Dust removal device for quartz glass product processing

By designing a quartz glass product dust removal device including bristles, dust removal and vacuum cleaning components, the problems of vacuum cleaning blind spots and bristles residues in the prior art are solved, and more efficient dust removal and vacuum cleaning effects are achieved, and the finish of the glass surface is improved.

CN120228089APending Publication Date: 2025-07-01新沂市东方石英玻璃有限公司
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Patent Information

Application Number
CN202510349308.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-07-01

AI Technical Summary

Technical Problem

The existing quartz glass dust removal device has blind spots when vacuuming, resulting in some dust being unable to be sucked in, the vacuuming effect is poor, and the dust residue on the bristles affects the dust removal effect.

Method used

A dust removal device including a bristle assembly, a dust removal assembly and a vacuum cleaner assembly is designed. The bristle assembly cleanses the glass surface through the horizontally moving brush plate, and the dust removal assembly blows the bristle through the blower hole in the circumference. The vacuum cleaner assembly is distributed on the periphery of the brush plate through multiple vacuum holes, making the vacuum cleaner effect better.

Benefits of technology

The drive component drives the brush plate cleaning, the dust removal component blows air and dust removal, and the vacuuming component vacuuming operation, which significantly enhances the dust removal effect and vacuuming effect of the surface dust on the quartz glass, avoids bristles and improves the finish of the optical glass.

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Abstract

The invention provides a dust removal device for quartz glass product processing, and relates to the technical field of quartz glass product dust removal. The bristle assembly is arranged above the base and comprises a brush plate containing a plurality of groups of bristles, and the brush plate is configured to be capable of horizontally moving to clean the glass products; the dust removal assembly comprises at least one air blowing hole, and the air blowing holes are horizontally aligned with the bristles so as to conduct circumferential air blowing and dust removal on the bristles; the dust collection assembly comprises a plurality of dust collection holes, and the dust collection holes are distributed in the periphery of the brush plate. The dust collection device is reasonable in structure and good in dust collection and removal effect.
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Description

Technical Field

[0001] The present invention relates to the technical field of dust removal for quartz glass products, and particularly to a dust removal device for processing quartz glass products. Background Art

[0002] Quartz glass is made by melting various pure natural quartz. It has an extremely small linear expansion coefficient, good thermal shock resistance, and high heat resistance. Quartz glass is mainly used in laboratory equipment and refining equipment for special high-purity products. Due to its high spectral transmittance and resistance to radiation damage, it is also an ideal glass for spacecraft, wind tunnel windows, and the optical systems of spectrophotometers. A dust removal device is required during the processing of quartz glass.

[0003] In the prior art, when in use, the dust removal device generally cleans the dust on the glass surface through a rotating brush block, and then sucks the cleaned dust through a dust collector on one side of the brush block. In this way, when removing dust from the glass, since the suction fan is only arranged on one side of the brush block, there is a certain blind area during dust suction, resulting in some dust not being sucked in, and the dust suction effect is not good. Moreover, the bristles on the brush block are prone to residual dust, affecting the dust removal effect on the glass; especially for optical glass with strict requirements on surface finish, bringing in too many dust particles will even affect the surface roughness of the glass. There is an urgent need for a dust removal device for processing quartz glass products to solve the above problems. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the purpose of the present invention is to provide a dust removal device for processing quartz glass products to solve the problems raised in the above background art. The structure of the present invention is reasonable, and the dust suction and dust removal effects are good.

[0005] To achieve the above purpose, the present invention is realized through the following technical solutions: A dust removal device for processing quartz glass products, comprising: A base on which the glass product is placed; A brush component arranged above the base, including a brush plate with multiple groups of bristles, and the brush plate is configured to be able to move horizontally to clean the glass product; A dust removal component including at least one blowing hole that horizontally aligns with the bristles to blow air around the bristles for dust removal; A dust suction component including multiple dust suction holes distributed on the outer periphery of the brush plate.

[0006] Furthermore, a pair of vertical plates are symmetrically arranged on the top of the base; The driving assembly includes longitudinal electric cylinders arranged at the tops of a pair of the vertical plates. A connecting plate is arranged between the tops of the moving blocks of the pair of longitudinal electric cylinders. A transverse electric cylinder is arranged at the top of the connecting plate. A Z-shaped plate is arranged on the moving block of the transverse electric cylinder. A lifting electric push rod connected to the mounting plate is arranged at the top of the Z-shaped plate.

[0007] Further, the Z-shaped plate includes a first transverse plate, a vertical plate and a second transverse plate which are sequentially connected. A fastening bolt is arranged between the top of the first transverse plate and the moving block of the transverse electric cylinder. The lifting electric push rod is located at the top of the second transverse plate. The upper end surface of the second transverse plate is located below the lower end surface of the connecting plate.

[0008] Further, the dust removal assembly includes a hair dryer arranged at the top of the mounting plate. A hollow air guide groove is formed inside the brush plate. A communication hole is formed in the top of the mounting plate and penetrates through the top of the brush plate and is communicated with the hollow air guide groove. A communication pipe communicated with the hair dryer is arranged inside the communication hole. The blowing holes are formed at the bottom of the brush plate and located between adjacent bristles.

[0009] Further, the dust suction assembly includes a square frame plate arranged at the bottom of the mounting plate and used for surrounding the outer circumference of the brush plate. A plurality of dust suction holes are formed at the bottom of the square frame plate. A square-shaped air suction groove communicated with the dust suction holes is formed inside the square frame plate. Air suction plates are embedded on opposite side walls of the square frame plate. A plurality of air suction holes penetrating through the side wall of the square frame plate and communicated with the square-shaped air suction groove are formed on one side of the air suction plate close to the square frame plate. A collecting air pipe is arranged on one side of the air suction plate far from the square frame plate. A collecting box connected to the bottom of the mounting plate is arranged at the end of the collecting air pipe. A filter screen located above the collecting air pipe is arranged inside the collecting box. An air suction fan located above the filter screen is arranged on the side wall of the collecting box.

[0010] Further, a sealing groove is formed in the side wall of the collecting box. A cleaning port communicated with the sealing groove is formed in the inner wall of the collecting box. A sealing plate is arranged inside the sealing groove. An inclined plate is arranged inside the collecting box and inclined downward. The low end of the inclined plate corresponds to the position of the cleaning port. The vertical cross-sectional area of the sealing groove is larger than the vertical cross-sectional area of the cleaning port.

[0011] Further, mounting bolts are arranged at the connection between the mounting plate and the collecting box.

[0012] Further, a pair of L-shaped positioning plates for positioning and placing the quartz glass and located between the pair of vertical plates are symmetrically arranged on the top of the base. Adjusting electric push rods connected to the pair of L-shaped positioning plates are respectively arranged on the side walls of the pair of vertical plates. Horizontally penetrating transverse grooves are symmetrically formed in the top of the base in the vertical direction. Guide blocks located inside the transverse grooves are arranged at the bottom of the L-shaped positioning plates.

[0013] Further, a vertically penetrating longitudinal groove is formed in the top of the base, and the longitudinal groove communicates with the transverse groove. Support legs are arranged at the corners of the bottom of the base, and a sliding groove is formed between adjacent support legs. A collection box is arranged inside the sliding groove.

[0014] Further, the collection box is located below the transverse groove and the longitudinal groove, and a force application groove is formed in the side wall of the collection box.

[0015] The beneficial effects achieved by the present invention with the above structure are as follows: The present invention drives the brush plate through the driving assembly to clean and remove dust from the surface of the quartz glass; The dust removal assembly blows air on the bristles to blow the dust on the bristles and the glass to flow in the circumferential direction of the brush plate; The dust suction assembly performs a dust suction operation on the dust flowing in the circumferential direction of the brush plate, enhancing the dust removal effect on the dust on the glass surface and enhancing the dust suction effect. Description of the Drawings

[0016] By reading the detailed description of the non-limiting embodiments with reference to the following drawings, other features, objects, and advantages of the present invention will become more apparent: Figure 1 FIG. 23 is a perspective view of a dust removal device for processing quartz glass products according to an embodiment of the present invention; Figure 2 FIG. 26 is a perspective view of another angle of a dust removal device for processing quartz glass products according to an embodiment of the present invention; Figure 3 FIG. 29 is a sectional perspective view of a dust removal device for processing quartz glass products according to an embodiment of the present invention; Figure 4 For an embodiment of the present invention Figure 3 The enlarged view of A in FIG. Figure 5 FIG. 37 is a front sectional view of a dust removal device for processing quartz glass products according to an embodiment of the present invention; Figure 6 For an embodiment of the present invention Figure 5 The enlarged view of B in FIG. Figure 7A sectional perspective view of another angle of a dust removal device for processing quartz glass products according to an embodiment of the present invention; Figure 8 According to an embodiment of the present invention Figure 7 An enlarged view of C in Figure 9 A perspective view of the connection between the brush plate and the dust suction assembly in a dust removal device for processing quartz glass products according to an embodiment of the present invention; In the figure: 1, base; 2, vertical plate; 3, adjusting electric push rod; 4, L-shaped positioning plate; 5, driving assembly; 51, longitudinal electric cylinder; 52, connecting plate; 53, transverse electric cylinder; 54, Z-shaped plate; 55, lifting electric push rod; 56, fastening bolt; 6, mounting plate; 61, mounting bolt; 7, dust removal assembly; 71, hair dryer; 72, communication hole; 73, communication pipe; 74, hollow air guide groove; 75, blowing hole; 8, dust suction assembly; 81, rectangular plate; 811, rectangular air suction groove; 812, air suction hole; 82, air suction plate; 821, air suction hole; 83, collection box; 831, air collection pipe; 84, air suction fan; 85, sealing plate; 86, filter screen; 87, inclined plate; 88, cleaning port; 89, sealing groove; 9, brush plate; 91, bristles; 10, support leg; 11, chute; 12, collection box; 13, longitudinal groove; 14, transverse groove; 15, guide block. Detailed implementation manners

[0017] To make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.

[0018] As Figure 1 shown, an embodiment of the present invention provides a dust removal device for processing quartz glass products, including: A base 1 on which a glass product is placed; A brush hair assembly, disposed above the base 1, including a brush plate 9 containing multiple groups of bristles 91, and the brush plate 9 is configured to be able to move horizontally to clean the glass product; A dust removal assembly 7, including at least one blowing hole 75, and the blowing hole 75 is horizontally aligned with the bristles 91 to perform circumferential blowing and dust removal on the bristles 91; A dust suction assembly 8, including a plurality of air suction holes 812, and the air suction ports 812 are distributed on the outer periphery of the brush plate 9. This design cleans and removes dust from the surface of the quartz glass through the brush plate 9; then, the dust removal assembly 7 blows air on the bristles 91 to blow the dust on the bristles 91 and the glass to flow in the circumferential direction of the brush plate 9; finally, the dust suction assembly 8 performs a dust suction operation on the dust flowing in the circumferential direction of the brush plate 9, enhancing the dust removal effect on the surface of the glass and enhancing the dust suction effect.

[0019] Refer toFigure 1 and Figure 2 On the top of the base 1, a pair of vertical plates 2 are symmetrically arranged. The driving assembly 5 includes a longitudinal electric cylinder 51 arranged on the top of a pair of vertical plates 2. Between the tops of the moving blocks of the pair of longitudinal electric cylinders 51, a connecting plate 52 is arranged. On the top of the connecting plate 52, a transverse electric cylinder 53 is arranged. On the moving block of the transverse electric cylinder 53, a Z-shaped plate 54 is arranged. On the top of the Z-shaped plate 54, a lifting electric push rod 55 connected to the mounting plate 6 is arranged. With this design, when the longitudinal electric cylinder 51 in the driving assembly 5 works, it drives the connecting plate 52 to move longitudinally. The longitudinal movement of the connecting plate 52 drives the transverse electric cylinder 53 to move longitudinally. The longitudinal movement of the transverse electric cylinder 53 drives the lifting electric push rod 55 on the Z-shaped plate 54 to move longitudinally. The movement of the lifting electric push rod 55 drives the brush plate 9 on the mounting plate 6 to move longitudinally. When the transverse electric cylinder 53 works, it drives the lifting electric push rod 55 to move transversely. The movement of the lifting electric push rod 55 drives the brush plate 9 on the mounting plate 6 to move transversely. When the lifting electric push rod 55 works, it drives the brush plate 9 on the mounting plate 6 to move in the vertical direction. By driving the brush plate 9 to move in the longitudinal, transverse, and vertical directions through the driving assembly 5, the dust removal operation on the glass surface can be realized.

[0020] Referring to Figure 2 , the Z-shaped plate 54 includes a first transverse plate, a vertical plate, and a second transverse plate connected in sequence. Between the top of the first transverse plate and the moving block of the transverse electric cylinder 53, a fastening bolt 56 is arranged. The lifting electric push rod 55 is located on the top of the second transverse plate. The upper end surface of the second transverse plate is located below the lower end surface of the connecting plate 52. With this design, through the first transverse plate, vertical plate, and second transverse plate on the Z-shaped plate 54, it is convenient to connect the lifting electric push rod 55 with the moving block of the transverse electric cylinder 53. Among them, the first transverse plate is arranged on the top of the moving block of the transverse electric cylinder 53, the vertical plate is arranged at the bottom of the first transverse plate, and the second transverse plate is arranged at the bottom of the vertical plate.

[0021] Referring to Figure 3 and Figure 4 , the dust removal assembly 7 includes a hair dryer 71 arranged on the top of the mounting plate 6. A hollow air guide groove 74 is formed inside the brush plate 9. On the top of the mounting plate 6, a communication hole 72 penetrating through the top of the brush plate 9 and communicating with the hollow air guide groove 74 is formed. Inside the communication hole 72, a communication pipe 73 connected to the hair dryer 71 is arranged. A blowing hole 75 is formed at the bottom of the brush plate 9 and located between adjacent bristles 91. With this design, when the hair dryer 71 in the dust removal assembly 7 works, the air is sent along the communication pipe 73 into the hollow air guide groove 74, and finally blows through the blowing holes 75 between adjacent bristles 91. It can blow the dust on the side wall of the bristles 91 and at the same time blow the dust that the bristles 91 clean the glass surface, ensuring that the dust flows in the circumferential direction of the brush plate 9 under the guiding action of the glass surface and is collected by the dust suction assembly 8.

[0022] Reference Figure 5 、 Figure 6 、 Figure 8 and Figure 9 As shown in FIGS.

[0023] , the dust collection assembly 8 includes a rectangular plate 81 disposed at the bottom of the mounting plate 6 and surrounding the outer circumference of the brush plate 9. A plurality of dust suction holes 812 are formed at the bottom of the rectangular plate 81. A rectangular air suction groove 811 communicating with the dust suction holes 812 is formed inside the rectangular plate 81. Air suction plates 82 are embedded on opposite side walls of the rectangular plate 81. A plurality of air suction holes 821 penetrating the side wall of the rectangular plate 81 and communicating with the rectangular air suction groove 811 are formed on the side of the air suction plate 82 close to the rectangular plate 81. A collecting air duct 831 is disposed on the side of the air suction plate 82 away from the rectangular plate 81. A collecting box 83 connected to the bottom of the mounting plate 6 is disposed at the end of the collecting air duct 831. A filter screen 86 located above the collecting air duct 831 is provided inside the collecting box 83. An air suction fan 84 located above the filter screen 86 is provided on the side wall of the collecting box 83. With this design, the rectangular plate 81 in the dust collection assembly 8 surrounds the outer circumference of the brush plate 9. Under the action of the rectangular air suction groove 811 and the dust suction holes 812, a rectangular air curtain for suction is formed on the outer circumference of the brush plate 9, and the dust flowing in the circumferential direction of the brush plate 9 is collected into the air suction plate 82. The dust follows the suction of the air suction fan 84 and enters the collecting box 83 along the collecting air duct 831 for collection. Under the action of the filter screen 86, the dust is retained inside the collecting box 83, facilitating the dust removal operation on the glass surface.

[0023] Reference Figure 7 and Figure 8 As shown in FIGS. Figure 7 Figure 8 , a sealing groove 89 is formed on the side wall of the collecting box 83. A cleaning port 88 communicating with the sealing groove 89 is formed on the inner wall of the collecting box 83. A sealing plate 85 is disposed inside the sealing groove 89. An inclined plate 87 is disposed inside the collecting box 83 in a downwardly inclined manner. The lower end of the inclined plate 87 corresponds to the position of the cleaning port 88. The vertical cross-sectional area of the sealing groove 89 is larger than the vertical cross-sectional area of the cleaning port 88. With this design, by removing the sealing plate 85, the cleaning port 88 is exposed to the air, facilitating the dust to flow out from the cleaning port 88 along the inclined plate 87, facilitating the dust cleaning operation. The sealing plate 85 is connected to the sealing groove 89, improving the sealing performance of the connection. The sealing plate 85 and the collecting box 83 are connected by bolts.

[0024] Reference Figure 1 As shown in FIG. Figure 1 , mounting bolts 61 are provided at the connection between the mounting plate 6 and the collecting box 83. With this design, the stability of the connection between the mounting plate 6 and the collecting box 83 is improved by the mounting bolts 61.

[0025] Reference Figure 1 and Figure 2, a pair of L-shaped positioning plates 4 for positioning and placing quartz glass and located between a pair of vertical plates 2 are symmetrically arranged on the top of the base 1, and the side walls of the pair of vertical plates 2 are respectively provided with adjusting electric push rods 3 connected to the pair of L-shaped positioning plates 4, and a vertically penetrating transverse groove 14 is symmetrically opened on the top of the base 1, and a guide block 15 located inside the transverse groove 14 is provided at the bottom of the L-shaped positioning plate 4. This design can position and place glass of different sizes by adjusting the electric push rods 3 to drive the pair of L-shaped positioning plates 4 to move toward or away from each other; the guide block 15 moves along the transverse groove 14 to improve the stability of the transverse movement of the L-shaped positioning plate 4.

[0026] Reference Figure 2 A vertically penetrating longitudinal groove 13 is provided on the top of the base 1, and the longitudinal groove 13 is connected to the transverse groove 14. Support legs 10 are provided at the bottom corners of the base 1, and a slide groove 11 is provided between adjacent support legs 10. A collection box 12 is provided inside the slide groove 11. This design can collect impurities on the glass surface cleaned by the bristles 91 into the collection box 12 through the transverse groove 14 and the longitudinal groove 13.

[0027] Reference Figure 2 and Figure 3 The collecting box 12 is located below the transverse groove 14 and the longitudinal groove 13, and a force-applying groove is provided on the side wall of the collecting box 12. The design facilitates applying force to the collecting box 12 through the force-applying groove, so that the collecting box 12 is separated from the inside of the supporting leg 10 along the slide groove 11, and the impurities collected in the collecting box 12 are conveniently cleaned.

[0028] Reference Figures 1 - 9 As an embodiment of the present invention: when the quartz glass product needs to be dusted, the staff places the quartz glass product on a pair of L-shaped positioning plates 4, and then drives the pair of L-shaped positioning plates 4 to move toward one side close to each other by adjusting the driving assembly 5 to complete the positioning and placement of the quartz glass product; wherein the upper end surface of the quartz glass product is higher than the upper end surface of the L-shaped positioning plate 4, and the quartz glass product is a square quartz glass.

[0029] The longitudinal electric cylinder 51 in the driving assembly 5 drives the brush plate 9 to move longitudinally, and the transverse electric cylinder 53 drives the brush plate 9 to move transversely; the lifting electric push rod 55 drives the brush plate 9 to move in the vertical direction, which can drive the bristles 91 on the brush plate 9 to move on the surface of the quartz glass product to remove dust on the surface.

[0030] By operating the hair dryer 71 in the dust removal component 7, the air is sent along the connecting pipe 73 into the interior of the hollow air guide groove 74, and finally blown out from the air blowing holes 75 between the adjacent bristles 91. It can blow the dust on the side wall of the bristles 91 and at the same time blow the dust on the glass surface cleaned by the bristles 91, ensuring that the dust flows in the circumferential direction of the brush plate 9 under the guiding action of the glass surface and is collected by the dust suction component 8, avoiding the residue of dust in the bristles 91 and enhancing the dust removal effect on the quartz glass products.

[0031] By operating the suction fan 84 in the dust suction component 8, under the action of the rectangular air suction groove 811 and the dust suction holes 812, a rectangular air curtain for air suction is formed on the circumferential outer side of the brush plate 9, and the dust flowing in the circumferential direction of the brush plate 9 is collected into the interior of the air suction plate 82. The dust follows the suction of the suction fan 84 and enters the collection box 83 through the air collection pipe 831 for collection. Under the action of the filter screen 86, the dust remains in the interior of the collection box 83, facilitating the dust removal operation on the glass surface, avoiding the existence of blind spots in dust suction, and enhancing the dust suction effect.

[0032] When the bristles 91 clean the surface of the quartz glass product, the impurities are swept onto the base 1. The impurities cannot be collected by the dust suction component 8. Through the transverse groove 14 and the longitudinal groove 13, the impurities can pass through the bottom of the base 1 and fall into the interior of the collection box 12. Among them, multiple longitudinal grooves 13 can be provided, and the L-shaped positioning plate 4 can be moved to push the impurities into the interior of the longitudinal groove 13 and fall into the interior of the collection box 12.

[0033] The above shows and describes the basic principles, main features and advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic features of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, it is intended to include all changes within the meaning and scope of the equivalent elements of the claims in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights. In addition, it should be understood that although this specification is described according to the embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A dust removal device for processing quartz glass products, characterized in that: include: A base (1), on which the glass product is placed; A brush assembly is arranged above the base (1), comprising a brush plate (9) containing a plurality of groups of bristles (91), wherein the brush plate (9) is configured to be able to move horizontally to clean the glass product; A dust removal component (7) comprising at least one blowing hole (75), wherein the blowing hole (75) is horizontally aligned with the bristles (91) so as to perform circumferential blowing and dust removal on the bristles (91); The dust suction component (8) comprises a plurality of dust suction holes (812), wherein the dust suction holes (812) are distributed on the periphery of the brush plate (9).

2. The dust removal device for processing quartz glass products according to claim 1, characterized in that: A pair of standing plates (2) are symmetrically arranged on the top of the base (1); The driving assembly (5) comprises a longitudinal electric cylinder (51) arranged on the top of a pair of the vertical plates (2); a connecting plate (52) is arranged between the tops of the moving blocks of the pair of longitudinal electric cylinders (51); a transverse electric cylinder (53) is arranged on the top of the connecting plate (52); a Z-shaped plate (54) is arranged on the moving block of the transverse electric cylinder (53); and a lifting electric push rod (55) connected to the mounting plate (6) is arranged on the top of the Z-shaped plate (54).

3. The dust removal device for processing quartz glass products according to claim 2, characterized in that: The Z-shaped plate (54) comprises a first transverse plate, a vertical plate and a second transverse plate which are connected in sequence, a fastening bolt (56) is provided between the top of the first transverse plate and the moving block of the transverse electric cylinder (53), the lifting electric push rod (55) is located at the top of the second transverse plate, and the upper end surface of the second transverse plate is located below the lower end surface of the connecting plate (52).

4. The dust removal device for processing quartz glass products according to claim 1, characterized in that: The dust removal component (7) comprises a blower (71) arranged on the top of the mounting plate (6); a hollow air guide groove (74) is provided inside the brush plate (9); a connecting hole (72) is provided on the top of the mounting plate (6) and passes through the top of the brush plate (9) and is connected to the hollow air guide groove (74); a connecting pipe (73) connected to the blower (71) is provided inside the connecting hole (72); and the blowing hole (75) is provided at the bottom of the brush plate (9) and is located between adjacent bristles (91).

5. The dust removal device for processing quartz glass products according to claim 4, characterized in that: The dust suction assembly (8) comprises a U-shaped plate (81) arranged at the bottom of the mounting plate (6) and used to surround the outer side of the brush plate (9) in a circumferential direction; a plurality of dust suction holes (812) are provided at the bottom of the U-shaped plate (81); a U-shaped air suction groove (811) connected to the dust suction holes (812) is provided inside the U-shaped plate (81); air suction plates (82) are embedded on both opposite side walls of the U-shaped plate (81); a plurality of through holes are provided on one side of the air suction plate (82) close to the U-shaped plate (81); An air suction hole (821) is provided on the side wall of the U-shaped plate (81) and is connected to the U-shaped air suction groove (811); an air collecting pipe (831) is provided on the side of the air suction plate (82) away from the U-shaped plate (81); a collecting box (83) connected to the bottom of the mounting plate (6) is provided at the end of the air collecting pipe (831); a filter screen (86) located above the air collecting pipe (831) is provided inside the collecting box (83); and a suction fan (84) located above the filter screen (86) is provided on the side wall of the collecting box (83).

6. The dust removal device for processing quartz glass products according to claim 5, characterized in that: A sealing groove (89) is provided on the side wall of the collection box (83); a cleaning port (88) connected to the sealing groove (89) is provided on the inner wall of the collection box (83); a sealing plate (85) is provided inside the sealing groove (89); an inclined plate (87) is provided inside the collection box (83) in a downwardly inclined manner; the lower end of the inclined plate (87) corresponds to the position of the cleaning port (88); and the vertical cross-sectional area of ​​the sealing groove (89) is larger than the vertical cross-sectional area of ​​the cleaning port (88).

7. The dust removal device for processing quartz glass products according to claim 6, characterized in that: A mounting bolt (61) is provided at the connection between the mounting plate (6) and the collection box (83).

8. The dust removal device for processing quartz glass products according to claim 2, characterized in that: A pair of L-shaped positioning plates (4) for positioning and placing quartz glass and located between the pair of vertical plates (2) are symmetrically arranged on the top of the base (1); the side walls of the pair of vertical plates (2) are respectively provided with adjusting electric push rods (3) connected to the pair of L-shaped positioning plates (4); the top of the base (1) is symmetrically provided with vertically penetrating transverse grooves (14); the bottom of the L-shaped positioning plates (4) is provided with guide blocks (15) located inside the transverse grooves (14).

9. The dust removal device for processing quartz glass products according to claim 8, characterized in that: A vertically penetrating longitudinal groove (13) is provided on the top of the base (1), the longitudinal groove (13) being connected to the transverse groove (14), support legs (10) are provided at the bottom corners of the base (1), a slide groove (11) is provided between adjacent support legs (10), and a collection box (12) is provided inside the slide groove (11).

10. The dust removal device for processing quartz glass products according to claim 9, characterized in that: The collection box (12) is located below the transverse groove (14) and the longitudinal groove (13), and a force application groove is provided on a side wall of the collection box (12).