CN214131951U - Fine grinding machine for photovoltaic glass glaze - Google Patents

Fine grinding machine for photovoltaic glass glaze Download PDF

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Publication number
CN214131951U
CN214131951U CN202022593950.3U CN202022593950U CN214131951U CN 214131951 U CN214131951 U CN 214131951U CN 202022593950 U CN202022593950 U CN 202022593950U CN 214131951 U CN214131951 U CN 214131951U
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China
Prior art keywords
ball mill
sieve tray
grinding machine
photovoltaic glass
fine grinding
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CN202022593950.3U
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Chinese (zh)
Inventor
周孟大
王铁明
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Zhejiang Guxin Technology Co Ltd
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Zhejiang Guxin Technology Co Ltd
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Priority to CN202022593950.3U priority Critical patent/CN214131951U/en
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Abstract

The utility model discloses a meticulous machine that grinds of photovoltaic glass frit, including ball mill, support, be provided with the ball mill between the support, placed main motor on the support platform of its one side, the main shaft that is connected with main motor pierces through into inside the ball mill, and the welding has a plurality of stirring leaves on the shaft section of its main shaft, the surface of ball mill has a plurality of vice motors through the bolt fastening, and the countershaft of being connected with vice motor also pierces through into inside the ball mill, and its front end is fixed with the stirring leaf through the nut, the utility model discloses a characteristics: the stirring blades are driven to rotate by a plurality of motors, so that materials in the ball mill can be fully contacted with the steel balls, and the grinding is more precise; the cylinder is used for driving the baffle to move to control the opening and closing of the discharge opening; the multilayer structure's of having installed the spring additional sieve tray can effectual supplementary sieve tray vibration for filter speed, raise the efficiency, the reduction fines that seal structure's sieve tray can be great moreover flies upward, avoids the workman to inhale too much.

Description

Fine grinding machine for photovoltaic glass glaze
Technical Field
The utility model relates to a mineral pigment processing equipment field, in particular to photovoltaic glass frit fine grinding machine.
Background
Ceramic glaze is an inorganic pigment, belongs to a class of inorganic colored pigments, and mainly comes from two types: one kind is prepared with natural ore and through mineral separation, crushing, grinding, grading and refining, and is used mainly for painting, handicraft, antiquing, cultural relic repair, etc. The inorganic pigment is a chemical synthetic pigment prepared from natural mineral products through a series of chemical treatment processes. Mineral is after carrying out the breakage, carries out the grinding processing on next step, and traditional grinding mostly adopts the ball mill to go on, relies on the inside steel ball crushing material of ball mill, according to the finished product requirement of difference, grinds to fine powder or miropowder, grinds the back that finishes, still needs to screen, filters off miropowder, collects the fine powder again, puts in storage or waits for processing next time and grinds, the utility model provides a grinding machine increases stirring function for grind more swiftly, meticulous.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a meticulous machine that grinds of photovoltaic glass frit utilizes a plurality of motors to drive the (mixing) shaft rotatory, makes inside material and the more abundant contact of steel ball for the grinding speed.
In order to achieve the above purpose, the technical scheme of the utility model:
a photovoltaic glass glaze fine grinding machine comprises a ball mill and supports, wherein a ball mill is arranged between the supports, a main motor is placed on a support platform on one side of the ball mill, a main shaft connected with the main motor penetrates through the inside of the ball mill, a plurality of stirring blades are welded on a shaft section of the main shaft, a plurality of auxiliary motors are fixed on the surface of the ball mill through bolts, auxiliary shafts connected with the auxiliary motors also penetrate through the inside of the ball mill, the stirring blades are fixed at the front ends of the auxiliary motors through nuts, a discharge chute is arranged at the bottom of the ball mill, an installation block welded on the surface of the ball mill is installed on one side of the discharge chute, an air cylinder is fixed at the front end of the installation block through bolts, an L-shaped connecting rod is installed at the end part of a telescopic rod in the air cylinder through bolts, the other end of the connecting rod is connected with a rotating shaft, the rotating shaft penetrates through the discharge chute, and the other end of the rotating shaft is connected onto the inner wall of the discharge chute, the rotating shaft is sleeved with a baffle which is positioned in the discharge chute.
Preferably, the opening of the discharge chute is connected into the sieve tray right below the ball mill.
Preferably, the sieve tray is of at least a double-layer structure and is separated by a sieve mesh, and a discharge hole is arranged at the bottommost layer of the sieve tray.
Preferably, a base is further arranged below the sieve tray and connected with the sieve tray through a plurality of springs.
Preferably, bearings are arranged at the joints of the rotating shaft, the connecting rod and the discharge chute.
The utility model discloses a beneficial condition lies in: the utility model adopts the technical scheme to provide a photovoltaic glass glaze fine grinding machine, a plurality of motors drive the stirring blades to rotate, so that the materials in the ball grinding machine can be fully contacted with the steel ball, and the grinding is more fine; the cylinder is used for driving the baffle to move to control the opening and closing of the discharge opening; the multilayer structure's of having installed the spring additional sieve tray can effectual supplementary sieve tray vibration for filter speed, raise the efficiency, the reduction fines that seal structure's sieve tray can be great moreover flies upward, avoids the workman to inhale too much.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the filtering apparatus of the present invention.
Fig. 3 is a schematic view of the simple structure inside the ball mill of the present invention.
Fig. 4 is a schematic view of the connection structure between the cylinder and the baffle plate of the present invention.
In the figure: 1. a ball mill; 2. mounting blocks; 3. a cylinder; 4. a discharge chute; 5. a telescopic rod; 6. a connecting rod; 7. a rotating shaft; 8. a baffle plate; 9. a sieve tray; 10. a discharge port; 11. a base; 12. a spring; 13. a main motor; 14. a support; 15. a main shaft; 16. a secondary motor; 17. a counter shaft; 18. stirring the leaves.
Detailed Description
As shown in fig. 1 to 4, a photovoltaic glass glaze fine grinding machine comprises a ball mill 1 and a support 14, wherein the ball mill 1 is arranged between the support 14, a main motor 13 is placed on a platform of the support 14 at one side of the support, a main shaft 15 connected with the main motor 13 penetrates through the inside of the ball mill 1, a plurality of stirring blades 18 are welded on a shaft section of the main shaft 15, a plurality of auxiliary motors 16 are fixed on the surface of the ball mill 1 through bolts, an auxiliary shaft 17 connected with the auxiliary motors 16 also penetrates through the inside of the ball mill 1, the stirring blades 18 are fixed at the front ends of the auxiliary motors through nuts, a discharge chute 4 is arranged at the bottom of the ball mill 1, a mounting block 2 welded on the surface of the ball mill 1 is installed at one side of the discharge chute 4, an air cylinder 3 is fixed at the front end of the mounting block 2 through bolts, an L-shaped connecting rod 6 is installed at the end of a telescopic rod 5 in the air cylinder 3 through bolts, and a rotating shaft 7 is connected at the other end of the connecting rod 6, the utility model discloses a ball mill, including pivot 7, discharge chute 4, sieve tray 9, discharge chute 4, pivot 7, the cover has baffle 8 in pivot 7, and baffle 8 is located discharge chute 4, the opening part of discharge chute 4 is connected to in the sieve tray 9 under ball mill 1, sieve tray 9 is bilayer structure at least to separate through the screen cloth, discharge gate 10 is installed to its bottom, still be equipped with base 11 under the sieve tray 9, base 11 is connected with sieve tray 9 through a plurality of springs 12, pivot 7 all is provided with the bearing with connecting rod 6 and the junction in the discharge chute 4.
In actual use, as shown in fig. 1 and 3, materials are put into the ball mill 1, the main motor 13 and the auxiliary motor 16 start to work, and the main shaft 15 and the auxiliary shaft 17 respectively drive the stirring blades 18 to rotate, so that the materials roll in the ball mill 1 and are in more sufficient contact with the steel balls, and the grinding speed is increased; as shown in fig. 2 and 4, after the material is ground into fine powder, the air cylinder 3 starts to work, the connecting rod 6 is connected with the rotating shaft 7 through a bearing, the bearing is taken as a rotating circle center, when the air cylinder 3 drives the telescopic rod 5 to move forward, the connecting rod 6 rotates clockwise to drive the rotating shaft 7 to rotate for a certain angle, the baffle 8 on the rotating shaft 7 also moves along with the rotating shaft, a channel between the ball mill 1 and the discharge chute 4 is opened, and the micro powder in the ball mill 1 falls to the sieve tray 9 through the discharge chute 4; a large amount of micro powder falls into the sieve tray 9 to impact the sieve tray 9, the sieve tray 9 is connected with the base 11 through a plurality of springs 12, the springs 12 shake rapidly to drive the sieve tray 9 to vibrate, so that the micro powder falls from the screen, the filtering speed is accelerated, and the filtered micro powder slides out of the discharge port 10 and is bagged and warehoused; the sieve tray 9 is bilayer structure at least, separates through the screen cloth, and multilayer structure's sieve tray 9 can filter more meticulous mineral miropowder according to the production conditions.
It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (5)

1. The utility model provides a photovoltaic glass frit fine grinding machine, includes ball mill (1), support (14), its characterized in that, be provided with ball mill (1) between support (14), main motor (13) have been placed on support (14) platform of its one side, and inside main shaft (15) that are connected with main motor (13) penetrated into ball mill (1), welded on the shaft section of its main shaft (15) has a plurality of stirring leaves (18), the surface of ball mill (1) is fixed with a plurality of auxiliary motors (16) through the bolt, inside auxiliary shaft (17) that are connected with auxiliary motor (16) also penetrated into ball mill (1), and its front end is fixed with stirring leaves (18) through the nut, the bottom of ball mill (1) is equipped with blowpit (4), and the installation piece (2) of welding on ball mill (1) surface is installed to one side of blowpit (4), the front end of installation piece (2) is fixed with cylinder (3) through the bolt, l-shaped connecting rods (6) are installed at the end portions of the telescopic rods (5) in the air cylinders (3) through bolts, the other ends of the connecting rods (6) are connected with rotating shafts (7), the rotating shafts (7) penetrate through the discharging grooves (4), the other ends of the rotating shafts are connected to the inner walls of the discharging grooves (4), the rotating shafts (7) are sleeved with baffle plates (8), and the baffle plates (8) are located in the discharging grooves (4).
2. The photovoltaic glass glaze fine grinding machine according to claim 1, characterized in that the opening of the discharge chute (4) is connected to the sieve tray (9) directly below the ball mill (1).
3. The photovoltaic glass glaze fine grinding machine as claimed in claim 2, wherein the sieve tray (9) is at least of double-layer structure and is separated by a sieve mesh, and the lowest layer thereof is provided with a discharge hole (10).
4. The photovoltaic glass glaze fine grinding machine according to claim 2, characterized in that a base (11) is further arranged below the sieve tray (9), and the base (11) is connected with the sieve tray (9) through a plurality of springs (12).
5. The photovoltaic glass glaze fine grinding machine according to claim 1, characterized in that the connection of the rotating shaft (7) with the connecting rod (6) and the discharge chute (4) is provided with bearings.
CN202022593950.3U 2020-11-11 2020-11-11 Fine grinding machine for photovoltaic glass glaze Active CN214131951U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022593950.3U CN214131951U (en) 2020-11-11 2020-11-11 Fine grinding machine for photovoltaic glass glaze

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022593950.3U CN214131951U (en) 2020-11-11 2020-11-11 Fine grinding machine for photovoltaic glass glaze

Publications (1)

Publication Number Publication Date
CN214131951U true CN214131951U (en) 2021-09-07

Family

ID=77563540

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022593950.3U Active CN214131951U (en) 2020-11-11 2020-11-11 Fine grinding machine for photovoltaic glass glaze

Country Status (1)

Country Link
CN (1) CN214131951U (en)

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