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首页> 外文期刊>Journal of Thermal Spray Technology >Microstructures and Tribological Properties of Fe-Based Amorphous Metallic Coatings Deposited via Supersonic Plasma Spraying
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Microstructures and Tribological Properties of Fe-Based Amorphous Metallic Coatings Deposited via Supersonic Plasma Spraying

机译:超声等离子体喷涂沉积Fe基非晶金属涂层的微观结构和摩擦学性质

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摘要

The effects of the Ar flow rate and spraying power of a supersonic plasma spraying process on the microstructures and amorphous phase contents of Fe48Cr15Mo14C15B6Y2 amorphous coatings were systematically investigated. The tribological properties of the coatings were evaluated in pin-on-disk mode using a sliding tribometer. The results show that the amorphous phase content and microhardness initially increase with the Ar flow rate and then gradually decrease. However, the amorphous phase content and microhardness increase with the power. In particular, the amorphous phase content of the coating reaches 96.78% with a spraying power of 62 kW and a 110 L min(-1) Ar flow rate. Tribological testing demonstrates that the coatings exhibit similar steady-state coefficients of friction (0.75-0.82) with a total test time of 20 min and an applied load of 20 N. However, the wear rates vary with the spraying parameters. In particular, the relative wear rate of the coating can be enhanced up to sixfold under optimal spraying conditions, resulting in excellent wear resistance. Detailed analysis of the coating wear surfaces indicates that the dominant wear mechanisms are abrasive and oxidative wear. Moreover, delamination may occur during the wear process.
机译:系统研究了超声血浆喷涂工艺的AR流速和喷涂功率的影响。系统地研究了Fe48Cr15MO14C15B6Y2非晶涂料的微结构和非晶相含量。使用滑动摩特计评估涂层的摩擦学特性。结果表明,无定形相含量和微硬度最初随着AR流速增加,然后逐渐减少。然而,无定形相含量和微硬度随着功率而增加。特别地,涂层的无定形相含量达到96.78%,喷射功率为62 kW,110μlmin(-1)ar流速。摩擦学检测表明,涂层表现出类似的稳态摩擦系数(0.75-0.82),总测试时间为20分钟,施加载荷为20 n。然而,磨损率随喷射参数而变化。特别地,在最佳喷涂条件下可以提高涂层的相对磨损速率,导致优异的耐磨性。涂层磨损表面的详细分析表明主导磨损机制是磨料和氧化磨损。此外,在磨损过程中可能发生分层。

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