Glass laser processing cooling auxiliary device
By spraying water at the bottom of the glass laser processing device, the permeating water flow carries away waste residue and waste heat, solving the problem of insufficient surface air blowing cooling and achieving efficient cooling and improved finished product quality in glass laser processing.
Patent Information
- Application Number
- CN202520110763.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-17
AI Technical Summary
In existing technologies, the surface cooling effect of air blowing during glass laser processing is limited, especially in laser drilling where the cooling capacity at the hottest location is insufficient, resulting in poor quality of the finished product.
Design a cooling auxiliary device for glass laser processing. Through the cooperation of water inlet pipe, five-way valve and metal soft water pipe, water is sprayed from the bottom of the glass to penetrate into the interior and remove waste residue and waste heat. The water flow intensity is controlled by air inlet pipe and ball valve. Combined with mesh receiving box and water receiving tank, waste material is collected to achieve bottom cooling.
It effectively removes heat from the processing focus, significantly reducing glass overheating and cracking, and improving processing yield and efficiency.
Smart Images

Figure CN223879640U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to laser glass material processing residue and heat treatment method technical field, concretely is a kind of glass laser processing cooling auxiliary device. BACKGROUND
[0002] Glass is a kind of inorganic non-metallic material, usually by quartz sand, limestone, soda ash etc. After raw materials are mixed, it is made by melting, forming, cooling at high temperature. It does not have fixed melting point, but gradually softens in certain temperature range, and the principle of glass laser processing is that the light beam of high energy density of laser is focused on the surface of glass, so that material occurs photothermal effect and thermal expansion under laser beam irradiation. Through evaporation or dissolution in laser beam irradiation area, cutting, carving, drilling, marking, welding and other processing processes are realized;In general, glass laser processing will blow gas on the upper surface of glass to assist heat dissipation;
[0003] But when radiating heat, it is to blow gas on the upper surface of glass to assist cooling, but the cooling position is mostly the upper surface of glass, and gas is not easy to penetrate into the material inside, and the laser punching mode is from bottom to top processing, so the cooling capacity of the mode of blowing gas on the upper surface is very limited, resulting in poor finished product after processing, therefore, we provide a kind of glass laser processing cooling auxiliary device. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of glass laser processing cooling auxiliary device.
[0005] To solve the problems in the above background, the utility model provides the following technical scheme: a kind of glass laser processing cooling auxiliary device, including support, the two sides of the both ends of the support are equipped with mounting block, the side of the mounting block in one end is penetrated and is equipped with first screw rod, the center of the both ends of the support is equipped with moving plate, the inner side of the moving plate is equipped with slide, the one end of the slide is provided with five-way valve, the four corners of the lower end of the five-way valve are equipped with metal soft water pipe, the four corners of the upper end of the five-way valve are equipped with ball valve, the side of the ball valve is equipped with air inlet pipe, the center of the lower end of the five-way valve is equipped with water inlet pipe, the both sides of the support are equipped with closure plate, the one end of the closure plate is respectively provided with water pump and control box, the inside of the support is equipped with mesh material receiving box, the lower end of the support is equipped with water receiving groove, the one end of the water receiving groove is equipped with drain valve.
[0006] Preferably, the slide and the support are slidingly connected, and the slide is fixedly connected with the five-way valve.
[0007] Preferably, the five-way valve is located inside the support, and the support is located directly below the laser processing equipment.
[0008] Preferably, one end of the mounting block is provided with a first stepper motor, the upper end of the moving plate is provided with a fixed block, the two sides of one end of the fixed block are respectively provided with a second screw rod and a first sliding rod penetratingly, one end of the fixed block is provided with a second stepper motor, the moving block is installed on the second screw rod, the inner side of the moving block is provided with a laser processing equipment, and the other end of the mounting block is provided with a second sliding rod penetratingly.
[0009] Preferably, the first screw rod and the second sliding rod penetrate through the moving plate, and the second sliding rod is in sliding connection with the moving plate.
[0010] Preferably, the second screw rod and the first sliding rod penetrate through the moving block, and the first sliding rod is in sliding connection with the moving block.
[0011] By the cooperation of the water inlet pipe, the water pump, the five-way valve and the metal soft water pipe, water can be sprayed from the bottom to the glass, so that the water flow can penetrate into the track of the laser on the glass, and the glass waste and most of the waste heat can be carried away, and by the cooperation of the air inlet pipe and the ball valve, the water pipe of a specific section of branch pipe can be opened and closed, and the water flow strength or the water consumption can be ensured or reduced, then the processed waste material can be collected through the mesh material receiving box, and the dripping waste water can be collected through the cooperation of the water receiving groove and the drain valve, so that the glass laser processing cooling auxiliary device can be cooled from the bottom, the heat at the processing focal point can be effectively carried away, the glass heating and explosion can be significantly reduced, and the processing yield can be improved.
[0012] By the cooperation of the first stepper motor, the mounting block, the first screw rod and the moving plate, the five-way valve and the laser processing equipment can be driven to move towards the closed plate through the sliding plate and the fixed block respectively, and by the cooperation of the second stepper motor, the second screw rod and the moving block, the laser processing equipment can be driven to move towards the fixed block, then the five-way valve and the laser processing equipment can be moved more stably through the cooperation of the first sliding rod and the second sliding rod, so that the glass laser processing cooling auxiliary device can drive the five-way valve and the laser processing equipment to move, the area to be processed on the glass can be positioned conveniently, and the overall processing efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a structure schematic view of the embodiment of the utility model;
[0014] Figure 2 It is a sectional view of the embodiment of the utility model;
[0015] Figure 3 It is a connecting structure view of the bracket and the closed plate in the embodiment of the utility model;
[0016] Figure 4The utility model discloses a mounting block and the connecting structure schematic drawing of second slide bar in the embodiment of the utility model.
[0017] In the drawing: 1, support; 2, mounting block; 3, first screw rod; 4, moving plate; 5, slide plate; 6, five-way valve; 7, metal soft water pipe; 8, ball valve; 9, air inlet pipe; 10, water inlet pipe; 11, water pump; 12, control box; 13, mesh material receiving box; 14, water receiving tank; 15, drain valve; 16, first stepper motor; 17, fixed block; 18, second stepper motor; 19, second screw rod; 20, moving block; 21, laser processing equipment; 22, first slide rod; 23, second slide rod; 24, closing plate. DETAILED DESCRIPTION
[0018] The utility model discloses a specific embodiment of making further explanation to the utility model below combining the drawing. It needs to explain here for these implementation, but it is not the limitation to the utility model for helping understanding the utility model. In addition, the technical features involved in each embodiment of the utility model described below can be combined with each other as long as they do not conflict with each other.
[0019] Embodiment 1:
[0020] Please refer to Figures 1-4 The utility model provides a technical scheme: a glass laser processing cooling auxiliary device, including support 1, both sides of both ends of support 1 are installed with mounting block 2, and one side of the mounting block 2 of one end is provided with first screw rod 3, and the center of both ends of support 1 is installed with moving plate 4, and the inner side of moving plate 4 is installed with slide plate 5, and one end of slide plate 5 is provided with five-way valve 6, and the four corners of the lower end of five-way valve 6 are installed with metal soft water pipe 7, and the four corners of the upper end of five-way valve 6 are installed with ball valve 8, and one side of ball valve 8 is installed with air inlet pipe 9, and the center of the lower end of five-way valve 6 is installed with water inlet pipe 10, and both sides of support 1 are installed with closing plate 24, and one end of closing plate 24 is provided with water pump 11 and control box 12 respectively, and the inside of support 1 is installed with mesh material receiving box 13, and the lower end of support 1 is installed with water receiving tank 14, and one end of water receiving tank 14 is installed with drain valve 15.
[0021] Slide plate 5 and support 1 slidingly connect, and slide plate 5 is fixedly connected with five-way valve 6.
[0022] Five-way valve 6 is located in the inside of support 1, and support 1 is located directly below laser processing equipment 21.
[0023] Specifically, by connecting the water inlet pipe 10 and the air inlet pipe 9 with the water tank and the air source respectively, then placing the glass to be processed above the five-way valve 6, then starting the water pump 11 through the control box 12, and opening the ball valve 8 close to the processing position according to the processing width, so that the metal soft water pipe 7 below the ball valve 8 covers the processing area of the glass with water flow, then the laser processing equipment 21 is started through the control box 12 to process the processing area of the glass, at this time the water flow in contact with the glass will penetrate into the glass inside the track passed by the laser, thereby taking away the glass waste and most of the waste heat, and effectively reducing the glass heating and avoiding the glass dust entering the air, then the cooled water flow will fall downwards, thereby falling into the water collecting tank 14, when the laser processing equipment 21 completes the processing, the processed waste will fall off the glass, at this time the mesh material receiving box 13 will receive the waste for easy collection, then the waste water in the water collecting tank 14 can be discharged through the drain valve 15, and the metal soft water pipe 7 can avoid being burned by the laser, and can ensure the flexibility of switching in different directions, then the ball valve 8 can ensure the water flow intensity or reduce the water consumption, so that the glass laser processing cooling auxiliary device can be cooled from the bottom, which can effectively take away the heat at the processing focal point, significantly reduce the glass heating and cracking, and improve the processing yield.
[0024] Embodiment 2:
[0025] Please refer to Figures 1-4 The utility model provides a technical scheme: a glass laser processing cooling auxiliary device, one end of mounting block 2 is provided with first stepper motor 16, the upper end of moving plate 4 is installed with fixed block 17, both sides of one end of fixed block 17 are respectively penetrated and set up with second screw rod 19 and first slide 22, and one end of fixed block 17 is provided with second stepper motor 18, and moving block 20 is installed on second screw rod 19, and the inboard of moving block 20 is provided with laser processing equipment 21, and one end of the other end mounting block 2 is penetrated and set up with second slide 23.
[0026] First screw rod 3 and second slide 23 all penetrate moving plate 4, and second slide 23 is slidably connected with moving plate 4.
[0027] Second screw rod 19 and first slide 22 all penetrate moving block 20, and first slide 22 is slidably connected with moving block 20.
[0028] Specific, by need to adjust the five-way valve 6 and laser processing equipment 21 to the direction of the closure plate 24, by controlling the box 12 is started first step motor 16, make the first step motor 16 drive the first screw rod 3 rotation, at this time the first screw rod 3 in rotation, will drive the moving plate 4 on the second slide rod 23 sliding, and close to one side of the closure plate 24, then the moving plate 4 in the movement, will drive the five-way valve 6 through the slide plate 5 below the glass to move, and through the fixed block 17 and the second screw rod 19 drive laser processing equipment 21 above the glass to move, when the five-way valve 6 and laser processing equipment 21 to the required position stop, vice versa to the other side, when need to adjust the laser processing equipment 21 to the direction of the fixed block 17, by controlling the box 12 is started second step motor 18, make the second step motor 18 drive the second screw rod 19 rotation, so as to drive the moving block 20 drive laser processing equipment 21 to move, and slide on the first slide rod 22, when the laser processing equipment 21 to the required position stop, vice versa to the other side, so that the glass laser processing cooling auxiliary device can drive the five-way valve 6 and laser processing equipment 21 to move, convenient for the glass on the need to process the region positioning, improve the overall processing efficiency.
[0029] The embodiments of the present application are described in detail above with reference to the drawings, but the present application is not limited to the described embodiments. For those skilled in the art, various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirit of the present application, and still fall within the scope of the present application.
Claims
1. A glass laser processing cooling auxiliary device comprising a support (1), characterized in that: The both ends of the support (1) are provided with mounting blocks (2), one side of the mounting block (2) is provided with a first screw rod (3), the both ends of the support (1) are provided with moving plates (4), the inner side of the moving plate (4) is provided with a sliding plate (5), one end of the sliding plate (5) is provided with a five-way valve (6), the lower end of the five-way valve (6) is provided with a metal soft water pipe (7), the upper end of the five-way valve (6) is provided with a ball valve (8), one side of the ball valve (8) is provided with an air inlet pipe (9), the lower end of the five-way valve (6) is provided with a water inlet pipe (10), the both sides of the support (1) are provided with closing plates (24), one end of the closing plate (24) is provided with a water pump (11) and a control box (12), respectively, the inside of the support (1) is provided with a mesh material receiving box (13), the lower end of the support (1) is provided with a water receiving groove (14), one end of the water receiving groove (14) is provided with a drain valve (15).
2. The cooling device for glass laser processing according to claim 1, wherein: The sliding plate (5) is slidably connected with the support (1), and the sliding plate (5) is fixedly connected with the five-way valve (6).
3. The cooling device for glass laser processing according to claim 2, wherein: The five-way valve (6) is located in the support (1), and the support (1) is located directly below the laser processing equipment (21).
4. The cooling device for glass laser processing according to claim 1, wherein: One end of the mounting block (2) is provided with a first stepping motor (16), the upper end of the moving plate (4) is provided with a fixed block (17), the both sides of one end of the fixed block (17) are provided with a second screw rod (19) and a first sliding rod (22), respectively, one end of the fixed block (17) is provided with a second stepping motor (18), the second screw rod (19) is provided with a moving block (20), the inner side of the moving block (20) is provided with a laser processing equipment (21), and one end of the mounting block (2) is provided with a second sliding rod (23).
5. The cooling device for glass laser processing according to claim 4, wherein: The first screw rod (3) and the second sliding rod (23) penetrate through the moving plate (4), and the second sliding rod (23) is slidably connected with the moving plate (4).
6. The cooling device for glass laser processing according to claim 4, wherein: The second screw rod (19) and the first sliding rod (22) penetrate through the moving block (20), and the first sliding rod (22) is slidably connected with the moving block (20).