Reflective heat insulation coating filtering device

By employing a multi-layer filter structure and a stirring structure during the filtration process, and by targeting specific application areas, the problem of multi-layer filtration and clogging during the production of reflective heat-insulating coatings has been solved, thereby improving filtration efficiency and the fineness of the coating.

CN223747080UActive Publication Date: 2026-01-02ZHEJIANG LISHENG NEW WALL MATERIAL CO LTD
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Patent Information

Application Number
CN202520155139.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-02
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Reflective heat-insulating coatings are prone to clogging the filter screen and flowing slowly during the filtration process, resulting in cumbersome operation and sedimentation.

Method used

It adopts a multi-layer filter structure and an anti-clogging structure, including a cylinder, hydraulic rod, connecting rod, scraper and stirring structure. The multi-layer filter device prevents the filter from being embedded and clogged, and the stirring structure prevents the coating from settling.

Benefits of technology

It achieves excellent multi-layer filtration, prevents paint sedimentation and clogging, and improves filtration efficiency and paint fineness.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223747080U_ABST
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Abstract

The utility model discloses a reflective heat insulation coating filtering device which comprises a filtering box, an anti-blocking structure is embedded in the upper surface of the filtering box, a stirring structure is embedded in the rear surface of the filtering box, a first filter screen is embedded in one side of the interior of the filtering box, and a second filter screen is embedded in the other side of the interior of the filtering box. A first filter screen is embedded in one side of the interior of the filter box, a third filter screen is embedded in the other side of the interior of the filter box, a second filter screen is embedded in the interior of the filter box and located between the first filter screen and the third filter screen, the filter box comprises a support, a liquid inlet, a box body, a sliding groove, a liquid outlet, a box door and an observation window, and the support is fixedly installed on the rear portion of the upper surface of the box body. A liquid inlet is formed in the surface of one side of the box body in an embedded mode, a liquid outlet is formed in the surface of the other side of the box body in an embedded mode, and a box door is hinged to the front surface of the box body. According to the reflective heat-insulation coating filtering device, the filter screen can be rubbed and prevented from being blocked, and the coating can be stirred and prevented from being precipitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of reflective heat insulation paint production, especially relates to a reflective heat insulation paint filtering device. BACKGROUND

[0002] Reflective heat insulation paint is a kind of paint made of synthetic resin as base material, with functional pigment and filler and additives, which has high solar reflectance, near-infrared reflectance and hemispherical emittance. This paint reflects sunlight and infrared rays to achieve the purpose of heat insulation. It can form a heat insulation layer on the surface of the object by using radiation and hollow microsphere heat insulation mechanism to prevent heat accumulation and temperature rise on the surface of the object. In addition, reflective heat insulation paint also has the characteristics of cooling, heat insulation, waterproof and moisture-proof, good weather resistance, anti-staining, light and thin paint film, wear resistance and aging resistance. When producing reflective heat insulation paint, it needs to be filtered to improve its delicacy.

[0003] Because the paint flows to one side, impurities in the paint are easily embedded in the mesh holes of the filter screen, causing the filter screen to be blocked. It needs to be cleaned frequently, which is complicated to operate. Because the paint has certain viscosity, it flows slowly and is prone to sedimentation before filtering. Therefore, we propose a reflective heat insulation paint filtering device. UTILITY MODEL CONTENTS

[0004] The main purpose of the utility model is to provide a reflective heat insulation paint filtering device, which can effectively solve the problems in the background art.

[0005] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is as follows:

[0006] A reflective heat insulation paint filtering device, comprising a filter box, a anti-blocking structure is embedded and installed on the upper surface of the filter box, a stirring structure is embedded and installed on the rear surface of the filter box, a first filter screen is embedded and installed on one side of the inside of the filter box, a third filter screen is embedded and installed on the other side of the inside of the filter box, and a second filter screen is embedded and installed between the first filter screen and the third filter screen in the inside of the filter box.

[0007] Preferably, the filter box comprises a support, a liquid inlet, a box body, a chute, a liquid outlet, a box door and an observation window. The support is fixedly installed on the upper surface of the rear of the box body. The liquid inlet is embedded and installed on one side surface of the box body. The liquid outlet is embedded and installed on the other side surface of the box body. The box door is hinged to the front surface of the box body. The observation window is embedded and installed on the front surface of the box door. The chutes are embedded and installed in the inside of the box body above and below. There are six groups of chutes.

[0008] Preferably, the anti-clogging structure includes a cylinder, a hydraulic rod, a horizontal plate, a sealing ring, a connecting rod, and a scraper. The lower surface of the cylinder is fixedly mounted with a hydraulic rod, the lower surface of the hydraulic rod is fixedly mounted with a horizontal plate, the lower surface of the horizontal plate is fixedly mounted with a connecting rod, there are six sets of connecting rods, and the lower surface of each connecting rod is fixedly connected with a scraper, there are three sets of scrapers.

[0009] Preferably, the hydraulic rod is embedded in the upper surface of the bracket, the connecting rods are respectively embedded in the upper surface of the housing, the sealing ring is sleeved on the surface of the connecting rod and located on the inner upper surface of the housing, there are six sets of sealing rings, and the first filter screen, the second filter screen and the third filter screen are respectively embedded in the sliding groove.

[0010] Preferably, the stirring structure includes a box body, a first gear, a stirring paddle, a movable shaft, a stirring motor, and a second gear. The stirring motor is embedded in one side of the box body, and the second gear is fixedly installed on the front surface of the stirring motor. The movable shaft is embedded in the other side of the box body, and the first gear is movably connected to the front surface of the movable shaft. The first gear and the second gear are embedded in each other, and the stirring paddle is fixedly installed on the front surfaces of both the first gear and the second gear.

[0011] Preferably, the box body is fixedly installed on the rear surface of the housing at one side, and the stirring paddles are all embedded inside the housing.

[0012] Compared with the prior art, the present invention has the following beneficial effects:

[0013] 1. Through the first, second, and third filters, the reflective heat-insulating coating can be filtered in multiple layers, resulting in a good filtration effect;

[0014] 2. Through the cylinder, hydraulic rod, connecting rod, and scraper, the connecting rod can drive the scraper to move up and down during filtration, thereby rubbing the filter screen and preventing it from becoming clogged.

[0015] 3. The set stirring structure can stir the reflective heat insulation coating to prevent the coating from settling. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of a reflective heat-insulating coating filter device according to the present invention;

[0017] Figure 2 This is a schematic diagram of the interior of the housing of a reflective heat-insulating coating filter device according to the present invention;

[0018] Figure 3 This is a cross-sectional view of the housing of a reflective heat-insulating coating filter device according to this utility model;

[0019] Figure 4 The utility model relates to a box section view of a reflective heat insulation coating filtering device.

[0020] In the figure: 1, filter box;101, support;102, liquid inlet;103, box body;104, chute;105, liquid outlet;106, box door;107, observation window;2, anti-blocking structure;201, air cylinder;202, hydraulic rod;203, horizontal plate;204, sealing ring;205, connecting rod;206, scraper;3, stirring structure;301, box body;302, first gear;303, stirring paddle;304, movable shaft;305, stirring motor;306, second gear;4, first filter screen;5, second filter screen;6, third filter screen. DETAILED DESCRIPTION

[0021] In order to make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments.

[0022] As shown in Figures 1-4 A reflective heat insulation coating filtering device, comprising a filter box 1, an anti-blocking structure 2 is embedded and installed on the upper surface of the filter box 1, a stirring structure 3 is embedded and installed on the rear surface of the filter box 1, a first filter screen 4 is embedded and installed on one side inside the filter box 1, a third filter screen 6 is embedded and installed on the other side inside the filter box 1, a second filter screen 5 is embedded and installed between the first filter screen 4 and the third filter screen 6 inside the filter box 1, the mesh of the first filter screen 4 is larger than that of the second filter screen 5, and the mesh of the second filter screen 5 is larger than that of the third filter screen 6.

[0023] Further, the filter box 1 comprises a support 101, a liquid inlet 102, a box body 103, a chute 104, a liquid outlet 105, a box door 106, and an observation window 107, the support 101 is fixedly installed on the upper surface of the rear of the box body 103, the liquid inlet 102 is embedded and installed on one side surface of the box body 103, the liquid outlet 105 is embedded and installed on the other side surface of the box body 103, the box door 106 is hingedly connected to the front surface of the box body 103, the observation window 107 is embedded and installed on the front surface of the box door 106, the chute 104 is embedded and installed inside the box body 103 at the upper and lower positions, and there are six groups of chutes 104.

[0024] Further, the anti-blocking structure 2 comprises a cylinder 201, a hydraulic rod 202, a cross plate 203, a sealing ring 204, a connecting rod 205, and a scraper 206. The lower surface of the cylinder 201 is fixedly installed with the hydraulic rod 202. The lower surface of the hydraulic rod 202 is fixedly installed with the cross plate 203. The lower surface of the cross plate 203 is fixedly installed with the connecting rod 205. The connecting rod 205 is in six groups. The lower surface of the connecting rod 205 is fixedly connected with the scraper 206. The scraper 206 is in three groups. Some impurities are easily embedded in the inside of the mesh hole. When the scraper 206 moves up and down, the impurities in the mesh hole can be pushed out, thereby preventing blockage. The position of the scraper 206 can be set according to the properties of the paint. When the paint is thick, the scraper 206 can be set on the other side of the feed, thereby preventing the thick paint from blocking the first filter screen 4, the second filter screen 5, or the third filter screen 6.

[0025] Further, the hydraulic rod 202 is embedded and installed on the upper surface of the support 101. The connecting rod 205 is respectively embedded and installed on the upper surface of the box body 103. The sealing ring 204 is sleeved and installed on the surface of the connecting rod 205 and located at the inside upper surface position of the box body 103. The sealing ring 204 is in six groups. The sealing ring 204 is fixed in the inside of the box body 103. When the connecting rod 205 moves upward, a seal is formed by the sealing ring 204 to prevent the paint from being taken out. The first filter screen 4, the second filter screen 5, and the third filter screen 6 are respectively embedded and installed between the sliding grooves 104.

[0026] The paint enters the inside of the box body 103 from the liquid inlet 102, passes through the first filter screen 4, the second filter screen 5, and the third filter screen 6 in sequence, and is discharged from the liquid outlet 105. When filtering, the cylinder 201 is started. The hydraulic rod 202 drives the scraper 206 to move up and down through the connecting rod 205. The first filter screen 4, the second filter screen 5, and the third filter screen 6 are rubbed by the scraper 206 to prevent blockage.

[0027] Further, the stirring structure 3 comprises a box body 301, a first gear 302, a stirring paddle 303, a movable shaft 304, a stirring motor 305, and a second gear 306. The inside of the box body 301 is embedded and installed with the stirring motor 305 on one side. The front surface of the stirring motor 305 is fixedly installed with the second gear 306. The stirring motor 305 is connected with the second gear 306 through a motor shaft. The inside of the box body 301 is embedded and installed with the movable shaft 304 on the other side. The front surface of the movable shaft 304 is movably connected with the first gear 302. The first gear 302 is embedded with the second gear 306. The front surfaces of the first gear 302 and the second gear 306 are fixedly installed with the stirring paddle 303.

[0028] Further, the box body 301 is fixedly installed on the rear surface of the box body 103 at one side position. The stirring paddles 303 are embedded and installed in the inside of the box body 103.

[0029] When the stirring motor 305 rotates, the second gear 306 can be driven to rotate, so as to drive the first gear 302 to rotate, so that the paint can be stirred through the stirring paddle 303.

[0030] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A reflective thermal barrier coating filtration apparatus, characterized by: The utility model provides filtering box (1), the upper surface of filtering box (1) is embeddedly installed with anti -blocking structure (2), the rear surface of filtering box (1) is embeddedly installed with stirring structure (3), the inside of filtering box (1) is embeddedly installed with first filter screen (4) on one side, the inside of filtering box (1) is embeddedly installed with third filter screen (6) on the other side, the inside of filtering box (1) is embeddedly installed with second filter screen (5) between first filter screen (4) and third filter screen (6).

2. A reflective thermal barrier coating filtration device according to claim 1, wherein: The filtering box (1) includes a support (101), a liquid inlet (102), a box body (103), a chute (104), a liquid outlet (105), a box door (106), and an observation window (107). The upper surface of the box body (103) is fixedly installed with the support (101) at the rear. One side surface of the box body (103) is embeddedly installed with the liquid inlet (102). The other side surface of the box body (103) is embeddedly installed with the liquid outlet (105). The front surface of the box body (103) is hingedly connected with the box door (106). The front surface of the box door (106) is embeddedly installed with the observation window (107). The inside of the box body (103) is embeddedly installed with the chute (104) at the upper and lower positions. There are six groups of the chute (104).

3. A reflective thermal barrier coating filter apparatus as defined in claim 2, wherein: The anti-blocking structure (2) includes a cylinder (201), a hydraulic rod (202), a horizontal plate (203), a sealing ring (204), a connecting rod (205), and a scraper (206). The lower surface of the cylinder (201) is fixedly installed with the hydraulic rod (202). The lower surface of the hydraulic rod (202) is fixedly installed with the horizontal plate (203). The lower surface of the horizontal plate (203) is fixedly installed with the connecting rod (205). There are six groups of the connecting rod (205). The lower surface of the connecting rod (205) is fixedly connected with the scraper (206). There are three groups of the scraper (206).

4. The reflective thermal barrier coating filtration apparatus of claim 3, wherein: The hydraulic rod (202) is embeddedly installed on the upper surface of the support (101). The connecting rod (205) is respectively embeddedly installed on the upper surface of the box body (103). The sealing ring (204) is sleevedly installed on the surface of the connecting rod (205) and located at the inside upper surface position of the box body (103). There are six groups of the sealing ring (204). The first filter screen (4), the second filter screen (5), and the third filter screen (6) are respectively embeddedly installed between the chutes (104).

5. A reflective thermal barrier coating filter apparatus as defined in claim 4, wherein: Said stirring structure (3) includes box body (301), first gear (302), stirring paddle (303), movable shaft (304), stirring motor (305), second gear (306), the inside of box body (301) is located on one side and is embeddedly installed with stirring motor (305), the front surface of stirring motor (305) is fixedly installed with second gear (306), the inside of box body (301) is located on the other side and is embeddedly installed with movable shaft (304), the front surface of movable shaft (304) is movably connected with first gear (302), first gear (302) is embedded with second gear (306), the front surface of first gear (302) and second gear (306) is fixedly installed with stirring paddle (303).

6. A reflective thermal barrier coating filter apparatus as defined in claim 5, wherein: Box body (301) is fixedly installed on the rear surface of box body (103) on one side, and stirring paddles (303) are embeddedly installed in the inside of box body (103).