Splitting mill for producing organic silicon powder

By introducing a warning component into the splitting mill, which senses wear on the grinding plates and automatically prompts for replacement, the problem of temperature control delay caused by internal heat accumulation in the mill is solved, ensuring the normal operation and service life of the mill.

CN223464911UActive Publication Date: 2025-10-24KAIHUA ZHUOCHENG MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202422794042.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-24
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

When existing splitting mills are used for a long time, internal heat buildup causes the temperature control switch to delay sensing, making it impossible to replace worn parts in time and affecting the service life of the equipment.

Method used

An alarm component was designed, including a sensor, contacts, and wiring. When the grinding plate wears to a certain extent, the wiring disconnects. The sensor detects the disconnection and issues an alarm, shutting down the device and removing the grinding plate to replace it with a new one. The grinding plate is connected to the contacts on the grinding column via contacts on the back of the grinding plate to ensure the grinding effect.

Benefits of technology

This enables timely replacement of grinding plates, ensuring the normal operation and service life of the equipment, and improving the working efficiency and reliability of the mill.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a splitting mill for producing organic silicon powder, which comprises a grinding chamber and a grinding column, a crushing chamber is arranged above the grinding chamber, the grinding column is arranged in the grinding chamber, a dome is arranged above the grinding column, and a motor is arranged below the grinding column. Compared with an existing splitting mill, the splitting mill for producing the organic silicon powder has the advantages that the two crushing rollers drive the crushing teeth which are meshed with each other to crush raw materials into small blocks, subsequent grinding is facilitated, the top cover is opened, the raw materials fall into the grinding chamber, the raw materials are scattered into a gap between the grinding column and the grinding chamber through the round top, and the grinding efficiency is improved. Raw materials can conveniently fall into a grinding gap through an opening in the upper portion of the grinding column, the motor drives the grinding column to rotate, the grinding plate on the grinding column grinds the raw materials into powder, after the grinding plate is abraded to a certain degree, a connecting wire is abraded off, an inductor induces that the connecting wire is disconnected and gives an alarm, and then a closing device pulls out the grinding plate to facilitate installation of a new grinding plate.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of organic silicon powder production, specifically to a split mill for organic silicon powder production. BACKGROUND

[0002] Organic silicon powder is a high-performance powder combining the excellent properties of organic silicon, such as lubricity, impact resistance, light diffusion, and heat resistance. By adding organic silicon powder to synthetic resins, various rubbers, coatings, inks, and other products, these materials can be given unique excellent properties of organic silicon. Currently, when producing organic silicon powder or polysilicon powder, a special mill needs to be used. The internal grinding part of the mill will wear out over time and needs to be replaced in a timely manner. A new split mill for organic silicon powder production is needed.

[0003] The existing patent with the publication number CN214439786U, named "a split mill", discloses a split mill. The split mill shell is provided with multiple wear-resistant plates on its inner wall. Rectangular grooves are carved in the positions corresponding to the wear-resistant plates on the side wall of the split mill shell. An explosion-proof glass plate is fixedly connected to one side of the inner wall of each rectangular groove. A heat-conducting box is fixedly arranged on the other side of the inner wall of each rectangular groove. A thermometer is fixedly embedded at the top of each heat-conducting box. A warning light is arranged at the top of each rectangular groove. The split mill sets the heat-conducting box on one side of the wear-resistant plates. The heat-conducting oil filled in the heat-conducting box can uniformly conduct the heat generated by the friction of the wear-resistant plates, thereby triggering the opening of the temperature control switch. When the warning light is off, it indicates that the wear-resistant plates are not subjected to friction, and they have been broken at this time. The operator can check and replace them in a targeted manner, making the maintenance more timely and ensuring the normal operation of the equipment and improving the service life.

[0004] The heat-conducting box on one side of the wear-resistant plates can uniformly conduct the heat generated by the friction of the wear-resistant plates, thereby triggering the opening of the temperature control switch. However, when the device is used for a long time, heat will accumulate inside the device, and the temperature control switch will have a delay in sensing. This cannot meet people's needs well. In view of the above situation, technical innovation is made on the basis of the existing split mill. UTILITY MODEL CONTENTS

[0005] The utility model aims to provide a split mill for organic silicon powder production to solve the problems raised in the background technology.

[0006] In order to achieve the above object, the utility model provides the following technical scheme: a split mill for organic silicon powder production, including grinding chamber and grinding column, the top of grinding chamber is provided with broken room, the inside of grinding column is installed in grinding chamber, and the top of grinding column is installed with dome, the below of grinding column is installed with motor.

[0007] Further, the inside of the grinding column is installed with the grinding plate, and the grinding plate is inlayed connection with the grinding column.

[0008] Further, the inside of the grinding plate is installed with the warning assembly, and the warning assembly is inlayed connection with the grinding plate.

[0009] Further, the warning assembly includes inductor, contact and wiring, and the right side of the inductor is installed with the contact, the top of the inductor is connected with the wiring, when the grinding plate wears to a certain degree, the wiring is ground off, the inductor senses the broken wiring and develops warning.

[0010] Further, the below of the right side of the grinding chamber is installed with the discharge gate, and the discharge gate is welded with the grinding chamber.

[0011] Further, the inside below of the broken room is installed with the broken roller, and the periphery of the broken roller is welded with the broken tooth, two broken rollers drive the broken tooth that bites each other to break the raw material into small pieces, which is convenient for subsequent grinding.

[0012] Further, the inside middle part of the broken room is installed with the flow guide plate, and the flow guide plate is welded with the broken room, the raw material falls between two broken rollers through the flow guide plate, which is convenient for breaking.

[0013] Further, the top of the broken room is installed with the top cover, and the top cover is rotationally connected with the broken room, the top cover prevents the broken raw material from splashing and prevents accidents.

[0014] Compared with the prior art, the utility model has the advantages that: two broken rollers drive the broken tooth that bites each other to break the raw material into small pieces, which is convenient for subsequent grinding, the raw material falls into the grinding chamber, the raw material falls through the dome and falls into the gap between the grinding column and the grinding chamber, the opening in the upper part of the grinding column facilitates the raw material to fall into the grinding gap, the motor drives the grinding column to rotate, the grinding plate on the grinding column grinds the raw material into powder, when the grinding plate wears to a certain degree, the wiring is ground off, the inductor senses the broken wiring and develops warning, and then the device is closed to pull out the grinding plate and install a new grinding plate.

[0015] 1. The utility model discloses a raw material falls into the grinding chamber, and the raw material is scattered to the gap between the grinding column and the grinding chamber through the dome, the opening of the upper part of the grinding column facilitates the raw material to fall into the grinding gap, the motor drives the rotation of the grinding column, and the grinding plate on the grinding column grinds the raw material into powder, when the grinding plate is worn to a certain degree, the wire is ground off, the inductor senses the wire breakage and develops the warning, then closes the device and draws out the grinding plate, installs the new grinding plate and connects through the contact behind the grinding plate and the contact on the grinding column, completes the installation, guarantees the grinding effect, and finally the silicon powder is discharged from the discharge port.

[0016] 2. The utility model discloses the top cover is lifted and the raw material is poured into the crushing chamber, and the raw material falls between two crushing rollers through the deflector, and the crushing teeth of the mutual occlusion of two crushing rollers crushes the raw material into small pieces, and the subsequent grinding is convenient. DRAWINGS

[0017] Figure 1 It is the front view structural diagram of splitting mill for organic silicon powder production of the utility model;

[0018] Figure 2 It is the grinding column three -dimensional structure schematic diagram of splitting mill for organic silicon powder production of the utility model;

[0019] Figure 3 It is the crushing roller three -dimensional structure schematic diagram of splitting mill for organic silicon powder production of the utility model;

[0020] Figure 4 It is the grinding plate side surface section view structural diagram of splitting mill for organic silicon powder production of the utility model.

[0021] In the drawing: 1, grinding chamber;2, grinding column;3, dome;4, grinding plate;5, warning assembly;501, inductor;502, contact;503, wire;6, discharge port;7, motor;8, crushing chamber;9, crushing roller;10, crushing tooth;11, deflector;12, top cover. DETAILED DESCRIPTION

[0022] As Figure 1 , Figure 2 and Figure 4As shown, a split mill for producing silicone powder comprises a grinding chamber 1 and a grinding column 2, the upper part of the grinding chamber 1 is provided with a crushing chamber 8, the grinding column 2 is installed inside the grinding chamber 1, and the upper part of the grinding column 2 is provided with a dome 3, the lower part of the grinding column 2 is provided with a motor 7, the inside of the grinding column 2 is provided with a grinding plate 4, and the grinding plate 4 is inlaidly connected with the grinding column 2, the inside of the grinding plate 4 is provided with a warning assembly 5, and the warning assembly 5 is inlaidly connected with the grinding plate 4, the warning assembly 5 comprises an inductor 501, a contact 502 and a wire 503, the right side of the inductor 501 is provided with the contact 502, the upper part of the inductor 501 is connected with the wire 503, the lower right part of the grinding chamber 1 is provided with a discharge port 6, and the discharge port 6 is welded with the grinding chamber 1, the raw materials fall into the grinding chamber 1, the raw materials fall through the dome 3 to the gap between the grinding column 2 and the grinding chamber 1, the opening at the upper part of the grinding column 2 facilitates the raw materials to fall into the grinding gap, the motor 7 drives the grinding column 2 to rotate, and the grinding plate 4 on the grinding column 2 grinds the raw materials into powder, when the grinding plate 4 is worn to a certain extent, the wire 503 is ground off, the inductor 501 senses the broken wire 503 to develop a warning, then the device is closed to pull out the grinding plate 4, install a new grinding plate 4 and connect the contact 502 behind the grinding plate 4 with the contact 502 on the grinding column 2 to complete the installation, ensure the grinding effect, and finally the silicon powder is discharged from the discharge port 6.

[0023] As shown in Figure 1 and Figure 3 shown, the inside lower part of the crushing chamber 8 is provided with a crushing roller 9, and the periphery of the crushing roller 9 is welded with a crushing tooth 10, the middle part of the inside of the crushing chamber 8 is provided with a flow guide plate 11, and the flow guide plate 11 is welded with the crushing chamber 8, the upper part of the crushing chamber 8 is provided with a top cover 12, and the top cover 12 is rotationally connected with the crushing chamber 8, the top cover 12 is lifted to pour the raw materials into the crushing chamber 8, the raw materials fall between the two crushing rollers 9 through the flow guide plate 11, and the two crushing rollers 9 drive the crushing teeth 10 engaged with each other to crush the raw materials into small pieces for subsequent grinding.

[0024] Working principle: when the split mill for producing silicone powder is used, first, the top cover 12 is lifted to pour the raw materials into the crushing chamber 8, the raw materials fall between the two crushing rollers 9 through the flow guide plate 11, and the two crushing rollers 9 drive the crushing teeth 10 engaged with each other to crush the raw materials into small pieces for subsequent grinding, the raw materials fall into the grinding chamber 1, the raw materials fall through the dome 3 to the gap between the grinding column 2 and the grinding chamber 1, the opening at the upper part of the grinding column 2 facilitates the raw materials to fall into the grinding gap, the motor 7 drives the grinding column 2 to rotate, and the grinding plate 4 on the grinding column 2 grinds the raw materials into powder, when the grinding plate 4 is worn to a certain extent, the wire 503 is ground off, the inductor 501 senses the broken wire 503 to develop a warning, then the device is closed to pull out the grinding plate 4, install a new grinding plate 4 and connect the contact 502 behind the grinding plate 4 with the contact 502 on the grinding column 2 to complete the installation, ensure the grinding effect, and finally the silicon powder is discharged from the discharge port 6.

Claims

1. A cleaving mill for the production of silicone flour, comprising a grinding chamber (1) and a grinding column (2), characterized in that, The upper portion of the grinding chamber (1) is provided with a crushing chamber (8), the grinding column (2) is installed in the interior of the grinding chamber (1), and the upper portion of the grinding column (2) is provided with a dome (3), and the lower portion of the grinding column (2) is provided with a motor (7).

2. A cleaving mill for the production of silicone powder according to claim 1, characterized in that The interior of the grinding column (2) is provided with a grinding plate (4), and the grinding plate (4) is inlaidly connected with the grinding column (2).

3. A cleaving mill for the production of silicone powder according to claim 2, characterized in that The interior of the grinding plate (4) is provided with a warning assembly (5), and the warning assembly (5) is inlaidly connected with the grinding plate (4).

4. A cleaving mill for the production of silicone powder according to claim 3, characterized in that The warning assembly (5) comprises an inductor (501), a contact (502) and a wire (503), the right side of the inductor (501) is provided with the contact (502), and the upper portion of the inductor (501) is connected with the wire (503).

5. The slaker according to claim 1, wherein The lower right portion of the grinding chamber (1) is provided with a discharge port (6), and the discharge port (6) is welded with the grinding chamber (1).

6. A cleaving mill for the production of silicone powder according to claim 1, characterized in that The lower portion of the interior of the crushing chamber (8) is provided with a crushing roller (9), and the periphery of the crushing roller (9) is welded with crushing teeth (10).

7. A cleaving mill for the production of silicone powder according to claim 1, characterized in that The middle portion of the interior of the crushing chamber (8) is provided with a guide plate (11), and the guide plate (11) is welded with the crushing chamber (8).

8. A cleaving mill for the production of silicone powder according to claim 1, characterized in that The upper portion of the crushing chamber (8) is provided with a top cover (12), and the top cover (12) is rotationally connected with the crushing chamber (8).

Citation Information

Patent Citations

  • Splitting mill

    CN214439786U