Isolation cooling device for rubber strip production

By designing an isolation and cooling device for rubber strip production, the combination of rollers, rotating rollers and scraping rods is used to achieve full contact between the rubber strips and talc powder and water and uniform adhesion of the talc powder, solving the problem of mutual adhesion and uneven adhesion of the rubber strips, and improving the cooling effect.

CN223058170UActive Publication Date: 2025-07-04JIANGXI HUAYANG RUBBER & PLASTIC PROD CO LTD
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Patent Information

Application Number
CN202421655889.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-07-04
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

The existing rubber strip cooling device can easily cause the rubber strips to stick together, the contact is insufficient and the talc powder is unevenly attached, resulting in poor isolation and cooling effect.

Method used

An isolation and cooling device for rubber strip production is designed. Through the cooperation of the roller and the rotary roller, the rubber strip is fully in contact with the mixture of talc and water, and the excess talc powder is scraped away by using a scraper, and combined with the fan to cool, achieving uniform adhesion.

Benefits of technology

The contact area and adhesion uniformity between rubber strips and talc powder are improved, and the isolation and cooling effect is enhanced.

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Abstract

The utility model relates to the technical field of rubber product production equipment, in particular to an isolating and cooling device for rubber strip production. The rubber strip winding device can wind a rubber strip, so that the rubber strip is more fully contacted with a talcum powder and water mixture, redundant talcum powder on the rubber strip can be scraped, the talcum powder on the surface of the rubber strip is more uniformly attached, and the isolating and cooling effects of the rubber strip are improved. The device comprises a bottom frame, a bottom plate, an isolation box and the like, a bottom plate is arranged on the bottom frame, and an isolation box is arranged on the bottom plate. The rubber strip is manually wound around the two rollers and the three rotating rollers in sequence, the motor and the fan are started, redundant talcum powder on the rubber strip can be scraped off through the first scraping rod and the second scraping rod, the rubber strip can be cooled through cold air, in this way, the rubber strip can be wound, the redundant talcum powder can be scraped off, the talcum powder on the rubber strip can be attached more evenly, and the service life of the rubber strip is prolonged. And meanwhile, the rubber strips can be cooled, and the isolation cooling effect of the rubber strips is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of rubber product production equipment, in particular to an isolation and cooling device for rubber strip production. Background Technique

[0002] A rubber strip is a saturated high polymer with very good aging resistance, good weather resistance, excellent electrical insulation performance, good chemical corrosion resistance, and good impact elasticity. During the rubber production process, after the rubber strip is processed, it needs to be cooled down as its temperature is relatively high. However, most of the existing cooling devices are prone to the situation where rubber strips stick together during use. The rubber strips do not come into sufficient contact with the aqueous solution of the anti-sticking agent. At the same time, there is likely to be excess anti-sticking agent residue on the rubber strips, making the anti-sticking agent on the surface of the rubber strips uneven, resulting in poor isolation and cooling effect of the rubber strips. Content of the Utility Model

[0003] In view of this, the utility model provides an isolation and cooling device for rubber strip production, which can wind the rubber strips, making the rubber strips come into more sufficient contact with the mixture of talcum powder and water, and can scrape off the excess talcum powder on the rubber strips, making the talcum powder adhere more evenly to the surface of the rubber strips, and improving the isolation and cooling effect of the rubber strips.

[0004] The technical solution is: an isolation and cooling device for rubber strip production, including a chassis, a bottom plate, an isolation box, brackets, rollers, a motor, belt pulleys, a belt, rotating rollers, a first fixing block, a first scraping rod, a second fixing block, a second scraping rod, a fan, an air outlet plate, a stirring rod, a suction pump, a discharge pipe rack, and fixing rods. There is a bottom plate on the upper part of the chassis, and a long plate on the upper part of the bottom plate. There is an isolation box on the bottom plate. There are four brackets on the bottom plate. The two brackets on the same side of the bottom plate are in a group. A roller is rotatably connected between the two brackets in each group. The two rollers are rotatably connected to the long plate of the bottom plate. There is a motor on the upper part of one of the brackets. The output shaft of the motor is fixedly connected to one of the rollers. Belt pulleys are provided on the sides of the two rollers away from the motor. A belt is wound between the two belt pulleys. Three rotating rollers are rotatably connected inside the isolation box. There are two first fixing blocks on the upper part of the bottom plate, and the two first fixing blocks are respectively located on both sides of the isolation box. A first scraping rod is clamped between the upper parts of the two first fixing blocks. There are second fixing blocks on both of the two brackets in one group. A second scraping rod is clamped between the upper parts of the two second fixing blocks. The second scraping rod is located above the first scraping rod. There is a fan on the upper part of the bottom plate. There is an air outlet plate on the upper part of the bottom plate. The air outlet of the fan is communicated with the air outlet plate. The air discharge ports of the air outlet plate are inclined. A stirring rod is clamped on the upper part of the bottom plate. There is a suction pump on the lower part of the chassis. The feed port of the suction pump is provided with a discharge pipe rack. One end of the discharge pipe rack is communicated with the feed port of the suction pump, and the other end of the discharge pipe rack is communicated with the inside of the isolation box. There are two fixing rods between the suction pump and the chassis, and both of the two fixing rods are in contact with the discharge pipe rack.

[0005] The beneficial effects are as follows: First, manually wind the rubber strip around two rollers and three rotating rollers in sequence. Then, manually start the motor and the fan. The two rollers will pull the rubber strip to move, and the three rotating rollers will make the contact surface between the rubber strip and the mixture of talcum powder and water wider. The talcum powder will adhere to the surface of the rubber strip. The first scraping rod and the second scraping rod will scrape off the excess mixture of talcum powder and water on both sides of the rubber strip. The cold air blown by the fan will cool the rubber strip. In this way, the rubber strip can be wound, making the contact between the rubber strip and the mixture of talcum powder and water more sufficient, and the excess talcum powder on the rubber strip can be scraped off, making the talcum powder adhered to the surface of the rubber strip more evenly. At the same time, the rubber strip can be cooled, improving the isolation and cooling effect of the rubber strip. BRIEF DESCRIPTION OF THE DRAWINGS

[0006] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.

[0007] Figure 2 It is a partial three-dimensional structural schematic diagram of the present utility model.

[0008] Reference numerals in the drawings: 1 - chassis, 2 - base plate, 3 - isolation box, 4 - support, 5 - roller, 6 - motor, 7 - pulley, 8 - belt, 9 - rotating roller, 10 - first fixing block, 11 - first scraping rod, 12 - second fixing block, 13 - second scraping rod, 14 - fan, 15 - air outlet plate, 16 - stirring rod, 17 - pump, 18 - discharge pipe rack, 19 - fixing rod. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0009] The present utility model will be further described below with reference to the drawings and embodiments.

[0010] Embodiment 1: An isolation and cooling device for rubber strip production, as shown in Figure 1 and Figure 2As shown in the figure, it includes a chassis, a bottom plate, an isolation box, brackets, rollers, a motor, belt pulleys, a belt, a rotating roller, a first fixing block, a first scraping rod, a second fixing block, a second scraping rod, a fan, an air outlet plate, a stirring rod, a suction pump, a discharge pipe rack and fixing rods. A bottom plate is welded to the upper part of the chassis, a long plate is provided on the upper part of the bottom plate, an isolation box is connected to the bottom plate by rivets, four brackets are connected to the bottom plate by bolts, and two brackets on the same side of the bottom plate form a group. A roller is rotatably connected between the two brackets in each group, and the two rollers are rotatably connected to the long plate of the bottom plate. A motor is welded to the upper part of one of the brackets, and the output shaft of the motor is fixedly connected to one of the rollers. Belt pulleys are connected to the sides of the two rollers away from the motor by flat keys, and a belt is wound between the two belt pulleys. Three rotating rollers are rotatably connected inside the isolation box. Two first fixing blocks are welded to the upper part of the bottom plate, and notches are formed in the upper parts of the two first fixing blocks. The two first fixing blocks are respectively located on both sides of the isolation box, and a first scraping rod is clamped between the upper parts of the two first fixing blocks. Second fixing blocks are welded to the two brackets in one of the groups, and linear holes are formed in the upper parts of the two second fixing blocks. A second scraping rod is clamped between the upper parts of the two second fixing blocks, and the second scraping rod is located above the first scraping rod. A fan is provided on the upper part of the bottom plate, and an air outlet plate is provided on the upper part of the bottom plate. The air outlet of the fan is communicated with the air outlet plate, and the air discharge ports of the air outlet plate are inclined. A stirring rod is clamped to the upper part of the bottom plate. A suction pump is provided at the lower part of the chassis. The feed inlet of the suction pump is connected to the discharge pipe rack by a flange. One end of the discharge pipe rack is communicated with the feed inlet of the suction pump, and the other end of the discharge pipe rack is communicated with the inside of the isolation box. Two fixing rods are welded between the suction pump and the chassis, and both of the two fixing rods are in contact with the discharge pipe rack. The two fixing rods are used to support the discharge pipe rack.

[0011] First, manually wind the rubber strip around two rollers and three rotating rollers in sequence. Then, manually pour talcum powder and water into the isolation box, remove the stirring rod and stir the talcum powder and water in the isolation box. After that, manually start the motor and the blower. The output shaft of the motor drives one of the rollers to rotate. One of the rollers drives one of the belt pulleys and the belt to rotate. The belt drives another belt pulley and another roller to rotate. The two rollers will pull the rubber strip to move. The movement of the rubber strip causes the three rotating rollers to rotate. The three rotating rollers will make the contact surface between the rubber strip and the mixture of talcum powder and water wider. The talcum powder will adhere to the surface of the rubber strip. The rubber strip passes through scraper rod 1 and scraper rod 2. The rubber strip contacts scraper rod 1 and scraper rod 2. Scraper rod 1 and scraper rod 2 will scrape off the excess mixture of talcum powder and water on both sides of the rubber strip. The cold air blown by the blower will blow out along the air outlet plate. The air outlet plate is located below the rubber strip. The cold air blown by the blower will cool the rubber strip. When the isolation and cooling of the entire rubber strip are completed, manually turn off the motor and the blower and start the suction pump. The suction pump will pump the mixture in the isolation box into the discharge pipe rack. The discharge pipe rack is connected to the inlet of the suction pump. The mixture will enter the suction pump and then flow out from the outlet of the suction pump. Then, manually clean the stirring rod and re-connect it to the bottom plate. Remove and clean scraper rod 1 and scraper rod 2 and then re-connect them. When manually needing to isolate and cool the rubber strip again, manually wind the rubber strip around two rollers and three rotating rollers in sequence again. In this way, reciprocatingly, the rubber strip can be wound, making the contact between the rubber strip and the mixture of talcum powder and water more sufficient, and the excess talcum powder on the rubber strip can be scraped off, making the talcum powder on the surface of the rubber strip adhere more evenly. At the same time, the rubber strip can also be cooled, improving the isolation and cooling effect of the rubber strip.

[0012] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art of this technology, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention.

Claims

1. An isolation and cooling device for rubber strip production, characterized in that, It includes a chassis, a bottom plate, an isolation box, brackets and rollers. The upper part of the chassis is provided with a bottom plate, the upper part of the bottom plate is provided with a long plate, the isolation box is provided on the bottom plate, four brackets are provided on the bottom plate, and two brackets on the same side of the bottom plate are in a group. A roller is rotatably connected between the two brackets in each group, and the two rollers are rotatably connected to the long plate of the bottom plate; It includes a motor, a belt pulley, a belt and a rotating roller. A motor is provided on the upper part of one of the brackets, the output shaft of the motor is fixedly connected to one of the rollers, belt pulleys are provided on the sides of the two rollers away from the motor, a belt is wound between the two belt pulleys, and three rotating rollers are rotatably connected inside the isolation box; It includes a first fixing block, a first scraping rod, a second fixing block and a second scraping rod. Two first fixing blocks are provided on the upper part of the bottom plate, and the two first fixing blocks are respectively located on both sides of the isolation box. A first scraping rod is clamped between the upper parts of the two first fixing blocks. Second fixing blocks are provided on both of the brackets in one group, and a second scraping rod is clamped between the upper parts of the two second fixing blocks. The second scraping rod is located above the first scraping rod.

2. The isolation and cooling device for rubber strip production according to claim 1, wherein It includes a blower, an air outlet plate, a stirring rod and a suction pump. A blower is provided on the upper part of the bottom plate, an air outlet plate is provided on the upper part of the bottom plate, the air outlet of the blower is communicated with the air outlet plate, the air discharge port of the air outlet plate is inclined, a stirring rod is clamped on the upper part of the bottom plate, and a suction pump is provided on the lower part of the chassis.

3. The isolation and cooling device for rubber strip production according to claim 2, wherein, It includes a discharge pipe bracket and a fixing rod. The feed inlet of the suction pump is provided with a discharge pipe bracket. One end of the discharge pipe bracket is communicated with the feed inlet of the suction pump, and the other end of the discharge pipe bracket is communicated with the inside of the isolation box. Two fixing rods are provided between the suction pump and the chassis, and both of the two fixing rods are in contact with the discharge pipe bracket.