Glass plate bombardment degassing device
By combining the adjustment mechanism and the bombardment mechanism, the problems of glass plate shaking and gas re-adhesion during degassing were solved, thus improving the stability and efficiency of glass plate degassing.
Patent Information
- Application Number
- CN202511771109.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-28
- Publication Date
- 2026-01-23
AI Technical Summary
During operation, the glass plate bombardment degassing device causes the glass plate to shake and shift due to equipment vibration, affecting the degassing effect. Furthermore, the degassed gas cannot be processed in time, leading to re-adhesion and affecting the use of the glass plate.
An adjustment mechanism is used to clamp and fix the glass plate, and a bombardment mechanism is used to heat the gas before degassing to make it expand, thereby reducing van der Waals forces. A suction pump is used to quickly extract the gas, and a guide and clamping device is used to prevent deviation, ensuring the stability and efficiency of degassing.
It effectively prevents the glass plate from shifting during the degassing process, improves degassing efficiency, reduces the risk of electric current burning, reduces gas re-adhesion, and improves the stability and efficiency of production equipment.
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Figure CN121377564A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of energy-saving glass plate production equipment, in particular to a glass plate bombardment degassing device. BACKGROUND
[0002] The glass plate bombardment degassing device applies electron bombardment to the glass plate, so that the gas adsorbed on the surface of the glass plate by Van der Waals force is separated, and the gas on the surface of the glass plate is removed, thereby avoiding the influence of residual gas on subsequent processing of the glass plate.
[0003] The patent application with the application number CN201310456456.4 discloses a glass plate bombardment degassing device, which comprises a vacuum box body and a glass plate bearing device. A conveying mechanism, a lifting mechanism and a bombardment device are arranged in the vacuum box body. The lifting mechanism is composed of a plurality of lifting units arranged in parallel along the two sides of the glass plate to be lifted. The lifting unit comprises a support beam, a hook, a beam lifting device and a hook driving device. The support beam is slidably installed on a guide device arranged in the vacuum box body. The beam lifting device is used to lift and lower the support beam.
[0004] However, during the operation of the glass plate bombardment degassing device, the vibration of the equipment during the upward and downward movement of the glass plate may cause the glass plate to shake, resulting in deviation of the glass plate and affecting the bombardment and degassing effect on the surface of the glass plate. In addition, after the glass plate bombardment degassing device degasses the surface of the glass plate, the separated air cannot be treated in time, which may cause the air to re-attach to the surface of the glass plate, thereby affecting the use of the glass plate. SUMMARY
[0005] The present application aims to provide a glass plate bombardment degassing device to solve the problems in the background art.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a glass plate bombardment degassing device, comprising a sealed cabin, a support table is fixedly connected to the inner wall of the sealed cabin, a support rod one is fixedly connected to the surface of the support table, a sliding groove is formed in the inner wall of the support rod one, a vacuum pump is arranged at the bottom of the support table for vacuumizing the inside of the sealed cabin, and a bombardment mechanism is arranged on the outer wall of the support rod one.
[0007] The bombardment mechanism comprises a support plate three, the outer wall of the support plate three is fixedly connected to the outer wall of the support rod one, a heat conduction plate is fixedly connected to the inner wall of the sliding groove, a bombardment plate is fixedly connected to the inner wall of the heat conduction plate, a heating block is fixedly connected to the inner wall of the heat conduction plate, a heat conduction hole is formed in the outer wall of the heat conduction plate, the heat conduction hole is in communication with the inside of the heat conduction plate, and the heat conduction plate is used to heat the surface of the glass plate by the heating block to make the gas expand and reduce the Van der Waals force between the gas and the surface of the glass plate.
[0008] According to the technical scheme, the heat-conducting hole is arranged at the inclined surface of the outer wall of the heat-conducting plate, is used for guiding the heat dissipated by the heating block, increases the heating range, and avoids heat concentration.
[0009] According to the technical scheme, the outer wall of the bombardment plate is fixedly connected with an emission contact, the emission contact is used for guiding the bombardment current, the outer wall of the heat-conducting plate is fixedly connected with a flow guide contact, and the flow guide contact is used for guiding the bombardment current.
[0010] According to the technical scheme, the third outer wall of the support plate is fixedly connected with a suction pump through a fixing frame, an output end of the suction pump is fixedly communicated with the inside of the heat-conducting plate through a connecting pipe penetrating the third outer wall of the support plate, the third outer wall of the support plate is fixedly connected with a conductor, the conductor is electrically connected with the flow guide contact by penetrating the inside of the heat-conducting plate, the suction pump is used for separating the gas bombarded by the heat-conducting hole, the suction pump is a XGB-2200 vortex air pump, when the vacuum pump arranged at the bottom of the support table is used for vacuumizing the inside of the sealed cabin, the suction pump blows air to the inside of the heat-conducting plate by reversing, and the air is heated by the heating block and then blown to the glass plate through the heat-conducting hole to quickly heat the glass plate, when the glass plate is bombarded by the bombardment plate through the emission contact, the gas is separated from the surface of the glass plate, the suction pump is used for pumping the inside of the heat-conducting plate by rotating in a normal direction, and the gas separated from the surface of the glass plate is quickly pumped away by the heat-conducting plate through the heat-conducting hole.
[0011] According to the technical scheme, the first inner wall of the support rod is provided with an adjusting mechanism, the adjusting mechanism comprises a limiting block, the outer wall of the limiting block is slidingly connected with the first inner wall of the support rod through a sliding block, the limiting block is in a sliding groove, and the outer wall of the limiting block slides along the sliding groove wall, the outer wall of the limiting block is fixedly connected with a guide block through a bolt, the guide block is used for guiding the glass plate, and the inner wall of the guide block is rotationally connected with a support wheel through a rotating shaft, the support wheel is used for supporting the glass plate.
[0012] According to the technical scheme, the top of the guide block is fixedly connected with an electric push rod, an output end of the electric push rod is fixedly connected with a pressing block one, the pressing block one slides on the inner wall of the guide block by being driven by the electric push rod, is used for clamping the glass plate, and the end, away from the electric push rod, of the pressing block one is provided with anti-skid convex points, and is used for increasing the friction between the glass plate.
[0013] According to the technical scheme, the inner wall of the guide block is slidably connected with a pressing block two, the pressing block two is fixedly connected with a support plate one away from the end of the guide block one, the support plate one is fixedly connected with a spring close to the end of the guide block one, the other end of the spring is fixedly connected with the outer wall of the guide block, the inner wall of the guide block is slidably connected with a limiting rod one, the outer wall of the limiting rod one is fixedly connected with a limiting rod two, the inner wall of the limiting rod two is fixedly connected with the outer wall of the support rod one, the limiting rod two is used for supporting and limiting the support plate one, the support plate one is used for assisting in clamping the glass plate, and the limiting rod one is used for guiding and limiting the guide block.
[0014] According to the technical scheme, the inner wall of the limiting block is hingedly connected with a support rod two through a rotating shaft, the other end of the support rod two is hingedly connected with a support plate two through a hinge block, the outer wall of the support plate two is fixedly connected with a pneumatic cylinder, the output end of the pneumatic cylinder is fixedly connected with the outer wall of a support plate three, and the pneumatic cylinder is used for driving the support plate two and pushing the support plate two, so that the support plate two is limited through the hinge connection with the support rod two, the limiting block is slid in the sliding groove, and the guide block is driven to adjust the position, so that the guide block drives the glass plate to adjust the position.
[0015] Compared with the prior art, the beneficial effects of the present application are:
[0016] 1. The adjusting mechanism is used for clamping and fixing the glass plate, preventing the glass plate from deviating due to equipment vibration during up and down movement, preventing the glass plate from being completely covered during bombardment and degassing, and enabling the energy-saving glass plate production equipment to stably degas the glass plate.
[0017] 2. The adjusting mechanism is used for adjusting the position of the glass plate, so that the glass plate is closer to the bombardment current, the degassing efficiency of the glass plate is increased, the glass plate is clamped and fixed, the glass plate is prevented from deviating due to vibration during bombardment and degassing, and the energy-saving glass plate production equipment stably degasses the glass plate.
[0018] 3. The bombardment mechanism is used for heating before the glass plate is bombarded and degassed, so that the gas expands, the van der Waals force between the gas and the glass plate is reduced, the separation rate of the bombardment and degassing device for the glass plate is increased, the working efficiency of the energy-saving glass plate production equipment for the glass plate is increased, and the risk of burning the glass plate by the current during bombardment and degassing is reduced.
[0019] 4. The bombardment mechanism is used for quickly removing the gas after the glass plate is bombarded and degassed, preventing the gas from adhering to the surface of the glass plate again, reducing the rework rate of the glass plate after bombardment and degassing, and increasing the working efficiency of the energy-saving glass plate production equipment. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 Structure diagram of the present application Figure 1 ;
[0021] Figure 2 Structure diagram of the present application Figure 2 ;
[0022] Figure 3 Structure diagram of the present application Figure 3 ;
[0023] Figure 4 Structure diagram of the adjusting mechanism of the present application Figure 1 ;
[0024] Figure 5 Sectional view of the adjusting mechanism of the present application
[0025] Figure 6 Structure diagram of the adjusting mechanism of the present application Figure 2 ;
[0026] Figure 7 Structure diagram of the bombarding mechanism of the present application
[0027] Figure 8 Enlarged diagram of A in the present application Figure 7
[0028] In the figure: 100, sealed cabin; 101, support table; 102, support rod one; 103, sliding groove; 200, adjusting mechanism; 201, limit block; 202, guide block; 203, electric push rod; 204, pressing block one; 205, pressing block two; 206, limit rod one; 207, limit rod two; 208, support plate one; 209, spring; 210, support wheel; 211, support rod two; 212, support plate two; 213, air cylinder; 300, bombarding mechanism; 301, support plate three; 302, heat-conducting plate; 303, bombarding plate; 304, heating block; 305, suction pump; 306, conductor; 307, heat-conducting hole; 308, drainage contact; 309, emission contact. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0030] Embodiment one, please refer to Figures 1-6 The application provides the technical scheme: the glass plate bombardment degassing device, including the sealed cabin 100, the sealed cabin 100 inner wall fixedly connected with the support table 101, the support table 101 surface fixedly connected with the support rod one 102, the support rod one 102 inner wall is opened in sliding groove 103, the support table 101 bottom is provided with vacuum pump, for the inside of sealed cabin 100 is carried out vacuumizing;
[0031] The support rod one 102 inner wall is provided with adjustment mechanism 200;
[0032] In the working process of the glass plate bombardment degassing device, the vibration of the equipment during driving the glass plate up and down movement can cause the glass plate to shake, cause the glass plate to deviate, affect the bombardment degassing effect on the surface of the glass plate, therefore set adjustment mechanism 200 is clamped to the glass plate, the glass plate is fixed, prevent the glass plate from deviating during up and down movement, prevent the glass plate from being completely covered during bombardment degassing, make energy-saving glass plate production equipment can stably degas the glass plate, adjust the position of the glass plate, make the glass plate more close to bombardment current, increase the degassing efficiency of the glass plate, simultaneously, the glass plate is assisted clamped, prevent the glass plate from deviating during bombardment degassing, make energy-saving glass plate production equipment more stably degas the glass plate;
[0033] The adjusting mechanism 200 comprises a limiting block 201, an outer wall of the limiting block 201 is slidably connected with an inner wall of the supporting rod one 102 through a sliding block, the limiting block 201 is in the sliding groove 103, and the outer wall slides along the groove wall of the sliding groove 103, the outer wall of the limiting block 201 is fixedly connected with a guide block 202 through a bolt, the guide block 202 is used for guiding the glass plate, an inner wall of the guide block 202 is rotatably connected with a supporting wheel 210 through a rotating shaft, the supporting wheel 210 is used for supporting the glass plate, the top of the guide block 202 is fixedly connected with an electric push rod 203, an output end of the electric push rod 203 is fixedly connected with a pressing block one 204, the pressing block one 204 is driven to slide in the inner wall of the guide block 202 through the electric push rod 203, and is used for clamping the glass plate, an end, away from the electric push rod 203, of the pressing block one 204 is provided with anti-skid convex points, which are used for increasing the friction between the pressing block one 204 and the glass plate, the inner wall of the guide block 202 is slidably connected with a pressing block two 205, an end, away from the guide block 202, of the pressing block two 205 is fixedly connected with a supporting plate one 208, an end, close to the guide block 202, of the supporting plate one 208 is fixedly connected with a spring 209, the other end of the spring 209 is fixedly connected with the outer wall of the guide block 202, the inner wall of the guide block 202 is slidably connected with a limiting rod one 206, the outer wall of the limiting rod one 206 is fixedly connected with a limiting rod two 207, the inner wall of the limiting rod two 207 is fixedly connected with the outer wall of the supporting rod one 102, the limiting rod two 207 is used for supporting and limiting the supporting plate one 208, the supporting plate one 208 is used for assisting in clamping the glass plate, the limiting rod one 206 is used for guiding and limiting the guide block 202, the inner wall of the limiting block 201 is hingedly connected with a supporting rod two 211 through a rotating shaft, the other end of the supporting rod two 211 is hingedly connected with a supporting plate two 212 through a hinged block, the outer wall of the supporting plate two 212 is fixedly connected with a pneumatic cylinder 213, the output end of the pneumatic cylinder 213 is fixedly connected with the outer wall of the supporting plate three 301, the pneumatic cylinder 213 is used for driving the supporting plate two 212 and pushing the supporting plate two 212, so that the supporting plate two 212 is limited through the hinged connection with the supporting rod two 211, the limiting block 201 slides in the sliding groove 103, and the guide block 202 is adjusted in position, so that the guide block 202 drives the glass plate to be adjusted in position;
[0034] When the bombarding and degassing device is put into use, the glass plate is guided to be inserted into the guide block 202 through the guide block 202, and the glass plate is pushed to be supported by the support wheel 210, so that the support wheel 210 is in contact with the surface of the glass plate and rolls along the edge surface of the glass plate, and the glass plate enters the inside of the sealed cabin 100 and is in a bombarding and degassing position, then the electric push rod 203 is started to drive the pressing block one 204 to slide on the inner wall of the guide block 202 and protrude from the inner wall of the guide block 202, and the glass plate is clamped, at the same time, the anti-skid convex points arranged on the contact surface of the pressing block one 204 are in contact with the surface of the glass plate, and the glass plate is fixed by increasing the friction force through the pressing block one 204, after the glass plate is fixed, the pneumatic cylinder 213 is started to support the support plate three 301, so that the pneumatic cylinder 213 drives the support plate two 212 to move away from the support plate three 301, at the same time, the support plate two 212 pulls the support rod two 211 through the hinge block, so that the support rod two 211 drives the limiting block 201 to slide in the sliding groove 103 and slides towards the bombarding plate 303 in the process of swinging, and the limiting block 201 drives the glass plate to move towards the bombarding plate 303 through the guide block 202, so that the glass plate is closer to the bombarding plate 303, in the process of the limiting block 201 driving the guide block 202 to move towards the bombarding plate 303, the guide block 202 is guided through the limiting rod one 206 and slides on the outer wall of the limiting rod one 206, so that the guide block 202 drives the pressing block two 205 to move towards the limiting rod two 207, so that the support plate one 208 is in contact with the outer wall of the limiting rod two 207 and supports the support plate one 208, the support plate one 208 presses the spring 209 and drives the pressing block two 205 to move towards the glass plate, so that the pressing block two 205 assists in clamping the glass plate, so as to prevent the glass plate from being deviated due to the vibration of the glass plate caused by the current in the process of bombarding and degassing, and affect the bombarding and degassing effect.
[0035] In the embodiment two, based on the embodiment one, please refer to Figures 7-8 The application provides a technical scheme that the outer wall of the support rod one 102 is provided with the bombarding mechanism 300.
[0036] The glass plate bombarding and degassing device cannot timely process the separated air after degassing the surface of the glass plate, so that the air is reattached to the surface of the glass plate, which affects the use of the glass plate, therefore, the bombarding mechanism 300 is arranged to heat the glass plate before bombarding and degassing, so that the gas is expanded, the van der Waals force between the gas and the glass plate is reduced, the separation rate of the bombarding and degassing device for the glass plate is increased, the working efficiency of the energy-saving glass plate production equipment for degassing the glass plate is increased, the risk of burning of the glass plate caused by the current in the process of bombarding and degassing is reduced, at the same time, after the glass plate is bombarded and degassed, the gas is quickly extracted to prevent the gas from being reattached to the surface of the glass plate, the rework rate of the glass plate after bombarding and degassing is reduced, and the working efficiency of the energy-saving glass plate production equipment is increased.
[0037] The striking mechanism 300 comprises a support plate three 301, the outer wall of the support plate three 301 is fixedly connected with the outer wall of the support rod one 102, the inner wall of the sliding groove 103 is fixedly connected with a heat conduction plate 302, the inner wall of the heat conduction plate 302 is fixedly connected with a striking plate 303, the inner wall of the heat conduction plate 302 is fixedly connected with a heating block 304, the outer wall of the heat conduction plate 302 is provided with a heat conduction hole 307, the heat conduction hole 307 is communicated with the inside of the heat conduction plate 302, the heat conduction plate 302 is used for heating through the heating block 304 to heat the surface of the glass plate, so that the gas expands and the van der Waals force between the gas and the surface of the glass plate is reduced, the heat conduction hole 307 is arranged at the inclined surface of the outer wall of the heat conduction plate 302, is used for guiding the heat dissipation of the heating block 304, and increases the heating range, and avoids the concentration of heat, the outer wall of the striking plate 303 is fixedly connected with an emission contact 309, the emission contact 309 is used for guiding the striking current, the outer wall of the heat conduction plate 302 is fixedly connected with a flow guide contact 308, the flow guide contact 308 is used for guiding the striking current, the outer wall of the support plate three 301 is fixedly connected with a suction pump 305 through a fixing frame, the output end of the suction pump 305 is fixedly communicated with the inside of the heat conduction plate 302 through a connecting pipe penetrating the outer wall of the support plate three 301, the outer wall of the support plate three 301 is fixedly connected with a conductor 306, the conductor 306 is electrically connected with the flow guide contact 308 by penetrating the inside of the heat conduction plate 302, the suction pump 305 is used for separating the gas after being struck through the heat conduction hole 307, the pump body of the suction pump 305 is a XGB-2200 vortex air pump, when the vacuum pump arranged at the bottom of the support table 101 is used for vacuumizing the inside of the sealed cabin 100, the suction pump 305 blows air to the inside of the heat conduction plate 302 by reversing, and the air is heated by the heating block 304 and then blown to the glass plate through the heat conduction hole 307 to quickly heat the glass plate, when the striking plate 303 strikes the glass plate through the emission contact 309, the gas is separated from the surface of the glass plate, the suction pump 305 is turned on to pump the inside of the heat conduction plate 302, so that the heat conduction plate 302 quickly pumps the gas separated from the surface of the glass plate through the heat conduction hole 307;
[0038] After the guiding block 202 drives the glass plate to adjust the position, the vacuum pump arranged at the bottom of the support table 101 is started to perform vacuumizing on the working area inside the sealed cabin 100. During the vacuumizing process, the suction pump 305 is started to perform reverse rotation to make air enter the inside of the heat conduction plate 302, and the gas flowing through the inside of the heat conduction plate 302 is heated by the heating block 304, so that the gas near the surface of the glass plate is expanded, and the van der Waals force between the gas and the surface of the glass plate is reduced. After the heating of the surface of the glass plate is completed, the bombardment plate 303 is started to bombard the gas on the surface of the glass plate. During the bombardment process, the current is guided by the emission contact 309 to make the emission contact 309 uniformly distribute the current, so as to prevent local current from being too large to cause burning damage to the glass plate. During the process of discharging by the emission contact 309 of the bombardment plate 303 to bombard the glass plate, most of the current is guided by the drainage contact 308 opposite to the emission contact 309, and a small amount of current is guided by the drainage contact 308 in the oblique direction opposite to the emission contact 309. The glass plate surface is bombarded and degassed. After the current is guided by the drainage contact 308, it is discharged by the guiding conductor 306. After the gas is separated from the glass plate by the bombardment of the current, the suction pump 305 is started to perform forward rotation to perform suction on the inside of the heat conduction plate 302, so that the bombarded and separated gas enters the inside of the heat conduction plate 302 through the heat conduction hole 307, and is separated from the glass plate by the bombardment of the current. The suction pump 305 is started to prevent the gas from being adsorbed on the surface of the glass plate again.
[0039] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. Glass plate bombardment degassing device, comprising a sealed cabin (100), the inner wall of the sealed cabin (100) is fixedly connected with a support table (101), the surface of the support table (101) is fixedly connected with a support rod one (102), characterized in that, The inner wall of the support rod one (102) is provided with a sliding groove (103), and the outer wall of the support rod one (102) is provided with a bombardment mechanism (300); The bombardment mechanism (300) comprises; The outer wall of the support plate three (301) is fixedly connected with the outer wall of the support rod one (102), the inner wall of the sliding groove (103) is fixedly connected with a heat conduction plate (302), the inner wall of the heat conduction plate (302) is fixedly connected with a bombardment plate (303), the inner wall of the heat conduction plate (302) is fixedly connected with a heating block (304), the outer wall of the heat conduction plate (302) is provided with a heat conduction hole (307), the heat conduction hole (307) is in communication with the inside of the heat conduction plate (302), and the heat conduction plate (302) is used for heating the surface of the glass plate through the heating block (304), so that the van der waals force between the gas and the surface of the glass plate is reduced.
2. The glass sheet bombardment degasser apparatus of claim 1, wherein: The heat conduction hole (307) is arranged at the inclined surface of the outer wall of the heat conduction plate (302), is used for guiding the heat dissipation of the heating block (304), increases the heating range, and avoids heat concentration.
3. The glass sheet bombardment degasser apparatus of claim 2, wherein: The outer wall of the bombardment plate (303) is fixedly connected with an emission contact (309), the emission contact (309) is used for guiding the bombardment current, the outer wall of the heat conduction plate (302) is fixedly connected with a drainage contact (308), and the drainage contact (308) is used for draining the bombardment current.
4. The glass sheet bombardment degasser apparatus of claim 3, wherein: The outer wall of the support plate three (301) is fixedly connected with a suction pump (305) through a fixing frame, the output end of the suction pump (305) penetrates the outer wall of the support plate three (301) and is fixedly communicated with the inside of the heat conduction plate (302) through a connecting pipe, the outer wall of the support plate three (301) is fixedly connected with a conductor (306), the conductor (306) is electrically connected with the drainage contact (308) by penetrating the inside of the heat conduction plate (302), and the suction pump (305) is used for separating the gas after being bombarded and then separating the bombarded gas through the heat conduction hole (307).
5. The glass sheet bombardment degasser apparatus of claim 1, wherein: The inner wall of the support rod one (102) is provided with an adjusting mechanism (200), the adjusting mechanism (200) comprises a limiting block (201), the outer wall of the limiting block (201) is slidingly connected with the inner wall of the support rod one (102) through a sliding block, the limiting block (201) is in the sliding groove (103), and the outer wall of the limiting block (201) slides along the groove wall of the sliding groove (103), the outer wall of the limiting block (201) is fixedly connected with a guide block (202) through a bolt, the guide block (202) is used for guiding the glass plate, and the inner wall of the guide block (202) is rotationally connected with a support wheel (210) through a rotating shaft, and the support wheel (210) is used for supporting the glass plate.
6. The glass sheet bombardment degasser apparatus of claim 5, wherein: The top of the guide block (202) is fixedly connected with an electric push rod (203), and the output end of the electric push rod (203) is fixedly connected with a pressing block one (204). The pressing block one (204) is driven to slide on the inner wall of the guide block (202) by the electric push rod (203) and is used for clamping the glass plate. The one end of the pressing block one (204) away from the electric push rod (203) is provided with anti-skid convex points, which are used for increasing the friction between the pressing block one (204) and the glass plate.
7. The glass sheet bombardment degasser apparatus of claim 6, wherein: The inner wall of the guide block (202) is slidably connected with a pressing block two (205), and the one end of the pressing block two (205) away from the guide block (202) is fixedly connected with a support plate one (208). The one end of the support plate one (208) close to the guide block (202) is fixedly connected with a spring (209), and the other end of the spring (209) is fixedly connected with the outer wall of the guide block (202). The inner wall of the guide block (202) is slidably connected with a limiting rod one (206), and the outer wall of the limiting rod one (206) is fixedly connected with a limiting rod two (207). The inner wall of the limiting rod two (207) is fixedly connected with the outer wall of the support rod one (102). The limiting rod two (207) is used for supporting and limiting the support plate one (208). The support plate one (208) is used for assisting in clamping the glass plate. The limiting rod one (206) is used for guiding and limiting the guide block (202).
8. The glass sheet bombardment degasser apparatus of claim 7, wherein: The inner wall of the limiting block (201) is hingedly connected with a support rod two (211) through a rotating shaft. The other end of the support rod two (211) is hingedly connected with a support plate two (212) through a hinge block. The outer wall of the support plate two (212) is fixedly connected with a pneumatic cylinder (213). The output end of the pneumatic cylinder (213) is fixedly connected with the outer wall of a support plate three (301). The pneumatic cylinder (213) is used for driving the support plate two (212) and pushing the support plate two (212). The support plate two (212) is limited by the hinge connection with the support rod two (211), drives the limiting block (201) to slide in the sliding groove (103), and drives the guide block (202) to adjust the position, so that the guide block (202) drives the glass plate to adjust the position.
Citation Information
Patent Citations
Glass plate bombardment degassing apparatus
CN104513000A