A silicone oil processing homogenizer

Through multi-stage stirring and layered stirring mechanisms, combined with heating systems, the problem of low efficiency of silicone oil processing homogenizer is solved, more efficient silicone oil homogenization and automated operation are achieved, and the service life of the equipment is extended.

CN115253779BActive Publication Date: 2025-07-22JIANGXI PINHAN CHEM IND CO LTD
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Patent Information

Application Number
CN202210940740.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-06
Publication Date
2025-07-22
Estimated Expiration
2042-08-06

AI Technical Summary

Technical Problem

The existing silicone oil processing homogenizer has a simple structure, difficult to meet the requirements of homogenization quality, low processing efficiency, and lacks auxiliary measures to promote homogenization effect and shorten homogenization time.

Method used

A multi-stage stirring mechanism is adopted, including a motor-driven rotating rod, reciprocating screw, fixed rod and hollow stirring rod. Combined with a layering mechanism and a hot stirring system, the silicone oil is fully homogenized by pre-mixing, layered stirring and heating.

Benefits of technology

It improves the homogeneous quality and processing efficiency of silicone oil, reduces manual operation, extends the service life of the equipment, and ensures that the homogeneity effect reaches the standard through an alarm system.

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Abstract

The present invention relates to the technical field of silicone oil processing equipment, and specifically relates to a silicone oil processing homogenizer, which includes a homogenization tank. An inlet pipe is installed on the top wall of the homogenization tank, and a solenoid valve is installed inside the inlet pipe. An outlet is opened on the bottom wall of the homogenization tank. A motor is fixedly installed on the outer bottom wall of the homogenization tank, and the output end of the motor is fixedly installed with a first rotating rod extending into the homogenization tank. The top end of the first rotating rod is fixedly connected with a reciprocating lead screw, and the top end of the reciprocating lead screw is fixedly connected with a second rotating rod. The second rotating rod is rotatably inserted into the top wall of the homogenization tank. A fixed rod is horizontally installed on the second rotating rod, and a plurality of hollow stirring rods are installed at the bottom of the fixed rod. A large stirring blade is fixedly installed on the first rotating rod, and a layering mechanism is arranged in the homogenization tank. The present invention solves the problems that it is difficult to meet the requirements in terms of the homogenization quality of silicone oil and the quality is low through pre-stirring and further processing and homogenization.
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Description

Technical Field

[0001] The present invention relates to the technical field of silicone oil processing equipment, and particularly to a homogenizer for silicone oil processing. Background Art

[0002] Silicone oil generally refers to linear polysiloxane products that remain in a liquid state at room temperature. It is generally divided into two categories: methyl silicone oil and modified silicone oil. The most commonly used silicone oil is methyl silicone oil, also known as ordinary silicone oil, whose organic groups are all methyl groups. Methyl silicone oil has good chemical stability, insulation properties, and good hydrophobic properties. It is prepared by hydrolyzing dimethyldichlorosilane with water to obtain a primary polycondensed cyclic body. The cyclic body is cracked and rectified to obtain a low-ring body, and then the cyclic body, end-capping agent, and catalyst are put together for telomerization to obtain mixtures with different degrees of polymerization. After vacuum distillation to remove low-boiling substances, silicone oil can be prepared.

[0003] However, the existing homogenizer for silicone oil processing only stirs and homogenizes the silicone oil through a stirring mechanism. The structure of this stirring mechanism is relatively simple, and it is difficult to meet the requirements for the homogenization quality of silicone oil. Moreover, the existing homogenizer lacks auxiliary measures to promote the homogenization effect and shorten the homogenization time, resulting in low processing efficiency.

[0004] Therefore, a homogenizer for silicone oil processing is proposed. Summary of the Invention

[0005] The purpose of the present invention is to provide a homogenizer for silicone oil processing to solve the problems of difficult-to-meet requirements for the homogenization quality of silicone oil and low processing efficiency as mentioned in the above background art.

[0006] To achieve the above purpose, the present invention provides the following technical solutions:

[0007] A homogenizer for silicone oil processing includes a homogenization tank. An inlet pipe is installed on the top wall of the homogenization tank, and a solenoid valve is installed inside the inlet pipe. An outlet is opened on the bottom wall of the homogenization tank. A motor is fixedly installed on the outer bottom wall of the homogenization tank. The output end of the motor is fixedly installed with a first rotating rod extending into the homogenization tank. The top end of the first rotating rod is fixedly connected with a reciprocating lead screw. The top end of the reciprocating lead screw is fixedly connected with a second rotating rod. The second rotating rod is rotatably inserted into the top wall of the homogenization tank. A fixed rod is horizontally installed on the second rotating rod. A plurality of hollow stirring rods are installed at the bottom of the fixed rod. A large stirring blade is fixedly installed on the first rotating rod. A layering mechanism is provided inside the homogenization tank.

[0008] When silicone oil needs to be processed, the motor is turned on. First, the staff imports silicone oil from the feed pipe. The motor drives the first rotating rod to rotate, the reciprocating screw rod rotates accordingly, the second rotating rod rotates accordingly, and the fixed rod rotates to drive the hollow stirring rod to rotate. The silicone oil plays a role in pre-stirring. While the first rotating rod rotates, it drives the large stirring blade to rotate. The large stirring blade further stirs the pre-processed silicone oil to make the silicone oil more homogeneous.

[0009] Preferably, the stratifying mechanism includes a sliding plate. The sliding plate is spirally sleeved on the reciprocating screw rod. Sliding platforms are fixedly installed at both ends of the sliding plate. Through holes are formed in the sliding plate. A diversion pipe located outside the homogenizing tank is connected between the side wall and the top wall of the homogenizing tank. A one-way valve is installed at the connection between the diversion pipe and the top wall of the homogenizing tank.

[0010] Since the sliding plate spirally sleeved on the reciprocating screw rod moves up and down reciprocally, when the sliding plate moves down, it will give a certain pressure to the liquid below the sliding plate, so that the liquid below flows into the upper side of the sliding plate through the diversion pipe and is stirred again by the hollow stirring rod, making the stirring effect better. During the process of the sliding plate moving up, when the liquid touches the inner top wall of the homogenizing tank, due to the one-way valve that can only let in but not out, the inner top wall of the homogenizing tank will exert pressure on the sealing plate, so that the liquid can only flow from the through hole to the lower side of the sliding plate, and the liquid can flow to the lower side of the diversion pipe after passing through the fan blades, and can stir the pre-stirred liquid again, thereby increasing the stirring effect.

[0011] Preferably, first support rods are fixedly installed on both sides of the bottom end of the sliding plate and located on both sides of the through hole. A first fixing plate is fixedly installed between the two first support rods. A plurality of springs are fixedly connected to the upper end of the first fixing plate. The top ends of the springs are fixedly connected to a sealing plate adapted to the through hole.

[0012] When a certain amount of silicone oil is added, it generates pressure on the sealing plate, causing the sealing plate to squeeze the spring and move downward. The silicone oil flows from the upper side of the sliding plate to the lower side of the sliding plate, playing a role of automatically flowing the pre-treated silicone oil to the lower side of the sliding plate for further processing without manual operation.

[0013] Preferably, second support rods are fixedly installed on the side wall of the through hole. A bearing is fixedly embedded in the middle of the second support rod. A third rotating rod is installed on the bearing. A fan blade is installed on the third rotating rod.

[0014] When the liquid flows from the upper side of the sliding plate through the through hole to the lower side of the sliding plate, the liquid drives the fan blade to rotate, so that the pre-stirred liquid is stirred again by the fan blade, increasing the pre-stirring effect.

[0015] Preferably, a hollow box is fixedly installed in the homogenizing tank. An electric heating wire is fixedly installed in the hollow box. A hot stirring mechanism is provided in the homogenizing tank.

[0016] When starting the motor, the heating wire starts to work, softening the liquid on the lower side of the slide plate, so that the homogeneous liquid can reach the required standard faster.

[0017] Preferably, the thermal stirring mechanism includes a driving gear fixedly sleeved on the first rotating rod. A plurality of fourth rotating rods are rotatably installed on the inner bottom wall of the homogenizing box. A driven gear meshing with the driving gear is installed on each fourth rotating rod, and small stirring blades are fixedly installed on the fourth rotating rods.

[0018] During the heating process of the liquid on the lower side of the slide plate, since the heat is concentrated around the hollow box, when the large stirring blade rotates, it evenly distributes the heat around the hollow box in the liquid on the lower side of the slide plate. Since a vortex is formed during the rotation of the large stirring blade, it is difficult for the heat to be transferred to the center. Therefore, when the first rotating rod rotates, it drives the driving gear to rotate, and then drives the small stirring blade to rotate, so as to break the vortex, enable the heat to be evenly transferred to the surroundings, and at the same time assist the large stirring blade to homogenize and stir the liquid.

[0019] Preferably, the alarm mechanism includes two fixed blocks, both of which are fixedly installed on the inner bottom wall of the homogenizing box. Fixed inclined rods are connected to both fixed blocks, and the ends of the two fixed inclined rods are jointly connected to a hollow ball. Small holes are opened in the hollow ball, a buzzer is installed on the top of the hollow ball, a thin rope is fixedly connected to the inner top wall of the hollow ball, a conductive ball is fixedly connected to the bottom end of the thin rope, and a conductive plate is horizontally installed inside the hollow ball.

[0020] During the homogenization process, since the hollow ball is filled with liquid and the conductive ball is in a suspended state, after the work is completed, when the homogenized liquid is drained, the conductive ball also drops as the liquid level drops. When the liquid runs out, the conductive ball touches the conductive plate to energize the buzzer to sound an alarm, playing a role in reminding the staff.

[0021] Preferably, the hollow stirring rod includes a first sleeve rod and a second sleeve rod. The first sleeve rod is slidably sleeved inside the hollow stirring rod, and the second sleeve rod is slidably sleeved inside the first sleeve rod.

[0022] When the slide plate moves up and down, during the downward movement, the first sleeve rod and the second sleeve rod extend under their own gravity. When the slide plate moves upward, a supporting force is given to the second sleeve rod to compress it, and after the second sleeve rod shrinks, it gives a supporting force to the first sleeve rod to make the first sleeve rod shrink, playing a role in always stirring the liquid according to the movement of the slide plate.

[0023] Preferably, a ball is rotatably installed at the bottom end of the hollow stirring rod.

[0024] A ball is sleeved at the bottom end of the hollow stirring rod. Since there is friction between the sliding plate and the hollow stirring rod during the stirring process, the ball plays a role in reducing friction and improving the service life.

[0025] Preferably, the diversion pipe is made of polypropylene.

[0026] Polypropylene is generally processed and formed at the factory and has a low cost. It can keep the liquid warm and prevent heat dissipation, and prevent the heat dissipation from affecting the homogenization efficiency.

[0027] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0028] 1. By adding a pre-stirring mechanism in the homogenization tank, when the rough silicone oil enters the homogenization tank, the motor can drive the reciprocating lead screw to rotate while rotating. The rotation of the reciprocating lead screw drives the second rotating rod to rotate, the rotation of the reciprocating lead screw drives the fixed rod to rotate, and the rotation of the fixed rod drives the hollow stirring rod to rotate. The rotation of the hollow stirring rod stirs the silicone oil, which can effectively complete the pretreatment of the silicone oil, thereby ensuring faster efficiency when the silicone oil is further processed.

[0029] 2. By installing a layering mechanism in the homogenization tank, the effect of the silicone oil during further processing can be better. The downward movement of the sliding plate can give a certain pressure to the liquid below the sliding plate, so that the liquid below flows into the upper side of the sliding plate through the diversion pipe, playing a role in making the stirring effect better. During the upward movement of the sliding plate, when the liquid contacts the inner top wall of the homogenization tank, since the one-way valve can only let in but not out, the inner top wall of the homogenization tank will give pressure to make the liquid automatically flow through the through hole to the lower side of the sliding plate, playing a role in automatically flowing the pretreated silicone oil to the lower side of the sliding plate for further processing without manual operation. 3. A ball is sleeved at the bottom end of the hollow stirring rod. Since there is friction between the sliding plate and the hollow stirring rod during the stirring process, the ball plays a role in reducing friction and improving the service life. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0031] Figure 2 is a front cross-sectional view of the present invention;

[0032] Figure 3 is an enlarged view of part A of the present invention;

[0033] Figure 4 is an enlarged view of part B of the present invention;

[0034] Figure 5 is an enlarged view of part C of the present invention;

[0035] Figure 6 is an enlarged view of part D of the present invention.

[0036] In the figure: 1, homogeneous box; 2, feed pipe; 201, solenoid valve; 301, motor; 302, first rotating rod; 303, reciprocating lead screw; 304, second rotating rod; 401, fixed rod; 402, hollow stirring rod; 4021, first sleeve rod; 4022, second sleeve rod; 403, ball; 501, driving gear; 502, driven gear; 503, fourth rotating rod; 504, small stirring blade; 601, hollow ball; 602, small hole; 604, fixed inclined rod; 605, fixed block; 606, thin string; 607, conductive ball; 608, conductive plate; 609, buzzer; 801, slide plate; 802, slide table; 803, diversion pipe; 804, check valve; 701, hollow box; 702, heating wire; 703, large stirring blade; 901, first support rod; 902, first fixing plate; 903, sealing plate; 904, spring; 10, second support rod; 11, bearing; 12, third rotating rod; 13, fan blade; 14, through hole; 15, discharge port. Detailed implementation manners

[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0038] Please refer to Figures 1 to 6 , the present invention provides a silicone oil processing homogenizer, and the technical solution is as follows:

[0039] A silicone oil processing homogenizer includes a homogeneous box 1. A feed pipe 2 is installed on the top wall of the homogeneous box 1. A solenoid valve 201 is installed inside the feed pipe 2. A discharge port 15 is opened on the bottom wall of the homogeneous box 1. A motor 301 is fixedly installed on the outer bottom wall of the homogeneous box 1. The output end of the motor 301 is fixedly installed with a first rotating rod 302 extending into the homogeneous box 1. The top end of the first rotating rod 302 is fixedly connected with a reciprocating lead screw 303. The top end of the reciprocating lead screw 303 is fixedly connected with a second rotating rod 304. The second rotating rod 304 is rotatably inserted into the top wall of the homogeneous box 1. A fixed rod 401 is horizontally installed on the second rotating rod 304. A plurality of hollow stirring rods 402 are installed at the bottom of the fixed rod 401. A large stirring blade 703 is fixedly installed on the first rotating rod 302. A layering mechanism is provided inside the homogeneous box 1.

[0040] When silicone oil needs to be processed, the motor 301 is started. First, the staff imports silicone oil from the feed pipe 2. The motor 301 drives the first rotating rod 302 to rotate, the reciprocating screw rod 303 rotates accordingly, the second rotating rod 304 rotates accordingly, and the fixed rod 401 rotates to drive the hollow stirring rod 402 to rotate. The silicone oil plays a role in pre-stirring. While the first rotating rod 302 rotates, it drives the large stirring blade 703 to rotate. The large stirring blade 703 further stirs the pre-processed silicone oil to make the silicone oil more homogeneous.

[0041] As an embodiment of the present invention, refer to Figure 2 , the layering mechanism includes a slide plate 801. The slide plate 801 is spirally sleeved on the reciprocating screw rod 303. Both ends of the slide plate 801 are fixedly installed with sliding platforms 802. Through holes 14 are formed in the slide plate 801. A diversion pipe 803 located outside the homogenizing tank 1 is connected between the side wall and the top wall of the homogenizing tank 1. A one-way valve 804 is installed at the connection between the diversion pipe 803 and the top wall of the homogenizing tank 1.

[0042] Since the slide plate 801 is spirally sleeved on the reciprocating screw rod 303 and moves up and down reciprocally, when the slide plate 801 moves down, it will give a certain pressure to the liquid below the slide plate 801, so that the liquid below flows into the upper side of the slide plate 801 through the diversion pipe 803 and is stirred again by the hollow stirring rod 402 to make the stirring effect better. During the process of the slide plate 801 moving up, when the liquid touches the inner top wall of the homogenizing tank 1, since the one-way valve 804 can only let in and not out, the inner top wall of the homogenizing tank 1 will give pressure to the sealing plate 903, so that the liquid can only flow from the through hole 14 to the lower side of the slide plate 801, and the liquid flows to the lower side of the diversion pipe 803 through the fan blade 13, which can stir the pre-stirred liquid again, thereby increasing the stirring effect.

[0043] As an embodiment of the present invention, refer to Figure 2 , both sides of the bottom end of the slide plate 801 and located on both sides of the through hole 14 are fixedly installed with first support rods 901. A first fixing plate 902 is fixedly installed between the two first support rods 901. The upper end of the first fixing plate 902 is fixedly connected with a plurality of springs 904. The top ends of the springs 904 are fixedly connected with a sealing plate 903 adapted to the through hole 14.

[0044] When a certain amount of silicone oil is added, it generates pressure on the sealing plate 903, so that the sealing plate 903 squeezes the spring 904 to move downward, and the silicone oil flows from the upper side of the slide plate 801 to the lower side of the slide plate 801, which plays a role in automatically flowing the pre-treated silicone oil into the lower side of the slide plate 801 for further processing without manual operation.

[0045] As an embodiment of the present invention, refer to Figure 4, a second support rod 10 is fixedly installed on the side wall of the through hole 14. A bearing 11 is fixedly embedded in the middle of the second support rod 10. A third rotating rod 12 is installed on the bearing 11, and a fan blade 13 is installed on the third rotating rod 12.

[0046] When the liquid flows from the upper side of the slide plate 801 through the through hole 14 into the lower side of the slide plate 801, the liquid drives the fan blade 13 to rotate, so that the pre-stirred liquid passes through the stirring of the fan blade 13 again, increasing the effect of pre-stirring.

[0047] As an embodiment of the present invention, refer to Figure 2 , a hollow box 701 is fixedly installed in the homogenizing box 1, an electric heating wire 702 is fixedly installed in the hollow box 701, and a thermal stirring mechanism is arranged in the homogenizing box 1.

[0048] When the motor 301 is started, the electric heating wire 702 starts to work, so that the liquid on the lower side of the slide plate 801 is softened, and thus the homogenized liquid can reach the required standard faster.

[0049] As an embodiment of the present invention, refer to Figure 5 , the thermal stirring mechanism includes a driving gear 501. The driving gear 501 is fixedly sleeved on the first rotating rod 302. A plurality of fourth rotating rods 503 are rotatably installed on the inner bottom wall of the homogenizing box 1. A driven gear 502 meshing with the driving gear 501 is installed on each fourth rotating rod 503, and a small stirring blade 504 is fixedly installed on the fourth rotating rod 503.

[0050] During the heating process of the liquid on the lower side of the slide plate 801, since the heat is concentrated around the hollow box 701, when the large stirring blade 703 rotates, the heat around the hollow box 701 is evenly distributed in the liquid on the lower side of the slide plate 801. Since a vortex is formed during the rotation of the large stirring blade 703, it is difficult for the heat to be transferred to the center. Therefore, when the first rotating rod 302 rotates, it drives the driving gear 501 to rotate, and then drives the small stirring blade 504 to rotate, so as to break the vortex, enable the heat to be evenly transferred to the surroundings, and at the same time assist the large stirring blade 703 to homogenize and stir the liquid.

[0051] As an embodiment of the present invention, refer to Figure 6 , the alarm mechanism includes two fixed blocks 605. Both fixed blocks 605 are fixedly installed on the inner bottom wall of the homogenizing box 1. Fixed inclined rods 604 are connected to both fixed blocks 605. The ends of the two fixed inclined rods 604 are jointly connected to a hollow ball 601. A small hole 602 is opened on the hollow ball 601. A buzzer 609 is installed on the top of the hollow ball 601. A thin rope 606 is fixedly connected to the inner top wall of the hollow ball 601. The bottom end of the thin rope 606 is fixedly connected to a conductive ball 607. A conductive plate 608 is horizontally installed inside the hollow ball 601.

[0052] During the homogenization process, since the hollow balls 601 are filled with liquid and the conductive balls 607 are in a suspended state, after the work is completed, when the homogenized liquid is drained, the conductive balls 607 also descend as the liquid level drops. When the liquid has drained completely, the conductive balls 607 touch the conductive plate 608 and the buzzer 609 sounds an alarm, serving as a reminder to the staff.

[0053] As an implementation manner of the present invention, referring to Figure 3 , the hollow stirring rod 402 includes a first sleeve rod 4021 and a second sleeve rod 4022. The first sleeve rod 4021 is slidably sleeved inside the hollow stirring rod 402, and the second sleeve rod 4022 is slidably sleeved inside the first sleeve rod 4021.

[0054] When the slide plate 801 moves up and down, during the downward movement, the first sleeve rod 4021 and the second sleeve rod 4022 extend under their own gravity. When the slide plate 801 moves upward, a supporting force is applied to the second sleeve rod 4022 to compress the second sleeve rod 4022. After the second sleeve rod 4022 contracts, it gives a supporting force to the first sleeve rod 4021 to cause the first sleeve rod 4021 to contract, achieving the function of always stirring the liquid according to the movement of the slide plate 801.

[0055] As an implementation manner of the present invention, referring to Figure 3 , a ball 403 is rotatably installed at the bottom end of the hollow stirring rod 402.

[0056] A ball 403 is sleeved at the bottom end of the hollow stirring rod 402. Since there is friction between the slide plate 801 and the hollow stirring rod 402 during the stirring process, the ball 403 serves to reduce friction and improve the service life.

[0057] As an implementation manner of the present invention, referring to Figure 2 , the diversion pipe 803 is made of polypropylene material.

[0058] Polypropylene is generally processed and formed at the factory and has a low cost. It can keep the liquid warm to prevent heat dissipation, and prevent the heat dissipation from affecting the efficiency of homogenization.

[0059] Working principle: In the initial state, the staff first introduces silicone oil from the feed pipe 2 while starting the motor 301. The motor 301 drives the first rotating rod 302 to rotate. While the motor 301 rotates, it drives the reciprocating lead screw 303 to rotate. The rotation of the reciprocating lead screw 303 drives the second rotating rod 304 to rotate. The rotation of the reciprocating lead screw 303 drives the fixed rod 401 to rotate. The rotation of the fixed rod 401 drives the hollow stirring rod 402 to rotate. The rotation of the hollow stirring rod 402 plays a role in pre-stirring the silicone oil, making the efficiency of the silicone oil faster during further processing. While the first rotating rod 302 rotates, it drives the large stirring blade 703 to rotate. The large stirring blade 703 further stirs the pre-processed silicone oil, playing a role in making the silicone oil more homogeneous. Since the slide plate 801 is slidably mounted on the reciprocating lead screw 303 and moves back and forth, when the slide plate 801 moves downward, it will give a certain pressure to the liquid on the lower side of the slide plate 801, causing the liquid on the lower side to flow into the upper side of the slide plate 801 through the diversion pipe 803, playing a role in making the stirring effect better. During the upward movement of the slide plate 801, when the liquid contacts the inner top wall of the homogenizing box 1, due to the one-way valve 804 that can only let in and not out, the inner top wall of the homogenizing box 1 will give pressure to make the liquid flow from the through hole 14 to the lower side of the slide plate 801. When a certain amount of silicone oil is added, it generates pressure on the sealing plate 903, causing the sealing plate 903 to squeeze the spring 904 and move downward. The silicone oil flows from the upper side of the slide plate 801 to the lower side of the slide plate 801, playing a role in automatically flowing the pre-treated silicone oil into the lower side of the slide plate 801 for further processing without manual operation. When the liquid flows from the upper side of the slide plate 801 through the through hole 14 into the lower side of the slide plate 801, the liquid drives the fan blade 13 to rotate, playing a role in evenly mixing the pre-stirred liquid and flowing it into the lower side of the slide plate 801. When the motor is started, the heating wire 702 starts to work simultaneously, increasing the distance between the liquid molecules on the lower side of the slide plate 801, playing a role in softening the liquid and thus accelerating the rate of the homogenized liquid reaching the standard. During the heating process of the liquid on the lower side of the slide plate 801, since the heat is concentrated around the hollow box 701, during the rotation of the first rotating rod 302, the large stirring blade 703 also rotates accordingly, evenly distributing the heat around the hollow box 701 in the liquid on the lower side of the slide plate 801. Since a vortex is formed during the rotation of the large stirring blade 703 and it is difficult for the heat to be transferred to the center, the rotation of the first rotating rod 302 drives the driving gear 501 to rotate. While the driving gear 501 rotates, it drives the driven gear 502 to rotate. While the driven gear 502 rotates, it drives the small stirring blade 504 to rotate, interrupting the vortex, enabling the heat to be evenly transferred to the surroundings and also assisting the large stirring blade 703 in homogenizing and stirring the liquid.During the homogenization process, since the hollow sphere 601 is filled with liquid and the conductive sphere 607 is in a suspended state, after the work is completed, when the homogenized liquid is drained, the conductive sphere 607 also descends as the liquid level drops. When the liquid has drained completely, the conductive sphere 607 touches the conductive plate 608, causing the buzzer 609 to sound an alarm, which serves as a reminder to the staff.

[0060] All the electrical components appearing in this article are electrically connected to the external main controller and 220V mains through a transformer. And the main controller can be a conventional known device such as a computer for control. The product models provided by the present invention are only for the use of this technical solution based on the structural characteristics of the product. The products will be adjusted and modified after purchase to make them more compatible and conform to the technical solution of the present invention. It is an optimal application technical solution of this technical solution. The product models can be replaced and modified according to the required technical parameters, which is well-known to those skilled in the art. Therefore, those skilled in the art can clearly obtain the corresponding usage effects through the technical solution provided by the present invention.

[0061] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A silicone oil processing homogenizer, comprising a homogenization tank (1), characterized in that: A feed pipe (2) is installed on the top wall of the homogenizing box (1). An electromagnetic valve (201) is installed inside the feed pipe (2). A discharge port (15) is opened on the bottom wall of the homogenizing box (1). A motor (301) is fixedly installed on the outer bottom wall of the homogenizing box (1). The output end of the motor (301) is fixedly installed with a first rotating rod (302) extending into the homogenizing box (1). The top end of the first rotating rod (302) is fixedly connected with a reciprocating lead screw (303). The top end of the reciprocating lead screw (303) is fixedly connected with a second rotating rod (304). The second rotating rod (304) is rotatably inserted into the top wall of the homogenizing box (1). A fixing rod (401) is horizontally installed on the second rotating rod (304). A plurality of hollow stirring rods (402) are installed at the bottom of the fixing rod (401). A large stirring blade (703) is fixedly installed on the first rotating rod (302). A layering mechanism is arranged in the homogenizing box (1); The layering mechanism includes a sliding plate (801). The sliding plate (801) is spirally sleeved on the reciprocating lead screw (303). Sliding platforms (802) are fixedly installed at both ends of the sliding plate (801). Through holes (14) are formed in the sliding plate (801). A diversion pipe (803) located outside the homogenizing box (1) is connected between the side wall and the top wall of the homogenizing box (1). A one-way valve (804) is installed at the connection between the diversion pipe (803) and the top wall of the homogenizing box (1); At the bottom end of the sliding plate (801) and on both sides of the through hole (14), first support rods (901) are fixedly installed. A first fixing plate (902) is fixedly installed between the two first support rods (901). A plurality of springs (904) are fixedly connected to the upper end of the first fixing plate (902). The top ends of the springs (904) are fixedly connected with a sealing plate (903) adapted to the through hole (14); A second support rod (10) is fixedly installed on the side wall of the through hole (14). A bearing (11) is fixedly embedded in the middle of the second support rod (10). A third rotating rod (12) is installed on the bearing (11). A fan blade (13) is installed on the third rotating rod (12); The hollow stirring rod (402) includes a first sleeve rod (4021) and a second sleeve rod (4022). The first sleeve rod (4021) is slidably sleeved in the hollow stirring rod (402). The second sleeve rod (4022) is slidably sleeved in the first sleeve rod (4021); A hollow box (701) is fixedly installed in the homogenizing box (1). An electric heating wire (702) is fixedly installed in the hollow box (701). A heat stirring mechanism is arranged in the homogenizing box (1); The hot stirring mechanism includes a driving gear (501), the driving gear (501) is fixedly sleeved on the first rotating rod (302), a plurality of fourth rotating rods (503) are rotatably installed on the inner bottom wall of the homogenizing box (1), and a driven gear (502) meshing with the driving gear (501) is installed on each fourth rotating rod (503). A small stirring blade (504) is fixedly installed on the fourth rotating rod (503), and an alarm mechanism is arranged in the homogenizing box (1).

2. The silicone oil processing homogenizer according to claim 1, characterized in that: The alarm mechanism includes two fixing blocks (605), both of the two fixing blocks (605) are fixedly installed on the inner bottom wall of the homogenizing box (1), fixing inclined rods (604) are connected to both of the two fixing blocks (605), the ends of the two fixing inclined rods (604) are commonly connected to a hollow ball (601), small holes (602) are formed in the hollow ball (601), a buzzer (609) is installed on the top of the hollow ball (601), a thin rope (606) is fixedly connected to the inner top wall of the hollow ball (601), a conductive ball (607) is fixedly connected to the bottom end of the thin rope (606), and a conductive plate (608) is horizontally installed inside the hollow ball (601).

3. The silicone oil processing homogenizer according to claim 1, characterized in that: A ball (403) is rotatably installed at the bottom end of the hollow stirring rod (402).

4. A silicone oil processing homogenizer according to claim 1, wherein: The diversion pipe (803) is made of polypropylene material.

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