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Plasma sprayed YSZ coatings deposited at different deposition temperatures, part 2: Tribological performance

机译:沉积在不同沉积温度下的等离子体喷涂YSZ涂层,第2部分:摩擦学性能

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摘要

In the first part, we reported that the comprehensive desirable properties (high hardness, toughness, cohesive strength and compressive residual stress, etc.) for wear-resistance coatings could be achieved by adjusting the deposition temperatures. In this part, we studied the role of deposition temperature on the tribological performance of YSZ coatings, and the friction mechanisms are analyzed in detail. Results show that changing the deposition temperature enables the coefficient of friction to be reduced to 0.39. Particularly remarkable is the huge boost in wear-resistance of the YSZ coating deposited at 900 degrees C under high load dry sliding, from 1.05 x 10(-3) mm(3).N-1 m(-1) to 1.64 x 10(-7) mm(3).N-1 m(-1). The excellent tribological performance results from the effective inhibition of generation of cracks and formation of amorphous film, which acts as a shield to protect YSZ coating from further wear. Our work presents a novel concept that utilizes wear debris as raw materials to form a shield with the aid of friction, thereby improving the tribological performance of thermal-sprayed ceramic coatings, which may lead to moving components with much higher security, reliability, and efficiency.
机译:在第一部分中,我们报道了全面期望的性质(高硬度,韧性,内聚强度和压缩残余应力等)进行耐磨性涂层可以通过调节沉积温度来实现。在这一部分,我们研究了沉积温度对YSZ涂层的摩擦性能的作用,摩擦机制进行了详细分析。结果表明,改变沉积温度使摩擦系数降低到0.39。特别显着的是在YSZ的耐磨性的巨大提升涂沉积在高负荷下干燥900摄氏度的滑动,从1.05×10(-3)毫米(3).N-1米(-1),以1.64×10 (-7)毫米(3).N-1 M( - 1)。优异的摩擦学性能结果从有效抑制裂纹的产生和形成的无定形膜的,它充当从进一步磨损的屏蔽,以保护YSZ涂层。我们的工作提出了利用磨屑为原料,以形成具有摩擦的辅助下的屏蔽,从而提高热喷涂陶瓷涂层的摩擦性能,这可能导致具有高得多的安全性,可靠性和效率的移动部件的新的概念。

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