Electronic cutting machine and tool storage box

By designing a detachable external tool storage box, the problem of limited space in the built-in storage structure of the electronic cutting machine is solved, enabling flexible adjustment and functional expansion, and improving ease of use and safety.

WO2025252234A1PCT designated stage Publication Date: 2025-12-11HUNAN SIJIU TECH CO LTD
View PDF 9 Cites 0 Cited by

Patent Information

Application Number
PCT/CN2025/099735
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-06-27
Filing Date
2025-06-06
Publication Date
2025-12-11

AI Technical Summary

Technical Problem

Existing electronic cutting machines have built-in tool storage structures, which are small, have poor functional expandability, and occupy space in the main unit.

Method used

The tool storage structure of the electronic cutting machine is designed as a detachable external structure, which can be detachably connected to the main unit through an attachment structure. It is fixed by magnetic materials or snap-fit ​​methods to ensure stability and flexibility.

Benefits of technology

The tool storage box allows for flexible adjustment and functional expansion, avoiding the need to occupy host space and improving ease of use and security.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN2025099735_11122025_PF_FP_ABST
    Figure CN2025099735_11122025_PF_FP_ABST
Patent Text Reader

Abstract

An electronic cutting machine, comprising an electronic cutting machine body and a tool storage box, wherein the tool storage box is configured with a tool storage cavity with an upper opening. An attachment structure comprises a first attachment part arranged on the tool storage box and a second attachment part arranged on the electronic cutting machine body, and the tool storage box is removably connected to the electronic cutting machine body by means of the first attachment part and the second attachment part. The tool storage box of the present application is removably arranged on the electronic cutting machine body, and compared with the solution that an electronic cutting machine has a built-in tool storage structure, the electronic cutting machine facilitates a flexible adjustment in the size and space according to use requirements, has lower adjustment costs, and has better functional expandability.
Need to check novelty before this filing date? Find Prior Art

Description

Electronic cutting machine and tool storage box

[0001] Prior citation of related documents

[0002] This application claims priority to Chinese patent application entitled "Tool holder, cutting component, tool storage box and electronic cutting machine", application number CN2024213146091, filed on June 8, 2024, the contents of which are hereby incorporated by reference in their entirety as part of the disclosure. TECHNICAL FIELD

[0003] The utility model relates to electronic cutting machine technical field, concretely relates to electronic cutting machine and tool storage box. BACKGROUND

[0004] Electronic cutting machine is a DIY creation auxiliary equipment, which can cut film material or paper according to the input of the pre-designed digital pattern, and provide support for DIY work of artisans. Electronic cutting machine usually includes a host computer, which is equipped with a work area on the host computer. The work area is configured with a cutting component on the upper side of the work plane.

[0005] The cutting component is usually composed of a support assembly, a tool support structure and a driver. The support assembly can move axially and transversely along the guide rod mounted on the host computer. The tool support structure can move vertically and is connected to the support assembly. The driver is installed on the support assembly and is used to drive the vertical movement of the tool support structure. The tool support structure is equipped with a tool holder for clamping various tools, such as knives and drawing pens. The electronic cutting machine is usually equipped with some auxiliary tools, such as trimming tools.

[0006] In order to store the working tools, a tool storage structure is provided on the host computer, such as the electronic cutting machine disclosed in patent document WO2022246306A1 "Electronic cutting machine material management" and patent document US20230173588A1 "Tool assembly for process equipment". The tool storage cavity is constructed on the left end of the upper end of the host computer. This tool storage structure is built-in, small in space, poor in functional expansion, and occupies the space of the host computer, which affects the optimization of the spatial structure of the product. SUMMARY

[0007] One purpose of the present application is to overcome the problem of built-in tool storage structure of the prior art electronic cutting machine, small space, poor functional expansion, and occupation of the space of the host computer. The electronic cutting machine tool storage structure is designed as an external detachable structure to solve the problem.

[0008] The technical solution adopted by the present application is as follows:

[0009] The electronic cutting machine comprises an electronic cutting machine body, a tool storage box and an attachment structure; the tool storage box is configured with a tool storage cavity with an upper opening; the attachment structure comprises a first attachment part arranged on the tool storage box and a second attachment part arranged on the electronic cutting machine body, and the tool storage box is detachably connected to the electronic cutting machine body through the first attachment part and the second attachment part.

[0010] The tool storage box of the present application is detachably arranged on the electronic cutting machine body, which is more flexible in adjusting the specification space according to the use requirements, has lower adjustment cost, good function expansion, and does not occupy the space of the electronic cutting machine body.

[0011] Further, the first attachment part comprises an attachment boss, and the second attachment part comprises an attachment groove, and the attachment boss is detachably embedded in the attachment groove to fix the tool storage box to the side of the electronic cutting machine body. The attachment boss on the first attachment part cooperates with the attachment groove of the second attachment part, which not only enables the tool storage box to be conveniently and quickly installed on the side of the electronic cutting machine body, but also supports the entire tool storage box to ensure its stability and reliability, and is not prone to falling off or displacement.

[0012] Further, the lower side of the attachment boss is provided with a first coupling part, and the lower side of the attachment groove is provided with a second coupling part, and the first coupling part and the second coupling part are concave-convex positioning structures. After the attachment boss is assembled into the attachment groove, the first coupling part and the second coupling part are coupled. The concave-convex positioning structure design enables the first coupling part to be coupled with the second coupling part when the attachment boss is assembled into the attachment groove, thereby ensuring that the lateral freedom of the tool storage box on the side of the electronic cutting machine body is limited to make the installation stable.

[0013] In other embodiments, the first attachment part comprises at least part of the lower end of the tool storage box, and the second attachment part is a positioning groove configured on the upper side of the electronic cutting machine body, and the lower end of the tool storage box is detachably assembled in the positioning groove. The above-mentioned scheme has simple structure and is stable and reliable.

[0014] In other embodiments, the first attachment part comprises a first magnetic material, and the second attachment part comprises a second magnetic material, and the first magnetic material and the second magnetic material are adsorbed to fix the tool storage box to the side of the electronic cutting machine body; or, the first attachment part comprises an attachment boss or an attachment groove, and the second attachment part correspondingly comprises an attachment groove or an attachment boss; the attachment boss is provided with a first magnetic material, and the attachment groove is provided with a second magnetic material, and the attachment boss is detachably embedded in the attachment groove, and the first magnetic material and the second magnetic material are adsorbed to fix the tool storage box to the side of the electronic cutting machine body.

[0015] In some embodiments, the first attachment part comprises a first magnetic material, and the second attachment part comprises a second magnetic material. The first magnetic material is arranged on the lower end surface of the tool storage box, and the second magnetic material is arranged on the upper side of the electronic cutting machine body. The tool storage box is detachably fixed on the upper side of the electronic cutting machine body by the adsorption of the first magnetic material and the second magnetic material.

[0016] In some embodiments, the first attachment part comprises a protrusion arranged on the side of the tool storage box, and the second attachment part comprises a slot arranged on the side of the electronic cutting machine body.

[0017] In some embodiments, the first attachment part comprises a protrusion arranged on the side of the tool storage box, and the second attachment part comprises a slot arranged on the side of the electronic cutting machine body.

[0018] Further, the tool storage box is oblong, and the side of the tool storage box attached to the electronic cutting machine body is provided with a first arc surface structure adapted to the electronic cutting machine body. At least one side end of the tool storage box is provided with a second arc surface structure.

[0019] Further, the bottom side of the tool storage box is a placement surface. The bottom side of the tool storage box is designed as a placement surface, so that the tool storage box can be placed on the placement surface after being separated from the electronic cutting machine body, providing users with convenient tool storage and multi-scene use experience.

[0020] Further, the tool storage cavity comprises at least a first storage area, and the first storage area is provided with one or more tool storage parts for storing tools. The first storage area is provided with one or more tool storage parts for storing tools in an orderly and safe manner, so that users can quickly and conveniently store and take out tools.

[0021] Further, the tool storage cavity comprises at least a first storage area and a second storage area, and the first storage area is provided with one or more tool storage parts for storing tools. The one or more tool storage parts of the first storage area are used to safely and orderly store various tools, so that users can quickly locate and take out the required tools when using. The second storage area is partitioned with the first storage area, which can prevent other tools from damaging the tools and prevent the tools from causing harm to users when taking and placing other tools.

[0022] Further, the tool storage box comprises a storage box body and a storage support configured inside the storage box body, the storage support separates the internal area of the storage box body into a first storage area and a second storage area, the first storage area is one or more cutter storage parts configured in the storage support, and the second storage area is configured between the storage support and the inner wall of the storage box body. The tool storage box adopts a composite design of the storage box body and the built-in storage support, the storage box body builds an external frame, and the storage support separates the internal space to form multifunctional storage areas, so that various tools can be orderly placed, and the mutual interference and damage risk of the tools are reduced.

[0023] Further, the storage box body and the storage support are manufactured in a separate manner, the storage box body has a body cavity with an upper opening, and the storage support separates the body cavity into a first storage area and a second storage area, wherein the first storage area comprises one or more cutter storage parts configured in the storage support. The separate manufacturing of the storage box body and the storage support enables independent production, facilitates quality control, and makes the design more flexible, so that the structure can be adjusted and optimized according to the needs to better meet the storage needs of users.

[0024] Further, the storage support comprises a supporting plate and a vertical plate, the supporting plate is connected to the upper part of the vertical plate, the shape of the supporting plate is matched with the inner wall of the body cavity, and the supporting plate is configured with the one or more cutter storage parts. The combination of the supporting plate and the vertical plate provides stable support for the tools.

[0025] Further, the inner wall of the storage box body is configured with a plurality of protruding parts for supporting the supporting plate and a clamping groove for positioning the lower end of the vertical plate; the above structure facilitates the installation of the storage support, and the assembly is simple and stable.

[0026] In another aspect of the present application, a tool storage box is provided, which comprises a storage box body configured with a tool storage cavity with an upper opening; a first attachment part is arranged on the side of the storage box body, and the tool storage box is detachably connected to the second attachment part of the main body of the electronic cutting machine through the first attachment part.

[0027] Further, the tool storage cavity comprises at least a first storage area, and the first storage area is configured with one or more cutter storage parts for storing cutters; or the tool storage cavity comprises at least a first storage area and a second storage area, and the first storage area is configured with one or more cutter storage parts for storing cutters. BRIEF DESCRIPTION OF DRAWINGS

[0028] FIG. 1 is a perspective view of the electronic cutting machine of the present application

[0029] FIG. 2 is an exploded view of the electronic cutting machine of the present application

[0030] FIG. 3 is an exploded view of the electronic cutting machine of the present application

[0031] Figure 4 is a perspective view of the tool storage case

[0032] Figure 5 is a perspective view of the tool storage case

[0033] Figure 6 is a perspective view of the tool storage case

[0034] Figure 7 is a cross-sectional view of the tool storage case

[0035] Figure 8 is an exploded view of the tool storage case

[0036] Figure 9 is a perspective view of the storage holder of the tool storage case

[0037] Figure 10 is a perspective view of the storage case body of the tool storage case

[0038] Figure 11 is a perspective view of a second embodiment of the electronic cutter of the present application

[0039] Figure 12 is an exploded view of the second embodiment of the electronic cutter of the present application

[0040] Figure 13 is a perspective view of a third embodiment of the electronic cutter of the present application

[0041] Figure 14 is an exploded view of the third embodiment of the electronic cutter of the present application

[0042] Figure 15 is a perspective view of a fourth embodiment of the electronic cutter of the present application

[0043] Figure 16 is an exploded view of the fourth embodiment of the electronic cutter of the present application

[0044] Figure 17 is a partial cross-sectional view of the fourth embodiment of the electronic cutter of the present application

[0045] Figure 18 is a perspective view of a fifth embodiment of the electronic cutter of the present application

[0046] Figure 19 is an exploded view of the fifth embodiment of the electronic cutter of the present application

[0047] Figure 20 is a partial cross-sectional view of the fifth embodiment of the electronic cutter of the present application

[0048] Figure 21 is a use state view of the electronic cutter of the present application

[0049] Figure 22 is an embodiment of a knife

[0050] Figure 23 is a perspective view of another embodiment of the tool storage case

[0051] Figure 24 is a perspective view of another embodiment of the storage case body of the tool storage case DETAILED DESCRIPTION

[0052] The present application relates to a tool storage box 6 and an electronic cutting machine, as shown in Figure 21, which shows an embodiment of the present application, wherein the electronic cutting machine body 7 is provided with a working area 700, and the cutting component a is mounted to the working area 700 through the first guide rod 701 and the second guide rod 702, and the cutting component a is in driving connection with the driving mechanism (not shown) inside the main machine 7 through the transmission belt 705, and the driving mechanism drives the cutting component a to reciprocate along the first guide rod 701 and the second guide rod 702 through the transmission belt 705, and the driving mechanism (not shown) is not the improvement of the present application, and will not be described in detail, and the front side and the upper side of the main machine 7 are respectively provided with door structures for opening or closing the working area 700. It should be noted that the cutting component a and the mounting of the cutting component a to the working area 700 through the first guide rod 701 and the second guide rod 702 are not the improvements of the present application, and Figure 11 only shows an embodiment, and the cutting component a of the electronic cutting machine of the present application and the mounting structure thereof to the working area 700 are also applicable to other embodiments of the prior art. The improvement of the present application is to design the tool storage structure of the electronic cutting machine into an external detachable structure.

[0053] Referring to Figures 1 to 4, an embodiment of the electronic cutting machine of the present application is shown, which comprises an electronic cutting machine body 7 and a tool storage box 6, and the tool storage box 6 is mounted on the electronic cutting machine body 7 through an attachment structure 6'; wherein the tool storage box 6 is constructed with an upper side open tool storage cavity 600; the attachment structure 6' comprises a first attachment part 6.1' arranged on the tool storage box 6 and a second attachment part 6.2' arranged on the electronic cutting machine body 7, and the tool storage box 6 is detachably connected with the electronic cutting machine body 7 through the first attachment part 6.1' and the second attachment part 6.2'.

[0054] Since the tool storage box 6 is detachably arranged on the electronic cutting machine body 7, compared with the scheme of the built-in tool storage structure of the electronic cutting machine, it is convenient to flexibly adjust the specification space according to the use demand, and the adjustment cost is relatively low, and the function expansion is good, and the space of the electronic cutting machine body 7 is not occupied.

[0055] Referring to Figures 2 and 3, the first attachment part 6.1' comprises an attachment boss 6.10', and the second attachment part 6.2' comprises an attachment groove 6.20', and the attachment boss 6.10' is detachably embedded in the attachment groove 6.20' to fix the tool storage box 6 to the side of the electronic cutting machine body 7. The attachment boss 6.10' on the first attachment part 6.1' cooperates with the attachment groove 6.20' of the second attachment part 6.2', which not only enables the tool storage box 6 to be conveniently and quickly mounted on the side of the electronic cutting machine body 7, but also supports the entire tool storage box 6, ensuring its stability and reliability, and being not easy to fall off or shift.

[0056] The lower side of the attachment boss 6.10' is provided with a first coupling part 6.11', and the lower side of the attachment groove 6.20' is provided with a second coupling part 6.21'. The first coupling part 6.11' and the second coupling part 6.21' are a concave-convex positioning structure. After the attachment boss 6.10' is assembled into the attachment groove 6.20', the first coupling part 6.11' and the second coupling part 6.21' are coupled. The concave-convex positioning structure design is that when the attachment boss 6.10' is assembled into the attachment groove 6.20', the first coupling part 6.11' can be coupled with the second coupling part 6.21', so that the lateral freedom of the tool storage box 6 on the side of the electronic cutting machine body 7 is limited to ensure stable installation and prevent the tool storage box 6 from being separated from the electronic cutting machine body 7.

[0057] As shown in FIGS. 2 and 3, the first coupling part 6.11' is a protrusion configured on the lower side of the attachment boss 6.10', and the second coupling part 6.21' is a groove configured on the lower side of the attachment groove 6.20'. When the attachment boss 6.10' is assembled into the attachment groove 6.20', the first coupling part 6.11' is inserted into the second coupling part 6.21'. Of course, in other embodiments, the first coupling part 6.11' can be a groove configured on the lower side of the attachment boss 6.10', and the second coupling part 6.21' can be a protrusion configured on the lower side of the attachment groove 6.20'.

[0058] In this embodiment, the first attachment part 6.1' can be configured on the tool storage box 6 by one-piece injection molding or assembly after separate injection molding (such as ultrasonic welding, connector connection, or other known processes), and the second attachment part 6.2' can be configured on the side of the electronic cutting machine body 7 by one-piece injection molding or assembly after separate injection molding (such as ultrasonic welding, connector connection, or other known processes).

[0059] In other embodiments, the attachment structure 6' can also adopt the following scheme: the first attachment part includes an attachment groove, and the second attachment part includes an attachment boss. The attachment boss is detachably embedded in the attachment groove to fix the tool storage box 6 to the side of the electronic cutting machine body 7. The structure is different from that shown in FIGS. 2 and 3 in that the first attachment part and the second attachment part are replaced with each other, and the technical principle is the same or similar. It can also be further optimized, that is, the upper side of the attachment boss is provided with a first coupling part, the upper side of the attachment groove is provided with a second coupling part, the first coupling part and the second coupling part are a concave-convex positioning structure, and the first coupling part and the second coupling part are coupled after the attachment boss is assembled into the attachment groove. The implementation of the first coupling part and the second coupling part is the same as or similar to the structure shown in FIGS. 2 and 3.

[0060] Referring to FIGS. 11 and 12, in other embodiments, the first attachment part 6.1' includes at least part of the lower end of the tool storage box 6, and the second attachment part 6.2' is a positioning groove configured on the upper side of the electronic cutting machine body 7. The lower end of the tool storage box 6 is detachably assembled in the positioning groove. The above-mentioned scheme has a simple structure and is stable and reliable.

[0061] Specifically, as shown in the embodiments of FIG. 11 and FIG. 12, the second attachment part 6.2’ (i.e. the positioning groove) is configured on the upper surface 7.1 of the end of the electronic cutting machine body 7, so as to avoid the working area 700 and reasonably utilize the space at both ends of the electronic cutting machine body 7. Since the depth of the second attachment part 6.2’ (i.e. the positioning groove) does not need to be too deep, such as within 1 / 3 of the height of the tool storage box 6, the space occupation of the electronic cutting machine body 7 is small. Of course, the specific depth of the depth of the second attachment part 6.2’ (i.e. the positioning groove) can be set according to actual needs.

[0062] The shape of the positioning groove is matched with the shape of the lower end of the tool storage box 6 to ensure the stability when the two are assembled. A structure that increases friction can be provided on the side wall of the positioning groove, such as a convex strip, a layer of flexible material, etc.

[0063] The second attachment part 6.2’ (i.e. the positioning groove) can be configured on the upper side of the electronic cutting machine body 7 in the form of one-piece injection molding or separate piece injection molding and reassembly (such as ultrasonic welding, connector connection, or other known processes).

[0064] In other embodiments, the attachment structure 6’ can also adopt the following scheme: the first attachment part comprises a first magnetic material, the second attachment part comprises a second magnetic material, and the first magnetic material and the second magnetic material are adsorbed to fix the tool storage box 6 to the side of the electronic cutting machine body 7; through the magnetic force, the tool storage box 6 can be conveniently and quickly fixed to the side of the electronic cutting machine body 7. For example, the first magnetic material is a first magnet, and the second magnetic material is a second magnet; alternatively, the first magnetic material is a magnet, and the second magnetic material is a magnetic material such as an iron sheet; alternatively, the first magnetic material is a magnetic material such as an iron sheet, and the second magnetic material is a magnet. The first magnetic material can be installed on the tool storage box 6 by inlaying, injection molding connection, adhesive, connector, etc.; the second magnetic material can be installed on the side of the electronic cutting machine body 7 by inlaying, injection molding connection, adhesive, connector, etc.

[0065] In other embodiments, the attachment structure 6' can also adopt the following scheme: the first attachment part 6.1' comprises an attachment boss or an attachment groove, and the second attachment part correspondingly comprises an attachment groove or an attachment boss; the attachment boss is provided with a first magnetic material, the attachment groove is provided with a second magnetic material, the attachment boss is detachably embedded in the attachment groove, and the first magnetic material and the second magnetic material are adsorbed to fix the tool storage box 6 to the side of the electronic cutting machine body 7. With this structure, when the attachment boss is embedded in the attachment groove, the tool storage box 6 is supported, and at the same time, the first magnetic material and the second magnetic material are adsorbed to each other, so that the tool storage box can be quickly and stably fixed to the side of the electronic cutting machine body 7, which is convenient for the user to take tools at any time, and also ensures the stability and convenience of use of the storage box. The configuration mode of the first magnetic material and the second magnetic material is the same as or similar to that of other embodiments of the present application.

[0066] Referring to FIGS. 11 and 12, in other embodiments, the first attachment part 6.1' comprises a first magnetic material, and the second attachment part 6.2' comprises a second magnetic material. The first magnetic material is arranged on the lower end surface of the tool storage box 6, and the second magnetic material is arranged on the upper side of the electronic cutting machine body 7. The tool storage box 6 is detachably fixed to the upper side of the electronic cutting machine body 7 by adsorption of the first magnetic material. For example, the first magnetic material is a first magnet, and the second magnetic material is a second magnet; alternatively, the first magnetic material is a magnet, and the second magnetic material is a magnetic material such as an iron sheet; alternatively, the first magnetic material is a magnetic material such as an iron sheet, and the second magnetic material is a magnet. The first magnetic material can be installed on the lower end surface of the tool storage box 6 by inlaying, injection molding connection, adhesive, connecting piece, etc.; and the second magnetic material can be installed on the upper side of the electronic cutting machine body 7 by inlaying, injection molding connection, adhesive, connecting piece, etc. Specifically, in the embodiment shown in FIGS. 11 and 12, the second attachment part 6.2' (i.e., the positioning groove) is constructed on the upper surface 7.1 of the end portion of the electronic cutting machine body 7, so as to avoid the working area 700 and reasonably utilize the space at both ends of the electronic cutting machine body 7. Since the second attachment part 6.2' is constructed on the upper surface 7.1 of the end portion of the electronic cutting machine body 7, it does not affect the space of the electronic cutting machine body 7.

[0067] Referring to FIGS. 15 to 17, in other embodiments, the first attachment part 6.1' comprises a clamping protrusion 6.11c' transversely constructed on the side of the tool storage box 6, and the second attachment part 6.2' comprises a clamping groove transversely constructed on the side of the electronic cutting machine body 7. The clamping protrusion 6.11c' is inserted into or separated from the clamping groove by transverse movement. With this clamping structure, the user can also easily install or remove the tool storage box.

[0068] The card protrusion 6.11c' and the card slot are provided with lateral limiting structures in the assembled state to limit the disengagement of the tool storage box 6 from the electronic cutting machine body 7. Specifically, as shown in the schemes of FIGS. 15-17, limiting grooves 6.22c' are provided on the upper and lower sides of the second attachment part 6.2' (card slot), and limiting protrusions 6.111c' are provided on the upper corresponding limiting grooves 6.22c' of the card protrusion 6.11c'. The card protrusion 6.11c' and the card slot are provided with limiting protrusions 6.111c' inserted into limiting grooves 6.22c' in the assembled state, preventing the tool storage box 6 from disengaging laterally from the electronic cutting machine body 7.

[0069] As shown in FIGS. 16 and 17, one scheme of the card protrusion 6.11c' is a horizontally arranged structure with two parts, the upper card protrusion 6.11c' is provided with a limiting protrusion 6.111c' on the upper side, and the lower card protrusion 6.11c' is provided with a limiting protrusion 6.111c' on the lower side.

[0070] In order to facilitate the installation of the first attachment part 6.1', an insertion part 6.21c' with increased width is provided at one end of the second attachment part 6.2' (card slot), and the limiting groove 6.22c' communicates with the insertion part 6.21c'. When assembled, the first attachment part 6.1' is inserted from the limiting groove 6.22c' to the side of the limiting groove 6.22c'.

[0071] As shown in FIGS. 16 and 17, the tool storage box 6 is subjected to the force of gravity on the lower side of the second attachment part 6.2' (card slot), and the limiting protrusions 6.111c' and the limiting grooves 6.22c' limit the tool storage box 6 from disengaging laterally from the electronic cutting machine body 7.

[0072] Of course, the limiting groove 6.22c' can extend to communicate with both ends of the second attachment part 6.2' (card slot), and the card protrusion 6.11c' is installed from the end of the second attachment part 6.2' (card slot).

[0073] In this embodiment, the first attachment part 6.1' can be constructed on the tool storage box 6 by integral injection molding or separate injection molding and reassembly (such as ultrasonic welding, connector connection, or other known processes), and the second attachment part 6.2' can be constructed on the side of the electronic cutting machine body 7 by integral injection molding or separate injection molding and reassembly (such as ultrasonic welding, connector connection, or other known processes).

[0074] In other embodiments, the first attachment part is a card slot, such as a dovetail card slot, and the second attachment part is a card rail, such as a rail that matches the dovetail card slot; of course, the card slot and the card rail can be interchangeable. In other embodiments, the card slot and the card rail can also be other card joint structures that can achieve the assembly of the storage box 6 slot to the electronic cutting machine body 7, such as T-shaped card slots and card rails.

[0075] Referring to FIGS. 18-20, in other embodiments, the first attachment portion 6.1' includes an arc-shaped latching protrusion 6.11d' configured on a side of the tool storage box 6, and the second attachment portion 6.2' includes an arc-shaped latching slot 6.21d' configured on a side of the electronic cutting machine body 7, the arc-shaped latching protrusion 6.11d' is provided with a limiting protrusion 6.111d' on a radial side thereof, and the arc-shaped latching slot 6.21d' is provided with an insertion opening 6.211d' corresponding to the limiting protrusion 6.111d'. During assembly, the limiting protrusion 6.111d' is inserted into the insertion opening 6.211d' and then rotated until the tool storage box 6 reaches a preset vertical posture, at which time the limiting protrusion 6.111d' is offset from the insertion opening 6.211d' and abuts against an inner side edge of the arc-shaped latching slot 6.21d' to limit the tool storage box 6 from being detached from the side of the electronic cutting machine body 7. Specifically, the insertion opening 6.211d' is configured at a leading end of the arc-shaped latching slot 6.21d'.

[0076] In the embodiment shown in FIGS. 18-20, the arc-shaped latching protrusion 6.11d' is configured with two pieces at intervals, and the arc-shaped latching slot 6.21d' is correspondingly configured with two pieces, specifically, the two pieces are arranged at intervals around the rotation center during assembly, and the two arc-shaped latching slots 6.21d' are correspondingly arranged at intervals.

[0077] Referring to FIGS. 18-20, in other embodiments, the side of the tool storage box 6 is configured with a circular or annular protrusion 6.12d' coaxial with the rotation center of the arc-shaped latching protrusion 6.11d', and the side of the electronic cutting machine body 7 is configured with a circular or annular hole 6.22d' coaxial with the center of the arc-shaped latching slot 6.21d', and the circular or annular protrusion 6.12d' is adaptively (rotatably) assembled into the circular or annular hole 6.22d', which can play a guiding and force receiving role.

[0078] In the embodiment, the first attachment portion 6.1' can be configured on the tool storage box 6 in a manner of one-piece injection molding or separate piece injection molding and reassembly (such as ultrasonic welding, connector connection, or other known processes), and the second attachment portion 6.2' can be configured on the side of the electronic cutting machine body 7 in a manner of one-piece injection molding or separate piece injection molding and reassembly (such as ultrasonic welding, connector connection, or other known processes).

[0079] Referring to FIGS. 1-6, the tool storage box 6 is oblong, and a side of the tool storage box 6 to which the electronic cutting machine body 7 is attached is configured with two first arc surface structures 6.1a adapted to each other, and at least one side end of the tool storage box 6 is configured with a second arc surface structure 6.1b. With the above structure, the tool storage box 6 and the electronic cutting machine body 7 are good in overall coordination and improve the aesthetic appearance, and meanwhile, the second arc surface structure 6.1b facilitates a user to hold the tool storage box 6.

[0080] Referring to FIGS. 4-7, the bottom side of the tool storage box 6 is a placement surface. The bottom side of the tool storage box 6 is designed as a placement surface, so that the storage box can be placed for use after being detached from the electronic cutting machine body 7, providing a convenient tool storage and multi-scenario access experience for the user.

[0081] Referring to FIGS. 4-7, and FIG. 22, the tool storage cavity 600 includes at least a first storage area 601, which is configured with one or more tool storage portions 6010 for storing tools. The first storage area 601 is configured with one or more tool storage portions 6010 for storing tools neatly and safely, so as to ensure that the user can quickly and conveniently store and access the tools. In the embodiment shown in FIGS. 4 and 7, the tool storage portion 6010 is configured with 3, such as a groove or hole structure that is adapted to the tool n, when the tool is installed in the tool storage portion 6010, the step of the tool n is clamped at the end of the groove structure, so as to prevent the blade of the tool n from contacting the tool storage box 6. In other embodiments, the tool storage portion 6010 can be configured with other numbers, such as 2, or 4 or more, according to the needs, and the specific design needs to consider the coordination of the space size of the tool storage box 6 and the electronic cutting machine body 7. In the embodiment shown in FIGS. 4-7, the end opening of the tool storage portion 6010 is provided with a flared structure, which facilitates the installation of the tool n.

[0082] Referring to FIGS. 4 and 7, the tool storage cavity 600 includes at least a first storage area 601 and a second storage area 602, and the first storage area 601 is configured with one or more tool storage portions 6010 for storing tools. The one or more tool storage portions 6010 of the first storage area 601 are used to safely and orderly store various tools, so as to ensure that the user can quickly locate and take out the required tool when using, and the second storage area 602 is configured separately from the first storage area 601, which can prevent other tools from damaging the tool, and at the same time prevent the tool from causing harm to the user when taking and placing other tools. In the embodiment shown in FIGS. 4 and 7, the first storage area 601 is configured with 3 tool storage portions 6010, and in other embodiments, the tool storage portion 6010 can be configured with other numbers, such as 2, or 4 or more, according to the needs, and the specific design needs to consider the coordination of the space size of the tool storage box 6 and the electronic cutting machine body 7. In the embodiment shown in FIGS. 4 and 7, only the first storage area 601 and the second storage area 602 are included, and in other embodiments, 3 or more storage areas can be configured according to the needs, and the specific design needs to consider the coordination of the space size of the tool storage box 6 and the electronic cutting machine body 7.

[0083] Referring to FIGS. 7-9, the tool storage box 6 comprises a storage box body 6.1 and a storage support 6.2 configured inside the storage box body 6.1, the storage support 6.2 divides the internal area of the storage box body 6.1 into a first storage area 601 and a second storage area 602, the first storage area 601 is configured as one or more cutter storage portions 6010 of the storage support 6.2, and the second storage area 602 is configured between the storage support 6.2 and the inner wall of the storage box body 6.1. The tool storage box 6 adopts a composite design of the storage box body 6.1 and the built-in storage support 6.2, the storage box body 6.1 builds an external frame, and the storage support 6.2 divides the internal space to form multifunctional storage areas, which can ensure that various tools are orderly placed and reduce the risk of mutual interference and damage between tools.

[0084] Referring to FIGS. 7-9, the storage box body 6.1 and the storage support 6.2 are manufactured separately, the storage box body 6.1 has an upper opening body cavity 600', and the storage support 6.2 divides the body cavity 600' into a first storage area 601 and a second storage area 602, wherein the first storage area 601 comprises one or more cutter storage portions 6010 configured in the storage support 6.2. Separate manufacturing of the storage box body 6.1 and the storage support 6.2 allows independent production, facilitating quality control, and also makes the design more flexible, allowing for adjustments and optimization of the structure according to user storage needs. In the embodiment shown in FIG. 7, the first storage area 601 is configured with three cutter storage portions 6010, and in other embodiments, the cutter storage portions 6010 can be configured in other quantities, such as two, or four or more, according to needs. Of course, specific design needs to consider the coordination between the size of the tool storage box 6 and the main body 7 of the electronic cutting machine.

[0085] Referring to FIGS. 7-9, the storage support 6.2 comprises a supporting plate 6.211 and a vertical plate 6.22, the supporting plate 6.211 is connected to the upper part of the vertical plate 6.22, the shape of the supporting plate 6.211 is adapted to the inner wall of the body cavity 600', and the supporting plate 6.211 is configured with the one or more cutter storage portions 6010. The combination of the supporting plate 6.211 and the vertical plate 6.22 provides stable support for the tools.

[0086] Referring to FIGS. 8 and 9, the supporting plate 6.211 has a downwardly extending boss 6010' corresponding to the cutter storage portion 6010 on the lower side, and the boss 6010' is configured with a hole structure inside that is adapted to the cutter and communicates with the upper surface of the supporting plate 6.211, which is configured as the cutter storage portion 6010.

[0087] Referring to FIGS. 7-10, the inner wall of the storage box body 6.1 is configured with a plurality of raised portions 6.11 of support plates 6.211 and a clamping groove 6.10 for positioning the lower end of the vertical plate 6.22; the above structure facilitates the installation of the storage support 6.2, and is simple to assemble and good in stability. In some embodiments, the raised portions 6.11 and the storage box body 6.1 are integrally injection molded.

[0088] The lower side of the support plate 6.211 is provided with a first plug-in portion 6011, and the bottom of the body cavity 600' is correspondingly provided with a second plug-in portion 6.120. The first plug-in portion 6011 and the second plug-in portion 6.120 are plugged in to fix the storage support 6.2 to the body cavity 600'.

[0089] In the embodiments shown in FIGS. 7-9, the first plug-in portion 6011 is a tapered plug column, and the second plug-in portion 6.120 is a socket 6.12 configured at the bottom of the body cavity 600'. The socket 6.12 is provided with a socket hole 6.120, and the first plug-in portion 6011 is plugged into the socket hole 6.120 to fix the storage support 6.2 in the body cavity 600'.

[0090] Referring to FIGS. 7-9, the edge of the support plate 6.211 is configured with a raised edge 6.211, which facilitates the assembly of the support plate 6.211 and reduces the gap between the support plate 6.211 and the inner wall of the body cavity 600' after engagement, thereby playing a dustproof role.

[0091] In other embodiments, the storage support 6.2 and the storage box body 6.1 are connected by a connecting piece.

[0092] In other embodiments, the storage support 6.2 and the storage box body 6.1 are integrally injection molded.

[0093] In other embodiments, the storage support 6.2 and the storage box body 6.1 are injection molded in parts and connected by a plastic welding process; or, the storage support 6.2 and the storage box body 6.1 are connected by an adhesive.

[0094] Referring to FIGS. 4-10, in another aspect of the present application, a tool storage box 6 is provided, which includes a storage box body 6.1 configured with an upper-side-open tool storage cavity 600; the storage box body 6.1 is provided with a first attachment portion 6.1' on the side, and the tool storage box 6 is detachably connected to the second attachment portion 6.2' of the electronic cutting machine body 7 through the first attachment portion 6.1'.

[0095] The tool storage cavity 600 at least includes a first storage area 601 configured with one or more tool storage portions 6010 for storing tools.

[0096] In the embodiments shown in FIGS. 4-10, the tool storage cavity 600 includes at least a first storage area 601 and a second storage area 602, the first storage area 601 being configured with one or more tool storage portions 6010 for storing tools.

[0097] The embodiments of the tool storage box 6 are the same as the structure of the tool storage box 6 in the electronic cutting machine of the present application, and more technical features and technical effects are embodied in the embodiments of the electronic cutting machine.

[0098] The tool storage box 6 shown in FIGS. 4-10 is only shown as one of the tool storage boxes 6 with an attachment structure 6', but the structure is the same.

[0099] Another aspect of the present application is to solve the problem of the existing technology electronic cutting machine tool storage structure being built-in, small space, poor function expansion, and occupying the space of the main machine. Referring to FIGS. 4, 6, 7-9, 23 and 24, the tool storage box 6 of the present application is another embodiment, which is not provided with a first attachment part 6.1', and is installed in the electronic cutting machine body 7 shown in FIGS. 11 and 12 for use. The tool storage box 6 of the present application can also be configured to be used in other electronic cutting machine bodies, which do not need to be provided with an attachment structure with the tool storage box 6, but the placement surface at the bottom side of the tool storage box 6 is placed on a platform, such as a desktop, for use. The tool storage box 6 of the present embodiment adopts an external solution, which is relatively convenient to adjust the specification space according to the use demand, has low adjustment cost, good function expansion, and does not occupy the space of the electronic cutting machine body 7. The other structures of the tool storage box 6 of the present embodiment are the same as those of the other embodiments of the tool storage box 6 of the present application, and are not described repeatedly.

[0100] According to the disclosure and teaching of the above description, those skilled in the art of the present application can also make changes and modifications to the above embodiments, and the present application is not limited to the specific embodiments disclosed and described above. Some modifications and changes of the present application should also fall within the protection scope of the claims of the present application.

Claims

1. An electronic cutting machine characterized in that, The utility model relates to an electronic cutting machine tool storage box, including: Electronic cutting machine body (7); Tool storage box (6) is constructed with the tool storage cavity (600) of upper side opening; Attachment structure (6') includes the first attachment part (6.1') of tool storage box (6) and the second attachment part (6.2') of electronic cutting machine body (7), and tool storage box (6) is detachably connected with electronic cutting machine body (7) through first attachment part (6.1') and second attachment part (6.2').

2. The electronic cutting machine of claim 1, wherein, First attachment part (6.1') includes attachment boss (6.10'), and second attachment part (6.2') includes attachment groove (6.20'), and attachment boss (6.10') is detachably embedded in attachment groove (6.20') to fix tool storage box (6) on the side of electronic cutting machine body (7); Or, first attachment part (6.1') includes attachment boss (6.10'), and second attachment part (6.2') includes attachment groove (6.20'), and attachment boss (6.10') is detachably embedded in attachment groove (6.20') to fix tool storage box (6) on the side of electronic cutting machine body (7); attachment boss (6.10') lower side is provided with first coupling part (6.11'), and attachment groove (6.20') lower side is provided with second coupling part (6.21'), and first coupling part (6.11') and second coupling part (6.21') are concave-convex positioning structure, after attachment boss (6.10') is assembled to attachment groove (6.20'), first coupling part (6.11') and second coupling part (6.21') are coupled.

3. The electronic cutting machine of claim 1, wherein, First attachment part (6.1') includes attachment groove, and second attachment part (6.2') includes attachment boss, and attachment boss is detachably embedded in attachment groove to fix tool storage box (6) on the side of electronic cutting machine body (7); Or, first attachment part (6.1') includes attachment groove, and second attachment part (6.2') includes attachment boss, and attachment boss is detachably embedded in attachment groove to hang tool storage box (6) on the side of electronic cutting machine body (7); attachment boss upper side is provided with first coupling part, and attachment groove upper side is provided with second coupling part, and first coupling part and second coupling part are concave-convex positioning structure, after attachment boss is assembled to attachment groove, first coupling part and second coupling part are coupled.

4. The electronic cutting machine of claim 1, wherein, First attachment part (6.1') includes at least part of tool storage box (6) lower end, and second attachment part (6.2') is positioning groove constructed on the upper side of electronic cutting machine body (7), and tool storage box (6) lower end is detachably assembled in positioning groove.

5. The electronic cutting machine of claim 1, wherein, First attachment part (6.1') includes first magnetic material, and second attachment part (6.2') includes second magnetic material, and first magnetic material and second magnetic material are adsorbed to fix tool storage box (6) on the side of electronic cutting machine body (7); Or, the first attachment part (6.1') comprises an attachment boss or an attachment groove, and the second attachment part (6.2') correspondingly comprises an attachment groove or an attachment boss; the attachment boss is provided with a first magnetic material, the attachment groove is provided with a second magnetic material, the attachment boss is detachably embedded in the attachment groove, and the first magnetic material and the second magnetic material are adsorbed to fix the tool storage box (6) to the side of the electronic cutting machine body (7); Or, the first attachment part (6.1') comprises a first magnetic material, and the second attachment part (6.2') comprises a second magnetic material; the first magnetic material is arranged on the lower end surface of the tool storage box (6), and the second magnetic material is arranged on the upper side of the electronic cutting machine body (7); the tool storage box (6) is detachably fixed on the upper side of the electronic cutting machine body (7) through the adsorption of the first magnetic material.

6. The electronic cutting machine of claim 1, wherein, The first attachment part (6.1') comprises a clamping protrusion (6.11c') transversely arranged on the side of the tool storage box (6), and the second attachment part (6.2') comprises a clamping groove transversely arranged on the side of the electronic cutting machine body (7). Or, the first attachment part (6.1') comprises a clamping protrusion (6.11c') transversely arranged on the side of the tool storage box (6), and the second attachment part (6.2') comprises a clamping groove transversely arranged on the side of the electronic cutting machine body (7); the clamping protrusion (6.11c') and the clamping groove are provided with lateral limiting structures (6.111c', 6.22c') in the assembled state to limit the tool storage box (6) from being separated. Or, the first attachment part (6.1') comprises a clamping groove transversely arranged on the side of the tool storage box (6), and the second attachment part (6.2') comprises a clamping protrusion transversely arranged on the side of the electronic cutting machine body (7). Or, the first attachment part (6.1') comprises a clamping groove transversely arranged on the side of the tool storage box (6), and the second attachment part (6.2') comprises a clamping protrusion transversely arranged on the side of the electronic cutting machine body (7); the clamping protrusion and the clamping groove are provided with lateral limiting structures in the assembled state to limit the tool storage box (6) from being separated.

7. The electronic cutting machine of claim 1, wherein, The first attachment part (6.1') comprises an arc-shaped clamping protrusion (6.11d') arranged on the side of the tool storage box (6), and the second attachment part (6.2') comprises an arc-shaped clamping groove (6.21d') arranged on the side of the electronic cutting machine body (7); the radial side of the arc-shaped clamping protrusion (6.11d') is provided with a limiting protrusion (6.111d'), the arc-shaped clamping groove (6.21d') is provided with an insertion opening (6.211d') corresponding to the limiting protrusion (6.111d'), and the limiting protrusion (6.111d') is inserted into the arc-shaped clamping groove (6.21d') from the insertion opening (6.211d') and then rotated to a preset posture of the tool storage box (6).

8. The electronic cutting machine of claim 1, wherein, The tool storage box (6) is in an oblong shape, and one side of the tool storage box (6) attached to the electronic cutting machine body (7) is provided with a first arc surface structure adapted to the other, and at least one side end of the tool storage box (6) is provided with a second arc surface structure.

9. The electronic cutting machine of claim 1, wherein, The bottom side of the tool storage box (6) is a placement surface.

10. The electronic cutting machine of claim 1, wherein, The tool storage cavity (600) at least comprises a first storage area (601), and the first storage area (601) is configured with one or more cutter storage parts (6010) for storing cutters. Alternatively, the tool storage cavity (600) at least comprises a first storage area (601) and a second storage area (602), and the first storage area (601) is configured with one or more cutter storage parts (6010) for storing cutters.

11. The electronic cutting machine of claim 1, wherein, The tool storage box (6) comprises a storage box body (6.1) and a storage support (6.2) configured inside the storage box body (6.1), and the storage support (6.2) divides the internal area of the storage box body (6.1) into a first storage area (601) and a second storage area (602). The first storage area (601) is configured with one or more cutter storage parts (6010) in the storage support (6.2), and the second storage area (602) is configured between the storage support (6.2) and the inner wall of the storage box body (6.1).

12. The electronic cutting machine of claim 11, wherein, The storage box body (6.1) and the storage support (6.2) are manufactured separately. The storage box body (6.1) has an upper opening body cavity (600'), and the storage support (6.2) divides the body cavity (600') into a first storage area (601) and a second storage area (602). The first storage area (601) comprises one or more cutter storage parts (6010) configured in the storage support (6.2).

13. The electronic cutting machine of claim 12, wherein, The storage support (6.2) comprises a supporting plate (6.211) and a vertical plate (6.22). The supporting plate (6.211) is connected to the upper part of the vertical plate (6.22), and the shape of the supporting plate (6.211) is matched with the inner wall of the body cavity (600'). The supporting plate (6.211) is configured with one or more cutter storage parts (6010).

14. The electronic cutting machine of claim 13, wherein, The inner wall of the storage box body (6.1) is configured with a plurality of protrusions (6.11) for supporting the supporting plate (6.211) and a clamping groove (6.10) for positioning the lower end of the vertical plate (6.22). Alternatively, the inner wall of the storage box body (6.1) is configured with a plurality of protrusions (6.11) for supporting the supporting plate (6.211) and a clamping groove (6.10) for positioning the lower end of the vertical plate (6.22). The lower side of the supporting plate (6.211) is provided with a first plug-in part (6011), and the bottom of the body cavity (600') is correspondingly provided with a second plug-in part (6.120). The first plug-in part (6011) and the second plug-in part (6.120) are inserted to fix the storage support (6.2) to the body cavity (600').

15. The electronic cutting machine of claim 12, wherein, The storage support (6.2) and the storage box body (6.1) are connected by a connecting piece. Alternatively, the storage support (6.2) and the storage box body (6.1) are integrally injection molded. Alternatively, the storage support (6.2) and the storage box body (6.1) are separately injection molded, and are connected by a plastic welding process. Alternatively, the storage support (6.2) and the storage box body (6.1) are connected by an adhesive.

16. A tool holder (6) characterized in that The tool storage box (6) comprises a tool storage box body (6.1) configured with a tool storage cavity (600) with an upper opening; the tool storage box body (6.1) is provided with a first attachment part (6.1') on the side; the tool storage box (6) is detachably connected with the electronic cutting machine body (7) through the first attachment part (6.1') and a second attachment part (6.2') on the side of the electronic cutting machine body (7).

17. A tool holder (6) characterized in that The tool storage box (6) comprises a tool storage box body (6.1) configured with a tool storage cavity (600) with an upper opening; the tool storage box body (6.1) is provided with a first attachment part (6.1') on the lower end; the tool storage box (6) is detachably connected with the electronic cutting machine body (7) through the first attachment part (6.1') and a second attachment part (6.2') on the upper side of the electronic cutting machine body (7).

18. A tool holder (6) according to claim 16 or 17, characterized in that The tool storage box (6) comprises: The tool storage cavity (600) comprises at least a first storage area (601), and the first storage area (601) is configured with one or more cutter storage parts (6010) for storing cutters. Alternatively, the tool storage cavity (600) comprises at least a first storage area (601) and a second storage area (602), and the first storage area (601) is configured with one or more cutter storage parts (6010) for storing cutters.

Citation Information

Patent Citations

  • Hardware tool box convenient for taking and placing parts

    CN209533337U

  • Modular tool storage box

    CN211992901U

  • Convenient and fast wrench storage box for numerical control machine tool

    CN213703382U

  • 3D printer with built-in tool placing box

    CN214927156U

  • Dismounting and mounting assembly and mounting device

    CN215411082U