Drilling tooling table for tempered glass production

By using laser positioning and airbag air pressure control technology on the drilling tool table in tempered glass production, the problems of inaccurate positioning of the drilling holes and difficult to control the force in the prior art are solved, and a high accuracy and safety drilling process is achieved.

CN115302636BActive Publication Date: 2025-06-27HEFEI ZHENGZE INTELLECTUAL PROPERTY OPERATION CO LTD
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Patent Information

Application Number
CN202211005581.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-22
Publication Date
2025-06-27
Estimated Expiration
2042-08-22

AI Technical Summary

Technical Problem

The existing drilling tooling tables in tempered glass production are difficult to accurately position the positions on the glass that need to be processed, resulting in drilling deviation and quality reduction. At the same time, it is difficult to control the drilling force manually, which is easy to cause glass to break.

Method used

The first screw and the second screw in the vertical and horizontal movement assembly are used to drive the laser lamp on the second slider to the position where the hole needs to be drilled in the glass, and the drilling machine and the laser lamp are moved in synchronously to achieve accurate positioning of the drilling position. At the same time, the air supply pump is filled with air into the airbag, causing the airbag to expand, driving the drilling machine to move downward, and controlling the expansion size of the airbag through the air pressure control valve to ensure that the pressure applied by the drilling machine remains consistent during the drilling process.

Benefits of technology

Improve the positioning accuracy of the drilling position, reduce drilling deviation, improve drilling quality, and ensure the safety of the drilling process through uniform air pressure control.

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Abstract

The present invention discloses a drilling tooling table for tempered glass production, belonging to the field of glass production. The drilling tooling table for tempered glass production includes a processing table. A vertical and horizontal movement component is arranged inside the processing table, and a laser lamp for positioning the drilling position is arranged on the vertical and horizontal movement component; A fixing frame is fixedly connected to the top of the processing table, a following component is arranged inside the fixing frame, a control box is arranged on the following component, an adjusting component for adjusting the drilling pressure is arranged inside the control box, a drilling machine for drilling the glass is arranged at the bottom of the adjusting component, and the drilling machine moves synchronously with the laser lamp. The laser lamp is driven by the vertical and horizontal movement component to move to the position where the glass needs to be drilled. At the same time, the vertical and horizontal movement component drives the following component to move synchronously, adjusts the position of the drilling machine, and enables the drilling machine to move synchronously and in the same direction as the laser lamp, improving the accuracy of positioning.
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Description

Technical Field

[0001] The present invention relates to the technical field of glass production, and particularly to a drilling tooling table for tempered glass production. Background Art

[0002] Glass is formed by melting silica and other chemical substances (the main production raw materials are: soda ash, limestone, quartz); when melting, it forms a continuous network structure, and during the cooling process, the viscosity gradually increases and hardens to cause crystallization of silicate non-metallic materials. It is widely used in buildings to isolate wind and let light in, and belongs to a mixture. There are also colored glasses that show colors by mixing certain metal oxides or salts, and tempered glasses obtained by physical or chemical methods, etc.

[0003] Publication No. CN110802750A discloses a drilling device for optoelectronic glass processing, including a workbench and a motor. A turntable is provided on the upper side of the workbench. A rotating shaft is provided at the center of the bottom surface of the turntable. The bottom end of the rotating shaft is connected to a bearing seat, and the bearing seat is installed on the workbench. A plurality of cushion blocks are installed on the upper side surface of the turntable, and suction cups are provided on the cushion blocks. A limiting component for limiting the position of the turntable is provided on the workbench; a moving mechanism for moving the positions of the motor and the drill bit is also provided on the workbench. The drilling device for optoelectronic glass processing can adjust the positions of the motor and the drill bit by horizontally moving the slider, and the motor seat and the motor move accordingly. Then, in cooperation with the rotation of the turntable, the drill bit can be adjusted above the drilling position; by controlling the sliding sleeve and the cross beam to move downward with the handle, the motor and the drill bit move downward accordingly, and drilling can be carried out; there is no need for people to hold the electric drill for a long time, reducing the labor intensity and also improving the work efficiency.

[0004] Although the above patent reduces the labor intensity of manual drilling when in use, when adjusting the drill bit and the drilling position, it is impossible to accurately position the position to be processed on the glass, and drilling deviation is likely to occur, reducing the quality of drilling. At the same time, when drilling, the force applied by the drill bit to the glass is manually controlled. If the force is too light, the drilling speed is slow, and if the force is too heavy, the glass will be broken, and it is difficult to control the force applied during drilling. Summary of the Invention

[0005] In order to overcome the above technical problems, the purpose of the present invention is to provide a drilling tooling table for tempered glass production. The first lead screw and the second lead screw in the transverse and longitudinal movement components drive the laser lamp on the second slider to move to the position where the glass needs to be drilled. At the same time, when the first lead screw and the second lead screw move, they drive the third lead screw and the fourth lead screw on the following component to move synchronously, adjust the position of the drilling machine, so that the drilling machine and the laser lamp move synchronously in the same direction, and position the drilling position on the glass through the ray of the laser lamp, improving the accuracy of positioning.

[0006] The purpose of the present invention can be achieved through the following technical solutions:

[0007] A drilling tooling table for tempered glass production comprises a processing table, wherein a longitudinal and transverse moving component is arranged inside the processing table, and a laser lamp for positioning the drilling position is arranged on the longitudinal and transverse moving component; a fixing frame is fixedly connected to the top of the processing table, a following component is arranged inside the fixing frame, and a control box is arranged on the following component, and an adjusting component for adjusting the drilling pressure is arranged inside the control box, and a drilling machine for drilling holes in glass is arranged at the bottom of the adjusting component, and the drilling machine moves synchronously with the laser lamp.

[0008] As a further solution of the present invention: the longitudinal and transverse moving assembly includes a first concave frame fixedly connected to both sides of the inner wall of the processing table, the first concave frame is rotatably connected to a first screw rod, two groups of the first screw rods are connected to each other through a first transmission chain, one side of one group of the first concave frames is fixedly connected to a transverse motor, the output end of the transverse motor passes through the first concave frame and is fixedly connected to the first screw rod, a first slider is threadedly connected to the first screw rod, the bottom of the first slider is in contact with the first concave frame, a second screw rod is rotatably connected between the two groups of the first sliders, one side of one group of the first sliders is fixedly connected to a longitudinal motor, the output end of the longitudinal motor passes through the first slider and is fixedly connected to the second screw rod, the outer wall of the second screw rod is threadedly connected to a second slider, the laser lamp is fixedly connected to the top of the second slider, and the top of the second slider is in contact with the inner wall of the top of the processing table.

[0009] As a further solution of the present invention: the following component includes two groups of second concave frames respectively fixedly connected to the inner walls on both sides of the fixed frame, the second concave frames are rotatably connected to a third screw rod, the two groups of the third screw rods are connected to each other through a second transmission chain, one group of the third screw rods is connected to the first screw rod on the same side through a third transmission chain, a third slider is threadedly connected to the third screw rod, a fourth screw rod is rotatably connected between the two groups of the third sliders, one end of the fourth screw rod passes through the third slider and is connected to the second screw rod through a fourth transmission chain, a fourth slider is threadedly connected to the fourth screw rod, the top of the fourth slider is in contact with the inner wall of the top of the fixed frame, and the control box is fixedly connected to the bottom of the fourth slider.

[0010] As a further solution of the present invention: The adjusting component includes a lifting rod slidably connected to the bottom of the control box. The bottom end of the lifting rod penetrates through the control box and is fixedly connected to the top of the drilling machine. The top end of the lifting rod is fixedly connected with a moving plate. A return spring is sleeved on the outer wall of the lifting rod. The two ends of the return spring respectively abut against the inner wall of the bottom of the control box and the bottom of the moving plate. An airbag is arranged on the moving plate. An air supply pump is fixedly connected to the outer wall of one side of the control box. The output end of the air supply pump is fixedly connected with an air outlet pipe. One end of the air outlet pipe far away from the air supply pump penetrates through the control box and is communicated with the airbag.

[0011] As a further solution of the present invention: A deflation valve is fixedly connected to the air outlet pipe, and the deflation valve is used to discharge the gas in the airbag.

[0012] As a further solution of the present invention: A pneumatic control valve is fixedly connected to one side of the control box. The pneumatic control valve is connected to the inside of the airbag and is electrically connected to the air supply pump.

[0013] As a further solution of the present invention: A chute is arranged on one side of the control box. A threaded rod is slidably connected to the chute. One end of the threaded rod located inside the control box is fixedly connected with a fixed block. A sliding rod is slidably connected to the fixed block. The top of the sliding rod is fixedly connected with a top block. A decompression spring is sleeved on the outer wall of the sliding rod. The two ends of the decompression spring respectively abut against the fixed block and the top block. A nut is threadedly connected to one side of the threaded rod located outside the control box, and the nut is attached to the outer wall of the control box.

[0014] As a further solution of the present invention: A scale line is arranged on one side of the chute, and the scale line is flush with the chute.

[0015] As a further solution of the present invention: The top of the processing table is a transparent plate, and the transparent plate facilitates the laser lamp to penetrate and locate the drilling position on the glass.

[0016] The beneficial effects of the present invention:

[0017] 1. In the present invention, the laser lamp on the second slider is driven by the first lead screw and the second lead screw in the horizontal and vertical movement components to move to the position where the glass needs to be drilled. At the same time, when the first lead screw and the second lead screw move, they drive the third lead screw and the fourth lead screw on the following component to move synchronously, adjust the position of the drilling machine, so that the drilling machine moves synchronously and in the same direction as the laser lamp, and the drilling position on the glass is positioned through the ray of the laser lamp, improving the accuracy of positioning.

[0018] 2. In the present invention, an air supply pump is used to fill air into the airbag, causing the airbag to expand. The expansion of the airbag squeezes the moving plate, and the moving plate drives the drilling machine to move downward through the lifting rod to drill the glass. At the same time, the pressure of the airbag expansion size is controlled by the pneumatic control valve, so that the pressure applied during the drilling process of the drilling machine remains consistent, improving the safety of drilling.

[0019] 3. In the present invention, the top block is arranged below the moving plate. When the moving plate drives the drilling machine to almost drill through the glass, the moving plate abuts against the top block. The tension applied by the decompression spring sleeved on the outer wall of the sliding rod reduces the downward movement speed of the moving plate and slows down the movement speed of the drilling machine, avoiding the occurrence of edge breakage at the bottom edge hole of the glass and improving the quality of drilling. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention will be further described below with reference to the accompanying drawings.

[0021] Figure 1 is the front view sectional structure schematic diagram of the present invention;

[0022] Figure 2 is the rear view structure schematic diagram of the present invention;

[0023] Figure 3 is the internal structure schematic diagram of the control box in the present invention;

[0024] Figure 4 is the present invention Figure 3 partial enlarged structure schematic diagram of part A.

[0025] In the figure: 1. Processing table; 101. Fixed frame; 2. Horizontal and vertical movement assembly; 201. First concave frame; 202. First lead screw; 2021. Horizontal motor; 203. First slider; 204. First transmission chain; 205. Second lead screw; 2051. Longitudinal motor; 206. Second slider; 3. Laser lamp; 4. Control box; 401. Chute; 5. Drilling machine; 6. Adjustment assembly; 601. Lifting rod; 602. Moving plate; 603. Return spring; 604. Airbag; 605. Air supply pump; 606. Air outlet pipe; 6061. Air release valve; 607. Pneumatic control valve; 7. Threaded rod; 701. Fixed block; 702. Sliding rod; 703. Top block; 704. Decompression spring; 705. Nut; 706. Scale line; 8. Following assembly; 801. Second concave frame; 802. Third lead screw; 803. Second transmission chain; 804. Third transmission chain; 805. Third slider; 806. Fourth lead screw; 807. Fourth transmission chain; 808. Fourth slider; 9. Transparent plate. DETAILED DESCRIPTION OF THE INVENTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0027] like Figures 1 - 4 As shown, a drilling tooling table for tempered glass production includes a processing table 1, a longitudinal and transverse moving component 2 is arranged inside the processing table 1, and a laser lamp 3 for positioning the drilling position is arranged on the longitudinal and transverse moving component 2; a fixing frame 101 is fixedly connected to the top of the processing table 1, a following component 8 is arranged inside the fixing frame 101, a control box 4 is arranged on the following component 8, an adjusting component 6 for adjusting the drilling pressure is arranged in the control box 4, a drilling machine 5 for drilling holes in the glass is arranged at the bottom of the adjusting component 6, and the drilling machine 5 moves synchronously with the laser lamp 3.

[0028] like Figure 1 and Figure 2 As shown, the longitudinal and transverse moving assembly 2 includes a first concave frame 201 fixedly connected to both sides of the inner wall of the processing table 1, a first screw rod 202 is rotatably connected to the first concave frame 201, two groups of first screw rods 202 are connected to each other through a first transmission chain 204, a transverse motor 2021 is fixedly connected to one side of one group of first concave frames 201, an output end of the transverse motor 2021 passes through the first concave frame 201 and is fixedly connected to the first screw rod 202, a first slider 203 is threadedly connected to the first screw rod 202, the bottom of the first slider 203 is attached to the first concave frame 201, a second screw rod 205 is rotatably connected between the two groups of first sliders 203, and a group of first sliders 203 A longitudinal motor 2051 is fixedly connected to one side, and the output end of the longitudinal motor 2051 passes through the first slider 203 and is fixedly connected to the second screw rod 205. The outer wall of the second screw rod 205 is threadedly connected to the second slider 206. The laser lamp 3 is fixedly connected to the top of the second slider 206. The top of the second slider 206 is in contact with the inner wall of the top of the processing table 1. The first slider 203 on the first screw rod 202 drives the laser lamp 3 to move horizontally, and the horizontal position of the laser lamp 3 and the glass drilling position is adjusted. Then, the second slider 206 is driven to move by the second screw rod 205, and the second slider 206 drives the laser lamp 3 to adjust longitudinally to position the glass drilling position.

[0029] like Figure 1 and Figure 2As shown, the following component 8 includes two groups of second concave frames 801 respectively fixedly connected to the inner walls on both sides of the fixing frame 101, the second concave frames 801 are rotatably connected with a third screw rod 802, the two groups of third screw rods 802 are transmission-connected by a second transmission chain 803, one group of third screw rods 802 is transmission-connected to the first screw rod 202 on the same side by a third transmission chain 804, a third slider 805 is threadedly connected to the third screw rod 802, a fourth screw rod 806 is rotatably connected between the two groups of third sliders 805, one end of the fourth screw rod 806 passes through the third slider 805 and is transmission-connected to the second screw rod 205 by a fourth transmission chain 807, a fourth slider 808 is threadedly connected to the fourth screw rod 806, the top of the fourth slider 808 is in contact with the inner wall of the top of the fixing frame 101, and the control box 4 is fixedly connected to the bottom of the fourth slider 808, so that the control box 4 drives the drilling machine 5 at the bottom to move synchronously with the laser light 3.

[0030] like Figure 3 As shown, the adjustment component 6 includes a lifting rod 601 slidably connected to the bottom of the control box 4, the bottom end of the lifting rod 601 passes through the control box 4 and is fixedly connected to the top of the drilling machine 5, the top of the lifting rod 601 is fixedly connected to a moving plate 602, the outer wall of the lifting rod 601 is sleeved with a return spring 603, the two ends of the return spring 603 are respectively against the inner wall of the bottom of the control box 4 and the bottom of the moving plate 602, an air bag 604 is placed on the moving plate 602, an outer wall of one side of the control box 4 is fixedly connected to an air supply pump 605, the output end of the air supply pump 605 is fixedly connected to an air outlet pipe 606, and the air outlet pipe 606 is away from the air supply pump 605. A control box 4 is connected to the air bag 604, and an air release valve 6061 is fixedly connected to the air outlet pipe 606. The air release valve 6061 is used to discharge the gas in the air bag 604, and then the movable plate 602 is pushed to move upward and reset through the tension of the reset spring 603. At the same time, the movable plate 602 drives the drilling machine 5 to move upward and reset through the lifting rod 601. An air pressure control valve 607 is fixedly connected to one side of the control box 4. The air pressure control valve 607 is connected to the inside of the air bag 604. The air pressure control valve 607 is electrically connected to the air supply pump 605 to control the start and stop of the air supply pump 605, so as to pressurize the inside of the air bag 604.

[0031] like Figure 3 and Figure 4, as shown, a chute 401 is provided on one side of the control box 4. A threaded rod 7 is slidably connected to the chute 401. One end of the threaded rod 7 located inside the control box 4 is fixedly connected to a fixed block 701. A slide rod 702 is slidably connected to the fixed block 701. The top of the slide rod 702 is fixedly connected to a top block 703. A decompression spring 704 is sleeved on the outer wall of the slide rod 702. The two ends of the decompression spring 704 are respectively abutted against the fixed block 701 and the top block 703. One side of the threaded rod 7 located outside the control box 4 is threadedly connected to a nut 705. The nut 705 is in contact with the outer wall of the control box 4. A scale line 706 is provided on one side of the chute 401. The scale line 706 is flush with the chute 401, which is convenient for adjusting the distance between the top block 703 driven by the threaded rod 7 and the bottom of the moving plate 602. When the moving plate 602 moves downward and the drill 5 only has 0.1 mm thickness left for drilling the glass, the moving plate 602 is in contact with the top block 703 and is abutted against the top block 703 by the tension of the decompression spring 704, so that the top block 703 exerts a reverse thrust on the moving plate 602, reducing the speed of the moving plate 602 driving the drill 5 to move downward, and reducing the drilling speed of the drill 5 for the last 0.1 mm of the glass, avoiding the occurrence of edge explosion due to too fast drilling of the bottom side hole of the glass and improving the drilling quality.

[0032] The top of the processing table 1 is a transparent plate 9, which is convenient for the laser lamp 3 to penetrate and position the drilling position of the glass.

[0033] Working principle of the present invention: When in use, the user places the glass on the transparent plate 9 on the processing table 1, then starts the laser lamp 3, and then starts the transverse motor 2021. The transverse motor 2021 drives the first lead screw 202 to rotate. The first slider 203 on the first lead screw 202 drives the second lead screw 205 to move. The second slider 206 on the second lead screw 205 drives the laser lamp 3 to move horizontally, adjusting the horizontal position between the ray of the laser lamp 3 and the glass drilling, so that the ray of the laser lamp 3 is vertically coincident with the glass drilling position longitudinally. Then start the longitudinal motor 2051. The longitudinal motor 2051 drives the second lead screw 205 to rotate. The second slider 206 on the second lead screw 205 rotates. The second slider 206 drives the laser lamp 3 to move longitudinally. The ray on the laser lamp 3 moves in the direction of the glass drilling position following the laser lamp 3. When the ray of the laser lamp 3 coincides with the drilling position on the glass, stop the longitudinal motor 2051. At the same time, when the first lead screw 202 and the second lead screw 205 rotate to adjust the position of the laser lamp 3, the first lead screw 202 drives the third lead screw 802 to rotate through the third transmission chain 804. The third lead screw 802 drives the drilling machine 5 on the fourth lead screw 806 to move horizontally synchronously through the third slider 805. When the second lead screw 205 drives the fourth lead screw 806 to rotate through the fourth transmission chain 807, the fourth lead screw 806 drives the drilling machine 5 at the bottom of the control box 4 to move longitudinally synchronously through the fourth slider 808, so that the drill bit of the drilling machine 5 is collinear with the drilling position and the ray of the laser lamp 3, improving the positioning accuracy. Then start the air supply pump 605. The air supply pump 605 extracts air from the outside and sends it into the airbag 604 through the air outlet pipe 606. The air inside the airbag 604 increases and expands. The expanded airbag 604 pushes the moving plate 602 downward. The moving plate 602 drives the lifting rod 601 downward. The lifting rod 601 drives the drilling machine 5 downward. When the bottom of the drill bit of the drilling machine 5 is in contact with the upper surface of the glass, stop the air supply of the air supply pump 605. Then start the drilling machine 5. The drilling machine 5 drills the glass. The air pressure control valve 607 controls the air supply pump 605 to fill the airbag 604 with air, so that the pressure inside the airbag 604 is enhanced. The air pressure control valve 607 controls the pressure inside the airbag 604. When the pressure is greater than the pressure of the first inflation of the airbag 604 by 0.1 MPa, stop the air supply of the air supply pump 605. At this time, the pressure inside the airbag 604 increases and expands, pushing the moving plate 602 to move. The moving plate 602 drives the drilling machine 5 downward through the lifting rod 601, applying a pressure generated by 0.1 MPa to the glass being drilled. When the drilling machine 5 moves downward while drilling the glass, the pressure applied by the drilling machine 5 to the glass decreases. At this time, the space inside the airbag 604 increases and the pressure decreases. The air pressure control valve 607 controls the air supply pump 605 to start filling the airbag 604 with air, so that the pressure inside the airbag 604 always maintains an increase of 0.1 MPa, improving the uniformity of the drilling pressure application.

[0034] The above has described in detail an embodiment of the present invention, but the above content is only a preferred embodiment of the present invention and cannot be considered as limiting the scope of implementation of the present invention. All equivalent changes and improvements made according to the scope of the application of the present invention shall still fall within the scope covered by the patent of the present invention.

Claims

1. Drilling tooling table for tempered glass production, including a processing table (1), characterized in that, A longitudinal and transverse moving component (2) is arranged inside the processing table (1), and a laser lamp (3) for locating a drilling position is arranged on the longitudinal and transverse moving component (2); The top of the processing table (1) is fixedly connected to a fixing frame (101), a following component (8) is arranged inside the fixing frame (101), a control box (4) is arranged on the following component (8), an adjusting component (6) for adjusting drilling pressure is arranged inside the control box (4), a drilling machine (5) for drilling holes in glass is arranged at the bottom of the adjusting component (6), and the drilling machine (5) moves synchronously with the laser light (3); The following assembly (8) comprises two groups of second concave frames (801) respectively fixedly connected to the inner walls of both sides of the fixing frame (101); a third screw rod (802) is rotatably connected to the second concave frames (801); the two groups of the third screw rods (802) are connected to each other by a second transmission chain (803); one group of the third screw rods (802) is connected to the first screw rod (202) on the same side by a third transmission chain (804); and a third slider is threadedly connected to the third screw rod (802). (805), a fourth screw rod (806) is rotatably connected between the two groups of the third sliders (805), one end of the fourth screw rod (806) passes through the third slider (805) and is transmission-connected to the second screw rod (205) through a fourth transmission chain (807), a fourth slider (808) is threadedly connected to the fourth screw rod (806), the top of the fourth slider (808) is in contact with the inner wall of the top of the fixing frame (101), and the control box (4) is fixedly connected to the bottom of the fourth slider (808).

2. The drilling tooling table for tempered glass production according to claim 1, wherein, The longitudinal and transverse moving assembly (2) comprises a first concave frame (201) fixedly connected to both sides of the inner wall of the processing table (1); a first screw rod (202) is rotatably connected to the first concave frame (201); two groups of the first screw rods (202) are connected to each other by a first transmission chain (204); one side of one group of the first concave frames (201) is fixedly connected to a transverse motor (2021); an output end of the transverse motor (2021) passes through the first concave frame (201) and is fixedly connected to the first screw rod (202); a first slider (203) is threadedly connected to the first screw rod (202); The bottom of the slider (203) is in contact with the first concave frame (201); a second screw rod (205) is rotatably connected between the two groups of the first sliders (203); a longitudinal motor (2051) is fixedly connected to one side of one group of the first sliders (203); an output end of the longitudinal motor (2051) passes through the first slider (203) and is fixedly connected to the second screw rod (205); a second slider (206) is threadedly connected to the outer wall of the second screw rod (205); the laser lamp (3) is fixedly connected to the top of the second slider (206); and the top of the second slider (206) is in contact with the inner wall of the top of the processing table (1).

3. The drilling tooling table for tempered glass production according to claim 1, characterized in that, The adjustment component (6) includes a lifting rod (601) slidably connected to the bottom of the control box (4). The bottom end of the lifting rod (601) penetrates through the control box (4) and is fixedly connected to the top of the drilling machine (5). The top end of the lifting rod (601) is fixedly connected to a moving plate (602). A return spring (603) is sleeved on the outer wall of the lifting rod (601). The two ends of the return spring (603) are respectively abutted against the inner wall of the bottom of the control box (4) and the bottom of the moving plate (602). An airbag (604) is arranged on the moving plate (602). An air supply pump (605) is fixedly connected to the outer wall of one side of the control box (4). The output end of the air supply pump (605) is fixedly connected to an air outlet pipe (606). One end of the air outlet pipe (606) far from the air supply pump (605) penetrates through the control box (4) and is communicated with the airbag (604).

4. The drilling tooling table for tempered glass production according to claim 3, characterized in that, A deflation valve (6061) is fixedly connected to the air outlet pipe (606). The deflation valve (6061) is used to discharge the gas in the airbag (604).

5. The drilling tooling table for tempered glass production according to claim 3, characterized in that, A pneumatic control valve (607) is fixedly connected to one side of the control box (4). The pneumatic control valve (607) is connected to the inside of the airbag (604). The pneumatic control valve (607) is electrically connected to the air supply pump (605).

6. The drilling tooling table for tempered glass production according to claim 1, wherein, A chute (401) is formed on one side of the control box (4). A threaded rod (7) is slidably connected to the chute (401). One end of the threaded rod (7) located inside the control box (4) is fixedly connected to a fixed block (701). A sliding rod (702) is slidably connected to the fixed block (701). The top of the sliding rod (702) is fixedly connected to a top block (703). A decompression spring (704) is sleeved on the outer wall of the sliding rod (702). The two ends of the decompression spring (704) are respectively abutted against the fixed block (701) and the top block (703). A nut (705) is threadedly connected to one side of the threaded rod (7) located outside the control box (4). The nut (705) is attached to the outer wall of the control box (4).

7. The drilling tooling table for tempered glass production according to claim 6, characterized in that, A scale line (706) is arranged on one side of the chute (401). The scale line (706) is flush with the chute (401).

8. The drilling tooling table for tempered glass production according to claim 6, wherein, The top of the processing table (1) is a transparent plate (9). The transparent plate (9) facilitates the laser lamp (3) to penetrate for positioning the glass drilling position.

Citation Information

Patent Citations

  • Drilling device for photoelectric glass processing

    CN110802750A

  • High-efficiency drilling machine for glass

    CN212736557U

  • Full-automatic glass drilling equipment based on glass production

    CN214871749U