Glass film laminating machine capable of automatically identifying thickness of glass
By introducing height measurement components and automatic adjustment systems into the glass coating machine, the time-consuming and labor-intensive and low accuracy of manually measuring and adjusting glass thickness in the prior art is solved, and the effect of automatically identifying and adjusting glass thickness is achieved, and the working efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202421813704.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-29
AI Technical Summary
When touching glass of different thicknesses, existing glass coating machines need to manually measure the thickness of the glass and manually adjust the height of the electric drum according to the thickness, which is time-consuming and labor-intensive and has low accuracy.
A glass coating machine including a support plate, an electric transmission roller, a passive transmission roller and a height measurement assembly is designed. When the glass moves below the passive transmission roller, the movement of the passive transmission roller is detected by the height measurement assembly, and the gears and motors are driven to rotate, so that the height of the coating roller is automatically adjusted to the same height as that of the passive transmission roller.
It realizes automatic identification of glass thickness and automatic adjustment of the height of the coating roller, improving work efficiency and accuracy, and reducing the time and labor of manual operation.
Smart Images

Figure CN222921061U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass laminating machines, in particular to a glass laminating machine that can automatically identify the thickness of glass. Background Technique
[0002] A glass laminating machine is a device specifically used to cover a layer of film on the surface of glass, and is widely used in industries such as construction, automobiles, and furniture.
[0003] In the prior art, a patent document with an application number of CN202120482280.X, which was examined and published by the State Intellectual Property Office of China, discloses a building glass laminating machine, including a support plate. The left edge of the upper surface of the support plate is fixedly connected with a mounting seat. A motor is connected through the inside of the mounting seat. On the front left and right sides of the mounting seat on the upper surface of the support plate, there are adjustment components. The right end of the motor is provided with a mounting component. In the utility model, by setting the adjustment component, the staff can rotate the adjustment rod in the adjustment component. The adjustment rod drives the gear to rotate, and the rack will drive the lifting plate to rise or fall, thereby adjusting the distance between the protective pad and the passive roller, and can be applicable to laminating glass with different thicknesses. When the mounting film on the film cylinder is used up, a new film cylinder needs to be replaced. First, remove the set screw on the bearing seat, and then pull the pull rod to the left to drive the first positioning rod to move to the left. When the second positioning rod withdraws from the inside of the left end of the film cylinder, the film cylinder can be taken out, and then a new film cylinder can be replaced.
[0004] However, the glass laminating machine in the prior art needs to manually measure the thickness of the glass and manually adjust the height of the electric roller according to the thickness when laminating glass with different thicknesses. This is not only time-consuming and laborious, but also has relatively low accuracy. Content of the Utility Model
[0005] The purpose of the utility model is to provide a glass laminating machine that can automatically identify the thickness of glass, so as to solve the problems put forward in the above background technique.
[0006] To achieve the above purpose, the utility model provides the following technical solution: A glass laminating machine that can automatically identify the thickness of glass, including: a support plate, on the surface of the support plate, there is a fixedly mounted mounting seat, on the surface of the mounting seat, there is a rotatably connected film cylinder, and there is a mounting film on the film cylinder. On the surface of the support plate, there are several groups of electrically driven transmission rollers rotatably connected. At the top of the support plate, there are a limit box and an adjustment seat fixedly mounted. In the limit box, there is a slidably connected slider. On the surface of the slider, there is a rotatably connected passive transmission roller. At the top of the slider, there is a slider spring. At one end of the passive transmission roller, there is a height measurement component.
[0007] Preferably, two sets of the limit boxes, slider springs and sliders are provided, and the two sets of limit boxes, slider springs and sliders are symmetrically distributed about the passive transmission roller. An opening is provided on the side of the limit box, and the passive transmission roller is rotatably connected in the opening of the limit box.
[0008] Preferably, two sets of the adjusting seats are provided. A height adjusting plate is slidably connected in the adjusting seat. A film covering roller is rotatably connected to the surface of the height adjusting plate. The two sets of adjusting seats are symmetrically distributed about the film covering roller. A height measuring component is provided at one end of the film covering roller.
[0009] Preferably, the height measuring component includes: a sleeve, a metal rod is movably inserted into one end of the sleeve, a top push spring is fixed to the end of the metal rod extending into the sleeve, and the other end of the top push spring is fixed to the inner wall of the sleeve.
[0010] Preferably, a resistance plate is fixed to the top end of the support plate. The end of the metal rod extending out of the sleeve abuts against the surface of the resistance plate. A positive electrode wire is connected to the side of the metal rod, and the positive electrode wire is movably inserted into the surface of the sleeve. A negative electrode wire is connected to the side of the resistance plate. A controller with a power supply and a voltage detection device is provided at the bottom end of the support plate. The end of the positive electrode wire away from the metal rod and the end of the negative electrode wire away from the resistance plate are both connected to the controller with a power supply and a voltage detection device.
[0011] Preferably, a motor is fixed to the outer wall of the adjusting seat. The transmission shaft of the motor is rotatably connected to the surface of the adjusting seat and extends into the interior of the adjusting seat. A gear is fixed to the shaft body of the transmission shaft of the motor extending into the adjusting seat. A rack is provided at one end of the height adjusting plate close to the gear, and the gear meshes with the rack of the height adjusting plate.
[0012] Preferably, two sets of motors are provided. A power supply line is provided between the two sets of motors. A power supply line is also provided between one set of motors and the controller with a power supply and a voltage detection device.
[0013] Preferably, a plugging rod is fixed to the bottom end of the height adjusting plate. The plugging rod is movably inserted into a plugging hole, and the plugging hole is opened on the surface of the support plate.
[0014] Compared with the prior art, the beneficial effects of the present utility model are:
[0015] The glass laminating machine capable of automatically identifying the thickness of glass proposed by the present utility model can push the passive transmission roller upward when the glass moves to contact the passive transmission roller. The movement of the passive transmission roller is detected by the controller with a power supply and voltage detection device through the height measurement component on the passive transmission roller. The controller with a power supply and voltage detection device supplies power to the motor to drive the gear to rotate, so that the height adjustment plate drives the laminating roller to move upward. The upward movement of the laminating roller is also detected by the controller with a power supply and voltage detection device through the height measurement component arranged on the laminating roller, so that the laminating roller can be moved to the same height as the passive transmission roller, and then the glass is laminated by the laminating roller, thus achieving the purpose of automatically identifying the thickness of the glass and automatically adjusting the height of the laminating roller, which not only saves time and effort but also improves the adjustment accuracy. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic structural diagram of the present utility model;
[0017] Figure 2 is a schematic sectional structural diagram of the present utility model;
[0018] Figure 3 is Figure 2 an enlarged schematic diagram of the structure at A in
[0019] Figure 4 is a schematic sectional structural diagram of the height measurement component;
[0020] Figure 5 is Figure 4 an enlarged schematic diagram of the structure at B in
[0021] Figure 6 is a schematic sectional structural diagram of the laminating roller;
[0022] Figure 7 is Figure 6 an enlarged schematic diagram of the structure at C in
[0023] Figure 8 is a schematic sectional structural diagram of the height adjustment plate.
[0024] In the figure: support plate 1, electric transmission roller 2, passive transmission roller 3, limit box 4, slider spring 5, slider 6, sleeve 7, metal rod 8, push spring 9, resistance plate 10, positive electrode wire 11, negative electrode wire 12, controller with power supply and voltage detection device 13, laminating roller 14, height adjustment plate 15, adjustment seat 16, gear 17, insertion rod 18, insertion hole 19, power supply wire 20, motor 21. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] In order to clearly and completely describe the purpose and technical solution of the present utility model, and make the advantages more clearly understood, the following further details the embodiments of the present utility model with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present utility model, rather than all of the embodiments, and are only used to explain the embodiments of the present utility model, not to limit the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.
[0026] Embodiment 1: Please refer to Figures 1 to 8, the present utility model provides a technical solution: a glass film laminating machine that can automatically identify the thickness of glass, including: a support plate 1, on the surface of the support plate 1, there is a fixed mounting seat, on the surface of the mounting seat, there is a rotatably connected film cylinder, and an installation film is arranged on the film cylinder. On the surface of the support plate 1, there are several groups of electric transmission rollers 2 rotatably connected. At the top of the support plate 1, there are fixed a limit box 4 and an adjustment seat 16. In the limit box 4, there is a slidably connected slider 6. On the surface of the slider 6, there is a rotatably connected passive transmission roller 3. At the top of the slider 6, there is a fixed slider spring 5. At one end of the passive transmission roller 3, there is a height measurement component. There are two sets of the limit box 4, the slider spring 5, and the slider 6, and the two sets of the limit box 4, the slider spring 5, and the slider 6 are symmetrically distributed with respect to the passive transmission roller 3. There is an opening on the side of the limit box 4, and the passive transmission roller 3 is rotatably connected in the opening of the limit box 4. There are two sets of adjustment seats 16. In the adjustment seats 16, there is a slidably connected height adjustment plate 15. On the surface of the height adjustment plate 15, there is a rotatably connected film laminating roller 14. The two sets of adjustment seats 16 are symmetrically distributed with respect to the film laminating roller 14. At one end of the film laminating roller 14, there is a height measurement component. The height measurement component includes: a sleeve 7, at one end of the sleeve 7, there is a movably inserted metal rod 8. At the end of the metal rod 8 extending into the sleeve 7, there is a fixed push spring 9. The other end of the push spring 9 is fixed on the inner wall of the sleeve 7. At the top of the support plate 1, there is a fixed resistance plate 10. The end of the metal rod 8 extending out of the sleeve 7 abuts against the surface of the resistance plate 10. On the side of the metal rod 8, there is a connected positive wire 11, and the positive wire 11 is movably inserted on the surface of the sleeve 7. On the side of the resistance plate 10, there is a connected negative wire 12. At the bottom of the support plate 1, there is a controller 13 with a power supply and a voltage detection device. The end of the positive wire 11 far from the metal rod 8 and the end of the negative wire 12 far from the resistance plate 10 are both connected to the controller 13 with a power supply and a voltage detection device. On the outer wall of the adjustment seat 16, there is a fixed motor 21. The transmission shaft of the motor 21 is rotatably connected on the surface of the adjustment seat 16 and extends into the interior of the adjustment seat 16. On the shaft body of the transmission shaft of the motor 21 extending into the adjustment seat 16, there is a fixed gear 17. At one end of the height adjustment plate 15 close to the gear 17, there is a rack. The gear 17 meshes with the rack of the height adjustment plate 15. There are two sets of motors 21. Between the two sets of motors 21, there is a power supply wire 20. Between one of the motors 21 and the controller 13 with a power supply and a voltage detection device, there is also a power supply wire 20.
[0027] During actual use, before starting film covering, one end of the film mounted on the film cylinder is torn off from the film cylinder and clamped between the film covering roller 14 and the electric transmission roller 2 below the film covering roller 14. After starting film covering, the glass is placed on the surface of one end of the support plate 1 where the limit box 4 is fixed. The rotation of the electric transmission roller 2 drives the glass to move towards the direction close to the adjusting seat 16. When the glass moves below the passive transmission roller 3, the passive transmission roller 3 will be pushed upwards, so that the glass is clamped between the passive transmission roller 3 and the electric transmission roller 2. The upward movement of the passive transmission roller 3 causes the sleeve 7 and the metal rod 8 in the height measuring assembly arranged on the passive transmission roller 3 to also move upwards. The controller 13 with a power supply and a voltage detection device, the positive wire 11, the metal rod 8, the resistance plate 10 and the negative wire 12 form a series circuit. The movement of the metal rod 8 causes the resistance value of the resistance plate 10 connected to the circuit to change, thereby causing the voltage value in the circuit to change. This change is detected by the controller 13 with a power supply and a voltage detection device, and then the controller 13 with a power supply and a voltage detection device supplies power to the two groups of motors 21 simultaneously through the power supply wire 20, so that the two groups of motors 21 drive the two groups of gears 17 to rotate simultaneously. Under the meshing action of the gears 17 and the height adjusting plate 15, the height of the height adjusting plate 15 rises and drives the height of the film covering roller 14 to also rise. At this time, the worker quickly grabs one end of the installation film clamped between the film covering roller 14 and the electric transmission roller 2 and makes the installation film closely adhere to the lower surface of the film covering roller 14. The rising height of the film covering roller 14 drives the sleeve 7 and the metal rod 8 in the height measuring assembly arranged on the surface of the film covering roller 14 to also rise. When the voltage in the series circuit formed by the height measuring assembly arranged on the film covering roller 14 is equal to the voltage of the height measuring assembly arranged on the passive transmission roller 3, it indicates that the film covering roller 14 has risen to the same height as the passive transmission roller 3. The controller 13 with a power supply and a voltage detection device stops supplying power to the motor 21, so that the film covering roller 14 is maintained at a height corresponding to the thickness of the glass. After the glass moves below the film covering roller 14, the installation film is covered on the surface of the glass, and the worker can release the installation film. At the same time, as the glass is continuously pushed by the electric transmission roller 2, the film covering roller 14 is continuously pushed by the glass, so that the film covering roller 14 continuously tears off the installation film from the film cylinder and covers it on the surface of the glass, thus completing the film covering of the glass;When the glass moves to contact the passive transmission roller 3, the glass laminating machine capable of automatically identifying the glass thickness can push the passive transmission roller 3 upward. The movement of the passive transmission roller 3 is detected by the controller 13 with a power supply and voltage detection device through the height measurement component on the passive transmission roller 3. The controller 13 with a power supply and voltage detection device supplies power to the motor 21 to drive the gear 17 to rotate, so that the height adjustment plate 15 drives the laminating roller 14 upward. The upward movement of the laminating roller 14 is also detected by the controller 13 with a power supply and voltage detection device through the height measurement component arranged on the laminating roller 14. Thus, the laminating roller 14 can be moved to the same height as the passive transmission roller 3, and then the glass is laminated by the laminating roller 14, achieving the purpose of automatically identifying the glass thickness and automatically adjusting the height of the laminating roller 14, which not only saves time and effort but also improves the adjustment accuracy.
[0028] Embodiment 2: On the basis of Embodiment 1, in order to prevent the slider 6 from being stuck on the surface of the limit box 4 after laminating the previous group of glass, resulting in the failure of thickness identification for the next group of glass with a smaller thickness, a slider 6 is slidably connected in the limit box 4. A passive transmission roller 3 is rotatably connected to the surface of the slider 6, and a slider spring 5 is fixed to the top end of the slider 6.
[0029] The passive transmission roller 3 is rotatably connected to the slider 6, the slider 6 is slidably connected in the limit box 4, and a slider spring 5 is fixed between the top end of the slider 6 and the inner wall of the limit box 4. Therefore, when the height of the passive transmission roller 3 rises, it will drive the slider 6 to slide upward in the limit box 4, and then the slider spring 5 is compressed. After the glass moves away from below the passive transmission roller 3, the slider spring 5 generates a downward thrust on the slider 6 under its own elastic force, so that the slider 6 returns to the bottom end of the limit box 4 and will not be stuck on the inner wall of the limit box 4.
[0030] Embodiment 3: On the basis of Embodiment 2, in order to ensure that the metal rod 8 always abuts against the surface of the resistance plate 10, a top push spring 9 is fixed to the end of the metal rod 8 extending into the sleeve 7.
[0031] A top push spring 9 is arranged between the end of the metal rod 8 extending into the sleeve 7 and the inner wall of the sleeve 7, and the top push spring 9 is always in a compressed state, so that the top push spring 9 always generates a thrust on the metal rod 8 to make it close to the resistance plate 10, thus ensuring that the metal rod 8 always abuts against the surface of the resistance plate 10.
[0032] Embodiment 4: On the basis of Embodiment 3, in order to ensure that the height adjustment plate 15 can only move in the vertical direction, a plugging rod 18 is fixed to the bottom end of the height adjustment plate 15. The plugging rod 18 is movably plugged in a plugging hole 19, and the plugging hole 19 is opened on the surface of the support plate 1.
[0033] The bottom end of the height adjustment plate 15 is fixedly provided with a plugging rod 18. A plugging hole 19 is formed on the surface of the support plate 1 at a position corresponding to the plugging rod 18. The plugging rod 18 is movably plugged in the plugging hole 19 to radially limit the height adjustment plate 15, so that the height adjustment plate 15 can only move in the vertical direction.
[0034] During actual use, before starting film laminating, one end of the film on the film cylinder for installing the film is torn off from the film cylinder and clamped between the film laminating roller 14 and the electric transmission roller 2 below the film laminating roller 14. After starting film laminating, the glass is placed on the surface of one end of the support plate 1 where the limit box 4 is fixed. The rotation of the electric transmission roller 2 drives the glass to move towards the direction close to the adjustment seat 16. When the glass moves below the passive transmission roller 3, the passive transmission roller 3 will be pushed upward, so that the glass is clamped between the passive transmission roller 3 and the electric transmission roller 2. The upward movement of the passive transmission roller 3 causes the sleeve 7 and the metal rod 8 in the height measurement assembly arranged on the passive transmission roller 3 to also move upward. The controller 13 with a power supply and a voltage detection device, the positive wire 11, the metal rod 8, the resistance plate 10, and the negative wire 12 form a series circuit. The movement of the metal rod 8 causes the resistance value of the resistance plate 10 connected to the circuit to change, thereby causing the voltage value in the circuit to change. This change is detected by the controller 13 with a power supply and a voltage detection device, and then the controller 13 with a power supply and a voltage detection device supplies power to the two groups of motors 21 simultaneously through the power supply wire 20, so that the two groups of motors 21 drive the two groups of gears 17 to rotate simultaneously. Under the meshing action of the gears 17 and the height adjustment plate 15, the height of the height adjustment plate 15 rises and drives the height of the film laminating roller 14 to also rise. At this time, the worker quickly grabs one end of the installation film clamped between the film laminating roller 14 and the electric transmission roller 2 and makes the installation film closely adhere to the lower surface of the film laminating roller 14. The rising height of the film laminating roller 14 drives the sleeve 7 and the metal rod 8 in the height measurement assembly arranged on the surface of the film laminating roller 14 to also rise. When the voltage in the series circuit formed by the height measurement assembly arranged on the film laminating roller 14 is equal to the voltage of the height measurement assembly arranged on the passive transmission roller 3, it means that the film laminating roller 14 has risen to the same height as the passive transmission roller 3. The controller 13 with a power supply and a voltage detection device stops supplying power to the motor 21, so that the film laminating roller 14 is maintained at a height corresponding to the thickness of the glass. After the glass moves below the film laminating roller 14, the installation film is covered on the surface of the glass, and the worker can release the installation film. At the same time, as the glass is continuously pushed by the electric transmission roller 2, the film laminating roller 14 is continuously pushed by the glass, so that the film laminating roller 14 continuously tears off the installation film from the film cylinder and covers it on the surface of the glass, thus completing the film laminating of the glass;When the glass moves to contact the passive transmission roller 3, the glass laminating machine capable of automatically identifying the glass thickness can push the passive transmission roller 3 upward. The movement of the passive transmission roller 3 is detected by the controller 13 with a power supply and voltage detection device through the height measurement component on the passive transmission roller 3. The controller 13 with a power supply and voltage detection device supplies power to the motor 21 to drive the gear 17 to rotate, so that the height adjustment plate 15 drives the laminating roller 14 to move upward. The upward movement of the laminating roller 14 is also detected by the controller 13 with a power supply and voltage detection device through the height measurement component provided on the laminating roller 14. Thus, the laminating roller 14 can be moved to the same height as the passive transmission roller 3, and then the glass is laminated by the laminating roller 14, achieving the purpose of automatically identifying the glass thickness and automatically adjusting the height of the laminating roller 14, which is not only time-saving and labor-saving but also improves the adjustment accuracy. The passive transmission roller 3 is rotatably connected to the slider 6, and the slider 6 is slidably connected in the limit box 4. A slider spring 5 is fixed between the top end of the slider 6 and the inner wall of the limit box 4. Therefore, when the height of the passive transmission roller 3 rises, it will drive the slider 6 to slide upward in the limit box 4, and then the slider spring 5 is compressed. After the glass moves away from below the passive transmission roller 3, the slider spring 5 generates a downward thrust on the slider 6 under its own elastic force, so that the slider 6 returns to the bottom end of the limit box 4 and will not get stuck on the inner wall of the limit box 4. A push spring 9 is arranged between the end of the metal rod 8 extending into the sleeve 7 and the inner wall of the sleeve 7, and the push spring 9 is always in a compressed state, so that the push spring 9 always generates a thrust on the metal rod 8 to move it closer to the resistor plate 10, ensuring that the metal rod 8 always abuts against the surface of the resistor plate 10. The bottom end of the height adjustment plate 15 is fixedly provided with an insertion rod 18. Insertion holes 19 are formed on the surface of the support plate 1 at positions corresponding to the insertion rod 18. The insertion rod 18 is movably inserted into the insertion holes 19 to radially limit the height adjustment plate 15, so that the height adjustment plate 15 can only move in the vertical direction.;
[0035] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A glass laminating machine capable of automatically identifying glass thickness, comprising: A support plate (1), a mounting seat is fixed on the surface of the support plate (1), a film cylinder is rotatably connected on the surface of the mounting seat, and a mounting film is arranged on the film cylinder, characterized in that: a plurality of groups of electric transmission rollers (2) are rotatably connected on the surface of the support plate (1), a limit box (4) and an adjustment seat (16) are fixed at the top end of the support plate (1), a slider (6) is slidably connected in the limit box (4), a passive transmission roller (3) is rotatably connected on the surface of the slider (6), a slider spring (5) is fixed at the top end of the slider (6), and a height measuring component is arranged at one end of the passive transmission roller (3).
2. The glass laminating machine capable of automatically identifying glass thickness according to claim 1, characterized in that: The limit box (4), the slider spring (5) and the slider (6) are each provided in two groups, and the two groups of the limit box (4), the slider spring (5) and the slider (6) are symmetrically distributed with respect to the passive transmission roller (3); an opening is provided on the side of the limit box (4), and the passive transmission roller (3) is rotatably connected in the opening of the limit box (4).
3. The glass laminating machine capable of automatically identifying glass thickness according to claim 1, characterized in that: The adjustment seat (16) is provided with two groups, a height adjustment plate (15) is slidably connected in the adjustment seat (16), a coating roller (14) is rotatably connected on the surface of the height adjustment plate (15), the two groups of adjustment seats (16) are symmetrically distributed about the coating roller (14), and a height measuring component is provided at one end of the coating roller (14).
4. The glass laminating machine capable of automatically identifying glass thickness according to claim 3, characterized in that: The height measuring assembly comprises: a sleeve (7), one end of the sleeve (7) is movably plugged with a metal rod (8), one end of the metal rod (8) extending into the sleeve (7) is fixed with a push spring (9), and the other end of the push spring (9) is fixed to the inner wall of the sleeve (7).
5. The glass laminating machine capable of automatically identifying glass thickness according to claim 4, characterized in that: A resistor plate (10) is fixed to the top of the support plate (1), one end of the metal rod (8) extending out of the sleeve (7) is against the surface of the resistor plate (10), the side of the metal rod (8) is connected to a positive wire (11), the positive wire (11) is movably plugged into the surface of the sleeve (7), the side of the resistor plate (10) is connected to a negative wire (12), and a controller (13) with a power supply and a voltage detection device is arranged at the bottom of the support plate (1), and one end of the positive wire (11) away from the metal rod (8) and one end of the negative wire (12) away from the resistor plate (10) are both connected to the controller (13) with a power supply and a voltage detection device.
6. The glass laminating machine capable of automatically identifying glass thickness according to claim 3, characterized in that: A motor (21) is fixed on the outer wall of the adjustment seat (16); a transmission shaft of the motor (21) is rotatably connected to the surface of the adjustment seat (16) and extends into the interior of the adjustment seat (16); a gear (17) is solidly arranged on the shaft body of the adjustment seat (16) where the transmission shaft of the motor (21) extends; a rack is arranged at one end of the height adjustment plate (15) close to the gear (17); the gear (17) is meshed with the rack of the height adjustment plate (15).
7. The glass laminating machine capable of automatically identifying glass thickness according to claim 6, characterized in that: The motors (21) are provided in two groups, and a power supply line (20) is provided between the two groups of motors (21). A power supply line (20) is also provided between one group of motors (21) and a controller (13) with a power supply and a voltage detection device.
8. The glass laminating machine capable of automatically identifying glass thickness according to claim 3, characterized in that: A plug-in rod (18) is fixed to the bottom end of the height adjustment plate (15), and the plug-in rod (18) is movably plugged into a plug-in hole (19), which is provided on the surface of the support plate (1).
Citation Information
Patent Citations
Building glass film laminating machine
CN215243529U