Polymer coating purification device for anti-corrosion construction

The anti-corrosion coating is processed by mixing, stirring, crushing and screening mechanisms, which solves the problem of difficulty in screening large pieces of coating and improves the uniformity and purity of the coating.

CN223454147UActive Publication Date: 2025-10-21JINGQI CONSTRUCTION GROUP CO LTD
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Patent Information

Application Number
CN202422919807.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-10-21
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

In the existing production of anti-corrosion polymer coatings, large pieces of coatings after rough processing are difficult to effectively screen, resulting in the mixing of particulate matter and affecting product quality.

Method used

The mixing, crushing, grinding and screening mechanism is used to break up large pieces of paint through the stirring rod, crush them with the roller, grind them with the grinding wheel, and finally use the screen to remove impurities and improve the purity.

Benefits of technology

It achieves efficient decomposition of large pieces of paint, ensures the uniformity and purity of paint particles, reduces labor intensity and improves product quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223454147U_ABST
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Abstract

A polymer coating purification device for anti-corrosion construction comprises a box body, a mixing and stirring mechanism is arranged at the upper end of the box body, a smashing mechanism is arranged below the mixing and stirring mechanism, the smashing mechanism comprises a roller wheel, smashing wheel teeth are arranged on the roller wheel, a smashing motor is arranged outside the box body, a discharging port is formed in the lower end of the box body, and a grinding mechanism is arranged below the discharging port. The grinding mechanism comprises a grinding tank, the top end of the grinding tank is open, the grinding tank is in a circular truncated cone shape, a grinding wheel is arranged in the grinding tank, a supporting rod is fixed to the lower end in the grinding tank, a vertically-arranged rotating shaft is rotationally assembled on the supporting rod, the top end of the rotating shaft is fixedly connected with the grinding wheel, and a grinding motor is fixed to the bottom end of the supporting rod. The grinding motor is in transmission connection with the lower end of the rotating shaft; a screening mechanism used for screening the coating is arranged at the lower end in the grinding tank, and a conveying belt used for conveying the coating is arranged below the screening mechanism. The device is simple in structure and convenient to use.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the anticorrosive construction paint production technical field especially relates to a kind of high molecular coating purification device for anticorrosive construction. BACKGROUND

[0002] Anticorrosive high molecular coating is generally divided into conventional anticorrosive coating and heavy-duty anticorrosive coating, and is an essential coating in paint coating. Conventional anticorrosive coating plays a role in corrosion protection for metals and the like under general conditions, and protects the service life of non-ferrous metals. Heavy-duty anticorrosive coating refers to a type of anticorrosive coating that can be applied in relatively harsh corrosive environments and has a longer protection period than conventional anticorrosive coating. Since anticorrosive high molecular materials need to undergo rough machining processes during production and processing, the produced anticorrosive coating adheres together in large blocks. In the prior art, large blocks of anticorrosive coating are directly screened out through a vibrating screen, and then the large blocks of anticorrosive coating are manually knocked apart and rescreened. This not only increases the labor intensity of workers, but also still has a large number of particulate impurities mixed in the anticorrosive coating. Therefore, in the prior art, there are a large number of anticorrosive coating particles during processing and production, which do not meet the production quality requirements. SUMMARY

[0003] The utility model discloses a high polymer coating purification device of anticorrosion construction provides for solving the technical problem that the existing anticorrosive high molecule coating is inconvenient in production cleaning big granule coating, including the vertical setting box, and the top of box is open, and the upper end of box is equipped with mixed stirring mechanism, and mixed stirring mechanism includes the horizontal setting upper support beam, and the both ends of upper support beam are fixed on the inner wall of box, and the inner wall of box below upper support beam is fixed with the lower support beam of parallelism setting of upper support beam, and upper support beam and lower support beam all play the role of support fixed, and the lower support beam of parallelism setting is equipped with the stirring shaft of vertical setting between upper support beam and lower support beam, and a plurality of horizontal setting stirring rods are fixed on stirring shaft, and the lower end of stirring shaft is rotatably assembled at the top of lower support beam, and the top of upper support beam is fixed with the stirring motor of vertical setting, and the power output shaft of stirring motor is transmission connection with the upper end of stirring shaft, and starts stirring motor, and stirring motor drives stirring rod to rotate through stirring shaft, and stirring rod disperses the anticorrosive coating of larger block in the box into smaller particles.

[0004] Preferably, the top end of the support rod is provided with a vertically arranged cone for distributing materials, and the interior of the cone is hollow.

[0005] Preferably, the top end of the grinding tank is fixed with a hopper facilitating material falling, and the hopper is communicated with the grinding tank.

[0006] Preferably, the inner wall of the grinding tank and the grinding wheel form a grinding chamber, and the space of the grinding chamber decreases from top to bottom.

[0007] The above scheme has the following advantages:

[0008] The mixing and stirring mechanism is arranged, the stirring motor drives the stirring rod to rotate through the stirring shaft, the stirring rod breaks the large block of anticorrosive coating in the box into smaller particles, and then falls to the two roller wheels of the crushing mechanism; the crushing mechanism is arranged, the roller wheels rotate, and the crushing teeth arranged on the surface of the roller wheels crush the anticorrosive coating into smaller particles, so that the grinding mechanism can grind the anticorrosive coating; the grinding mechanism is arranged to grind the small particles of the anticorrosive coating into powder; and the screening mechanism is arranged, the screen can further remove the impurities of the anticorrosive coating falling from the grinding chamber, and the purity of the anticorrosive coating is improved. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 It is a structural schematic view of the utility model;

[0010] Figure 2 It is Figure 1 A enlarged view of A part.

[0011] Mark: 1, box; 2, mixing and stirring mechanism; 3, crushing mechanism; 4, grinding mechanism; 5, screening mechanism; 6, conveying belt; 7, storage tank; 11, box support leg; 12, discharge port; 21, upper support beam; 22, lower support beam; 23, stirring shaft; 24, stirring rod; 25, stirring motor; 26, cone; 31, roller; 32, crushing gear; 33, support shaft; 41, grinding tank; 42, grinding wheel; 43, support rod; 44, rotating shaft; 45, grinding motor; 46, grinding chamber; 47, grinding tank support leg; 48, hopper; 51, screen; 52, support seat; 53, spring; 54, vibration motor; 71, steel wire rope. DETAILED DESCRIPTION

[0012] As Figures 1-2The utility model discloses an anti-corrosion construction polymer coating purification device, including the box body 1 of vertical arrangement, the top of box body 1 is open, and the upper end of box body 1 is equipped with mixing stirring mechanism 2, and mixing stirring mechanism 2 includes the upper support beam 21 of horizontal arrangement, and the both ends of upper support beam 21 are fixed on the inner wall of box body 1, and the inner wall of box body 1 below upper support beam 21 is fixed with the lower support beam 22 of parallel arrangement with upper support beam 21, and upper support beam 21 and lower support beam 22 all play the role of support fixed, and the lower end of the stirring shaft 23 of vertical arrangement is equipped between upper support beam 21 and lower support beam 22, and the lower end of stirring shaft 23 is rotatably assembled at the top of lower support beam 22, and the top of upper support beam 21 is fixed with the stirring motor 25 of vertical arrangement, and the power output shaft of stirring motor 25 is transmission connection with the upper end of stirring shaft 23, starts stirring motor 25, and stirring motor 25 drives stirring rod 24 to rotate by stirring shaft 23, and stirring rod 24 breaks the larger blockiness anti-corrosion coating in the box body 1 into smaller particles. The inside of box body 1 below mixing stirring mechanism 2 is equipped with the crushing mechanism 3, and the crushing mechanism 3 includes two symmetrical roller 31, and the roller 31 is rotatably assembled on the inner wall of box body 1 through support shaft 33, and the outer box body 1 is equipped with the crushing motor, and the crushing motor is transmission connection with two roller 31 through the reduction gear box (crushing motor and reduction gear box are prior art, and the drawing is not shown in the specification), and starts crushing motor 3, and crushing motor 3 drives two roller 31 to rotate towards each other, and the anti-corrosion coating falling in the inside upper end of box body 1 is crushed into smaller particles under the action of crushing gear teeth 32. The lower end of box body 1 is equipped with the discharge port 12, and the grinding mechanism 4 is equipped below the discharge port 12, and the grinding mechanism 4 includes the grinding tank 42 of vertical arrangement, and the lower end of grinding tank 42 is equipped with a plurality of grinding tank support legs 47 playing the role of support, and the top of grinding tank 41 is open, and the grinding tank 41 is circular platform, and the grinding tank 41 is equipped with the grinding wheel 42 of vertical arrangement, and the bottom end of the inside of grinding tank 41 is fixed with the support rod 43 of horizontal arrangement, and the support rod 43 is rotatably assembled with the rotating shaft 44 of vertical arrangement through bearing, and the top of rotating shaft 44 is fixedly connected with grinding wheel 42, and the bottom end of support rod 43 is fixed with the grinding motor 45, and the grinding motor 45 is transmission connection with the lower end of rotating shaft 44, and starts grinding motor 45, and grinding motor 45 drives grinding wheel 42 to rotate, and the anti-corrosion coating falling through the discharge port 12 falls into the grinding chamber 46 and is ground into powder under the action of grinding wheel 42 and the inner wall of grinding tank 41.The lower end of the grinding tank 41 is provided with a screening mechanism 5 for screening the coating, and the lower end of the screening mechanism 5 is provided with a conveying belt 6 for conveying the coating, the screening mechanism 5 comprises a vertically arranged screen 51, a plurality of support seats 52 are uniformly and circumferentially arranged on the inner wall of the grinding tank 41 below the screen 51, springs 53 are arranged between the screen 51 and the support seats 52, the top end of the spring 53 is fixed to the screen 51, the bottom end of the spring 53 is fixed to the top end of the support seat 52, and a plurality of vibration motors 54 are arranged on the screen 51, the screen 51 can further remove impurities in the anticorrosive coating falling from the grinding chamber 46, and the purity of the anticorrosive coating is improved.

[0013] Preferably, the top end of the support rod 43 is provided with a vertically arranged cone 26 for distributing materials, and the interior of the cone 26 is hollow, and the stirring motor 25 is located in the cone 26.

[0014] Preferably, the top end of the grinding tank 41 is fixed with a hopper 48 for facilitating material falling, and the hopper 48 is communicated with the grinding tank 41.

[0015] Preferably, the inner wall of the grinding tank 41 and the grinding wheel 42 form a grinding chamber 46, and the space of the grinding chamber 46 decreases from top to bottom.

[0016] Use process:

[0017] In use, the crane first moves the storage tank 7 to the top of the mixing and stirring mechanism 2 through the steel wire rope 71, then the anticorrosive polymer coating to be treated in the storage tank 7 is poured downward, the anticorrosive coating falls onto the cone 26 under the action of gravity, and then the stirring motor 25 is started, the stirring motor 25 drives the stirring rod 24 to stir and mix the anticorrosive coating in the box 1 through the stirring shaft 23, the large pieces of anticorrosive coating are broken into small pieces, the crushing motor is started, the crushing motor drives the two roller wheels 31 to rotate towards each other through the support shaft 33, the anticorrosive coating at the upper end of the box 1 is crushed by the crushing teeth 32 on the two roller wheels 31 and then falls to the lower end of the box 1, and then falls into the hopper 48 from the discharge port 12, the grinding motor 45 is started, the grinding motor 45 drives the grinding wheel 42 to rotate, the anticorrosive coating falls into the grinding chamber 46 and is ground into powder under the action of the grinding wheel 42 and the inner wall of the grinding tank 41, and then the powder-like anticorrosive coating falls onto the screen 51, the vibration motor 54 is started, and the anticorrosive coating falls onto the screen 51, and the anticorrosive coating meeting the requirements falls onto the conveying belt 6 under the action of the screen 51, and is conveyed to the next process under the action of the conveying belt 6.

[0018] In the description of the utility model, need understanding is, the terms "upper", "lower", "left", "right" "top", "bottom", "horizontal", "vertical" and so on indicate the orientation or position relation is based on the orientation or position relation shown in the drawing, only for the convenience of describing the utility model and simplifying the description, and is not indicating or implying that the indicated device or element must have a particular orientation, a particular orientation structure and operation, therefore can not be understood as the limitation of the utility model.

[0019] The above embodiment is a description of the utility model, not a limitation of the utility model, and any simple transformation of the utility model belongs to the protection scope of the utility model.

Claims

1. A polymer coating purification device for anticorrosive construction, comprising a vertically arranged box body, and the top end of the box body is open, and a mixing and stirring mechanism is arranged at the upper end of the box body, characterized in that: The box below the mixing and stirring mechanism is provided with a crushing mechanism, the crushing mechanism comprises two symmetrically arranged rollers, a plurality of crushing teeth are arranged on the rollers, the rollers are rotatably assembled on the inner wall of the box through supporting shafts, and a crushing motor is arranged outside the box, the crushing motor is in transmission connection with the two rollers through a speed reducer.

2. The high molecular coating purification device for preventing corrosion construction according to claim 1, characterized in that: The lower end of the box is provided with a discharge port, a grinding mechanism is arranged below the discharge port, the grinding mechanism comprises a vertically arranged grinding tank, a plurality of grinding tank supporting legs for supporting are arranged at the lower end of the grinding tank, the top end of the grinding tank is open, and the grinding tank is in the shape of a circular truncated cone, a vertically arranged grinding wheel is arranged in the grinding tank, a horizontally arranged supporting rod is fixed at the inner lower end of the grinding tank, a vertically arranged rotating shaft is rotatably assembled on the supporting rod through a bearing, the top end of the rotating shaft is fixedly connected with the grinding wheel, a grinding motor is fixed at the bottom end of the supporting rod, and the grinding motor is in transmission connection with the lower end of the rotating shaft.

3. The high molecular coating purification device for preventing corrosion construction according to claim 1, characterized in that: The lower end of the grinding tank is provided with a screening mechanism for screening the coating, and a conveying belt for conveying the coating is arranged below the screening mechanism.

4. The apparatus for purifying anticorrosive construction polymer coating according to claim 3, characterized in that: The screening mechanism comprises a vertically arranged screen, a plurality of supporting seats are fixed on the inner wall of the grinding tank below the screen and are uniformly and spacedly arranged along the circumference of the inner wall of the grinding tank, springs are arranged between the screen and the supporting seats, the top ends of the springs are fixed to the screen, the bottom ends of the springs are fixed to the top ends of the supporting seats, and a plurality of vibration motors are arranged on the screen.

5. The apparatus for purifying anticorrosive construction polymer coating according to claim 1, wherein: The mixing and stirring mechanism comprises a horizontally arranged upper supporting beam, the two ends of the upper supporting beam are fixed to the inner wall of the box, a lower supporting beam parallel to the upper supporting beam is fixed to the inner wall of the box below the upper supporting beam, a vertically arranged stirring shaft is arranged between the upper supporting beam and the lower supporting beam, a plurality of horizontally arranged stirring rods are fixed to the stirring shaft, the lower end of the stirring shaft is rotatably assembled at the top end of the lower supporting beam, a vertically arranged stirring motor is fixed to the top end of the upper supporting beam, and the power output shaft of the stirring motor is in transmission connection with the upper end of the stirring shaft.

6. The apparatus for purifying anticorrosive construction polymer coating according to claim 5, wherein: The top end of the supporting rod is provided with a vertically arranged cone for distributing materials, and the interior of the cone is hollow. The top end of the grinding tank is fixed with a hopper facilitating material falling, and the hopper is in communication with the grinding tank. The inner wall of the grinding tank and the grinding wheel form a grinding chamber, and the space of the grinding chamber decreases from top to bottom.