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Effect of Heat Treatment on the Microstructure and Properties of HVOF-Sprayed Co-Cr-W Coating

机译:热处理对HVOF喷涂Co-Cr-W涂层组织和性能的影响

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摘要

Co-Cr-W HVOF-sprayed protective coatings are used for their high oxidation and wear resistance. Apart from the oxidation resistance, the stability of their mechanical properties in relation to thermal loading is crucial with respect to the most common high-temperature application areas. This work is focused mainly on evaluation of the heat-induced changes in the phase composition and related mechanical properties. It was shown that the original powder, composed fully from face-centered cubic Co-based alloy, partly changes its phase composition during spraying to a hexagonal close-packed (hcp) structure. The annealing further increases the ratio of the hcp phase in the structure. The heat-induced phase changes are accompanied by an increase in the coatings' hardness and cohesion strength. The abrasive and adhesive wear behavior was evaluated. While the coatings' heat treatment had a positive effect on the coefficient of friction, the abrasive and adhesive wear resistance of annealed coating was lower compared to as-sprayed coating.
机译:采用Co-Cr-W HVOF喷涂的防护涂层具有很高的抗氧化性和耐磨性。除了抗氧化性,相对于最常见的高温应用领域,其机械性能相对于热负荷的稳定性至关重要。这项工作主要集中在评估热诱导相组成的变化和相关的机械性能。结果表明,原始粉末完全由面心立方钴基合金组成,在喷涂过程中会部分改变其相组成,形成六方密堆积(hcp)结构。退火进一步增加了结构中hcp相的比例。热引起的相变伴随着涂层硬度和内聚强度的增加。评价了磨料和粘合剂的磨损行为。尽管涂层的热处理对摩擦系数有积极影响,但与喷涂后的涂层相比,退火涂层的耐磨性和粘合剂的耐磨性更低。

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