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Study of Corrosion Behavior of Conventional and Nanostructured WC-Ni High Velocity Oxy Fuel (HVOF) Sprayed Coatings

机译:常规和纳米结构的WC-Ni高速氧气燃料(HVOF)喷涂涂层的腐蚀行为研究

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The current study is focused on WC-Ni cermet coatings, materials that are extensively used in applications requiring wear resistance. In this work, WC-10%Ni powder was thermally sprayed onto mild steel using High Velocity Oxy Fuel (HVOF) spray technique. The nanostructured specimen was produced from sprayed samples by heat-treating at 1100℃ in a vacuum chamber. Their structures were studied by using X-ray diffraction (XRD) and scanning electron microscopy (SEM). Polarization and electrochemical impedance spectroscopy (EIS) tests were performed on both types of coated samples in 3.5% NaCl solution. The amorphous phase in WC-10%Ni coating was transformed to crystalline phases by heat treatment at high temperatures. Heat treatment of these coatings at high temperature also resulted in partially dissolution of WC particles and formation of new crystalline phases. Generation of these phases produced the nanostructured coating with better mechanical properties. Comparative electro chemical test results showed that, the heat treatment could improve corrosion resistance of the nanostructured WC-10%Ni coating than the as sprayed coatings.
机译:当前的研究集中在WC-Ni金属陶瓷涂层上,这种材料广泛用于需要耐磨性的应用中。在这项工作中,使用高速氧气燃料(HVOF)喷涂技术将WC-10%Ni粉末热喷涂到低碳钢上。纳米结构样品是通过在真空室中于1100℃下进行热处理,由喷涂样品制成的。通过使用X射线衍射(XRD)和扫描电子显微镜(SEM)研究了它们的结构。在3.5%NaCl溶液中对两种类型的涂层样品都进行了极化和电化学阻抗谱(EIS)测试。通过高温热处理,WC-10%Ni涂层中的非晶相转变为晶相。这些涂层在高温下的热处理还导致WC颗粒部分溶解并形成新的结晶相。这些相的产生产生具有更好机械性能的纳米结构涂层。比较的电化学测试结果表明,与喷涂涂层相比,热处理可以改善纳米结构的WC-10%Ni涂层的耐腐蚀性。

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