High uniformity coal mill for ceramic tile processing
By incorporating a filter screen and adjustment components into the pulverized coal mill, along with auxiliary and heat dissipation components, the problem of uneven pulverized coal particles in tile processing was solved, achieving uniform grinding of tile raw materials and efficient heat dissipation of the motor.
Patent Information
- Application Number
- CN202411898280.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2044-12-23
AI Technical Summary
Existing pulverized coal mills have difficulty controlling the uniformity of pulverized coal particles in tile processing, especially when the pulverized particles do not meet the standards, making secondary grinding difficult.
A high-uniformity coal mill for ceramic tile processing was designed. By setting a filter screen and adjusting components in the intermediate feed frame, the rotation of the mill drives the filter screen to vibrate and screen the particles. Combined with auxiliary components, particles that cannot pass through the screen are pushed out, and the heat dissipation efficiency of the motor is improved through heat dissipation components.
This technology improves the uniformity of ceramic tile raw material grinding, ensures the uniformity of the grinding process, facilitates the re-grinding of particles that cannot be sieved, and enhances the grinding effect and the heat dissipation efficiency of the motor.
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Figure CN119702165B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of ceramic tile processing, in particular to a high-uniformity coal mill for ceramic tile processing. BACKGROUND
[0002] The coal mill is a machine that breaks and grinds coal into coal powder, it is an important auxiliary equipment of the coal-fired boiler, and the coal grinding process is the process of breaking and increasing the surface area of coal. To increase the new surface area, the binding force between solid molecules must be overcome, thus energy is consumed. Coal is ground into coal powder in the coal mill, mainly through crushing, breaking and grinding, for example, the coal mill used in the processing process.
[0003] For example, the application number CN202311527498.2 discloses a coal mill for thermal power plant, relates to the technical field of coal mill, comprising a body mechanism, a base, a machine shell arranged on the base, and an internal frame arranged in the machine shell; a coal grinding mechanism, comprising a driving component arranged on the base, a grinding disc connected with the driving component, a grinding roller arranged on the internal frame, and a hydraulic rod for supporting the internal frame; a connecting mechanism, comprising a roller body sub-frame, a connecting component arranged on the roller body sub-frame, and a limiting component symmetrically arranged on the roller body sub-frame; by arranging the connecting mechanism, the grinding roller is rotatably installed on the roller body sub-frame, and the roller body sub-frame is installed on the internal frame through the positioning mechanism and the connecting mechanism. The connecting position is located at the upper position of the internal frame, the space above the internal frame is large, and the maintenance personnel can easily disassemble and install the single grinding roller; however, the coal mill is used to grind the raw coal, and it is difficult to perform secondary grinding when the ground coal particles do not meet the standards.
[0004] Therefore, in view of the above, the existing structure and defects are improved, and a high-uniformity coal mill for ceramic tile processing is proposed. SUMMARY
[0005] In view of the deficiencies of the prior art, the present application provides a high-uniformity coal mill for ceramic tile processing, which solves the problems raised in the background art.
[0006] In order to achieve the above object, the present application is realized by the following technical scheme: A high-uniformity coal mill for ceramic tile processing, comprising a pulverizer I and a collection rod, one side of the pulverizer I is provided with a feeding port, and the other side of the pulverizer I is provided with a transfer inlet frame, an inner built-in groove is formed in the transfer inlet frame, an adjusting assembly is arranged in the inner built-in groove for shielding the inner built-in groove, and the adjusting assembly comprises a connecting block, a sliding plate and a connecting spring, the outer surface of the connecting block is provided with the sliding plate, one end of the outer surface of the sliding plate is provided with the connecting spring, the outer surface of the connecting block is provided with a side column in the middle, the collection rod is arranged at the end of the side column, and a middle column is arranged at the end of the collection rod, a roller shaft is rotatably arranged on the outer surface of the middle column, a first connecting column is arranged on the outer side of the roller shaft close to the pulverizer I, a second connecting column is arranged on the outer surface of the first connecting column, a ball seat is rotatably arranged at the end of the second connecting column, a filter screen is arranged on the other side of the outer surface of the connecting block in the middle, and a pulverizer II is arranged on the side away from the pulverizer I of the transfer inlet frame, and a discharge port is arranged on one side of the pulverizer II.
[0007] Further, the bottom of the pulverizer I and the pulverizer II is provided with a driving assembly for providing a grinding power, and the driving assembly is provided with two groups.
[0008] Further, the driving assembly comprises a motor, a connecting shaft, a driving gear and an auxiliary gear, and the output end of the motor is provided with the connecting shaft, the outer surface of the connecting shaft is provided with the driving gear, and the outer surface of the driving gear is engaged with the auxiliary gear.
[0009] Further, the middle of the outer surface of the pulverizer I is provided with an outer gear I, and a heat dissipation assembly for dissipating heat of the motor is arranged below the outer gear I.
[0010] Further, the heat dissipation assembly comprises a fixed plate, an extension shaft, a transmission gear, an auxiliary shaft and a fan blade, one side of the fixed plate is provided with the extension shaft, the end of the extension shaft is provided with the transmission gear, the middle of the transmission gear is provided with the auxiliary shaft, and the end of the auxiliary shaft is annularly provided with the fan blade.
[0011] Further, the outer surface of the fixed plate is provided with a support seat, and the bottom of the support seat is provided with a bottom plate.
[0012] Further, the outer surface of the pulverizer II is provided with an outer gear II, and an auxiliary assembly for discharging large-particle grinding particles is arranged on the side of the pulverizer II close to the transfer inlet frame.
[0013] Further, the auxiliary assembly comprises a side disc, a tooth, a horizontal column and a horizontal gear, the outer surface of the side disc is provided with the tooth, the side disc is engaged with the horizontal gear through the tooth, and the middle of the horizontal gear is provided with the horizontal column.
[0014] Further, the end of the cross column is provided with an embedded plate, and the two ends of the embedded plate are provided with scrapers.
[0015] Further, the two sides of the bottom plate are clamped with baffle plates, and the inside bottom of the baffle plate is provided with a ventilation mesh plate.
[0016] The application provides a high-uniformity coal mill for ceramic tile processing, which has the following beneficial effects:
[0017] 1. The high-uniformity coal mill for ceramic tile processing, after the preliminary grinding of the ceramic tile raw material is completed, the ceramic tile raw material enters the transfer inlet frame through the discharge area on one side of the pulverizer, the filter screen provided in the transfer inlet frame can be used to screen the ceramic tile raw material after the preliminary grinding is completed, ensuring the uniformity of the ceramic tile raw material ground by the pulverizer, and the design of the heat dissipation assembly can improve the air flow rate around the motor to assist heat dissipation of the motor, and the heat dissipation of the motor is started along with the operation of the motor.
[0018] 2. The high-uniformity coal mill for ceramic tile processing, when the pulverizer rotates, the middle column connected with the roller shaft and the adjusting assembly can move up and down in the built-in groove in the transfer inlet frame, thereby driving the filter screen connected with the connecting block to reciprocate up and down on the transfer inlet frame, which is beneficial to screening the ceramic tile raw material after the preliminary grinding on the outer surface of the filter screen, and the uniformly ground particles are transferred to the second pulverizer through the filter screen, which is beneficial to further grinding the ceramic tile raw material by the second pulverizer, and further improving the uniformity of the grinding material.
[0019] 3. The high-uniformity coal mill for ceramic tile processing, through the design of the auxiliary assembly, the side disc can be intermittently engaged with the horizontal gear on the outer surface of the cross column through the teeth, so that the horizontal gear, the cross column, the embedded plate and the scraper can rotate in the upper area of the transfer inlet frame, and the ceramic tile grinding material that cannot pass through the screen can be intermittently pushed to the side baffle area, which is convenient for timely cleaning of the ceramic tile coal material that cannot pass through the screen. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a southwest isometric external structure schematic view of the high-uniformity coal mill for ceramic tile processing of the application;
[0021] Figure 2 It is an auxiliary assembly connection structure schematic view of the high-uniformity coal mill for ceramic tile processing of the application;
[0022] Figure 3It is a high uniformity ceramic tile processing pulverized coal mill heat dissipation assembly structure schematic view of the present application;
[0023] Figure 4 It is a high uniformity ceramic tile processing pulverized coal mill heat dissipation assembly structure schematic view of the present application;
[0024] Figure 5 It is a high uniformity ceramic tile processing pulverized coal mill heat dissipation assembly structure schematic view of the present application;
[0025] Figure 6 It is a high uniformity ceramic tile processing pulverized coal mill heat dissipation assembly structure schematic view of the present application; Figure 4 It is a high uniformity ceramic tile processing pulverized coal mill heat dissipation assembly structure schematic view of the present application;
[0026] Figure 7 It is a high uniformity ceramic tile processing pulverized coal mill heat dissipation assembly structure schematic view of the present application;
[0027] Figure 8 It is a high uniformity ceramic tile processing pulverized coal mill heat dissipation assembly structure schematic view of the present application.
[0028] In the figure: 1, pulverizer one; 2, feed inlet; 3, transfer feed frame; 4, pulverizer two; 5, baffle; 6, ventilation net plate; 7, bottom plate; 8, drive assembly; 801, motor; 802, connecting shaft; 803, driving gear; 804, auxiliary gear; 9, external gear one; 10, first connecting column; 11, second connecting column; 12, ball seat; 13, discharge port; 14, external gear two; 15, auxiliary assembly; 1501, side disc; 1502, tooth; 1503, cross column; 1504, cross gear; 16, support seat; 17, heat dissipation assembly; 1701, fixed plate; 1702, extension shaft; 1703, transmission gear; 1704, auxiliary shaft; 1705, fan blade; 18, scraper; 19, adjustment assembly; 1901, link block; 1902, slide plate; 1903, connecting spring; 20, side column; 21, collection rod; 22, middle column; 23, roller shaft; 24, built-in groove; 25, filter screen; 26, side baffle; 27, built-in plate. DETAILED DESCRIPTION
[0029] The embodiments of the present application will be further described below in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0030] As Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 6 , Figure 7 andFigure 8As shown, the present application provides technical solutions: a high uniformity of ceramic tile processing with coal mill, including powder mill 1, feed inlet 2, transfer into frame 3, powder mill 2, baffle 5, ventilation net plate 6, bottom plate 7, drive assembly 8, motor 801, connecting shaft 802, driving gear 803, auxiliary gear 804, external gear 9, first connecting column 10, second connecting column 11, ball seat 12, discharge port 13, external gear 14, auxiliary assembly 15, side disc 1501, teeth 1502, horizontal column 1503, horizontal gear 1504, support seat 16, heat dissipation assembly 17, fixed plate 1701, extension shaft 1702, transmission gear 1703, auxiliary shaft 1704, fan blade 1705, scraper 18, adjusting assembly 19, link block 1901, sliding plate 1902, connecting spring 1903, side column 20, collection rod 21, middle column 22, roller shaft 23, built-in groove 24, filter screen 25, side baffle 26 and built-in plate 27, one side of the powder mill 1 is provided with feed inlet 2, and the other side of the powder mill 1 is provided with transfer into frame 3, the inside of the transfer into frame 3 is provided with built-in groove 24, the inside of the built-in groove 24 is provided with adjusting assembly 19 for shielding the built-in groove 24, and the adjusting assembly 19 comprises link block 1901, sliding plate 1902 and connecting spring 1903, the outer surface of the link block 1901 is provided with sliding plate 1902, one end of the outer surface of the sliding plate 1902 is provided with connecting spring 1903, the outer surface of the link block 1901 is provided with side column 20 in the middle, the collection rod 21 is arranged at the end of the side column 20, and the end of the collection rod 21 is provided with middle column 22, the outer surface of the middle column 22 is rotatably provided with roller shaft 23, the outside of the roller shaft 23 is provided with first connecting column 10 near one side of the powder mill 1, the outer surface of the first connecting column 10 is provided with second connecting column 11, the end of the second connecting column 11 is rotatably provided with ball seat 12, the outer surface of the other side of the link block 1901 is provided with filter screen 25 in the middle, the transfer into frame 3 is provided with powder mill 2 away from the powder mill 1, and the powder mill 2 is provided with discharge port 13 on one side, the ceramic tile raw material after preliminary grinding enters into the transfer into frame 3 through the discharge area on one side of the powder mill 1, the filter screen 25 provided in the inside of the transfer into frame 3 can be used for screening treatment of the ceramic tile raw material after preliminary grinding, ensuring the uniformity of the ceramic tile raw material grinding by the powder mill, and the first connecting column 10, the second connecting column 11 and the ball seat 12 connected with the powder mill 1 will rotate when the powder mill 1 rotates, the outside of the roller shaft 23 is provided with first connecting column 10 near one side of the powder mill 1, the first connecting column 10 and the second connecting column 11 are fixed to the outer surface of one side of the powder mill 1, the first connecting column 10, the second connecting column 11 and the ball seat 12 rotate and are attached to the outer surface of the roller shaft 23, the diameter of the first connecting column 10 and the diameter composed of the second connecting column 11 and the ball seat 12 are different,Therefore, the middle column 22 connected with the roller shaft 23 and the adjusting assembly 19 can move up and down in the built-in groove 24 in the middle transfer-in material frame 3 when the grinding mill 1 rotates, so as to drive the filter screen 25 connected with the link block 1901 to reciprocate up and down on the middle transfer-in material frame 3, which is beneficial to screen the ceramic tile raw materials on the filter screen 25, and the uniformly ground particles can be transferred to the grinding mill 2 4 through the filter screen 25, which is beneficial to grind the ceramic tile raw materials again by the grinding mill 2 4, further improves the uniformity of the ceramic tile raw materials, and the grinding mill 2 4 is provided with an external gear 2 14 outside, and the grinding mill 2 4 is provided with an auxiliary assembly 15 for transferring the large-particle ground particles on the side close to the middle transfer-in material frame 3, the auxiliary assembly 15 comprises a side disc 1501, a gear tooth 1502, a horizontal column 1503 and a horizontal gear 1504, the outer surface of the side disc 1501 is provided with the gear tooth 1502, the side disc 1501 is provided with the horizontal gear 1504 through the gear tooth 1502, the middle part of the horizontal gear 1504 is provided with the horizontal column 1503, the end of the horizontal column 1503 is provided with a built-in plate 27, and the two ends of the built-in plate 27 are provided with scrapers 18, one side of the middle transfer-in material frame 3 is provided with a side baffle 26, and the grinding mill 2 4 can rotate by using the driving assembly 8, so that the side disc 1501 and the gear tooth 1502 can rotate synchronously when the grinding mill 2 4 rotates, and the design of the number and position distribution of the gear tooth 1502 about the side disc 1501 makes the side disc 1501 intermittently engage with the horizontal gear 1504 on the outer surface of the horizontal column 1503 through the gear tooth 1502, so that the horizontal gear 1504, the horizontal column 1503, the built-in plate 27 and the scraper 18 can rotate in the upper area of the middle transfer-in material frame 3, and the ceramic tile grinding materials that cannot pass through the screen can be intermittently pushed to the side baffle 26 area, the side baffle 26 is clamped and connected with the middle transfer-in material frame 3, which is convenient for taking out the materials that cannot pass through the screen to use the grinding mill 1 to grind again (the working principle of the grinding mill and the feeding and discharging are prior art, the crushed coal is input into the cylinder from the feeding mechanism, when the cylinder rotates, the steel ball, i.e. the grinding body, can be attached to the lining plate in the cylinder due to the action of inertia and centrifugal force and friction, and when it is brought to a certain height, it is thrown due to its own gravity, and the falling grinding body crushes the coal in the cylinder, and the present application is improved and innovated on the basis, and reference is made to application No. CN202321869727.4, the grinding mill 1 can automatically discharge after the centrifugal grinding by the grinding ball is completed.
[0031] As Figure 2As shown, the bottom of the first grinding mill 1 and the second grinding mill 4 is provided with a driving assembly 8 for providing grinding power, and the driving assembly 8 is provided with two groups, the driving assembly 8 includes a motor 801, a connecting shaft 802, a driving gear 803 and an auxiliary gear 804, and the output end of the motor 801 is provided with the connecting shaft 802, the outer surface of the connecting shaft 802 is provided with the driving gear 803, and the outer surface of the driving gear 803 is provided with the auxiliary gear 804, the motor 801 and the connecting shaft 802 can drive the driving gear 803 to rotate, and the driving gear 803 is engaged with the auxiliary gear 804, so that the driving gear 803 and the first grinding mill 1 connected with the driving gear 803 are synchronous, and then the porcelain raw materials put into the first grinding mill 1 through the feed inlet 2 can be ground with the rotation of the grinding ball.
[0032] As shown in Figure 1 , Figure 2 and Figure 3 , the outer surface of the first grinding mill 1 is provided with an external gear 9, and the lower side of the external gear 9 is provided with a heat dissipation assembly 17 for dissipating heat of the motor 801, the heat dissipation assembly 17 includes a fixed plate 1701, an extension shaft 1702, a transmission gear 1703, an auxiliary shaft 1704 and a fan blade 1705, one side of the fixed plate 1701 is provided with the extension shaft 1702, the outer surface of the fixed plate 1701 is provided with a support seat 16, the bottom of the support seat 16 is provided with a bottom plate 7, the two sides of the bottom plate 7 are provided with a baffle 5, the inside bottom of the baffle 5 is provided with a ventilation screen 6, the end of the extension shaft 1702 is provided with the transmission gear 1703, the middle of the transmission gear 1703 is provided with the auxiliary shaft 1704, and the end of the auxiliary shaft 1704 is provided with the fan blade 1705, the motor 801 and the connecting shaft 802 can drive the driving gear 803 to rotate, and the driving gear 803 is engaged with the auxiliary gear 804, so that the driving gear 803 and the first grinding mill 1 connected with the driving gear 803 are synchronous, and then the external gear 9 in the middle of the outer surface of the first grinding mill 1 will follow, the rotation of the external gear 9 can drive the transmission gear 1703 engaged with it to rotate around the extension shaft 1702, and the auxiliary shaft 1704 and the fan blade 1705 connected with the transmission gear 1703 will rotate with the transmission gear 1703, the above operation can improve the air flow rate around the motor 801 to assist heat dissipation of the motor 801, and the heat dissipation of the motor 801 is started with the operation of the motor 801, which has a following effect.
[0033] In summary, as shown in Figures 1-8As shown, the high-uniformity tile processing pulverized coal mill, in use, through the design of motor 801 and connecting shaft 802 can drive the driving gear 803 rotation, and the driving gear 803 and auxiliary gear 804 meshing, in addition, the two ends of the mill 1 through the design of bearing are respectively connected with the feed inlet 2 and the transfer into the material frame 3 rotation, so that the driving gear 803 and the mill 1 connected with the driving gear 803 transmission will rotate synchronously, and then the porcelain raw material put into the mill 1 through the feed inlet 2 can be ground with the rotation of the grinding ball, and then the porcelain raw material after preliminary grinding enters into the transfer into the material frame 3 through the discharge area on the side of the mill 1 (the working principle of the mill and the feeding and discharging are prior art, the crushed coal is input from the feeding mechanism to the cylinder (i.e. the coal is input from the feed inlet 2 to the mill 1 in this paper), when the cylinder rotates, the steel ball, i.e. the grinding body, is attached to the cylinder lining plate due to the action of inertia and centrifugal force, and the friction force makes the steel ball be taken away by the cylinder, when it is taken to a certain height, it is thrown due to its own gravity, and the falling grinding body crushes the coal in the cylinder, and now it is improved and innovated on this basis, reference is made to the application number CN202321869727.4, the first grinding machine 1 can automatically discharge after centrifugal grinding with grinding balls, can use the filter screen 25 arranged in the transfer inlet frame 3 to screen the ceramic tile raw materials after the preliminary grinding, ensure the uniformity of the grinding machine for ceramic tile raw materials, and the first connecting column 10, the second connecting column 11 and the ball seat 12 connected with the first grinding machine 1 will rotate when the first grinding machine 1 rotates, the first connecting column 10, the second connecting column 11 and the ball seat 12 will rotate and adhere to the outer surface of the roller shaft 23, the diameter of the first connecting column 10 and the diameter composed of the second connecting column 11 and the ball seat 12 are different, so that the middle column 22 and the adjusting assembly 19 connected with the roller shaft 23 can move up and down in the built-in groove 24 in the transfer inlet frame 3 without interruption when the first grinding machine 1 rotates, so as to drive the filter screen 25 connected with the adapter block 1901 to reciprocate on the transfer inlet frame 3, which is beneficial to screen the ceramic tile raw materials on the outer surface of the filter screen 25 after the preliminary grinding, and the uniform grinding particles will be transferred to the second grinding machine 4 through the filter screen 25, which is beneficial to grind the ceramic tile raw materials again by the second grinding machine 4, further improve the uniformity of the ceramic tile raw materials, in addition, the second grinding machine 4 can rotate by the driving assembly 8, the side disc 1501 and the gear teeth 1502 can rotate synchronously when the second grinding machine 4 rotates, the design of the number and position distribution of the gear teeth 1502 about the side disc 1501 makes the side disc 1501 can intermittently engage with the horizontal gear 1504 on the outer surface of the horizontal column 1503 through the gear teeth 1502, so that the horizontal gear 1504, the horizontal column 1503, the built-in plate 27 and the scraper 18 will rotate in the upper area of the transfer inlet frame 3, the ceramic tile grinding materials that cannot pass through the screen can be intermittently pushed to the side baffle 26 area, the side baffle 26 is clamped and connected with the transfer inlet frame 3, which is convenient for taking out the materials that cannot pass through the screen and grinding them again by the first grinding machine 1, secondly, the driving of the main gear 803 can be driven by the motor 801 and the connecting shaft 802, and the main gear 803 is engaged with the auxiliary gear 804, so that the main gear 803 and the first grinding machine 1 connected with the main gear 803 will rotate synchronously, and then the outer gear 9 on the outer surface of the first grinding machine 1 will follow, the rotation of the outer gear 9 can drive the transmission gear 1703 engaged with it to rotate around the extension shaft 1702, and the auxiliary shaft 1704 and the fan blade 1705 connected with the transmission gear 1703 will rotate with the transmission gear 1703, which can improve the air flow rate around the motor 801 and assist the heat dissipation of the motor 801, in addition, the heat dissipation of the motor 801 is started with the operation of the motor 801, which has a following effect.
[0034] The embodiments of the present application are presented by way of example and description, and are not intended to be exhaustive or to limit the application to the form disclosed. Many modifications and variations will be apparent to those skilled in the art. Embodiments are chosen and described in order to best explain the principles of the application and its practical application, and to thereby enable others skilled in the art to best utilize the application in various embodiments and with various modifications as are suited to the particular use contemplated.
Claims
1. A high uniformity coal mill for ceramic tile processing, comprising a pulverizer (1) and a collection rod (21), characterized in that: The side of the grinding machine one (1) is provided with a feeding port (2), and the other side of the grinding machine one (1) is provided with a transfer feeding frame (3), the inside of the transfer feeding frame (3) is provided with an internal groove (24), the inside of the internal groove (24) is provided with an adjusting assembly (19) for shielding the internal groove (24), and the adjusting assembly (19) comprises a connecting block (1901), a sliding plate (1902) and a connecting spring (1903), the outer surface of the connecting block (1901) is provided with the sliding plate (1902), one end of the outer surface of the sliding plate (1902) is provided with the connecting spring (1903), the outer surface of the connecting block (1901) is provided with a side column (20), the end of the side column (20) is provided with a collection rod (21), and the end of the collection rod (21) is provided with a middle column (22), the outer surface of the middle column (22) is rotatably provided with a roller shaft (23), the side of the roller shaft (23) close to the grinding machine one (1) is provided with a first connecting column (10), and the outer surface of the first connecting column (10) is provided with a second connecting column (11), the end of the second connecting column (11) is rotatably provided with a ball seat (12), the other side of the outer surface of the connecting block (1901) is provided with a filter screen (25), the side of the transfer feeding frame (3) away from the grinding machine one (1) is provided with a grinding machine two (4), and the side of the grinding machine two (4) is provided with a discharging port (13), when the grinding machine one (1) rotates, the first connecting column (10), the second connecting column (11) and the ball seat (12) connected with the grinding machine one (1) rotate, the first connecting column (10), the second connecting column (11) and the ball seat (12) rotate and are attached to the outer surface of the roller shaft (23), the diameter of the first connecting column (10) and the diameter composed of the second connecting column (11) and the ball seat (12) are different, when the grinding machine one (1) rotates, the middle column (22) and the adjusting assembly (19) connected with the roller shaft (23) move up and down in the internal groove (24) in the transfer feeding frame (3), and the filter screen (25) connected with the connecting block (1901) reciprocatingly vibrates on the transfer feeding frame (3).
2. A high uniformity tile processing pulverizer as claimed in claim 1, wherein: The bottom of the grinding machine one (1) and the grinding machine two (4) is provided with a driving assembly (8) for providing grinding power, and the driving assembly (8) is provided with two groups.
3. A high uniformity tile processing pulverizer as claimed in claim 2, wherein: The driving assembly (8) comprises a motor (801), a connecting shaft (802), a driving gear (803) and an auxiliary gear (804), and the output end of the motor (801) is provided with the connecting shaft (802), the outer surface of the connecting shaft (802) is provided with the driving gear (803), and the outer surface of the driving gear (803) is provided with the auxiliary gear (804).
4. A high uniformity tile processing pulverizer as claimed in claim 3, wherein: The middle of the outer surface of the grinding machine one (1) is provided with an external gear one (9), and the lower side of the external gear one (9) is provided with a heat dissipation assembly (17) for dissipating heat of the motor (801).
5. A high uniformity tile processing pulverizer as claimed in claim 4, wherein: The heat dissipation assembly (17) comprises a fixed plate (1701), an extension shaft (1702), a transmission gear (1703), an auxiliary shaft (1704) and a fan blade (1705), one side of the fixed plate (1701) is provided with the extension shaft (1702), the end of the extension shaft (1702) is provided with the transmission gear (1703), the middle of the transmission gear (1703) is provided with the auxiliary shaft (1704), and the outer surface of the end of the auxiliary shaft (1704) is annularly provided with the fan blade (1705).
6. A high uniformity tile processing pulverizer as claimed in claim 5, wherein: The outer surface of the fixed plate (1701) is provided with a support seat (16), and the bottom of the support seat (16) is provided with a bottom plate (7).
7. A high uniformity tile processing pulverizer as claimed in claim 1, wherein: The outside of the second grinding machine (4) is provided with an external gear (14), and the side of the second grinding machine (4) close to the transfer inlet frame (3) is provided with an auxiliary assembly (15) for discharging large particles.
8. A high uniformity tile processing pulverizer as claimed in claim 7, wherein: The auxiliary assembly (15) comprises a side disc (1501), a tooth (1502), a horizontal column (1503) and a horizontal gear (1504), the outer surface of the side disc (1501) is provided with the tooth (1502), the side disc (1501) is provided with the horizontal gear (1504) through the tooth (1502), and the middle of the horizontal gear (1504) is provided with the horizontal column (1503).
9. A high uniformity tile processing pulverizer as claimed in claim 8, wherein: The end of the horizontal column (1503) is provided with an embedded plate (27), both ends of the embedded plate (27) are provided with a scraper (18), and one side of the transfer inlet frame (3) is provided with a side baffle (26).
10. A high uniformity tile processing pulverizer as claimed in claim 6, wherein: The both sides of the bottom plate (7) are clamped with a baffle (5), and the inside bottom of the baffle (5) is provided with a ventilation mesh plate (6).
Citation Information
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