Production device for metal antirust paint emulsion

Through the combined design of multi-layer, multi-angle stirring structure and jacket heating, the problems of uneven material mixing and uneven heating in the existing devices are solved, and the reaction efficiency and yield of metal anti-rust paint emulsion are improved.

CN223170910UActive Publication Date: 2025-08-01SHANDONG BAODA NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202422305787.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-21
Publication Date
2025-08-01
Estimated Expiration
2034-09-21

AI Technical Summary

Technical Problem

The existing metal anti-rust paint emulsion production equipment has problems of low material mixing efficiency and uneven heating, resulting in low reaction efficiency and low product yield.

Method used

The multi-layer and multi-angle stirring structure design is adopted, including an inclined L-shaped stirring plate, a fan-shaped stirring plate, a curved stirring plate, a Y-shaped stirring rod and trapezoidal stirring plate, etc., and the heating of the hollow structure stirring barrel and jacket ensures that the material is fully in contact and uniformly heated.

Benefits of technology

The full contact reaction of the material and uniform heating are achieved, which significantly improves the reaction efficiency and product yield.

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Abstract

The utility model relates to the technical field of metal anti-rust paint emulsion, in particular to a production device for metal anti-rust paint emulsion, which comprises a body provided with an exhaust port, a solid feed port, a liquid feed port, an auxiliary inlet and a discharge port. A jacket is arranged on the outer wall of the body, a stirring shaft is arranged in the body, and one end of the stirring shaft is connected with a motor; a first stirring part, a second stirring part and a third stirring part are arranged on the stirring shaft, each of the first stirring part and the third stirring part comprises a barrel body with a hollow structure, and a plurality of rows of first auxiliary stirring parts and second auxiliary stirring parts are arranged on each barrel body; the second stirring part comprises a cylindrical inner stirring frame and a cylindrical outer stirring frame, a plurality of third auxiliary stirring parts are arranged on the inner stirring frame, and a plurality of fourth auxiliary stirring parts are arranged on the outer stirring frame. The production device with the structure is reasonable in design, so that feed liquid is uniformly heated, materials are fully contacted and reacted, the reaction efficiency is greatly improved, and the yield of products is ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of metal antirust paint emulsion, in particular to a production device for metal antirust paint emulsion. Background Art

[0002] Styrene-acrylic emulsion is widely used in various fields due to its good adhesion, transparent film, water resistance, oil resistance, heat resistance, good aging resistance and other characteristics, such as being used as architectural coatings, metal surface latex coatings, floor coatings, paper adhesives, adhesives, etc. Styrene-acrylic emulsion is prepared by reacting components such as styrene, acrylate monomers and additives. However, there are the following problems in current production: The existing production devices generally use anchor agitators to stir and mix materials. On the one hand, the mixing efficiency is low, resulting in insufficient contact between materials and affecting the reaction efficiency; on the other hand, when the materials are subjected to polymerization reaction, heating is required, and the materials are unevenly heated, resulting in insufficient reaction and ultimately affecting the product yield. Therefore, in view of the above problems, it is necessary to develop a production device for metal antirust paint emulsion. Summary of the Utility Model

[0003] The technical problem to be solved by the utility model is: In view of the deficiencies of the prior art, a production device for metal antirust paint emulsion is provided. By using this production device, the materials can be fully contacted and reacted, and heated evenly, greatly improving the reaction efficiency and product yield.

[0004] To solve the above technical problems, the technical solution of the utility model is:

[0005] A production device for metal antirust paint emulsion includes a main body. An exhaust port is provided at the top of the main body. A solid feed port, a liquid feed port and an additive inlet are provided on one side of the upper part of the main body. A discharge port is provided at the bottom of the main body. A jacket is provided on the outer wall of the main body. A stirring shaft is provided inside the main body. One end of the stirring shaft is connected to a motor. First stirring components, second stirring components and third stirring components are provided on the stirring shaft. Both the first stirring component and the third stirring component include a barrel with a hollow structure. Multiple columns of first auxiliary stirring parts are provided on the barrel. One column of second auxiliary stirring parts is provided between adjacent two columns of the first auxiliary stirring parts. The second stirring component includes a cylindrical inner stirring frame and an outer stirring frame. Multiple third auxiliary stirring parts are provided on the inner stirring frame. Multiple fourth auxiliary stirring parts are provided on the outer stirring frame.

[0006] As an improved technical solution, the first auxiliary stirring part is an L-shaped stirring plate arranged obliquely, and multiple stirring rods are provided on the L-shaped stirring plate.

[0007] As an improved technical solution, the second auxiliary stirring part is a fan-shaped stirring plate, and multiple through holes are provided on the fan-shaped stirring plate.

[0008] As an improved technical solution, the third auxiliary stirring part is an arc-shaped stirring plate, and a plurality of through holes are provided on the arc-shaped stirring plate, and a fifth auxiliary stirring part is provided between two adjacent arc-shaped stirring plates.

[0009] As a further improved technical solution, the fifth auxiliary stirring part is a Y-shaped stirring rod, and a plurality of stirring teeth are provided on the Y-shaped stirring rod.

[0010] As an improved technical solution, the fourth auxiliary stirring part includes a trapezoidal stirring plate, a plurality of through holes are provided on the trapezoidal stirring plate, and a sixth auxiliary stirring part is provided between two adjacent trapezoidal stirring plates.

[0011] As a further improved technical solution, the sixth auxiliary stirring part is a T-shaped stirring rod, a plurality of T-shaped stirring rods are provided on the T-shaped stirring rod, and a plurality of stirring teeth are provided on the T-shaped stirring rod.

[0012] As an improved technical solution, a material capturing structure is provided above the first stirring member, and the material capturing structure includes a conical barrel, the bottom of the conical barrel is open, and a plurality of through holes are provided at the top of the conical barrel.

[0013] After adopting the above technical solutions, the beneficial effects of the present utility model are as follows:

[0014] Since the production device for metal antirust paint emulsion includes a main body, an exhaust port is provided at the top of the main body, a solid feed port, a liquid feed port and an additive inlet are provided on one side of the upper part of the main body, and a discharge port is provided at the bottom of the main body; a jacket is provided on the outer wall of the main body, and a stirring shaft is provided inside the main body, and one end of the stirring shaft is connected to a motor; a first stirring member, a second stirring member and a third stirring member are provided on the stirring shaft, both the first stirring member and the third stirring member include a barrel body with a hollow structure, and a plurality of columns of first auxiliary stirring parts are provided on the barrel body, and a column of second auxiliary stirring parts is provided between two adjacent columns of first auxiliary stirring parts; the second stirring member includes a cylindrical inner stirring frame and an outer stirring frame, a plurality of third auxiliary stirring parts are provided on the inner stirring frame, and a plurality of fourth auxiliary stirring parts are provided on the outer stirring frame. In actual production, solid materials, liquid materials and additives respectively enter the inside of the main body from the corresponding feed ports, the heat medium in the jacket provides the temperature required for the reaction, the motor drives the stirring shaft to rotate after starting, and the barrel bodies of the first stirring member and the third stirring member, the first auxiliary stirring parts and the second auxiliary stirring parts, the inner stirring frame and the outer stirring frame of the second stirring member, and the third auxiliary stirring parts and the fourth auxiliary stirring parts cooperate to stir and mix the solid materials, liquid materials and additives inside the main body, so that the materials are fully contacted and reacted, and are uniformly heated. The production device with the above structure is reasonably designed, so that the liquid material is uniformly heated, the materials are fully contacted and reacted, the reaction efficiency is greatly improved, and the yield of the product is ensured.

[0015] Since the first auxiliary stirring part includes an L-shaped stirring plate arranged obliquely, and a plurality of stirring rods are provided on the L-shaped stirring plate. The obliquely arranged L-shaped stirring plate and the plurality of stirring rods act together to increase the stirring range, promote the uniform heating of the material, and ensure full contact and reaction.

[0016] Since the second auxiliary stirring part is a fan-shaped stirring plate, and a plurality of through holes are provided on the fan-shaped stirring plate. The fan-shaped stirring plate increases the stirring range of the material, and the material passes through the through holes on the fan-shaped stirring plate, realizing the uniform dispersion of the material.

[0017] Since the third auxiliary stirring part is an arc-shaped stirring plate, a plurality of through holes are provided on the arc-shaped stirring plate, and a fifth auxiliary stirring part is provided between two adjacent arc-shaped stirring plates. The arc-shaped stirring plate increases the stirring range of the material, and the material passing through the through holes can achieve further dispersion; the fifth auxiliary stirring part can further increase the stirring range of the material, promote the uniform heating of the liquid material, and ensure full reaction.

[0018] Since the fifth auxiliary stirring part is a Y-shaped stirring rod, and a plurality of stirring teeth are provided on the Y-shaped stirring rod. This structural design is reasonable, further increasing the mixing range and helping the liquid material to be heated evenly.

[0019] Since the fourth auxiliary stirring part includes a trapezoidal stirring plate, a plurality of through holes are provided on the trapezoidal stirring plate, and a sixth auxiliary stirring part is provided between two adjacent trapezoidal stirring plates. The trapezoidal stirring plate increases the stirring range of the material, and the material passing through the through holes can achieve further dispersion; the sixth auxiliary stirring part can further increase the stirring range of the material, promote the uniform heating of the liquid material, and ensure full reaction.

[0020] Since the sixth auxiliary stirring part is a T-shaped stirring rod, a plurality of T-shaped stirring rods are provided on the T-shaped stirring rod, and a plurality of stirring teeth are provided on the T-shaped stirring rod. This structural design is reasonable, further increasing the mixing range and helping the liquid material to be heated evenly.

[0021] Since a material capturing structure is provided above the first stirring component, the material capturing structure includes a conical barrel, the bottom of the conical barrel is open, and a plurality of through holes are provided at the top of the conical barrel. The waste gas generated by the material reaction entraining part of the material moves upward, the material after contacting the inner wall of the conical barrel falls down again, and the waste gas is discharged from the through holes at the top. The above-mentioned capturing structure is reasonably designed, realizing the effective capture of the material and avoiding material waste. Description of the Drawings

[0022] Figure 1 It is a schematic structural diagram of a production device for a metal antirust paint emulsion of the present utility model;

[0023] Among them, 1 - main body, 2 - jacket, 3 - stirring shaft, 4 - motor, 5 - first stirring component, 50 - barrel body, 51 - first auxiliary stirring part, 510 - L-shaped stirring plate, 511 - stirring rod, 52 - second auxiliary stirring part, 6 - second stirring component, 60 - inner stirring frame, 61 - outer stirring frame, 62 - third auxiliary stirring part, 63 - fourth auxiliary stirring part, 64 - fifth auxiliary stirring part, 65 - sixth auxiliary stirring part, 66 - stirring teeth, 7 - third stirring component, 8 - material catching structure. Detailed implementation mode

[0024] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the following further elaborates on the present utility model in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0025] A production device for metal antirust paint emulsion, as Figure 1 shown, includes a main body 1. An exhaust port is provided at the top of the main body. A solid feed port, a liquid feed port and an additive inlet are provided on one side of the upper part of the main body. A discharge port is provided at the bottom of the main body 1. A jacket 2 is provided on the outer wall of the main body 1. A stirring shaft 3 is provided inside the main body 1. One end of the stirring shaft 3 is connected to a motor 4. The stirring shaft 4 is provided with a first stirring component 5, a second stirring component 6 and a third stirring component 7. Both the first stirring component 5 and the third stirring component 7 include a barrel body 50 with a hollow structure and closed ends. Multiple columns of first auxiliary stirring parts 51 (including inclined L-shaped stirring plates 510, and multiple stirring rods 511 are provided on the L-shaped stirring plates 510) are provided on the barrel body 50. A column of second auxiliary stirring parts 52 (fan-shaped stirring plates with multiple through holes) is provided between adjacent two columns of first auxiliary stirring parts 51. The second stirring component 6 includes a cylindrical inner stirring frame 60 and an outer stirring frame 61. Multiple third auxiliary stirring parts 62 are provided on the inner stirring frame 60. The third auxiliary stirring parts 62 are arc-shaped stirring plates with multiple through holes, and a fifth auxiliary stirring part 64 is provided between adjacent two arc-shaped stirring plates. Multiple fourth auxiliary stirring parts 63 are provided on the outer stirring frame 61. The fourth auxiliary stirring parts 63 include trapezoidal stirring plates with multiple through holes, and a sixth auxiliary stirring part 65 is provided between adjacent two trapezoidal stirring plates.

[0026] In actual production, solid materials, liquid materials, and additives enter the interior of the main body through their respective feeding ports. The heat medium in the jacket provides the temperature required for the reaction. After the motor starts, it drives the stirring shaft to rotate. The barrels of the first stirring component, the third stirring component, the first auxiliary stirring part (the inclined L-shaped stirring plate and multiple stirring rods), and the second auxiliary stirring part (the fan-shaped stirring plate), the inner stirring frame and the outer stirring frame of the second stirring component, and the third auxiliary stirring part (the arc-shaped stirring plate provided with through holes), the fourth auxiliary stirring part (the trapezoidal stirring plate provided with through holes), the fifth auxiliary stirring part, and the sixth auxiliary stirring part cooperate to stir and mix the solid materials, liquid materials, and additives inside the main body, enabling the materials to fully contact and react, and being evenly heated, greatly improving the reaction efficiency and ensuring the product yield.

[0027] Among them, the fifth auxiliary stirring part 64 is a Y-shaped stirring rod, and multiple stirring teeth 66 are provided on the Y-shaped stirring rod. This structural design is reasonable, further increasing the mixing range and helping the liquid material to be evenly heated.

[0028] Among them, the sixth auxiliary stirring part 65 is a T-shaped stirring rod, and multiple stirring teeth are provided on the T-shaped stirring rod. This structural design is reasonable, further increasing the mixing range and helping the liquid material to be evenly heated.

[0029] Above the first stirring component 5, there is a material-catching structure 8. The material-catching structure 8 includes a conical barrel. The bottom of the conical barrel is open, and multiple through holes are provided at the top of the conical barrel. The waste gas generated by the material reaction entrains some materials and moves upward. The materials that come into contact with the inner wall of the conical barrel fall down again, and the waste gas is discharged from the through holes at the top. The above-mentioned material-catching structure is reasonably designed to effectively catch the materials.

[0030] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A production device for a metal rust-proof paint emulsion, characterized in that, It includes a main body. An exhaust port is provided at the top of the main body. A solid feed port, a liquid feed port and an additive inlet are provided on one side of the upper part of the main body. A discharge port is provided at the bottom of the main body. A jacket is provided on the outer wall of the main body. A stirring shaft is provided inside the main body. One end of the stirring shaft is connected to a motor. A first stirring member, a second stirring member and a third stirring member are provided on the stirring shaft. Both the first stirring member and the third stirring member include a barrel with a hollow structure. Multiple columns of first auxiliary stirring parts are provided on the barrel. One column of second auxiliary stirring parts is provided between two adjacent columns of the first auxiliary stirring parts. The second stirring member includes a cylindrical inner stirring frame and an outer stirring frame. Multiple third auxiliary stirring parts are provided on the inner stirring frame. Multiple fourth auxiliary stirring parts are provided on the outer stirring frame.

2. The production device for a metal anti-rust paint emulsion according to claim 1, characterized in that, The first auxiliary stirring part is an L-shaped stirring plate arranged obliquely. Multiple stirring rods are provided on the L-shaped stirring plate.

3. The production device for a metal antirust paint emulsion according to claim 1, characterized in that, The second auxiliary stirring part is a fan-shaped stirring plate. Multiple through holes are provided on the fan-shaped stirring plate.

4. The production device for a metal anti-rust paint emulsion according to claim 1, wherein, The third auxiliary stirring part is an arc-shaped stirring plate. Multiple through holes are provided on the arc-shaped stirring plate. A fifth auxiliary stirring part is provided between two adjacent arc-shaped stirring plates.

5. The production device for a metal anti-rust paint emulsion according to claim 4, characterized in that, The fifth auxiliary stirring part is a Y-shaped stirring rod. Multiple stirring teeth are provided on the Y-shaped stirring rod.

6. The production device for a metal anti-rust paint emulsion according to claim 1, wherein, The fourth auxiliary stirring part includes a trapezoidal stirring plate. Multiple through holes are provided on the trapezoidal stirring plate. A sixth auxiliary stirring part is provided between two adjacent trapezoidal stirring plates.

7. The production device for a metal anti-rust paint emulsion according to claim 6, characterized in that, The sixth auxiliary stirring part is a T-shaped stirring rod. Multiple T-shaped stirring rods are provided on the T-shaped stirring rod. Multiple stirring teeth are provided on the T-shaped stirring rod.

8. The production device for a metal antirust paint emulsion according to claim 6, characterized in that, A material-catching structure is provided above the first stirring member. The material-catching structure includes a conical barrel. The bottom of the conical barrel is open. Multiple through holes are provided at the top of the conical barrel.