Anti-radiation glass deep processing frosting treatment equipment
By using a vacuum adsorption machine and moving components to move the glass, combined with the design of a high-pressure pump and cleaning rollers, the problem of low efficiency in frosting large glass pieces is solved, achieving a highly efficient and clean frosting effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU SHENDUN NEW MATERIAL TECH CO LTD
- Filing Date
- 2025-04-17
- Publication Date
- 2026-04-10
AI Technical Summary
Existing equipment cannot perform frosting on large glass pieces, requiring repeated adjustments that result in low sandblasting efficiency. Furthermore, dirt on the glass surface cannot be subsequently treated, affecting the efficiency of the frosting process and product quality.
A frosting treatment device for deep processing of radiation-proof glass was designed. It uses a vacuum adsorption machine and a moving component in conjunction with a sandblasting machine to realize the automated movement and sandblasting of the glass. It combines a high-pressure pump and a cleaning component for surface cleaning and uses a linkage component to drive the cleaning roller to improve the surface cleanliness.
It enables efficient frosting of large glass components, improves sandblasting quality and efficiency, ensures clean glass surfaces, and enhances the quality of subsequent products.
Smart Images

Figure CN224102709U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass deep processing sanding treatment technical field, concretely to a kind of anti-radiation glass deep processing sanding treatment equipment. BACKGROUND
[0002] With the rapid development of modern science and technology, various radiation sources are widely used in electronic equipment, medical facilities, nuclear power industry and many other fields. As a key protective material, anti-radiation glass plays an indispensable role in blocking harmful radiation and ensuring the safety of personnel and equipment. At the same time, to meet the diverse application requirements, not only does the anti-radiation glass need to have excellent radiation shielding performance, but also higher requirements are put forward for its appearance, optical properties and surface texture. Sanding treatment, as a processing technology that can give glass unique decorative effect and improve surface performance, is gradually valued in the field of anti-radiation glass deep processing, and the corresponding sanding treatment equipment also emerges as the times require.
[0003] For example, the announcement number CN221479804U discloses a sanding liquid spraying device for sanding glass processing, which relates to the technical field of sanding glass processing. The spraying processing table is fixedly installed on both sides of the spraying processing table. The support side plate is fixedly installed on the top of the support side plate. The support frame is fixedly installed on one side of the support frame. The spraying equipment is fixedly installed at the bottom of the spraying equipment. The support column is movably sleeved with a rotating column at the bottom of the support column. The support column is provided with an adjusting mechanism. The transmission gear, motor, rotating gear, connecting column, rotating plate and rotating column are cooperated with each other to solve the problem of poor mobility of traditional spraying device, single spraying mode for glass, uneven spraying for glass, and influence on spraying quality of the device. The function of rotation adjustment is achieved, the sanding glass is uniformly sprayed, and the processing quality of the device is improved. However, the existing device cannot sand the large glass, and needs to be adjusted reciprocally, which is low in sanding efficiency. Moreover, the surface of the glass is dirty when sanding, which cannot be processed subsequently, resulting in low sanding efficiency and affecting the quality of subsequent products. Therefore, it is urgent to design an anti-radiation glass deep processing sanding treatment equipment to solve the above problems. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing an anti-radiation glass deep processing sanding treatment equipment to solve the problem that the existing device cannot sand the large glass, needs to be adjusted reciprocally, which is low in sanding efficiency, and the surface of the glass is dirty when sanding, which cannot be processed subsequently, resulting in low sanding efficiency and affecting the quality of subsequent products.
[0005] In order to achieve the above object, the utility model provides the following technical scheme: A kind of anti-radiation glass deep processing sanding treatment equipment, including operation platform and processing platform, the tabletop of operation platform is equipped with processing platform, the inside of processing platform is equipped with push mechanism, the push mechanism includes moving assembly and vacuum suction machine, the inside center of processing platform is equipped with moving assembly, the top of moving assembly is equipped with vacuum suction machine, the top of vacuum suction machine is attached glass material, the upper side of glass material is equipped with sandblasting machine, the sandblasting machine is installed at the right end bottom side of operation platform, the top left side of operation platform is equipped with cleaning mechanism, the cleaning mechanism includes water tank and cleaning assembly, the left end of operation platform is equipped with water tank, the left end bottom side of operation platform is equipped with cleaning assembly, the center of processing platform is equipped with cleaning mechanism, the cleaning mechanism includes cleaning assembly and linkage assembly, the side of processing platform is equipped with cleaning assembly, the front end of cleaning assembly is equipped with linkage assembly, the left end of linkage assembly is connected with the left end of moving assembly.
[0006] Preferably, the inside front and rear walls of the processing platform are fixedly provided with guide rails, and the centers of the two groups of guide rails are provided with sliding blocks.
[0007] Preferably, the moving assembly includes a servo motor and a threaded rod, the rear end of the servo motor is connected to drive the threaded rod, the rear end of the threaded rod is inserted into the inner wall of the processing platform, the center of the threaded rod is provided with two groups of long barrel nuts, the top ends of the two groups of long barrel nuts are fixedly provided with a fixed plate, and the front and rear ends of the fixed plate are fixedly provided with connecting sliding blocks.
[0008] Preferably, the rear end of the water tank is provided with a C-shaped pipe, the bottom end front side of the C-shaped pipe is connected with a water pump, and the front end of the water pump is provided with a connecting pipe installed in the left end of the processing platform.
[0009] Preferably, the cleaning assembly includes two groups of side blocks and a square porous pipe, the front and rear ends of the square porous pipe are fixedly provided with side blocks, the top ends of the two groups of side blocks are fixedly provided on the top end of the operation platform, the bottom end of the square porous pipe is provided with a plurality of high-pressure nozzles, the top end of the square porous pipe is provided with a drain pipe connected with a high-pressure pump, and the top end of the high-pressure pump is connected with the water tank.
[0010] Preferably, the cleaning assembly includes two groups of limiting plates and two groups of cleaning rollers, the top ends of the two groups of limiting plates are equipped with two groups of cleaning rollers, the rear ends of the two groups of cleaning rollers are fixedly provided with gears connected with each other, and the front end of the left cleaning roller is equipped with a linkage assembly.
[0011] Preferably, the linkage assembly comprises a conveying belt set and a first rotating shaft, the rear end of the conveying belt set is installed at the right end of the servo motor, the front end of the conveying belt set is installed at the left end of the first rotating shaft, the first rotating shaft is installed at the front end of the operation table, the right end of the first rotating shaft is provided with a limiting block installed at the front end of the limiting plate, the right end of the first rotating shaft is fixedly provided with a transverse bevel gear, the top end of the transverse bevel gear is engaged with a longitudinal bevel gear, the center of the longitudinal bevel gear is installed with a second rotating shaft, and the center of the second rotating shaft is provided with a chain wheel set connected with the front end of the cleaning roller.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] The movable assembly can drive the vacuum adsorption machine to move, so that the glass is moved conveniently, time is saved, subsequent operation is facilitated, the glass material is adsorbed and moved better by the vacuum adsorption machine, the glass material is conveniently frosted, the glass material surface is frosted as a whole, and the efficiency is further improved.
[0014] The movable assembly can drive the vacuum adsorption machine to move, so that the glass is moved conveniently, time is saved, subsequent operation is facilitated, the glass material is adsorbed and moved better by the vacuum adsorption machine, the glass material is conveniently frosted, the glass material surface is frosted as a whole, and the efficiency is further improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a front view schematic diagram of the utility model;
[0016] Figure 2 It is a front view schematic diagram of the utility model;
[0017] Figure 3 It is a side view schematic diagram of the utility model;
[0018] Figure 4 It is a cleaning mechanism structure schematic diagram of the utility model;
[0019] Figure 5 It is a push mechanism top view schematic diagram of the utility model.
[0020] In the figure: 1, operation platform; 2, processing platform; 21, guide rail; 22, sliding block; 23, triangular block; 3, pushing mechanism; 31, moving assembly; 311, servo motor; 312, threaded rod; 313, long barrel nut; 314, fixed plate; 32, vacuum adsorption machine; 4, glass material; 5, cleaning mechanism; 51, water tank; 511, water pump; 512, connecting pipe; 513, C-shaped pipe; 52, cleaning assembly; 521, side block; 522, high-pressure pump; 523, drain pipe; 524, square porous pipe; 525, high-pressure nozzle; 6, cleaning mechanism; 61, cleaning assembly; 611, limiting plate; 612, cleaning roller; 613, gear; 62, linkage assembly; 621, conveying belt group; 622, first rotating shaft; 623, limiting block; 624, transverse bevel gear; 625, longitudinal bevel gear; 626, second rotating shaft; 627, sprocket group; 7, sand blasting machine. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0022] Please refer to Figures 1-5 The utility model provides an embodiment:
[0023] A kind of radiation protection glass deep processing sanding treatment equipment, servo motor 311 used in the application, vacuum adsorption machine 32, high-pressure pump 522 and water pump 511 are directly purchased product in market, its principle and connection mode are all prior art that the person skilled in the art is familiar with, including operation platform 1 and processing platform 2, the top of operation platform 1 is installed with processing platform 2, it is characterized in that: the inside installation pushing mechanism 3 of processing platform 2, pushing mechanism 3 includes moving assembly 31 and vacuum adsorption machine 32, moving assembly 31 is installed in the inside center of processing platform 2, the top of moving assembly 31 is installed vacuum adsorption machine 32, vacuum adsorption machine 32 top end adsorption glass material 4, the upper side of glass material 4 is installed with sand blasting machine 7, sand blasting machine 7 is installed at the right end bottom side of operation platform 1, the top left side of operation platform 1 is installed cleaning mechanism 5, cleaning mechanism 5 includes water tank 51 and cleaning assembly 52, water tank 51 is installed at the left end of operation platform 1, cleaning assembly 52 is installed at the left end bottom side of operation platform 1, cleaning mechanism 6 is installed in the center of processing platform 2, cleaning mechanism 6 includes cleaning assembly 61 and linkage assembly 62, cleaning assembly 61 is installed at the side of processing platform 2, cleaning assembly 61 front end is installed with linkage assembly 62, the left end of linkage assembly 62 is connected with the left end of moving assembly 31.
[0024] Further, the inside of the processing table 2 is provided with two guide rails 21, the center of the two guide rails 21 is provided with a sliding block 22, and the inside of the processing table 2 is provided with a triangular block 23, so that the water pump can conveniently pump water.
[0025] Further, the moving assembly 31 comprises a servo motor 311 and a threaded rod 312, the rear end of the servo motor 311 is connected to drive the threaded rod 312, the rear end of the threaded rod 312 is inserted into the inner wall of the processing table 2, the center of the threaded rod 312 is provided with two long barrel nuts 313, the top end of the two long barrel nuts 313 is provided with a fixed plate 314, and the front and rear ends of the fixed plate 314 are provided with connecting sliding blocks 22, which is convenient for moving the glass, thereby saving time and facilitating subsequent operation.
[0026] Further, the rear end of the water tank 51 is provided with a C-shaped pipe 513, the front side of the bottom end of the C-shaped pipe 513 is connected to a water pump 511, the front end of the water pump 511 is provided with a connecting pipe 512 installed in the left end of the processing table 2, the cleaning assembly 52 comprises two side blocks 521 and a square porous pipe 524, the front and rear ends of the square porous pipe 524 are provided with side blocks 521, the top end of the two side blocks 521 is provided with a top end of the operating table 1, the bottom end of the square porous pipe 524 is provided with a plurality of high-pressure nozzles 525, the top end of the square porous pipe 524 is provided with a drain pipe 523 connected to a high-pressure pump 522, and the top end of the high-pressure pump 522 is connected to the water tank 51, which is beneficial to the adsorption of glass materials and the convenient movement of glass materials for sandblasting, thereby the surface of the glass materials is overall sandblasted.
[0027] Further, the cleaning assembly 61 comprises two limiting plates 611 and two cleaning rollers 612, the top end of the two limiting plates 611 is provided with two cleaning rollers 612, the rear end of the two cleaning rollers 612 is provided with a connecting gear 613, the front end of the left cleaning roller 612 is provided with a linkage assembly 62, the linkage assembly 62 comprises a conveying belt group 621 and a first rotating shaft 622, the rear end of the conveying belt group 621 is installed at the right end of the servo motor 311, the front end of the conveying belt group 621 is installed at the left end of the first rotating shaft 622, the first rotating shaft 622 is installed at the front end of the operating table 1, the right end of the first rotating shaft 622 is provided with a limiting block 623 installed at the front end of the limiting plate 611, the right end of the first rotating shaft 622 is provided with a horizontal bevel gear 624, the top end of the horizontal bevel gear 624 is engaged with a vertical bevel gear 625, the vertical bevel gear 625 is provided with a second rotating shaft 626, and the second rotating shaft 626 is provided with a chain wheel group 627 connected to the front end of the cleaning roller 612, which is beneficial to improve the surface cleanliness of the glass materials and improve the efficiency of the sandblasting process.
[0028] Working principle: in use, the user first places the glass material 4 on the upper side of the vacuum adsorber 32 at the left end of the operation table 1 for adsorption, and then powers on the servo motor 311 and the high-pressure pump 522 to work, when the servo motor 311 drives the threaded rod 312 to rotate, it can drive the two groups of long barrel nuts 313 in the center and the fixed plate 314 at the top to move, the fixed plate 314 and the vacuum adsorber 32 are moved by the fixed plate 314, when the vacuum adsorber 32 drives the glass material 4 to move, the high-pressure pump 522 at the top pumps out the water in the water tank 51 and then through the drain pipe 523, and then through the action of the square porous pipe 524 and the high-pressure spray head 525 to clean the surface of the glass material 4, when the glass material 4 moves to the center, the servo motor 311 rotates to drive the front conveying belt group 621 to rotate, the conveying belt group 621 rotates to drive the first rotating shaft 622 to rotate in the limiting block 623, the first rotating shaft 622 rotates to rotate the horizontal bevel gear 624 to engage the vertical bevel gear 625 to rotate, the vertical bevel gear 625 rotates to drive the second rotating shaft 626 to rotate to drive the left cleaning roller 612 to rotate under the drive of the chain wheel group 627, the left cleaning roller 612 rotates to drive another group of cleaning rollers 612 to rotate in the opposite direction through the gear 613, thereby improving the surface cleanliness of the glass material 4, then the sand blasting machine 7 is used for sanding treatment, the above is the whole working principle of the utility model.
[0029] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as exemplary and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and range of equivalent elements of the claims are intended to be embraced in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.
Claims
1. A kind of anti-radiation glass deep processing sanding treatment equipment, including operation platform (1) and processing platform (2), the worktop of operation platform (1) is equipped with processing platform (2), it is characterized by: The inside of the processing table (2) is provided with a pushing mechanism (3), the pushing mechanism (3) comprises a moving assembly (31) and a vacuum suction machine (32), the moving assembly (31) is installed at the inside center of the processing table (2), the top end of the moving assembly (31) is provided with the vacuum suction machine (32), the top end of the vacuum suction machine (32) is provided with the glass material (4), the upper side of the glass material (4) is provided with a sand blasting machine (7), the sand blasting machine (7) is installed at the right bottom side of the operation table (1), the top left side of the operation table (1) is provided with a cleaning mechanism (5), the cleaning mechanism (5) comprises a water tank (51) and a cleaning assembly (52), the water tank (51) is installed at the left end of the operation table (1), the left end of the operation table (1) is provided with the cleaning assembly (52), the center of the processing table (2) is provided with a cleaning mechanism (6), the cleaning mechanism (6) comprises a cleaning assembly (61) and a linkage assembly (62), the cleaning assembly (61) is installed at the side of the processing table (2), the front end of the cleaning assembly (61) is provided with the linkage assembly (62), and the left end of the linkage assembly (62) is connected with the left end of the moving assembly (31).
2. The deep processing frosting treatment equipment for radiation-proof glass according to claim 1, characterized in that: The inside of the processing table (2) is provided with a pushing mechanism (3), the pushing mechanism (3) comprises a moving assembly (31) and a vacuum suction machine (32), the moving assembly (31) is installed at the inside center of the processing table (2), the top end of the moving assembly (31) is provided with the vacuum suction machine (32), the top end of the vacuum suction machine (32) is provided with the glass material (4), the upper side of the glass material (4) is provided with a sand blasting machine (7), the sand blasting machine (7) is installed at the right bottom side of the operation table (1), the top left side of the operation table (1) is provided with a cleaning mechanism (5), the cleaning mechanism (5) comprises a water tank (51) and a cleaning assembly (52), the water tank (51) is installed at the left end of the operation table (1), the left end of the operation table (1) is provided with the cleaning assembly (52), the center of the processing table (2) is provided with a cleaning mechanism (6), the cleaning mechanism (6) comprises a cleaning assembly (61) and a linkage assembly (62), the cleaning assembly (61) is installed at the side of the processing table (2), the front end of the cleaning assembly (61) is provided with the linkage assembly (62), and the left end of the linkage assembly (62) is connected with the left end of the moving assembly (31).
3. The deep processing frosting treatment equipment for radiation-proof glass according to claim 1, characterized in that: The inside of the processing table (2) is provided with a pushing mechanism (3), the pushing mechanism (3) comprises a moving assembly (31) and a vacuum suction machine (32), the moving assembly (31) is installed at the inside center of the processing table (2), the top end of the moving assembly (31) is provided with the vacuum suction machine (32), the top end of the vacuum suction machine (32) is provided with the glass material (4), the upper side of the glass material (4) is provided with a sand blasting machine (7), the sand blasting machine (7) is installed at the right bottom side of the operation table (1), the top left side of the operation table (1) is provided with a cleaning mechanism (5), the cleaning mechanism (5) comprises a water tank (51) and a cleaning assembly (52), the water tank (51) is installed at the left end of the operation table (1), the left end of the operation table (1) is provided with the cleaning assembly (52), the center of the processing table (2) is provided with a cleaning mechanism (6), the cleaning mechanism (6) comprises a cleaning assembly (61) and a linkage assembly (62), the cleaning assembly (61) is installed at the side of the processing table (2), the front end of the cleaning assembly (61) is provided with the linkage assembly (62), and the left end of the linkage assembly (62) is connected with the left end of the moving assembly (31).
4. The deep processing frosting treatment equipment for radiation-proof glass according to claim 1, characterized in that: 5. The radiation-proof glass deep processing frosting treatment equipment according to claim 1, characterized in that: 6. The deep processing frosting treatment equipment for radiation-proof glass according to claim 1, characterized in that: Said cleaning assembly (61) includes two groups of limiting plates (611) and two groups of cleaning rollers (612), the top of the two groups of limiting plates (611) is installed with two groups of cleaning rollers (612), the rear end of the two groups of cleaning rollers (612) is fixedly provided with a connecting gear (613), and the front end of the left end of the cleaning roller (612) is installed with a linkage assembly (62).
7. The radiation-proof glass deep processing frosting treatment equipment according to claim 1, characterized in that: Said linkage assembly (62) includes a conveying belt group (621) and a first rotating shaft (622), the rear end of the conveying belt group (621) is installed on the right end of the servo motor (311), the front end of the conveying belt group (621) is installed on the left end of the first rotating shaft (622), the first rotating shaft (622) is installed on the front end of the operation table (1), the right end of the first rotating shaft (622) is provided with a limiting block (623) installed on the front end of the limiting plate (611), the right end of the first rotating shaft (622) is fixedly provided with a transverse bevel gear (624), the top of the transverse bevel gear (624) is engaged with a longitudinal bevel gear (625), the center of the longitudinal bevel gear (625) is installed with a second rotating shaft (626), and the center of the second rotating shaft (626) is provided with a sprocket group (627) connected with the front end of the cleaning roller (612).
Citation Information
Patent Citations
Frosted liquid spraying device for frosted glass processing
CN221479804U