Reaction kettle for producing antioxidant heat-conducting silica gel material

By installing a cleaning and stirring mechanism in the reactor, the problem of residual material on the inner wall of the feed inlet is solved, achieving cleaning of the feed inlet and uniform stirring of raw materials, thus extending the service life and operating efficiency of the reactor.

CN223556013UActive Publication Date: 2025-11-18SUZHOU HUAIZHONG ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422862161.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-23
Publication Date
2025-11-18
Estimated Expiration
2034-11-23

AI Technical Summary

Technical Problem

After repeated use, residual material easily remains on the inner wall of the feed inlet of the existing reactor. If it is not cleaned for a long time, it will dry out and affect its service life and normal operation.

Method used

A reaction vessel for producing antioxidant and thermally conductive silicone materials was designed, equipped with a cleaning mechanism and a stirring mechanism. The cleaning mechanism uses a motor-driven rotating rod to drive a cleaning plate to clean the inner wall of the feed inlet, and the stirring mechanism uses a motor-driven coupling to drive the stirring blades to stir the raw materials.

Benefits of technology

It effectively prevents residue from remaining on the inner wall of the feed inlet, ensuring normal use of the feed inlet and improving the service life and operating efficiency of the reactor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a reaction kettle for production of an antioxidant heat-conducting silica gel material, and relates to the technical field of silica gel material production, the reaction kettle comprises a reaction kettle body, a stirring mechanism is mounted on the reaction kettle body, a feeding hole is formed in the outer side of the reaction kettle body, a cleaning mechanism is arranged on one side of the feeding hole, and a discharging mechanism is arranged on the other side of the feeding hole. The cleaning mechanism comprises a mounting plate, the mounting plate is fixedly mounted on one side of the reaction kettle body, a supporting plate is rotatably mounted on one side, opposite to the reaction kettle body, of the mounting plate, and a connecting plate is fixedly mounted in the middle of the supporting plate. And then the rotating rod drives the cleaning plate to move, so that the cleaning plate cleans the inner wall of the feeding port, and the position of the cleaning mechanism can be adjusted through rotating connection of the mounting plate and the supporting plate, so that the original use of the feeding port is not influenced.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of silica gel material production, in particular to an oxidation-resistant and heat-conducting silica gel material production reaction kettle. BACKGROUND

[0002] Silica gel, also known as silica acid gel, is a kind of high-activity adsorption material and belongs to amorphous substance. The main component of silica gel is silicon dioxide, which is chemically stable and non-combustible. In the process of preparing silica gel material, a reaction kettle is indispensable. The reaction kettle is a container with physical or chemical reaction in a broad sense. Through the structure design and parameter configuration of the container, the functions of heating, evaporation, cooling and low-speed mixing can be realized.

[0003] According to the related technology in the above, the inventors consider that after being used for many times, the inner wall of the feeding port of the existing reaction kettle usually remains residual materials. If the residual materials are not cleaned for a long time, the residual materials may be dried and formed into blocks, thereby affecting the use of the reaction kettle and even affecting the service life of the reaction kettle. CONTENT OF THE UTILITY MODEL

[0004] The application aims to provide an oxidation-resistant and heat-conductive silica gel material production reaction kettle to improve the problem of residual materials on the inner wall of the feeding port.

[0005] The application provides an oxidation-resistant and heat-conductive silica gel material production reaction kettle which adopts the following technical scheme:

[0006] The oxidation-resistant and heat-conductive silica gel material production reaction kettle comprises a reaction kettle body, a stirring mechanism is installed at the top end of the reaction kettle body, a feeding port is installed on the outer side of the reaction kettle body, a discharge port is arranged at the lower end of the reaction kettle body, a valve is arranged at one end of the discharge port, a cleaning mechanism is arranged on one side of the feeding port, the cleaning mechanism comprises a mounting plate, the mounting plate is fixedly installed on one side of the reaction kettle body, a supporting plate is rotatably installed on the side, away from the reaction kettle body, of the mounting plate, a connecting plate is fixedly installed in the middle of the supporting plate, a first motor is fixedly installed on one side of the connecting plate, a rotating rod is fixedly installed at the output end of the first motor, and a cleaning plate is fixedly installed on one side of the rotating rod.

[0007] Through the above technical scheme, the silica gel raw materials can be put into the reaction kettle body through the feeding port, and the inner wall of the feeding port can be cleaned when not in use through the cleaning mechanism, so that the residual materials on the inner wall of the feeding port are prevented, and the normal use of the feeding port is ensured.

[0008] Optionally, the stirring mechanism comprises a top cover fixedly installed at the top end of the reaction kettle body, a support frame fixedly installed at the middle of the top end of the top cover, a second motor fixedly installed at the top end of the support frame, a shaft coupling fixedly installed at the output end of the second motor, a rotating shaft fixedly installed at the bottom end of the shaft coupling and penetrating through the top cover, and a plurality of stirring blades fixedly installed at the bottom end of the rotating shaft.

[0009] By adopting the above technical scheme, the raw materials can be stirred by the stirring mechanism. The shaft coupling is driven to rotate by the second motor, the rotating shaft is driven to rotate by the shaft coupling, and the stirring blades are driven to rotate by the rotating shaft, so that the stirring blades can stir the raw materials, and the raw materials can better react.

[0010] Optionally, the side of the cleaning plate away from the rotating rod is attached to the inner wall of the feed inlet.

[0011] By adopting the above technical scheme, the cleaning plate is attached to the inner wall of the feed inlet, so that the feed inlet can be cleaned, and the accumulation of residues is prevented, thereby preventing the normal use of the feed inlet.

[0012] Optionally, the bottom end of the support plate is fixedly installed with a buckle, and the bottom end of the mounting plate is provided with a clamping groove matched with the buckle.

[0013] By adopting the above technical scheme, the support plate is fixed to one side of the mounting plate by using the buckle and the clamping groove, and the support plate can be adjusted when not in use, thereby preventing the use of the feed inlet.

[0014] Optionally, the rotating rod is arranged in an "L" shape.

[0015] By adopting the above technical scheme, the rotating rod in an "L" shape can be rotated around the first motor while driving the cleaning plate to be attached to the inner wall of the feed inlet.

[0016] Optionally, the top end of the top cover is fixedly installed with a pressure gauge on one side, and the top end of the top cover is fixedly installed with a gas discharge hole on the other side, and the gas discharge hole is provided with a valve at one end.

[0017] By adopting the above technical scheme, the pressure inside the reaction kettle can be more intuitively detected by the pressure gauge, and the pressure gas inside the reaction kettle can be adjusted in time by opening and closing the gas discharge hole through the valve.

[0018] Optionally, the plurality of stirring blades are arranged in an annular array.

[0019] By adopting the above technical scheme, the raw materials inside the reaction kettle can be more uniformly stirred by the annular array of the stirring blades.

[0020] Optionally, the support frame is arranged in a conical shape.

[0021] By adopting the technical scheme, the second motor can be supported by the support frame, and the conical arrangement can make it more stable.

[0022] To sum up, the present application has at least one of the following beneficial technical effects:

[0023] 1. The utility model discloses a cleaning mechanism is set up, and the first motor is used to drive the rotation of the rotating rod, and the rotating rod moves the cleaning plate to clean the inner wall of the feed inlet, and the rotating connection of the mounting plate and the supporting plate can adjust the position of the cleaning mechanism, so that it does not affect the original use of the feed inlet. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is the structural schematic diagram of the utility model.

[0025] Figure 2 It is the structural schematic diagram of the stirring mechanism of the utility model.

[0026] Figure 3 It is the structural schematic diagram of the cleaning mechanism of the utility model.

[0027] In the drawing, 1, reaction kettle body;2, stirring mechanism;201, coupling;202, pressure gauge;203, top cover;204, rotating shaft;205, second motor;206, support frame;207, air vent;208, stirring blade;3, cleaning mechanism;301, mounting plate;302, supporting plate;303, rotating rod;304, first motor;305, connecting plate;306, buckle;307, cleaning plate;308, clamping groove;4, feed inlet. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings Figure 1 - the drawings Figure 3 The present application will be further described in detail.

[0029] An antioxidant heat-conducting silica gel material production reaction kettle, referring to Figure 1 , including reaction kettle body 1, the top end fixed mounting of reaction kettle body 1 has stirring mechanism 2, stirring mechanism 2 can be stirred to the raw material inside reaction kettle, makes it better to carry out the reaction, the side of reaction kettle body 1 is installed feed inlet 4, the lower end of reaction kettle body 1 is provided with discharge gate, and the valve is arranged at one end of discharge gate, and the side surface of reaction kettle body 1 close to feed inlet 4 is fixedly installed with cleaning mechanism 3, and the cleaning mechanism 3 can clean the residual material of the inner wall of feed inlet 4.

[0030] Refer to Figure 3The cleaning mechanism 3 comprises a mounting plate 301, a supporting plate 302, a connecting plate 305 and a rotating rod 303, the mounting plate 301 is mounted on one side of the reaction kettle body 1 and internally comprises the feeding port 4, one side of the mounting plate 301 is rotatably mounted with the supporting plate 302, the supporting plate 302 can rotate by 180 degrees on the mounting plate 301, so that it does not affect the normal use of the feeding port 4 when not in use, the bottom end of the supporting plate 302 is fixedly mounted with a buckle 306, and the bottom end of the mounting plate 301 is mounted with a clamping groove 308 used in cooperation with the buckle 306; the buckle 306 and the clamping groove 308 can be clamped and connected to fix the supporting plate 302 in a parallel state with the mounting plate 301.

[0031] With reference to Figure 3 The middle part of the supporting plate 302 is fixedly mounted with the connecting plate 305, the middle part of the connecting plate 305 is fixedly mounted with the first motor 304, the output end of the first motor 304 is fixedly mounted with the rotating rod 303 in the shape of "L", the outer side of the rotating rod 303 is fixedly mounted with the cleaning plate 307, and the first motor 304 can drive the rotating rod 303 to rotate along the inner wall of the feeding port 4, so that the rotating rod 303 drives the cleaning plate 307 to clean the inner wall of the feeding port 4.

[0032] With reference to Figure 2 The stirring mechanism 2 comprises a top cover 203, a supporting frame 206, a pressure gauge 202 and a gas dispersion hole 207, the top cover 203 is fixedly mounted at the top end of the reaction kettle body 1, the top end of the top cover 203 is fixedly mounted with the supporting frame 206, the two sides of the supporting frame 206 are respectively mounted with the pressure gauge 202 and the gas dispersion hole 207, the pressure gauge 202 can monitor the pressure gas in the reaction kettle, and the gas dispersion hole 207 can be opened and closed through a valve to release the gas in the reaction kettle.

[0033] With reference to Figure 2 The top end of the supporting frame 206 is fixedly mounted with the second motor 205, the output end of the second motor 205 is fixedly mounted with the shaft coupling 201, the bottom end of the shaft coupling 201 is fixedly mounted with the rotating shaft 204, and the bottom end of the rotating shaft 204 is fixedly mounted with a plurality of stirring blades 208 arranged in the shape of a ring array, the second motor 205 can drive the shaft coupling 201 to rotate, the shaft coupling 201 can reduce the torque and improve the stability, then the shaft coupling 201 drives the rotating shaft 204 to rotate, the rotating shaft 204 drives the plurality of stirring blades 208 to rotate, so that the raw materials are stirred to improve the reaction efficiency.

[0034] The implementation principle of the embodiment of the application is that: first, the raw material of silica gel is put into the reaction kettle body 1 through the feeding port 4, then the reaction kettle body 1 is started, so that the raw material reacts in the reaction kettle body 1, the gas in the reaction kettle can be more directly detected through the pressure gauge 202, when the pressure is too high, the gas holes 207 can be opened to release the gas in the reaction kettle body 1, so as to adjust the pressure, then the second motor 205 on the support frame 206 is started. The second motor 205 drives the shaft coupling 201 to rotate, the shaft coupling 201 drives the rotating shaft 204 to rotate, the rotating shaft 204 drives the plurality of stirring blades 208 to rotate, so that the stirring blades 208 stir the raw material, so that the raw material can better react.

[0035] Then, when the reaction kettle is not used during the time period, the support plate 302 can be pulled to rotate on the mounting plate 301, and after the buckle 306 of the support plate 302 is clamped into the clamping groove 308, the first motor 304 on the connecting plate 305 can be started, the first motor 304 drives the rotating rod 303 to rotate, and at the same time the rotating rod 303 drives the cleaning plate 307 to rotate along the inner wall of the feeding port 4, and the cleaning plate 307 cleans the inner wall of the feeding port 4. When the reaction kettle needs to be used, the support plate 302 can be pulled upward, so as not to affect the normal use of the feeding port 4.

[0036] The embodiments of the specific embodiment are the preferred embodiments of the application, and are not limited to the protection scope of the application, wherein the same parts are indicated by the same reference numerals. Therefore: any equivalent changes made according to the structure, shape and principle of the application should be covered by the protection scope of the application.

Claims

1. A reaction vessel for producing antioxidant and thermally conductive silicone materials, comprising a reaction vessel body (1), characterized in that: A stirring mechanism (2) is installed at the top of the reactor body (1), a feed inlet (4) is installed on the outside of the reactor body (1), a discharge port is provided at the bottom of the reactor body (1), and a valve is provided at one end of the discharge port. A cleaning mechanism (3) is provided on one side of the feed inlet (4). The cleaning mechanism (3) includes a mounting plate (301), which is fixedly installed on one side of the reactor body (1). A support plate (302) is rotatably installed on the side of the mounting plate (301) facing away from the reactor body (1). A connecting plate (305) is fixedly installed in the middle of the support plate (302). A first motor (304) is fixedly installed on one side of the connecting plate (305). A rotating rod (303) is fixedly installed at the output end of the first motor (304). A cleaning plate (307) is fixedly installed on one side of the rotating rod (303).

2. The reaction vessel for producing antioxidant and thermally conductive silicone material according to claim 1, characterized in that: The stirring mechanism (2) includes a top cover (203), which is fixedly installed on the top of the reactor body (1). A support frame (206) is fixedly installed at the middle of the top of the top of the top cover (203). A second motor (205) is fixedly installed at the top of the support frame (206). A coupling (201) is fixedly installed at the output end of the second motor (205). The bottom end of the coupling (201) passes through the top cover (203) and a rotating shaft (204) is fixedly installed thereon. A plurality of stirring blades (208) are fixedly installed at the bottom end of the rotating shaft (204).

3. The reaction vessel for producing antioxidant and thermally conductive silicone material according to claim 1, characterized in that: The cleaning plate (307) is in contact with the inner wall of the feed inlet (4) on the side facing away from the rotating rod (303).

4. The reaction vessel for producing antioxidant and thermally conductive silicone material according to claim 1, characterized in that: The bottom end of the support plate (302) is fixedly installed with a buckle (306), and the bottom end of the mounting plate (301) is provided with a slot (308) that cooperates with the buckle (306).

5. The reaction vessel for producing antioxidant and thermally conductive silicone material according to claim 1, characterized in that: The rotating rod (303) is arranged in an "L" shape.

6. The reaction vessel for producing antioxidant and thermally conductive silicone material according to claim 2, characterized in that: A pressure gauge (202) is fixedly installed on one side of the top of the top cover (203), and a vent (207) is fixedly installed on the other side of the top of the top of the top cover (203), with a valve provided at one end of the vent (207).

7. The reaction vessel for producing antioxidant and thermally conductive silicone material according to claim 2, characterized in that: The multiple stirring blades (208) are arranged in a ring array.

8. The reaction vessel for producing antioxidant and thermally conductive silicone material according to claim 2, characterized in that: The support frame (206) is tapered.