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Effect of sintering temperature on the corrosion and wear behavior of protective SiO2-based sol-gel coatings

机译:烧结温度对SiO2保护性溶胶-凝胶涂层腐蚀和磨损行为的影响

摘要

Sol-gel hybrid organic-inorganic and inorganic SiO2-based protective coatings with and without added 3 μm glass particles were developed and tested for their corrosion and wear behavior of an stainless steel substrate (AISI316L). The corrosion resistance greatly increases by incorporating glass particles in the sols. The incorporation of particles in the coatings allows the synthesis of thicker crack-free coatings. On the other hand, the corrosion resistance increases for coatings with a higher organic content obtained at lower sintering temperature. These coatings are also highly stable in saline aqueous solutions. However, the wear resistance is badly affected by the hybrid character of the SiO2 matrix. The optimum coating process in terms of corrosion and wear resistance, appears to be a hybrid system with a dense SiO2 network achieved at intermediate sintering temperatures.
机译:开发了添加和不添加3μm玻璃颗粒的溶胶-凝胶杂化有机-无机和无机SiO2基保护涂层,并测试了它们对不锈钢基材(AISI316L)的腐蚀和磨损行为。通过将玻璃颗粒掺入溶胶中,可大大提高耐腐蚀性。在涂层中掺入颗粒可以合成较厚的无裂纹涂层。另一方面,对于在较低的烧结温度下获得的具有较高有机含量的涂层,其耐腐蚀性增加。这些涂层在盐水溶液中也高度稳定。然而,SiO 2基体的混合特性严重影响耐磨性。就腐蚀和耐磨性而言,最佳的涂层工艺似乎是在中等烧结温度下获得具有致密SiO2网络的混合体系。

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