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Effect of Thermal Spray Processing Techniques on the Microstructure and Properties of Ni-Based Amorphous Coatings

机译:热喷涂技术对Ni基非晶涂层微观结构和性能的影响

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Metallic amorphous materials have been widely developed thanks to the outstanding properties including high chemical stability, mechanical strength, and magnetic properties. However with the exception of a few compositions, the limiting factor is the critical cooling rate for the formation of the amorphous phase. For many applications, it is only the contact surface properties that are important, thus the use of coating techniques such as thermal sprayings has several attractive features. In this paper, we present the microstructure of Ni-based amorphous coatings prepared b laser cladding and vacuum plasma spraying. The utilization of plasma spraying to deposit atomized powder enabled the formation of fully amorphous coating, laser cladding resulted in mostly crystallized structures. Glass forming ability and wear properties of the coatings were discussed as function of the coating microstructure.
机译:由于具有高化学稳定性,机械强度和磁性,金属非晶材料已被广泛发展。 然而,除了少数组合物外,限制因素是形成非晶相的临界冷却速率。 对于许多应用,它只是具有重要的接触表面特性,因此使用诸如热喷涂的涂层技术具有几个有吸引力的特征。 本文介绍了镍基非晶涂层的微观结构,制备了B激光熔覆和真空等离子体喷涂。 使用等离子体喷涂以沉积雾化粉末的利用使得形成完全无定形涂层,激光包层主要是结晶的结构。 涂布涂层的玻璃成型能力和磨损性能作为涂层微观结构的功能。

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