CN210496869U - Glass surface duster - Google Patents

Glass surface duster Download PDF

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Publication number
CN210496869U
CN210496869U CN201920893979.8U CN201920893979U CN210496869U CN 210496869 U CN210496869 U CN 210496869U CN 201920893979 U CN201920893979 U CN 201920893979U CN 210496869 U CN210496869 U CN 210496869U
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China
Prior art keywords
air pipe
glass
pipe
duster
sheet metal
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Application number
CN201920893979.8U
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Chinese (zh)
Inventor
何庆衍
郭进良
何赳
李国庆
陈兴
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Anhui Dahe Mirror Industry Co ltd
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Anhui Dahe Mirror Industry Co ltd
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Priority to CN201920893979.8U priority Critical patent/CN210496869U/en
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Abstract

The utility model discloses a glass surface duster, which relates to the technical field of glass manufacturing and comprises a charging bucket, a vacuum generator, a mounting plate and a support plate welded at the lower part of the charging bucket, wherein support columns are uniformly welded at the lower end surface of the support plate, support legs are installed at the lower end surface of the support columns through threads, a discharging pipe is installed at the center of the bottom of the charging bucket, the mounting plate is provided with two triangular steels and is respectively installed at two sides of a glass conveying line, two triangular steels are symmetrically installed at the upper end surfaces of the two mounting plates, a fourth air pipe is arranged between the two triangular steels, a three-way joint is uniformly arranged on the fourth air pipe, a fifth vertical downward air pipe is installed on the three-way joint, a sixth non-conductive air pipe is installed on the three-way joint at the tail end of the fourth air pipe, the vacuum generator is arranged on the support, the feed inlet is connected with the discharge pipe through a second air pipe, and the discharge outlet is connected with a fourth air pipe through a third air pipe.

Description

Glass surface duster
Technical Field
The utility model relates to a technical field that glass made, concretely relates to glass surface duster.
Background
Glass is traditionally packaged by isolating the glass with paper. Further, the use of paper for packaging glass tends to cause marks on the glass and mold on the glass surface, and the cost for packaging glass with paper has been increasing year by year due to the continuous increase in the price of paper in recent years. In order to reduce the production cost, improve the economic benefits of enterprises and solve the problems of leaving paper marks on the surface of glass and mildew on the surface, which are puzzled by enterprises for a long time, more and more glass production enterprises adopt a method of spraying glass mildew-proof powder on the glass to package the glass. At present, the glass powder sprayer mainly comprises domestic and foreign automatic powder sprayers, has a complex equipment structure, high price and higher maintenance cost, and is insusceptible to numerous medium and small glass enterprises in China.
The invention with the Chinese patent publication No. CN102091685B relates to a glass powder sprayer, which belongs to the technical field of glass powder spraying equipment and comprises a powder box, a powder spraying device, a glass powder spraying workbench and an electric control system for controlling powder feeding, wherein the powder spraying device consists of a vibrating box, a vibrator arranged below the vibrating box, an air conveying pipe and a fan, one end of the vibrating box is communicated with the powder box, the other end of the vibrating box is communicated with the air conveying pipe, one end of the air conveying pipe is communicated with the fan, the other end of the air conveying pipe is an elbow free end, the elbow free end is positioned above the glass powder spraying workbench, the opening of the elbow free end faces the glass powder spraying workbench, the vibrator is in contact connection with the vibrating box and is electrically connected with the electric control system, the glass powder sprayer consists of the vibrating box, the air conveying pipe communicated with the vibrating box and the fan connected with the air conveying pipe, the vibrating box is driven by the vibrator to finish powder spreading and powder feeding under the driving of the, simple structure, all standard configurations of various components, moderate price and convenient maintenance.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a glass surface duster to solve the above-mentioned defect that leads to among the prior art.
A glass surface powder spraying machine comprises a charging barrel, a vacuum generator, mounting plates, wherein the lower part of the charging barrel is welded with the supporting plates, the lower end faces of the supporting plates are uniformly distributed and vertically welded with supporting columns, supporting legs are arranged on the lower end faces of the supporting columns in a threaded manner, a discharging pipe is arranged in the center of the bottom of the charging barrel, the mounting plates are provided with two triangular steel and are respectively mounted on two sides of a glass conveying line, two triangular steel are symmetrically mounted on the upper end faces of the two mounting plates, a fourth air pipe is arranged between the two triangular steel, a three-way joint is uniformly distributed on the fourth air pipe and is provided with a fifth air pipe vertically downward, a sixth non-conductive air pipe is mounted on the three-way joint at the tail end of the fourth air pipe, the vacuum generator is arranged on the supporting plates and is provided with an air inlet, a feed inlet and a discharge outlet, the air, the feed inlet is connected with the discharge pipe through a second air pipe, and the discharge outlet is connected with a fourth air pipe through a third air pipe.
Preferably, the dustproof cover is arranged above the discharge barrel, the positioning groove matched with the dustproof cover is formed in the upper end face of the discharge barrel, the positioning plate matched with the inner wall of the discharge barrel is arranged on the lower end face of the dustproof cover, and the handles are installed on two sides of the upper end face of the dustproof cover.
Preferably, a vertical downward stirring motor is installed in the middle of the upper end surface of the dustproof cover, the stirring motor is connected with a vertical stirring shaft through a coupler, and a stirring frame is installed on the lower portion of the stirring shaft.
Preferably, the device also comprises a dustproof plate arranged above the two mounting plates, wherein a first sheet metal plate is uniformly arranged on the upper end surface of the dustproof plate, a second sheet metal plate is welded on the upper end surface of the first sheet metal plate in a cantilever manner, and a downward photoelectric switch is arranged at the cantilever end of the second sheet metal plate.
The utility model has the advantages that: a worker firstly puts a certain amount of glass mildew-proof powder into a material placing barrel, then covers a dust cover and starts a stirring motor, when a photoelectric switch detects that glass passes through a glass conveying line, a vacuum generator is connected with an external positive pressure air source through a first air pipe, then the glass mildew-proof powder in the material placing barrel is sucked out through a second air pipe, and the glass mildew-proof powder is sprayed onto the surface of the glass through a third air pipe, a fourth air pipe, a tee joint and a fifth air pipe in sequence to finish the powder spraying work on the surface of the glass. The utility model provides a duster for glass surface has simple structure, makes and maintenance cost low, convenient to use, the effectual characteristics such as of dusting, has solved the automatic duster in current stage and generally high, the high problem of maintenance cost.
Drawings
Fig. 1 is a schematic diagram of the overall three-dimensional structure of the present invention.
Fig. 2 is a schematic structural diagram of the whole side view of the utility model.
Fig. 3 is a schematic structural view of the whole body of the present invention viewed from below.
Fig. 4 is a schematic view of the construction of the agitating assembly.
Fig. 5 is a schematic structural view of the discharge bucket.
Fig. 6 is a schematic structural view of the dust cap.
Fig. 7 is a schematic structural view of the vacuum generator.
Fig. 8 is a schematic structural view of the photoelectric switch mounting.
Wherein, 1-a charging bucket; 101-positioning grooves; 2-a support plate; 3-a support column; 4-a leg; 5, a discharge pipe; 6, a dustproof cover; 601-a positioning plate; 7-a stirring motor; 8-a coupler; 9-stirring shaft; 10-a stirring frame; 11-a mounting plate; 12-triangular steel; 13-dust guard; 14-a vacuum generator; 141-an air inlet; 142-a feed port; 143-a discharge port; 15-trachea one; 16-trachea two; 17-trachea three; 18-trachea four; 19-a three-way joint; 20-trachea five; 21-trachea six; 22-sheet metal I; 23-sheet metal plate II; 24-a photoelectric switch; 25-handle.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1 to 8, a glass surface powder blower comprises a charging barrel 1, a vacuum generator 14 and a mounting plate 11, wherein the lower part of the charging barrel 1 is welded with the supporting plate 2, the lower end surface of the supporting plate 2 is uniformly and vertically welded with supporting columns 3, the lower end surface of each supporting column 3 is provided with a supporting leg 4 in a threaded manner, the bottom center of the charging barrel 1 is provided with a discharging pipe 5, the mounting plates 11 are provided with two triangular steels 12 which are respectively arranged at two sides of a glass conveying line, the upper end surfaces of the two mounting plates 11 are symmetrically provided with two triangular steels 12, a gas pipe four 18 is arranged between the two triangular steels 12, the gas pipe four 18 is uniformly provided with a three-way joint 19, the three-way joint 19 is provided with a vertically downward gas pipe five 20, the three-way joint 19 at the tail end of the gas pipe four 18 is provided with a non-conducting gas pipe six 21, the vacuum generator 14 is provided with an air inlet 141, a feeding hole 142 and a discharging hole 143, the air inlet 141 is connected with an external positive pressure air source through an air pipe I15, the feeding hole 142 is connected with the discharging pipe 5 through an air pipe II 16, and the discharging hole 143 is connected with an air pipe IV 18 through an air pipe III 17.
In this embodiment, the top of blowing bucket 1 is equipped with shield 6, the up end of blowing bucket 1 is equipped with the constant head tank 101 with shield 6 adaptation, the lower terminal surface of shield 6 is equipped with the locating plate 601 with the inner wall adaptation of blowing bucket 1, handle 25 is installed on the both sides of the up end of shield 6. Set up constant head tank 101 and locating plate 601 and can make letting better the placing on blowing bucket 1 of shield 6, set up handle 25 then more conveniently get and put shield 6.
In this embodiment, a vertically downward stirring motor 7 is installed in the middle of the upper end surface of the dust cover 6, the stirring motor 7 is connected with a vertical stirring shaft 9 through a coupling 8, and a stirring frame 10 is installed at the lower part of the stirring shaft 9. The stirring frame 10 is driven by the stirring motor 7 to stir the glass mildew-proof powder in the feeding barrel 1, so that the glass mildew-proof powder is effectively prevented from being overhead, and the vacuum generator 14 can better suck the glass mildew-proof powder.
In this embodiment, the device further comprises a dust-proof plate 13 arranged above the two mounting plates 11, wherein the first sheet metal plates 22 are uniformly arranged on the upper end surfaces of the dust-proof plate 13, the second sheet metal plates 23 are welded on the upper end surfaces of the first sheet metal plates 22 in a cantilever manner, and downward photoelectric switches 24 are arranged at the cantilever ends of the second sheet metal plates 23. Whether glass passes through the glass conveying line or not is judged through the photoelectric switch 24, and the situation that when no glass exists on the conveying line, the glass mildew-proof powder still exists in the pipeline five 20 and is sprayed out, so that messy workshops and material waste are caused is effectively avoided.
To sum up, the utility model discloses in the theory of operation and the working process of a glass surface duster that relates to: a worker puts a certain amount of glass mildew-proof powder into the material placing barrel 1, then, the dust cover 6 is covered and the stirring motor 7 is started, when the photoelectric switch 24 detects that glass passes through the glass conveying line, the vacuum generator 14 is connected with an external positive pressure air source through the air pipe I15, then, the glass mildew-proof powder in the material placing barrel 1 is sucked out through the air pipe II 16, and the glass mildew-proof powder is sprayed onto the surface of the glass through the air pipe III 17, the air pipe IV 18, the tee joint 19 and the air pipe V20 in sequence, so that powder spraying on the surface of the glass is completed. The utility model provides a duster for glass surface has simple structure, makes and maintenance cost low, convenient to use, the effectual characteristics such as of dusting, has solved the automatic duster in current stage and generally high, the high problem of maintenance cost.
The embodiments disclosed above are therefore to be considered in all respects as illustrative and not restrictive. All changes which come within the scope of the invention or which are equivalent to the scope of the invention are embraced by the invention.

Claims (4)

1. A glass surface duster is characterized in that: the glass fiber reinforced plastic pipe discharging device comprises a discharging barrel (1), a vacuum generator (14) and a mounting plate (11), wherein a supporting plate (2) is welded on the lower portion of the discharging barrel (1), supporting columns (3) are uniformly and perpendicularly welded on the lower end face of the supporting plate (2), supporting legs (4) are installed on the lower end face of each supporting column (3) in a threaded mode, a discharging pipe (5) is installed at the center of the bottom of the discharging barrel (1), the mounting plate (11) is provided with two supporting columns which are respectively installed on two sides of a glass conveying line, two triangular steels (12) are symmetrically installed on the upper end faces of the two mounting plates (11), a fourth air pipe (18) is arranged between the two triangular steels (12), three-way joints (19) are uniformly arranged on the fourth air pipe (18), a fifth vertical downward air pipe (20) is installed on the three-way joints (19), and a sixth non-conducting air pipe (21), vacuum generator (14) are located on backup pad (2), be equipped with air inlet (141), feed inlet (142) and discharge gate (143) on vacuum generator (14), air inlet (141) are connected with outside positive pressure gas source through trachea one (15), feed inlet (142) are connected with discharging pipe (5) through trachea two (16), discharge gate (143) are connected with trachea four (18) through trachea three (17).
2. A glass surface duster according to claim 1 characterised in that: the top of blowing bucket (1) is equipped with shield (6), the up end of blowing bucket (1) is equipped with constant head tank (101) with shield (6) adaptation, the lower terminal surface of shield (6) is equipped with locating plate (601) with the inner wall adaptation of blowing bucket (1), handle (25) are installed on the both sides of the up end of shield (6).
3. A glass surface duster according to claim 2 characterised in that: the upper end face of the dustproof cover (6) is provided with a vertical downward stirring motor (7) in the middle, the stirring motor (7) is connected with a vertical stirring shaft (9) through a coupler (8), and the lower part of the stirring shaft (9) is provided with a stirring frame (10).
4. A glass surface duster according to claim 1 characterised in that: the device is characterized by further comprising dust-proof plates (13) arranged above the two mounting plates (11), wherein first sheet metal plates (22) are uniformly arranged on the upper end faces of the dust-proof plates (13), second sheet metal plates (23) are welded on the upper end faces of the first sheet metal plates (22) in a cantilever mode, and downward photoelectric switches (24) are arranged at the cantilever ends of the second sheet metal plates (23).
CN201920893979.8U 2019-06-14 2019-06-14 Glass surface duster Active CN210496869U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920893979.8U CN210496869U (en) 2019-06-14 2019-06-14 Glass surface duster

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920893979.8U CN210496869U (en) 2019-06-14 2019-06-14 Glass surface duster

Publications (1)

Publication Number Publication Date
CN210496869U true CN210496869U (en) 2020-05-12

Family

ID=70578544

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920893979.8U Active CN210496869U (en) 2019-06-14 2019-06-14 Glass surface duster

Country Status (1)

Country Link
CN (1) CN210496869U (en)

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