Flexible corner grinding device for glass ceramic production

By designing a flexible edge grinding device for microcrystalline glass production, and adopting an automated roller and dust collection system, the problems of inconsistent thickness and dust pollution in traditional microcrystalline glass grinding have been solved, achieving an efficient and stable production process and product quality.

CN223519343UActive Publication Date: 2025-11-07TIGER STONE NEW MATERIALS (YIXING) CO LTD
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Patent Information

Application Number
CN202422681152.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-11-07
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

The traditional microcrystalline glass polishing process requires frequent manual intervention, which leads to inconsistent polishing thickness and smoothness, affecting product quality, increasing scrap rate and production costs. In addition, dust pollutes the working environment, endangers health, and affects equipment lifespan.

Method used

Design a flexible edge grinding device for microcrystalline glass production. The device uses components such as rollers, grinding belts, hydraulic rods and triangular plates to achieve automated and precise grinding. Dust is collected through a fan, guide channel and collection box system to ensure environmental cleanliness and normal equipment operation.

Benefits of technology

It enables efficient and precise grinding of the edges and corners of microcrystalline glass, improving product quality and production efficiency, reducing scrap rate and production costs, while also improving the working environment and protecting worker health and equipment lifespan.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of glass ceramic processing equipment, and discloses a flexible corner polishing device for glass ceramic production, which comprises a workbench, the right side of the interior of the workbench is in threaded connection with a bottom plate, the left side and the right side of the upper side wall of the bottom plate are both fixedly connected with fixing seats, and motors are arranged in the two fixing seats. The bottom of the motor is fixedly connected to the upper side wall of the bottom plate. Through the arrangement of the roller, the connecting block, the rotating rod and the first rolling wheel, the problems that the quality of final microcrystalline glass is affected, more waste products are generated or reprocessing is needed, and the production cost and time are increased due to the fact that the thickness and the smoothness of each time of grinding are inconsistent can be solved, and after the motor is started, the roller is driven to rotate, so that the production efficiency is improved. Therefore, the efficient, stable and high-quality production process is effectively improved and ensured, and the final quality, the production efficiency and the equipment maintenance of the microcrystalline glass are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of microcrystalline glass processing equipment, especially to a corner flexible polishing device for microcrystalline glass production. BACKGROUND

[0002] Microcrystalline glass is usually composed of glass phase and crystalline phase. The glass phase serves to bond the crystalline phase, while the crystalline phase imparts special properties to the material. Its main components include silicon dioxide, aluminum oxide, calcium oxide, etc., and the specific component ratio will be adjusted according to different application requirements. Microcrystalline glass has a dense structure, with fine and uniformly distributed crystal particles in the glass matrix, which makes it have many excellent properties.

[0003] In the traditional process of polishing microcrystalline glass with equipment, frequent manual intervention may be required to adjust the polishing device, which can reduce production efficiency and make the pressure and angle difficult to control accurately, resulting in inconsistent thickness and smoothness of each polishing, thus affecting the quality of the final microcrystalline glass, leading to more waste products or the need for reprocessing, thereby increasing production costs and time, and the fine dust generated during the polishing process can accumulate in the production environment, covering the equipment and work area, increasing the difficulty of cleaning and maintenance, leading to poor air quality in the work area, which can harm the health of workers, causing equipment blockage or wear, thus affecting its normal operation and service life. SUMMARY

[0004] The main purpose of the utility model is to provide a corner flexible polishing device for microcrystalline glass production, which can effectively solve the problem of inconsistent thickness and smoothness of each polishing, thus affecting the quality of the final microcrystalline glass, leading to more waste products or the need for reprocessing, thereby increasing production costs and time, and leading to poor air quality in the work area, which can harm the health of workers, causing equipment blockage or wear, thus affecting its normal operation and service life.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a flexible edge polishing device for microcrystalline glass production, comprising a worktable, a base plate threadedly connected to the inner right side of the worktable, fixed seats fixedly connected to the left and right sides of the upper sidewall of the base plate, a motor disposed inside the two fixed seats, the bottom of the motor fixedly connected to the upper sidewall of the base plate, a support frame fixedly connected to the front sidewall of the two fixed seats, a rotating shaft fixedly connected to the output end of the motor, a roller fixedly connected to the outer front end of the rotating shaft, the top of the roller disposed at the bottom of the support frame, a support plate rotatably connected to the top of the support frame, a hydraulic rod rotatably connected to the rear sidewall of the support frame, the telescopic end of the hydraulic rod fixedly connected to the left side of the rear sidewall of the support plate, a fixed block fixedly connected to the front sidewall of the support plate, a first connecting block fixedly connected inside the fixed block, a rotating rod threadedly connected inside the first connecting block, and a first roller rotatably connected to the outer front end of the rotating rod.

[0006] Furthermore, a placement box is fixedly connected to the front side wall of the support frame, and a connecting rod is slidably connected inside the placement box. A fixed rod is connected through the left side wall of the connecting rod, and a triangular plate is provided on the rear left side of the connecting rod. An arc-shaped groove is opened inside the triangular plate.

[0007] Furthermore, the left-side fixing rod is threaded into the inside of the triangular plate, and the right-side fixing rod is slidably connected into the inside of the arc-shaped groove. The upper and lower sides of the front sidewall of the triangular plate are rotatably connected to second rollers, and the front sidewall of the triangular plate is rotatably connected to second connecting blocks. The left sidewall of the two second connecting blocks is fixedly connected to a support plate.

[0008] Furthermore, an abrasive belt is rotatably connected to the outer side of the roller, and the top and left side of the abrasive belt are rotatably connected to the outer side of the first roller and two second rollers. The left rear sidewall of the abrasive belt is set on the left sidewall of the support plate.

[0009] Furthermore, a placement plate is fixedly connected to the inner rear side wall of the workbench, and a first conveying pipe is connected through the interior of the placement plate. The rear end of the first conveying pipe is connected through the rear side wall of the workbench, and a suction cup is connected to the top end of the first conveying pipe. The suction cup is disposed on the upper side wall of the first conveying pipe.

[0010] Furthermore, a baffle is fixedly connected to the top of the front side wall of the workbench, and a fan is fixedly connected inside the baffle. A guide groove is opened inside the bottom wall of the workbench. A locking block is fixedly connected to the bottom of the rear side wall of the workbench, and a guide rail plate is fixedly connected to the bottom of the workbench.

[0011] Further, the inner part of two guide rail plates is slidably connected with a sliding block, the bottom of two sliding blocks is fixedly connected with a collecting box, the rear side of the collecting box is in communication with a second conveying pipeline, the top of the second conveying pipeline is arranged in the upper side wall of the clamping block, and the bottom of the workbench is fixedly connected with a support.

[0012] Compared with the prior art, the microcrystalline glass edge flexible polishing device has the following beneficial effects:

[0013] 1、The rolling roller, connecting block, rotating rod, first roller, hydraulic rod, connecting rod and triangular plate are arranged, the problem that the thickness and smoothness of polishing each time are inconsistent, the quality of the final microcrystalline glass is affected, more waste products or reprocessing are caused, and the production cost and time are increased can be solved, the rolling roller is driven to rotate after the motor is started, the abrasive belt on the outer side of the rolling roller moves, the abrasive belt maintains a certain tension and shape under the joint action of the first roller, the second roller and the supporting plate, the position of the bottom plate, the extension of the hydraulic rod, the position of the rotating rod and the position and angle of the connecting rod and the triangular plate are adjusted, the abrasive belt can be flexibly attached to the corners of the microcrystalline glass, efficient and accurate polishing is realized, the efficient, stable and high-quality production process is effectively ensured, and the final quality, production efficiency and equipment maintenance of the microcrystalline glass are improved.

[0014] 2、The fan, flow guide groove, second conveying pipeline, collecting box and guide rail plate are arranged, the problem that the air quality of the working area is poor, the health of workers is harmed, the equipment is blocked or worn, the normal operation and service life are affected can be solved, the top of the second conveying pipeline inside the second conveying pipeline in communication with the rear side of the collecting box is arranged in the upper side wall of the clamping block, the second conveying pipeline is supported, the dust and debris sucked by the fan and guided by the flow guide groove are finally collected in the collecting box through the second conveying pipeline, and the production efficiency is effectively improved, the health of the equipment and workers is ensured, and the product quality is maintained.

[0015] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 A perspective view of the edge flexible polishing device for microcrystalline glass production is provided for the utility model;

[0017] Figure 2 A rear side view of the edge flexible polishing device for microcrystalline glass production is provided for the utility model;

[0018] Figure 3 A connecting rod structure view of the edge flexible polishing device for microcrystalline glass production is provided for the utility model;

[0019] Figure 4 A rotating shaft structure diagram of the flexible corner polishing device for microcrystalline glass production is provided for the utility model.

[0020] Figure 5 A back side structure diagram of the triangular plate of the flexible corner polishing device for microcrystalline glass production is provided for the utility model.

[0021] Figure 6 A support plate structure diagram of the flexible corner polishing device for microcrystalline glass production is provided for the utility model.

[0022] Figure 7 A support plate structure diagram of the flexible corner polishing device for microcrystalline glass production is provided for the utility model.

[0023] Figure 8 A working table internal section structure diagram of the flexible corner polishing device for microcrystalline glass production is provided for the utility model.

[0024] Figure 9 A second conveying pipeline structure diagram of the flexible corner polishing device for microcrystalline glass production is provided for the utility model.

[0025] Figure 10 A clamping block structure diagram of the flexible corner polishing device for microcrystalline glass production is provided for the utility model.

[0026] Figure 11 A sliding block structure diagram of the flexible corner polishing device for microcrystalline glass production is provided for the utility model.

[0027] Legend:

[0028] 1, working table; 2, bottom plate; 3, fixed seat; 4, support frame; 5, motor; 6, rotating shaft; 7, roller; 8, support plate; 9, fixed block; 10, first connecting block; 11, rotating rod; 12, first roller; 13, hydraulic rod; 14, placing box; 15, connecting rod; 16, triangular plate; 17, arc-shaped groove; 18, fixed rod; 19, second roller; 20, second connecting block; 21, support plate; 22, sanding belt; 23, placing plate; 24, first conveying pipe; 25, baffle; 26, fan; 27, flow guide groove; 28, clamping block; 29, second conveying pipeline; 30, collecting box; 31, sliding block; 32, guide rail plate; 33, support; 34, suction cup. DETAILED DESCRIPTION

[0029] In order to make the technical means, creative features, purposes and effects achieved by the utility model easy to understand, the utility model is further described below in combination with specific embodiments.

[0030] For example, Figure 1- Figure 7 The utility model provides a kind of flexible polishing device for corner of microcrystalline glass production, including workbench 1, the inside right side of workbench 1 is screw connected with bottom plate 2, the position of bottom plate 2 in workbench 1 can be adjusted by the screw connection relationship between the inside right side of workbench 1 and bottom plate 2, to preliminarily determine the overall position of polishing mechanism, the upper side wall of bottom plate 2 is fixedly connected with fixed seat 3 on left and right sides, motor 5 is arranged in the inside of two fixed seats 3, and the bottom of motor 5 is fixedly connected on the upper side wall of bottom plate 2, support frame 4 is fixedly connected on the front side wall of two fixed seats 3, the motor 5 in the inside of two fixed seats 3 is supported left and right by the fixed seat 3 of the upper side wall of bottom plate 2 and the support frame 4 in front is supported and fixed, so that support frame 4 can balance and drive the device on the outside to run, the output end of motor 5 is fixedly connected with rotating shaft 6, the outer side of the front end of rotating shaft 6 is fixedly connected with roll 7, rotating shaft 6 on the output end of motor 5 is used to drive roll 7 to rotate, to drive abrasive belt 22 to rotate, and microcrystalline glass is polished, the top of roll 7 is arranged at the bottom of support frame 4, the top of support frame 4 is rotatably connected with support plate 8, the rear side wall of support frame 4 is rotatably connected with hydraulic rod 13, and the telescopic end of hydraulic rod 13 is fixedly connected on the left side of the rear side wall of support plate 8, the top of support frame 4 is driven to rotate up and down by the rear side wall of support frame 4 being fixed with hydraulic rod 13, to change the position of left device, to adjust position, the front side wall of support plate 8 is fixedly connected with fixed block 9, the inside of fixed block 9 is fixedly connected with first connecting block 10, the inside of first connecting block 10 is screw connected with rotating rod 11, the outer side of the front end of rotating rod 11 is rotatably connected with first roller 12, first connecting block 10 is connected by the fixed block 9 of the front side wall of support plate 8, and first roller 12 is fixed on the front side wall of first connecting block 10 by rotating rod 11, to adjust and support first roller 12, so that first roller 12 can stably support and drive the effect of abrasive belt 22 on the outside.

[0031] As Figure 1 - Figure 8As shown, the front side wall of the support frame 4 is fixedly connected with a placing box 14, the inside of the placing box 14 is slidably connected with a connecting rod 15, the placing box 14 on the front side wall of the support frame 4 provides a left and right sliding area for the connecting rod 15 to prevent the connecting rod 15 from falling off when sliding, the left side wall of the connecting rod 15 is penetratingly connected with a fixed rod 18, the left part of the connecting rod 15 is provided with a triangular plate 16, the inside of the triangular plate 16 is provided with an arc-shaped groove 17, the left part of the fixed rod 18 is screwedly connected in the inside of the triangular plate 16, the right part of the fixed rod 18 is slidably connected in the inside of the arc-shaped groove 17, the connecting rod 15 is connected with the triangular plate 16 through the fixed rod 18 on the connecting rod 15, the left part of the fixed rod 18 is screwedly connected in the inside of the triangular plate 16, the right part of the fixed rod 18 is slidably connected in the arc-shaped groove 17 in the inside of the triangular plate 16, so that the triangular plate 16 can be adjusted at a certain angle relative to the connecting rod 15, the front side wall of the triangular plate 16 is rotatably connected with a second roller 19 on both sides, the second roller 19 is arranged to support the left side of the sanding belt 22 and improve the stability during rotation, and drive the sanding belt 22 to adjust the angle, the front side wall of the triangular plate 16 is rotatably connected with a second connecting block 20, the left side wall of the two second connecting blocks 20 is fixedly connected with a support plate 21, the second connecting block 20 is arranged to support the support plate 21, to support the left side of the sanding belt 22 during adjustment, and provide support when the sanding belt 22 grinds the microcrystalline glass.

[0032] As shown in the figure, Figure 1 Figure 9 As shown, the outer side of the roller 7 is rotatably connected with a sanding belt 22, the top and left side of the sanding belt 22 are rotatably connected outside the first roller 12 and the two second rollers 19, the left side wall of the left side of the sanding belt 22 is arranged on the left side wall of the support plate 21, when the sanding belt 22 is arranged outside the roller 7, the first roller 12 and the two second rollers 19, the sanding belt 22 can be kept at a certain tension, then the roller 7 drives the sanding belt 22 to rotate outside the first roller 12 and the two second rollers 19 to grind the microcrystalline glass, the inside of the rear side wall of the workbench 1 is fixedly connected with a placing plate 23, the placing plate 23 is arranged to place the microcrystalline glass, the inside of the placing plate 23 is penetratingly connected with a first conveying pipe 24, the rear end of the first conveying pipe 24 is penetratingly connected to the rear side wall of the workbench 1, the top end of the first conveying pipe 24 is communicatingly connected with a suction cup 34, the suction cup 34 is arranged on the upper side wall of the first conveying pipe 24, after the microcrystalline glass is placed on the placing plate 23, the first conveying pipe 24 is connected with an external air pump, the suction cup 34 of the microcrystalline glass communicates with the first conveying pipe 24 to suck the microcrystalline glass, fix the microcrystalline glass on the upper side wall of the placing plate 23 for grinding, so that the microcrystalline glass can be supported and fixed to be precisely ground. ​

[0033] As Figure 1 - Figure 11 The top of the front side wall of the workbench 1 is fixedly connected with a baffle 25, the baffle 25 at the top of the front side wall of the workbench 1 prevents objects from splashing out of the workbench during polishing, the inside of the baffle 25 is fixedly connected with a fan 26, the inside of the bottom wall of the workbench 1 is provided with a flow guide groove 27, impurities and dust in the inside of the workbench 1 are blown into the inside of the flow guide groove 27 by the fan 26 to be collected after being started, the bottom of the rear side wall of the workbench 1 is fixedly connected with a clamping block 28, the bottom of the workbench 1 is fixedly connected with a guide rail plate 32, the inside of the two guide rail plates 32 is slidably connected with a sliding block 31, the bottom of the two sliding blocks 31 is fixedly connected with a collecting box 30, the guide rail plate 32 at the bottom of the workbench 1 is connected with the sliding block 31 to facilitate fixing the collecting box 30 at the bottom of the workbench 1, and the collecting box 30 can be quickly installed and removed to clean the collecting box 30, the rear side of the collecting box 30 is in communication with a second conveying pipeline 29, the top inside of the second conveying pipeline 29 is arranged on the upper side wall of the clamping block 28, the bottom of the workbench 1 is fixedly connected with a support 33, when the second conveying pipeline 29 is fixed at the rear side wall of the workbench 1, the inside top wall of the second conveying pipeline 29 is in contact with the upper side wall of the clamping block 28, the clamping block 28 prevents the second conveying pipeline 29 from falling off, and impurities and dust in the inside of the flow guide groove 27 are transferred to the inside of the collecting box 30 through the second conveying pipeline 29 to be collected.

[0034] It should be noted that the utility model is a kind of edge flexible polishing device for microcrystalline glass production, first, during installation, the bottom plate 2 of right side screw connection inside workbench 1 can be adjusted to a certain extent position.Two fixed seats 3 on bottom plate 2 are used to fix motor 5, motor 5 is used as power source, and rotating shaft 6 connected to the output end of motor 5 can transmit power, and motor 5 is connected with external power supply and control end to supply power to the device.

[0035] Roller 7 outside the front end of rotating shaft 6 rotates under the drive of motor 5, and support frame 4 of front side wall of fixed seat 3 supports and connects other components.Support plate 8 rotatably connected to the top of support frame 4 can rotate within a certain range, and hydraulic rod 13 of rear side wall of support frame 4 is connected with left side of rear side wall of support plate 8 through telescopic end, so that the rotation angle of support plate 8 can be controlled.

[0036] The structure inside the fixed block 9 of the front side wall of the support plate 8 can adjust the position of the rotating rod 11, the first roller 12 outside the front end of the rotating rod 11 is used to guide and support the abrasive belt 22, and the connecting rod 15 slidingly connected inside the placing box 14 of the front side wall of the support frame 4 can move left and right. The triangular plate 16 on the left side of the connecting rod 15 is connected with the connecting rod 15 through the fixed rod 18, the left fixed rod 18 is threadedly connected inside the triangular plate 16, and the right fixed rod 18 slides in the arc-shaped slot 17 inside the triangular plate 16, so that the triangular plate 16 can be adjusted at a certain angle relative to the connecting rod 15. The second roller 19, the second connecting block 20 and the support plate 21 on the left side of the front side wall of the triangular plate 16 cooperate to provide support and position adjustment for the abrasive belt 22.

[0037] When the microcrystalline glass is polished, the motor 5 is started to drive the roller 7 to rotate, and the abrasive belt 22 outside the roller 7 moves accordingly. The abrasive belt 22 maintains a certain tension and shape under the joint action of the first roller 12, the second roller 19 and the support plate 21. When the corners of the microcrystalline glass need to be polished, the microcrystalline glass is placed in the appropriate position so that the abrasive belt 22 is in contact with the corners. By adjusting the position of the bottom plate 2, the extension of the hydraulic rod 13, the position of the rotating rod 11, and the position and angle of the connecting rod 15 and the triangular plate 16, the abrasive belt 22 can be flexibly attached to the corners of the microcrystalline glass, achieving efficient and accurate polishing.

[0038] At the same time of polishing the microcrystalline glass, the baffle 25 on the top of the front side wall of the workbench 1 plays a certain protective role to prevent objects from splashing out of the workbench during polishing. The fan 26 fixedly connected inside the baffle 25 is started when the device is running. A large amount of dust and debris will be generated during the polishing process of the corners of the microcrystalline glass. The fan 26 sucks these dust and debris through suction, and the dust and debris sucked by the fan 26 are guided to the workbench 1. The dust and debris are moved in the direction of the flow guide groove 27 under the action of wind force and gravity.

[0039] The upper side wall of the clamping block 28 is arranged at the top of the second conveying pipeline 29 connected in communication with the rear side of the collecting box 30 to support the second conveying pipeline 29. The dust and debris sucked by the fan 26 and guided by the flow guide groove 27 finally enter the collecting box 30 through the second conveying pipeline 29 for centralized collection, avoiding the scattering of dust and debris in the working environment, maintaining the cleanliness of the working environment, and reducing the impact on the health of the operators and the damage to the equipment.

[0040] The guide rail plate 32 at the bottom of the workbench 1 provides a sliding track for the sliding block 31. The collecting box 30 fixedly connected at the bottom of the sliding block 31 can slide in the guide rail plate 32 through the sliding block 31, facilitating the installation and disassembly of the collecting box 30 for cleaning the impurities inside.

[0041] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A flexible corner polishing device for producing microcrystalline glass, comprising a workbench (1), characterized in that: The inside right side of the workbench (1) is threadedly connected with a bottom plate (2), the upper side walls of the left and right sides of the bottom plate (2) are fixedly connected with fixed seats (3), the interiors of the two fixed seats (3) are provided with motors (5), the bottoms of the motors (5) are fixedly connected with the upper side walls of the bottom plate (2), the front side walls of the two fixed seats (3) are fixedly connected with support frames (4), the output ends of the motors (5) are fixedly connected with rotating shafts (6), the front end outer sides of the rotating shafts (6) are fixedly connected with rolling rollers (7), the tops of the rolling rollers (7) are arranged at the bottoms of the support frames (4), the tops of the support frames (4) are rotatably connected with support plates (8), the rear side walls of the support frames (4) are rotatably connected with hydraulic rods (13), the telescopic ends of the hydraulic rods (13) are fixedly connected with the rear side wall left sides of the support plates (8), the front side walls of the support plates (8) are fixedly connected with fixed blocks (9), the interiors of the fixed blocks (9) are fixedly connected with first connecting blocks (10), the interiors of the first connecting blocks (10) are threadedly connected with rotating rods (11), the front end outer sides of the rotating rods (11) are rotatably connected with first rollers (12).

2. The corner flexible polishing device for producing microcrystalline glass according to claim 1, characterized in that: The front side walls of the support frames (4) are fixedly connected with placing boxes (14), the interiors of the placing boxes (14) are slidably connected with connecting rods (15), the left side walls of the connecting rods (15) are all connected with fixed rods (18) in a penetrating mode, the left rear sides of the connecting rods (15) are provided with triangular plates (16), the interiors of the triangular plates (16) are provided with arc-shaped grooves (17).

3. The corner flexible polishing device for producing microcrystalline glass according to claim 2, characterized in that: The left fixed rods (18) are threadedly connected in the interiors of the triangular plates (16), the right fixed rods (18) are slidably connected in the interiors of the arc-shaped grooves (17), the front side walls of the triangular plates (16) are rotatably connected with second rollers (19) on the upper and lower sides, the front side walls of the triangular plates (16) are rotatably connected with second connecting blocks (20), the left side walls of the two second connecting blocks (20) are fixedly connected with support plates (21).

4. The corner flexible polishing device for producing microcrystalline glass according to claim 1, characterized in that: The outer sides of the rolling rollers (7) are rotatably connected with sanding belts (22), the top and left side of the sanding belts (22) are rotatably connected outside the first rollers (12) and the two second rollers (19), the left rear side walls of the sanding belts (22) are arranged at the left side walls of the support plates (21).

5. The corner flexible polishing device for producing microcrystalline glass according to claim 3, characterized in that: The interior rear side walls of the workbench (1) are fixedly connected with placing plates (23), the interiors of the placing plates (23) are connected with first conveying pipes (24) in a penetrating mode, the rear ends of the first conveying pipes (24) are connected with the rear side walls of the workbench (1) in a penetrating mode, the top ends of the first conveying pipes (24) are connected with suction discs (34) in a communicating mode, the suction discs (34) are arranged at the upper side walls of the first conveying pipes (24).

6. The corner flexible polishing device for producing microcrystalline glass according to claim 1, characterized in that: The front side wall top of the workbench (1) is fixedly connected with a baffle (25), the inside of the baffle (25) is fixedly connected with a fan (26), the bottom wall inside of the workbench (1) is provided with a flow guide groove (27), the bottom of the rear side wall of the workbench (1) is fixedly connected with a clamping block (28), and the bottom of the workbench (1) is fixedly connected with a guide rail plate (32).

7. The corner flexible polishing device for producing microcrystalline glass according to claim 6, characterized in that: The inside of two guide rail plates (32) is slidably connected with a sliding block (31), the bottom of two sliding blocks (31) is fixedly connected with a collecting box (30), the rear side of the collecting box (30) is connected with a second conveying pipeline (29), the top inside of the second conveying pipeline (29) is arranged on the upper side wall of the clamping block (28), and the bottom of the workbench (1) is fixedly connected with a support (33).