Laser etching punching device capable of conveniently cleaning waste materials

By adding height-increasing blocks and negative pressure adsorption components to the worktable of the laser engraving and drilling equipment, the problem of manual cleaning of waste materials after drilling thin film products has been solved, realizing automated waste cleaning and improving production efficiency.

CN223819871UActive Publication Date: 2026-01-23DONGGUAN JULONG HIGH-TECH ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202520329654.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-01-23
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

Existing laser engraving and drilling equipment generates waste on thin film products that requires manual cleaning, resulting in low efficiency.

Method used

By installing a heightening block on the workbench, a reserved space is created between the heightening block and the workbench for placing the film product. The negative pressure adsorption and elastic reset characteristics of the heightening block are used to achieve automatic cleaning of waste materials.

Benefits of technology

It improves the production and processing efficiency of film products, shortening the processing time of each film product by about 5 seconds, reducing manual intervention and increasing production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a laser etching punching device convenient to clean waste, which comprises a workbench and an adsorption assembly arranged on the workbench, the adsorption end of the adsorption assembly is communicated with the workbench surface, and the workbench surface is provided with a heightening block positioned beside the adsorption end and a film product placed on the heightening block and covering the adsorption end; during punching, punching equipment extrudes the film product on the outer side of the heightening block to generate elastic displacement, after punching, the film product elastically resets to be parallel to the heightening block, and waste generated after punching is thrown out. The heightening block is additionally arranged on the workbench, so that a film product can be placed on the heightening block 30, a reserved space is formed between the heightening block 30 and the workbench, waste materials generated after punching of the film product can directly fall off, then the single workbench serves as a station, the overall CT of each film product is shortened by about 5S, and therefore the production and machining efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field technology of film processing especially point to a convenient to clear up waste's engraving and carving punch device. BACKGROUND

[0002] The engraving and carving punch device is one of the important applications of laser processing technology, and its technical origin can be traced back to the birth and development of laser technology. With the continuous maturity and popularity of laser technology, laser processing has gradually been widely used in many industrial fields with its advantages of high precision, high efficiency, non-contact processing, etc. The engraving and carving punch device is a specific embodiment of laser processing technology in the field of material cutting and punching.

[0003] The existing engraving and carving punch device needs manual removal of the waste generated by punching when applied to film products, which is low in efficiency. UTILITY MODEL CONTENT

[0004] Therefore, the utility model provides an engraving and carving punch device for conveniently cleaning waste, which solves the problem of manual removal of waste after punching of existing film products.

[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: an engraving and carving punch device for conveniently cleaning waste, comprising a workbench and an adsorption assembly arranged on the workbench, the adsorption end of the adsorption assembly is in communication with the workbench top, the workbench top is provided with a raised block beside the adsorption end, and a film product is placed on the raised block and covers the adsorption end; during punching, the film product outside the raised block is elastically displaced by the punching device, and after punching, the film product is elastically reset parallel to the raised block and shakes out the waste generated after punching.

[0006] Further, the raised block is in the shape of a Chinese character "kou" and surrounds the adsorption end, so that a negative pressure is formed at the bottom end of the raised block and the film product is adsorbed.

[0007] Further, the adsorption assembly comprises a plurality of rows of through holes arranged on the workbench, the through holes are adjacent to the inner side of the raised block, and the adsorption end is located at the top of the through holes.

[0008] Further, the height of the raised block is 1-3 cm.

[0009] Further, the height of the raised block is 0.4-1 cm.

[0010] Further, two opposite suction accessories are further arranged on the workbench top, and the two suction accessories are located on the two opposite sides of the raised block.

[0011] Further, the suction accessory comprises two housings mounted on the workbench, and a gas channel arranged in the inner cavities of the two housings, and the gas channel is penetrated by the opposite surfaces of the two housings.

[0012] Further, the air inlet end of the air passage corresponds to the heightening block.

[0013] The utility model discloses compared with prior art has obvious advantage and beneficial effect, specifically speaking, by the above technical scheme can know, through installing heightening block on work table, make film product can be placed in the reserved space between heightening block 30 and work table, let the waste material that film product produces after punching can directly drop, and then make single workbench is one station, and the whole CT of each film product is shortened 5S or so, to this to increase production processing efficiency.

[0014] In order to more clearly set forth the structural features and efficacy of the utility model, below, combining with the specific embodiment to the utility model is explained in detail. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the stereoscopic display diagram of embodiment 1 of the utility model.

[0016] Figure 2 It is the display diagram of embodiment 1 of the utility model.

[0017] Brief Description of the Drawings

[0018] 10 workbench, 20 suction assembly, 21 suction end, 22 through hole, 30 heightening block, 40 film product, 50 suction accessory, 51 shell, 52 air passage. DETAILED DESCRIPTION

[0019] Please refer to Figures 1-2 It shows the specific structure of the preferred first embodiment of the utility model, and it is a laser etching punching device convenient for cleaning waste, which comprises a workbench 10 and a suction assembly 20 arranged on the workbench 10. The suction end 21 of the suction assembly 20 is in communication with the table top of the workbench 10. The table top of the workbench 10 is provided with a heightening block 30 beside the suction end 21, and a film product 40 is placed on the heightening block 30 and covers the suction end 21. During punching, the punching equipment extrudes the film product 40 outside the heightening block 30 to cause elastic displacement. After punching, the film product 40 is elastically reset parallel to the heightening block 30 and shakes off the waste generated after punching. Compared with the existing laser etching punching device, the film product 40 is adsorbed on the workbench 10, so that the waste is left on the film product 40 when the film product 40 is punched, and the waste on the film product 40 needs to be removed manually. Compared with the existing laser etching punching device, the film product 40 can be placed on the heightening block 30 to generate a reserved space between the heightening block 30 and the workbench 10, so that the waste generated after the film product 40 is punched can directly drop, and then the single workbench is one station, and the whole CT of each film product 40 is shortened by about 5S, so as to increase the production processing efficiency.

[0020] Specifically, the workbench 10 has many matching structures, but the application required to protect is the cooperation of the raised block 30 and the adsorption end 21. Therefore, the workbench 10 only shows a plane, which is the workbench surface when the user normally processes. The adsorption assembly 20 also contains many structural components, but the application required to protect is the cooperation of the adsorption end 21 and the raised block 30. Therefore, only the adsorption end 21 is shown here, and the adsorption assembly 20 at least contains a suction pump to form a negative pressure at the adsorption end 21, which can adsorb the film product 40 placed on the raised block 30.

[0021] As Figure 1 shown, the raised block 30 is in the shape of a "mouth" and surrounds the adsorption end 21, so that the bottom end of the raised block 30 forms a negative pressure and adsorbs the film product 40. After the raised block 30 is installed on the workbench 10, the film product 40 placed on the raised block 30 has a height difference with the adsorption end 21, so that the adsorption end 21 cannot well adsorb the film product 40 on the raised block 30. Therefore, the raised block 30 is in the shape of a "mouth" and surrounds the adsorption end 21, so that the negative pressure generated at the adsorption end 21 is transferred to the upper end of the raised block 30, thereby ensuring that the film product 40 placed on the raised block 30 is stable enough and is not easily offset due to the extrusion when punching.

[0022] It should be noted that if laser punching is used, the "mouth" design of the raised block 30 can also avoid the situation that the temperature in the workshop is too high, the fan is turned on, and the airflow blows the film product 40 on the raised block 30, causing the film product 40 to be offset. In addition, due to the arrangement of the raised block 30, it is also convenient for the user to take the film product 40 on the workbench 10. When the user takes the film product 40, the film product 40 is a flexible material, and natural fluctuation will also cause the waste generated by punching to fall. Of course, the above-mentioned is in an extreme situation. Due to the arrangement of the raised block 30, there is a height difference between the film product 40 on the raised block 30 and the workbench 10. When laser punching is performed, the waste generated by punching the film product 40 will naturally fall under the action of gravity.

[0023] As Figure 1 shown, the adsorption assembly 20 includes multiple rows of through holes 22 arranged on the workbench 10. The through holes 22 are adjacent to the inner side of the raised block 30, and the adsorption end 21 is located at the top of the through holes 22. When the raised block 30 is in the shape of a "mouth", in order to increase the negative pressure suction force at the top end of the raised block 30, the adsorption end 21 is arranged as multiple through holes 22 arranged at equal intervals. By opening the through holes 22, the negative pressure suction force at the raised block 30 is increased, so that the film product 40 placed at the top end of the raised block 30 is adsorbed more tightly.

[0024] As Figure 1As shown, the height of the exemplary heightening block 30 is 1-3 cm. With the increase of the height of the heightening block 30, the waste produced by the punching on the film product 40 can be more easily dropped from the film product 40 after the punching is completed.

[0025] The height of the heightening block 30 is 0.4-1 cm.

[0026] As shown, the workbench 10 is further provided with two opposite suction accessories 50 on the tabletop, and the two suction accessories 50 are located at two opposite sides of the heightening block 30. Figure 1

[0027] The suction accessory 50 comprises two housings 51 mounted on the workbench 10, and an air duct 52 arranged in the inner cavity of the two housings 51, and the air duct 52 is penetrated by the opposite surfaces of the two housings 51.

[0028] The air inlet end of the air duct 52 corresponds to the heightening block 30. An air suction pump can be arranged in the suction accessory 50, and the waste dropped from the film product 40 can be collected by generating negative pressure at the air inlet end of the air duct 52 through the operation of the air suction pump.

[0029] The above is only a preferred embodiment of the present application, and does not limit the technical scope of the present application. Any slight modification, equivalent change and modification made according to the technical essence of the present application shall still fall within the scope of the technical scheme of the present application.​

Claims

1. A laser engraving and drilling device for easy waste removal, characterized in that: It includes a workbench (10) and an adsorption component (20) provided on the workbench (10). The adsorption end (21) of the adsorption component (20) is communicated with the tabletop of the workbench (10). A heightening block (30) is provided on the tabletop of the workbench (10) beside the adsorption end (21), and a thin film product (40) is placed on the heightening block (30) and covers the adsorption end (21). When punching, the punching device squeezes the thin film product (40) outside the heightening block (30) to generate elastic displacement. After punching, the thin film product (40) elastically resets to be parallel to the heightening block (30), and discharges the waste generated after punching.

2. The laser engraving and drilling device for easy waste removal according to claim 1, characterized in that: The heightening block (30) is in a "mouth" shape and surrounds the adsorption end (21), so that a negative pressure is formed at the bottom end of the heightening block (30) to adsorb the thin film product (40).

3. The laser engraving and drilling device for easy waste removal according to claim 1, characterized in that: The adsorption component (20) includes multiple rows of through holes (22) provided on the workbench (10). The through holes (22) are adjacent to the inner side of the heightening block (30), and the adsorption end (21) is located at the top of the through holes (22).

4. The laser engraving and drilling device for easy waste removal according to claim 1, characterized in that: The height of the heightening block (30) is 1 - 3 cm.

5. The laser engraving and drilling device for easy waste removal according to claim 1, characterized in that: The height of the heightening block (30) is 0.4 - 1 cm.

6. The laser engraving and drilling device for easy waste removal according to claim 2, characterized in that: Two opposite adsorption parts (50) are further provided on the tabletop of the workbench (10), and the two adsorption parts (50) are located on two opposite sides of the heightening block (30).

7. The laser engraving and drilling device for easy waste removal according to claim 6, characterized in that: The adsorption part (50) includes two outer shells (51) installed on the workbench (10), and an air duct (52) provided in the inner cavities of the two outer shells (51). The air duct (52) penetrates out from the opposite surfaces of the two outer shells (51).

8. The laser engraving and drilling device for easy waste removal according to claim 7, characterized in that: The air inlet end of the air duct (52) corresponds to the heightening block (30).