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Nanocomposite Protective Coatings Fabricated by Electrostatic Spray Method

机译:纳米复合保护涂层通过静电喷涂法制造

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摘要

Nowadays, powder coating can be used for many application, especially for protection against corrosive environments. Powder coating is usually done with using an electrostatic device and spraying gun. With using this method, a thin film layer is created on the surface which can play decorative or protective role. In this paper, the effect of some factors such as size of powder, charging, voltage, air flow, gun distance, charge-to-mass ratio, feed rate, coating functionality, glass transition temperature (T (g)), viscosity, catalyst, temperature and curing time on the coating properties and their influence on the coating were mentioned. In recent years, nano composite polymers have been considered severely. Coating properties are improved by adding nanoparticles such as clay, SiO2, TiO2 and Al2O3 to the polymer composition. These coatings are used for reducing the gas permeability, thermal stability, optical clarity and increasing the mechanical and corrosion properties of coatings also these coatings have high mechanical properties that can be pointed to its high abrasion resistance. In this paper, the corrosion properties and the effect of adding nanoparticles on the corrosion resistance properties of powder coatings have been investigated, also the mechanical properties of powder coatings were reviwed.
机译:如今,粉末涂料可用于许多应用,特别是用于防止腐蚀性环境。通常使用静电装置和喷枪进行粉末涂料。使用这种方法,在表面上产生薄膜层,可以起到装饰或保护作用的表面上。在本文中,诸如粉末,充电,电压,空气流量,枪距离,电荷质量比,进给率,涂布功能,玻璃化转变温度(T(g)),粘度,粘度提及催化剂,温度和固化时间及其对涂层对涂层的影响。近年来,纳米复合聚合物已被认为是严重的。通过将纳米颗粒如粘土,SiO 2,TiO 2和Al 2 O 3加入聚合物组合物来改善涂布性能。这些涂层用于降低透气性,热稳定性,光学透明度和增加涂层的机械和腐蚀性能,这些涂层也具有高机械性能,可以指向其高耐磨性。本文研究了腐蚀性和加入纳米颗粒对粉末涂料耐腐蚀性性能的腐蚀性能,还对粉末涂料的机械性能进行了复制。

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