Waterproof material suitable for high-temperature and high-humidity environment
A waterproof material, high temperature and high humidity technology, applied in the direction of building insulation materials, building components, layered products, etc., can solve the problems of poor aging resistance, short service life, low tensile strength and elongation, and achieve good resistance to seawater Corrosion performance, good heat resistance, good composite effect
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Embodiment 1
[0028] A waterproof material suitable for high-temperature and high-humidity environments, which includes, from the inside to the outside, a tire base, a heat insulation layer, a high-temperature-resistant asphalt layer and a polyester film, and the tire base is graphene composite ultrafine glass fiber cotton.
[0029] The preparation method of described graphene composite superfine glass fiber cotton, comprises the following steps:
[0030] A. Evenly atomize and spray the binder solution on the surface of ultra-fine glass fiber; and evenly disperse it on the forming net, and dry it to make ultra-fine glass fiber cotton;
[0031] B. Adsorb the superfine glass fiber cotton on the PET film;
[0032] C. After the magnetic graphene oxide nanocomposite is dispersed at high speed, it is suspended in deionized water;
[0033] D, immerse the PET film as a whole in the deionized water in step C, and take it out in 6s to obtain a magnetic graphene oxide-ultrafine glass fiber cotton-PET...
Embodiment 2
[0042] A waterproof material suitable for high-temperature and high-humidity environments, which includes, from the inside to the outside, a tire base, a heat insulation layer, a high-temperature-resistant asphalt layer and a polyester film, and the tire base is graphene composite ultrafine glass fiber cotton.
[0043] The preparation method of described graphene composite superfine glass fiber cotton, comprises the following steps:
[0044] A. Evenly atomize and spray the binder solution on the surface of ultra-fine glass fiber; and evenly disperse it on the forming net, and dry it to make ultra-fine glass fiber cotton;
[0045] B. Adsorb the superfine glass fiber cotton on the PET film;
[0046] C. After the magnetic graphene oxide nanocomposite is dispersed at high speed, it is suspended in deionized water;
[0047] D, immerse the PET film as a whole in the deionized water in step C, take it out in 8s, and obtain the composite structure of magnetic graphene oxide-ultrafine...
Embodiment 3
[0056] A waterproof material suitable for high-temperature and high-humidity environments, which includes, from the inside to the outside, a tire base, a heat insulation layer, a high-temperature-resistant asphalt layer and a polyester film, and the tire base is graphene composite ultrafine glass fiber cotton.
[0057] The preparation method of described graphene composite superfine glass fiber cotton, comprises the following steps:
[0058] A. Evenly atomize and spray the binder solution on the surface of ultra-fine glass fiber; and evenly disperse it on the forming net, and dry it to make ultra-fine glass fiber cotton;
[0059] B. Adsorb the superfine glass fiber cotton on the PET film;
[0060] C. After the magnetic graphene oxide nanocomposite is dispersed at high speed, it is suspended in deionized water;
[0061] D, immerse the PET film as a whole in the deionized water in step C, and take it out for 5s to obtain a magnetic graphene oxide-ultrafine glass fiber cotton-PE...
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