Anti-wall-sticking wollastonite jet mill raw material conveyor

By setting a fixed tube and a communication groove in the transmission tube of the wollastonite fiber conveyor, and using the blowing effect of the fan and the fan, the problem of bonding wollastonite fibers to the inner wall of the conveyor is solved, achieving the integrity of the conveying and efficient operation of the device.

CN223027488UActive Publication Date: 2025-06-27YELLOWSTONE HEINER NEW MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202421365398.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-17
Publication Date
2025-06-27
Estimated Expiration
2034-06-17

AI Technical Summary

Technical Problem

The existing wollastonite fiber conveyors are prone to bond to the inner wall of the conveyor during transportation, resulting in incomplete transportation and easy to cause pipeline blockage.

Method used

A wollastonite air-flood grinding raw material conveyor with anti-adhesive wall was designed. By setting a fixed tube inside the transmission tube and opening a communication groove on the surface of the fixed tube, a pressure difference is generated by blowing the fan. The adsorption of wollastonite fibers inside the transmission tube is achieved through the Bernoulli principle to avoid bonding. At the same time, the inside of the conveyor pipe is blown by a fan to prevent the wollastonite fiber from being bonded to the inner wall.

Benefits of technology

It effectively avoids the bonding of wollastonite fibers to the inner wall of the conveyor, ensures the integrity of the conveying, avoids pipeline blockage, and improves the practicality of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wollastonite jet mill raw material conveyor capable of preventing wall sticking, and particularly relates to the technical field of conveyors, which comprises a conveying pipe, a fixing frame is arranged at the top of the conveying pipe, a motor is arranged at the top of the fixing frame, a connecting piece is arranged at the top of the fixing frame, a conveying pipe is arranged on one side of the connecting piece, and the conveying pipe is arranged on the other side of the connecting piece. A control table is arranged at the bottom of the conveying pipe, and a conveying assembly is arranged in the conveying pipe. The fixing pipe is arranged in the conveying pipe, the communicating groove is formed in the surface of the fixing pipe, the diameter of the communicating groove is set to be smaller than that of wollastonite fibers, and therefore when the wollastonite fibers enter the conveying pipe, the fan starts to operate; and through the Bernoulli principle, the pressure difference is generated between wind energy in the fixing pipe and the conveying pipe, then the fixing pipe adsorbs wollastonite fibers, the wollastonite fibers are prevented from being bonded to the inner wall of the conveying pipe, and the practicability of the device is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of conveyors, and more specifically, the utility model relates to a raw material conveyor for an anti-sticking wollastonite air classifier mill. Background Art

[0002] Wollastonite belongs to single-chain silicate minerals, and its main component is Ca3Si3O9. It belongs to the triclinic system and usually occurs in the form of flakes, radial or fibrous aggregates. The conveyor can form a conveying process of wollastonite fibers on a certain conveying line from the initial feeding point to the final discharging point. It can convey both fragmented wollastonite fibers and finished items. Existing conveyors will have the raw materials blown away by the air flow, generating dust, noise and exhaust gas during use.

[0003] After retrieval, a Chinese patent with the publication number CN209631401U discloses an air classifier mill raw material conveyor for preparing wollastonite fibers. Through the setting of the operating rocker, the operator can use the operating rocker to control the control box, so that the control box can make the second conveying pipe rotate freely through the rotating bearing, and by operating the rocker to control the bearing to control the first conveying pipe, the first conveying pipe can rotate freely at the upper end of the second conveying pipe, enabling the conveyor to be adjusted freely.

[0004] However, in actual use, due to the light weight of wollastonite fibers, they will adhere to the inner wall of the conveyor during transportation, resulting in incomplete conveyance of wollastonite fibers, and the wollastonite fibers remaining inside the conveying pipeline are likely to cause pipeline blockage. Summary of the Utility Model

[0005] In order to overcome the above-mentioned defects of the prior art, the utility model provides an anti-sticking wollastonite air classifier mill raw material conveyor to solve the problems raised in the above background art.

[0006] To achieve the above object, the utility model provides the following technical solution: An anti-sticking wollastonite air classifier mill raw material conveyor, including a conveying pipe, a fixing frame is provided at the top of the conveying pipe, a motor is provided at the top of the fixing frame, a connecting member is provided at the top of the fixing frame, a transmission pipe is provided on one side of the connecting member, a control console is provided at the bottom of the transmission pipe, and a transmission component is provided inside the transmission pipe.

[0007] Preferably, the transmission component includes a fixed pipe, the fixed pipe is arranged inside the transmission pipe, a communication groove is provided on the surface of the fixed pipe, a conveying thread is provided on the outside of the fixed pipe, the fixed pipe is hollow, and a fan is provided at one end of the fixed pipe, and the wind of the fan faces the inside of the fixed pipe.

[0008] Through the above solution, it can be seen that by arranging a fixed tube inside the transmission tube and opening a communication groove on the surface of the fixed tube, when the fan blows air into the inside of the fixed tube, the wind energy can generate a pressure difference between the fixed tube and the transmission tube under the condition of high-speed operation. Then, according to Bernoulli's principle, a suction force is generated inside the transmission tube, thereby realizing the adsorption of wollastonite fibers inside the transmission tube. At this time, the wollastonite fibers adhering to the inner wall of the transmission tube will approach the fixed tube. However, the diameter of the communication groove is small and cannot allow the wollastonite fibers to enter the inside of the fixed tube. Therefore, the wollastonite fibers are conveyed along with the conveying thread, improving the practicability of the device.

[0009] Preferably, an inner tube is arranged inside the conveying tube. Air outlet openings are formed on the surface of the inner tube, and the number of the air outlet openings is set to be several. A fixing block is arranged outside the inner tube, and the fixing block is fixedly connected to the inner wall of the inner tube. The number of the fixing blocks is set to be four. A fan is arranged on the top of the fixing frame, and the wind direction of the fan faces the inside of the conveying tube. The inside of one end of the fixing frame is hollow. The fan is fixedly connected to one end of the transmission tube, and a filter screen is arranged on one side of the fan.

[0010] Through the above solution, it can be seen that by blowing air into the inside of the conveying tube by the fan, the wind energy can operate inside the inner tube. When the wollastonite fibers enter the conveying tube through the transmission tube, the wollastonite fibers will adhere to the inner wall of the conveying tube. At this time, the fan continuously blows air into the inner tube, so that the wollastonite fibers adhering to the inner wall of the conveying tube will be separated from the inner wall of the conveying tube under the drive of the wind energy inside the inner tube, thereby avoiding the situation that the wollastonite fibers adhere to the inner wall of the conveying tube after entering the conveying tube, resulting in weight deviation of the material after transportation. At the same time, it also avoids a large amount of wollastonite fibers remaining inside the conveying tube and the transmission tube after the device is used for a long time, resulting in blockage of the device, improving the practicability of the device.

[0011] The technical effects and advantages of the present utility model are as follows:

[0012] 1. By arranging a transmission component, compared with the prior art, by arranging a fixed tube inside the transmission tube and opening a communication groove on the surface of the fixed tube, when the fan blows air into the inside of the fixed tube, the wind energy can generate a pressure difference between the fixed tube and the transmission tube under the condition of high-speed operation. Then, according to Bernoulli's principle, a suction force is generated inside the transmission tube, thereby realizing the adsorption of wollastonite fibers inside the transmission tube. At this time, the wollastonite fibers adhering to the inner wall of the transmission tube will approach the fixed tube. However, the diameter of the communication groove is small and cannot allow the wollastonite fibers to enter the inside of the fixed tube. Therefore, the wollastonite fibers are conveyed along with the conveying thread, improving the practicability of the device;

[0013] 2. By setting up the inner tube and blowing air into the inside of the transfer pipe through a blower, the wind energy can operate inside the inner tube, preventing the wollastonite fiber from adhering to the inner wall of the transfer pipe after entering, thereby improving the practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the overall structure of the present utility model.

[0015] Figure 2 It is a schematic diagram of the internal structure of the transfer pipe of the present utility model.

[0016] Figure 3 It is a schematic diagram of the structure of the transmission pipe of the present utility model.

[0017] Figure 4 It is a schematic diagram of the structure of the fixed pipe of the present utility model.

[0018] Figure 5 It is a schematic diagram of one end of the fixed pipe of the present utility model.

[0019] The reference numerals are: 1, transfer pipe; 2, fixing frame; 3, motor; 4, connecting piece; 5, transmission pipe; 6, fixed pipe; 7, communication groove; 8, transfer thread; 9, fan; 10, inner tube; 11, air outlet; 12, fixing block; 13, blower; 14, control console. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0021] As shown in the attached Figures 1-5 A wollastonite airflow mill raw material conveyor for preventing wall adhesion, including a transfer pipe 1, characterized in that: a fixing frame 2 is provided at the top of the transfer pipe 1, a motor 3 is provided at the top of the fixing frame 2, a connecting piece 4 is provided at the top of the fixing frame 2, a transmission pipe 5 is provided on one side of the connecting piece 4, a control console 14 is provided at the bottom of the transmission pipe 5, and a transmission component is provided inside the transmission pipe 5.

[0022] As shown in the attached Figures 4-5As shown in the figure, the transmission component includes a fixed tube 6, which is arranged inside the transmission tube 5. A communication groove 7 is formed on the surface of the fixed tube 6. A transmission thread 8 is arranged outside the fixed tube 6. The fixed tube 6 is hollow. One end of the fixed tube 6 is provided with a fan 9, and the wind of the fan 9 faces the inside of the fixed tube 6. By arranging the fixed tube 6 inside the transmission tube 5 and forming the communication groove 7 on the surface of the fixed tube 6, and setting the diameter of the communication groove 7 smaller than that of wollastonite fiber, when the fan 9 blows air into the inside of the fixed tube 6, a pressure difference can be generated between the fixed tube 6 and the transmission tube 5 under the condition of high-speed operation of the wind energy. Then, according to Bernoulli's principle, a suction force is generated inside the transmission tube 5, so as to realize the adsorption of wollastonite fiber inside the transmission tube 5. At this time, the wollastonite fiber adhered to the inner wall of the transmission tube 5 will approach the fixed tube 6, but the diameter of the communication groove 7 is too small to allow the wollastonite fiber to enter the inside of the fixed tube 6. Therefore, the wollastonite fiber is conveyed along with the transmission thread, improving the practicability of the device.

[0023] As shown in the Figures 1-2 figure, an inner tube 10 is arranged inside the transmission tube 1. Air outlet holes 11 are formed on the surface of the inner tube 10, and the number of the air outlet holes 11 is set to be several. Fixed blocks 12 are arranged outside the inner tube 10, and the fixed blocks 12 are fixedly connected with the inner wall of the inner tube 10. The number of the fixed blocks 12 is set to be four. A fan 13 is arranged on the top of the fixed frame 2, and the wind of the fan 13 faces the inside of the conveying tube. One end of the fixed frame 2 is hollow inside. A fan 13 is arranged on the top of the fixed frame 2, and the wind of the fan 13 faces the inside of the conveying tube. One end of the fixed frame 2 is hollow inside. The fan 9 is fixedly connected with one end of the transmission tube 5, and a filter screen is arranged on one side of the fan 9. By using the fan 13 to blow air into the inside of the transmission tube 1, the wind energy can operate inside the inner tube 10, avoiding the situation that the wollastonite fiber adheres to the inner wall of the transmission tube 1 after entering the transmission tube 1, thus improving the practicability of the device.

[0024] Working principle of the present utility model: When the device is in use, first place the wollastonite fiber into the inside of the transmission tube 5 through the feeding hopper, and then start the fan 13 and the motor. The motor drives the transmission thread 8 and the fixed tube 6 to rotate. Then, the wollastonite fiber moves towards the transmission tube 1 along with the transmission thread 8. During the movement, the fan 9 continuously blows air into the inside of the fixed tube 6, so as to generate a pressure difference between the fixed tube 6 and the transmission tube 5, and adsorb the wollastonite fiber by using Bernoulli's principle, avoiding the wollastonite fiber from adhering to the inner wall of the transmission tube 5, and improving the practicability of the device. When the wollastonite fiber enters the inside of the transmission tube 1, start the fan 13 to blow air into the inside of the transmission tube 1, so that the wind energy can operate inside the inner tube 10, avoiding the situation that the wollastonite fiber adheres to the inner wall of the transmission tube 1 after entering the transmission tube 1, thus improving the practicability of the device.

[0025] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A wollastonite jet mill raw material conveyor for preventing wall sticking, comprising a conveying pipe (1), characterized in that: A fixing frame (2) is provided on the top of the transmission pipe (1), a motor (3) is provided on the top of the fixing frame (2), a connecting piece (4) is provided on the top of the fixing frame (2), a transmission pipe (5) is provided on one side of the connecting piece (4), a control console (14) is provided at the bottom of the transmission pipe (5), and a transmission component is provided inside the transmission pipe (5); The transmission component comprises a fixed pipe (6), the fixed pipe (6) is arranged inside the transmission pipe (5), a communication groove (7) is provided on the surface of the fixed pipe (6), a transmission thread (8) is provided on the outer side of the fixed pipe (6), the fixed pipe (6) is hollow, a fan (9) is provided at one end of the fixed pipe (6), and wind from the fan (9) is directed toward the inside of the fixed pipe (6); An inner tube (10) is provided inside the transmission tube (1), and an air outlet (11) is provided on the surface of the inner tube (10), and the number of the air outlets (11) is set to be a plurality.

2. The anti-sticking wollastonite air flow mill raw material conveyor according to claim 1 is characterized by: A fixing block (12) is provided on the outer side of the inner tube (10), the fixing block (12) being fixedly connected to the inner wall of the inner tube (10), and the number of the fixing blocks (12) is set to four.

3. The anti-sticking wollastonite air flow mill raw material conveyor according to claim 1 is characterized by: A fan (13) is provided on the top of the fixing frame (2), and wind from the fan (13) is directed toward the interior of the conveying pipe. The interior of one end of the fixing frame (2) is hollow.

4. The anti-sticking wollastonite air flow mill raw material conveyor according to claim 2 is characterized by: The fan (9) is fixedly connected to one end of the transmission pipe (5), and a filter screen is provided on one side of the fan (9).

Citation Information

Patent Citations

  • Jet mill raw material conveyor for preparing wollastonite fibers

    CN209631401U