the tool bag.

[0094] In some embodiments of the present application, Figure 2 As shown, a tool placement position 150 for placing tools is provided in the box body 100. When the tool box is in an open state for use, the angle between the side of the box body 100 on which the tool placement position 150 is provided and the cover body 200 is 90°-150°. For example, the angle between the side of the box body 100 on which the tool placement position 150 is provided and the cover body 200 is 90°, 100°, 110°, 120°, 135°, or 150°, etc. The angle between the side of the box body 100 on which the tool placement position 150 is provided and the cover body 200 refers to the angle between the side of the box body 100 on which the tool placement position 150 is provided and the cover body 200 located in front of the side of the box body 100 on which the tool placement position 150 is provided. This arrangement allows the side of the box body 100 where the tool placement position 150 is set to tilt backward relative to the cover body 200, so that when the user looks at the side of the tool placement position 150, the user's side is the front, so that the user can clearly observe the various tools in the tool box.

[0095] In some embodiments of the present application, Figure 2 、 Figure 5 and Figure 7 As shown, the tool placement position 150 includes a plurality of bit placement positions 160 for storing the bit 400. The outer shell 130 has an opening and a first shell wall 131, the first shell wall 131 is opposite to the opening, and an accommodating space is formed between the surface of the liner 140 facing the first shell wall 131 and the first shell wall 131. The bit placement position 160 includes an elongated mounting hole 161 provided on the inner lining 140 and a clamping structure 162 provided at the edge of the elongated mounting hole 161. The bit placement position 160 is configured such that, when the bit 400 is stored, the tail end of the bit 400 is inserted into the third end 1611 of the elongated mounting hole 161 and extends into the accommodating space. The bit 400 is then rotated toward the fourth end 1612 of the elongated mounting hole 161 until the clamping structure 162 clamps the bit 400 and the tail end of the bit 400 abuts against the edge of the third end 1611 of the elongated mounting hole 161. The third end 1611 and the fourth end 1612 of the elongated mounting hole 161 are the two ends of the elongated mounting hole 161 in the extension direction. In other words, the edge of the third end 1611 of the elongated mounting hole 161 restricts the position of the tail end of the bit 400, preventing it from rotating excessively.

[0096] In this embodiment, the head shape of the screwdriver bit 400 is a straight-line, cross-shaped, Pozi, star-shaped, square head, hexagonal head, Y-shaped, etc., and the tail of the screwdriver bit 400 is usually a hexagonal head. Of course, the screwdriver bit 400 can also have both ends in the straight-line, cross-shaped, Pozi, star-shaped, square head, hexagonal head, Y-shaped, etc. When the head shape of the screwdriver bit 400 is a straight-line, cross-shaped, Pozi, star-shaped, square head, hexagonal head, Y-shaped, etc., the tail of the screwdriver bit 400 is inserted into the third end 1611 of the long strip mounting hole 161 so that the head of the screwdriver bit 400 is exposed for user identification. When both ends of the screwdriver bit 400 are a straight-line, cross-shaped, Pozi, star-shaped, square head, hexagonal head, Y-shaped, etc., either end of the screwdriver bit 400 can be inserted into the third end 1611 of the long strip mounting hole 161. In this embodiment, Figure 2 The head of the screwdriver bit 400 exposed to the outside is not shown in its specific shape, such as a straight head, a cross head, a Pozidrivium head, a star head, a square head, a hexagonal head, a Y-shaped head, etc.

[0097] In some embodiments of the present application, the elongated mounting hole 161 extends in the direction in which the box body 100 stands upright relative to the cover body 200 . This arrangement makes it more convenient for users to access tools.

[0098] like Figure 7 、 Figure 8 and Figure 9As shown, the clamping structure 162 includes two clamping blocks 1621, and the two clamping blocks 1621 are arranged opposite to each other, wherein one clamping block 1621 is arranged on the first side of the elongated mounting hole 161, and the other clamping block 1621 is arranged on the second side of the elongated mounting hole 161, that is, the two clamping blocks 1621 are arranged on opposite sides of the elongated mounting hole 161, and the two clamping blocks 1621 are both provided with a clamping protrusion 1622, and the two clamping protrusions 1622 are arranged opposite to each other, and a first shrinkage space is formed between the two clamping protrusions 1622, and the bit 400 is clamped between the two clamping protrusions 1622 in an interference fit manner. That is to say, when the bit 400 is stored in the bit placement position 160, the two clamping protrusions 1622 clamp the bit 400, so that the position of the bit 400 is relatively fixed, and the tail end of the bit 400 is inserted into the third end 1611 of the long strip mounting hole 161 and extends into the accommodating space. The edge of the third end 1611 of the long strip mounting hole 161 defines the position of the bit 400 and cooperates with the two clamping protrusions 1622 to clamp the bit 400, so that the bit 400 can be stored more stably on the bit placement position 160. When the tool box falls, the bit 400 stored on the bit placement position 160 can be placed more stably on the bit placement position 160 and will not be easily dropped out.

[0099] In some embodiments of the present application, Figure 8 and Figure 9 As shown, the bit placement position 160 further includes a limit plate 163 that limits the tail end of the bit 400 from being over-inserted. The limit plate 163 is disposed on a surface of the liner 140 facing the first shell wall 131 and on a side of the elongated mounting hole 161 away from the fourth end 1612. A clearance distance d is provided between the limit plate 163 and the edge of the third end 1611 of the elongated mounting hole 161. The provision of the limit plate 163 prevents the bit 400 from being over-inserted into the third end 1611 of the elongated mounting hole 161, thereby preventing the bit 400 from being over-inserted. This would result in uneven insertion lengths of the bit 400, uneven exposed lengths of the bit 400, and uneven placement of the bit 400. Furthermore, it prevents some shorter bits 400 from being over-inserted and falling into the accommodating space.

[0100] In order to ensure that the inclination angle of the bit 400 is uniform when the bit 400 is installed in the bit placement position 160, in some embodiments of the present application, the bit placement position 160 further includes two limiting blocks 164. The two limiting blocks 164 are arranged opposite each other, one limiting block 164 is arranged on a first side of the elongated mounting hole 161, and the other limiting block 164 is arranged on a second side of the elongated mounting hole 161. Both limiting blocks 164 are provided with limiting protrusions 165. The two limiting protrusions 165 are arranged opposite each other, and the distance between the two limiting protrusions 165 is smaller than the radial dimension of the bit 400. When the bit 400 is clamped at the clamping structure 162, the two limiting protrusions 165 abut against the bit 400 and prevent the bit 400 from further rotation. That is to say, the two limiting protrusions 165 cooperate with the edge of the third end 1611 of the long strip mounting hole 161, so that the inclination angles of each bit 400 on each bit placement position 160 are the same, making the tool box more beautiful after the bit 400 is installed.

[0101] In some embodiments of the present application, Figure 6 As shown, the first shell wall 131 is provided with an identification layer 132, and the color of the identification layer 132 is different from the color of the lining 140 and the outer shell 130. The setting of the identification layer 132 allows the user to see at a glance which bit placement position 160 does not have a bit 400 placed in it. This setting enables the user to quickly check whether the bit 400 is lost after using the tool box, thereby reducing the possibility of losing the bit 400. In addition, it can also remind the user which bit placement position 160 is still vacant. The user can quickly put the bit 400 back after using the bit 400, saving the user the time of finding an empty bit placement position 160 to place the bit 400, thereby improving the user experience.

[0102] like Figure 2 and Figure 3 As shown, in order to increase the functionality of the tool box and rationally utilize the space of the tool box, the cover 200 is provided with a placement for a magnetic sheet 210. The magnetic sheet 210 is fixedly provided in the placement position of the magnetic sheet 210. The magnetic sheet 210 is located on the front side of the side of the box body 100 where the tool placement position 150 is provided. The magnetic sheet 210 can attract items such as screw bits 400 and screws. Users generally use screw bits 400 to remove and install screws. The magnetic sheet 210 provides the user with a temporary placement location for the screws and screw bits 400, preventing the screws and screw bits 400 from being misplaced during the user's work, resulting in the user being time-consuming to find the screws and screw bits 400 when using them, or causing the screws and screw bits 400 to be lost.

[0103] In some embodiments of the present application, Figure 3As shown, one end of the cover 200 in the sliding direction is folded to one side to form an arcuate curling edge 220, and an arcuate space 230 is formed within the arcuate curling edge 220. One end of the box body 100 in the sliding direction of the cover 200 is a curved surface structure. When the tool box is in the closed state, the curved surface structure moves into the arcuate space 230. The curved surface structure serves as a rotational avoidance for the cover 200. When the tool box is in the closed state, the curved surface structure moves into the arcuate space 230, thereby enhancing the aesthetics of the box body 100.

[0104] Those skilled in the art will readily appreciate other embodiments of the present invention after considering the specification and practicing the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present invention that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, and the true scope and spirit of the present application are indicated by the following claims.

[0105] It should be understood that the present application is not limited to the exact structure described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present application is limited only by the appended claims.

Claims

1. A tool box, characterized in that: It includes a box body, a cover body and a limiting structure; The cover is slidably connected to the box body, and at least at a sliding end of the cover, the cover is capable of rotating relative to the box body; When the tool box is in a closed state, the cover covers the box body; When the tool box is in an open state for use, the cover slides to a sliding end and flips over to a position where the limiting structure restricts the box body and the cover body, so that the box body stands upright at a certain angle relative to the cover body.

2. The tool box according to claim 1, characterized in that: The tool box is provided with a sliding fitting mechanism on both sides in the first direction; The sliding fitting mechanism includes a first sliding portion and a second sliding portion, wherein the first sliding portion is provided on the box body, and the second sliding portion is provided on the cover body, and the first sliding portion and the second sliding portion are slidably connected.

3. The tool box according to claim 2, characterized in that: The first sliding portion is a guide plate provided on the cover body, and the guide plate is provided with a guide slot; The second sliding portion is a sliding member provided on the box body, and the sliding member extends into the guide slot and can slide in the guide slot.

4. The tool box according to claim 3, characterized in that: The guide slot has a first end and a second end in its extending direction, and the second end is the sliding end of the cover body; The limiting structure includes a first limiting structure and a second limiting structure, wherein the first limiting structure is an edge of the second end of the guide slot, and the second limiting structure is a first extension portion of the guide plate extending from the area near the first end toward a side away from the cover body; When the tool box is in an open state for use, the first limiting structure abuts against the sliding member, and the second limiting structure abuts against the box body.

5. The tool box according to claim 4, characterized in that: The box body is provided with a communicating yielding opening and a yielding groove; The sliding member is arranged on the side wall of the clearance opening; When the tool box is in a closed state, the guide plate is located in the give way opening and the give way groove; when the tool box is in an open and usable state, the guide plate is pulled out from the give way opening and the give way groove until the first limiting structure abuts against the sliding member, and the cover body is flipped over until the second limiting structure abuts against the outer side surface of the bottom wall of the give way groove.

6. The tool box according to claim 5, characterized in that: The box body includes an outer shell and an inner lining, wherein the inner lining is installed in the outer shell and is provided with a tool placement position for placing tools; The evacuation opening and the evacuation groove are formed between the outer shell and the inner lining; The sliding member is arranged on the lining.

7. The tool box according to claim 6, characterized in that: The guide plate extends along the extension direction of the guide slot in a direction away from the second end of the guide slot to form a second extension portion; The inner lining is sunk into the outer shell; When the tool box is in a closed state, the second extension portion extends into the outer shell.

8. The tool box according to claim 7, characterized in that: The second extension portion is provided with a first clamping portion; A second clamping portion is provided on a side wall of the outer shell opposite to the second extension portion; When the tool box is in a closed state, the first clamping portion and the second clamping portion are clamped.

9. The tool box according to any one of claims 4 to 8, characterized in that: The tool box further comprises a first locking structure, which locks the box body and the cover body together when the tool box is in a closed state.

10. The tool box according to claim 9, characterized in that: At least one of the two opposite side walls of the guide slot near the first end is provided with a latch protrusion protruding into the guide slot, the latch protrusion being the first locking structure and preventing the sliding member from sliding through; The guide slot portion between the latching protrusion and the end portion of the first end of the guide slot is a locking space, and the locking space accommodates the sliding member; When the locking protrusion contacts the sliding member, the box body and / or the cover body are pushed with force, and the sliding member slides over the locking protrusion and slides into the locking space.

11. The tool box according to any one of claims 1 to 8, characterized in that: A tool placement position for placing tools is provided in the box body; When the tool box is in an open state for use, an angle between a surface of the box body where the tool placement position is provided and the cover body is 90°-150°.

12. The tool box according to claim 11, characterized in that The box body includes an outer shell and an inner lining, the inner lining is installed in the outer shell, the tool placement position is set in the inner lining, and the tool placement position includes a plurality of bit placement positions; The outer shell has an opening and a first shell wall, wherein the first shell wall is opposite to the opening; An accommodating space is defined between a surface of the liner facing the first shell wall and the first shell wall; The bit placement position includes a long mounting hole arranged on the lining and a clamping structure arranged on the edge of the long mounting hole; the bit placement position is configured so that when the bit is stored, the tail end of the bit is inserted into the third end of the long mounting hole and extends into the accommodating space, and the bit is rotated toward the fourth end of the long mounting hole until the clamping structure clamps the bit, and the tail end of the bit is against the edge of the third end of the long mounting hole. The third end and the fourth end of the long mounting hole are the two ends of the long mounting hole in the extension direction.

13. The tool box according to claim 12, characterized in that: The long mounting hole extends in a direction in which the box body stands upright relative to the cover body.

14. The tool box according to claim 12, characterized in that: The clamping structure includes two clamping blocks, which are arranged opposite to each other, one of which is arranged on the first side of the elongated mounting hole, and the other is arranged on the second side of the elongated mounting hole; The two clamping blocks are both provided with a clamping protrusion, the two clamping protrusions are arranged opposite to each other, and a first shrinkage space is formed between the two clamping protrusions, and the bit is clamped between the two clamping protrusions in an interference fit manner.

15. The tool box according to claim 12, characterized in that: The bit placement position also includes a limit plate for limiting excessive insertion of the tail end of the bit. The limit plate is arranged on the side of the liner facing the first shell wall and on the side of the elongated mounting hole away from the fourth end. There is a clearance distance between the limit plate and the edge of the third end of the elongated mounting hole.

16. The tool box according to claim 12, characterized in that: The bit placement position further includes two limit blocks, which are arranged opposite to each other, one of which is arranged on the first side of the long strip mounting hole, and the other limit block is arranged on the second side of the long strip mounting hole; Both of the limit blocks are provided with a limit protrusion, the two limit protrusions are arranged opposite to each other, and the distance between the two limit protrusions is smaller than the radial dimension of the bit; when the bit is clamped at the clamping structure, the two limit protrusions abut against the bit and prevent the bit from continuing to rotate.

17. The tool box according to claim 12, characterized in that The first shell wall is provided with an identification layer, and the color of the identification layer is different from the color of the inner lining and the outer shell.

18. The tool box according to claim 11, characterized in that The cover body is provided with a magnetic piece placement position, and the magnetic piece is fixedly provided on the magnetic piece placement position. The magnetic piece is located on the front side of a side of the box body where the tool placement position is provided.

19. The tool box according to any one of claims 1 to 8, characterized in that: One end of the cover in the sliding direction is folded to one side to form an arc-shaped curling edge, and an arc-shaped space is formed in the arc-shaped curling edge; One end of the box body in the sliding direction of the cover body is a curved surface structure; When the tool box is in a closed state, the curved surface structure moves into the arc-shaped space.