Corrosion-resistant heat-insulating tarpaulin material and production method thereof

A corrosion-resistant, tarpaulin technology, applied in the direction of conjugated rayon, cellulose/protein conjugated rayon, and conjugated synthetic polymer rayon, etc., can solve the problem of poor stability, inconvenience, and connection performance. Poor and other problems, to achieve high-strength waterproof and corrosion-resistant performance, simple production process, improve the effect of connection performance

Inactive Publication Date: 2021-03-05
江苏泽昊新材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Tarpaulins are widely used in daily life and have many functions. However, the existing tarpaulin materials are relatively single, often made of ordinary fibers and additives, which not only have poor stability, poor connection performance, but also reflective properties. Waterproof performance, heat insulation performance, fireproof performance and wear resistance are not guaranteed, the service life of the entire tarpaulin is low, cracking often occurs, and the anti-ultraviolet performance is poor, which is not convenient for people to use

Method used

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  • Corrosion-resistant heat-insulating tarpaulin material and production method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] Recipe and its proportions:

[0028] 10 parts of flax fiber, 10 parts of polyester fiber, 10 parts of bamboo fiber, 10 parts of polypropylene fiber, 10 parts of charcoal fiber, 5 parts of resin powder, 3 parts of polyethylene glycol oleate, 4 parts of propylene oxide, 5 parts of reflective filler , 3 parts of flame retardant, 4 parts of filling solvent, 3 parts of light and heat stabilizer, 5 parts of environmental protection plasticizer, 3 parts of wear-resistant agent, 3 parts of anti-ultraviolet agent, 2 parts of sodium hydroxide, 5 parts of anhydrous additive , 2 parts of antioxidant, 3 parts of aluminum oxide, 3 parts of diatomaceous earth, 5 parts of deionized water and 4 parts of nano titanium dioxide;

[0029] Specific steps are as follows:

[0030] Step 1: Fully mix flax fiber, polyester fiber, bamboo fiber, polypropylene fiber and charcoal fiber according to the proportion, grind and pulverize through a grinder, then add resin powder, polyethylene glycol olea...

Embodiment 2

[0035] 13 parts of flax fiber, 13 parts of polyester fiber, 13 parts of bamboo fiber, 13 parts of polypropylene fiber, 13 parts of charcoal fiber, 8 parts of resin powder, 5 parts of polyethylene glycol oleate, 5 parts of propylene oxide, 6 parts of reflective filler , 4 parts of flame retardant, 5 parts of filling solvent, 4 parts of light and heat stabilizer, 6 parts of environmental protection plasticizer, 4 parts of wear-resistant agent, 5 parts of anti-ultraviolet agent, 3 parts of sodium hydroxide, 6 parts of anhydrous additive , 5 parts of antioxidant, 4 parts of aluminum oxide, 5 parts of diatomaceous earth, 8 parts of deionized water and 6 parts of nano titanium dioxide;

[0036] Specific steps are as follows:

[0037] Step 1: Fully mix flax fiber, polyester fiber, bamboo fiber, polypropylene fiber and charcoal fiber according to the proportion, grind and pulverize through a grinder, then add resin powder, polyethylene glycol oleate, anhydrous additive and deionized Th...

Embodiment 3

[0042] Recipe and its proportions:

[0043] 15 parts of flax fiber, 15 parts of polyester fiber, 15 parts of bamboo fiber, 15 parts of polypropylene fiber, 15 parts of charcoal fiber, 10 parts of resin powder, 6 parts of polyethylene glycol oleate, 8 parts of propylene oxide, 7 parts of reflective filler , 5 parts of flame retardant, 6 parts of filling solvent, 5 parts of light and heat stabilizer, 8 parts of environmental protection plasticizer, 5 parts of wear-resistant agent, 6 parts of UV protection agent, 4 parts of sodium hydroxide, 8 parts of anhydrous additive , 6 parts of antioxidant, 5 parts of aluminum oxide, 7 parts of diatomaceous earth, 10 parts of deionized water and 8 parts of nano titanium dioxide;

[0044] Specific steps are as follows:

[0045] Step 1: Fully mix flax fiber, polyester fiber, bamboo fiber, polypropylene fiber and charcoal fiber according to the proportion, grind and pulverize through a grinder, then add resin powder, polyethylene glycol oleat...

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Abstract

The invention discloses a corrosion-resistant heat-insulating tarpaulin (waterproof cloth) material and a production method thereof. The corrosion-resistant heat-insulating tarpaulin material is prepared from linen fibers, polyester fibers, bamboo fibers, polypropylene fibers, charcoal fibers, resin powder, polyethylene glycol oleate, propylene epoxide, reflective filler, a flame retardant, a filling solvent, a photo-thermal stabilizer, an environment-friendly plasticizer, an anti-wear agent, an anti-ultraviolet agent, sodium hydroxide, an anhydrous additive, an antioxidant, aluminum oxide, diatomite, deionized water and nano titanium dioxide. According to the tarpaulin material, a plurality of fibers are adopted for warp and weft weaving to serve as a base layer, so that the connecting performance of tarpaulin is improved, the phenomenon of breakage is avoided, the service life is prolonged, and the waterproof performance and the wear-resisting and corrosion-resisting performance areimproved; the front face and the back face of the base layer are coated with protective layers, and the protective layers have high reflection performance and heat-insulating and flame-retardant performance and can resist ultraviolet irradiation, so that the tarpaulin has high waterproof and corrosion-resistant performance, the wear-resistant performance is also improved, the service life of the tarpaulin is prolonged, and the production process is simple.

Description

technical field [0001] The invention relates to the field of tarpaulin materials, in particular to a corrosion-resistant heat-insulating tarpaulin material and a production method thereof. Background technique [0002] Tarpaulin (or tarpaulin) is a waterproof material with high strength, good toughness and softness. It is often used as canvas (canvas), polyester with polyurethane coating or made into polyethylene plastic. Tarps usually have strong grommets at the corners or edges for easy rope tying, hanging or covering. Tarpaulins are widely used in daily life and have many functions. However, the existing tarpaulin materials are relatively single, often made of ordinary fibers and additives, which not only have poor stability, poor connection performance, but also reflective properties. Waterproof performance, heat insulation performance, fireproof performance and wear resistance performance are not guaranteed, the service life of the whole tarpaulin is low, the phenomeno...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): D06N3/00D06N3/06D01F8/14D01F8/06D01F8/02D01F8/18
CPCD01F8/02D01F8/06D01F8/14D01F8/18D06N3/0006D06N3/0015D06N3/0059D06N3/0061D06N3/0065D06N3/0088D06N3/06D06N2201/10D06N2209/065D06N2209/067D06N2209/128D06N2209/143D06N2209/1685D06N2211/125
Inventor 秦一庆崔国兴贾先亮迟尚柱刘德生
Owner 江苏泽昊新材料有限公司
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