首页> 外文期刊>Journal of Materials Engineering and Performance >Linear Reciprocating Wear of Yttria-Stabilized Zirconia-Based Composite Coatings Developed by Thermal Spray
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Linear Reciprocating Wear of Yttria-Stabilized Zirconia-Based Composite Coatings Developed by Thermal Spray

机译:热喷涂开发的氧化钇稳定氧化锆基复合涂层的线性往复磨损

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Ceramic matrix composites are the preferred material for high-temperature application due to their low density, improved strength and toughness, and high-temperature capabilities. In the present study, we report the kinetics and mechanism of linear reciprocating wear of yttria-stabilized zirconia (YSZ)-based composite coatings developed by thermal spray technique. Composite coatings with different volume fractions of CoNiCrAlY and YSZ phases were subjected to linear reciprocating wear under an applied normal load of 10 N against a WC counter-body. The kinetics of wear was investigated by measuring the wear depth over time of coated components against WC surface. Adhesive wear in the 100% CoNiCrAlY coating was responsible for increased friction in the coating which changed to a three-body abrasion in the case of 100% YSZ coating. The composition coatings had a significant effect on the wear mechanism with the ceramic coatings were fractured under reciprocating load. Microcrack propagation and fracturing of ceramic splats were the dominant modes of wear in the ceramic coatings. The 100% YSZ coating showed significant wear than 100% CoNiCrAlY and 50% YSZ + 50% CoNiCrAlY coatings. The mode of wear changed with the presence of a metallic phase in the 50% YSZ + 50% CoNiCrAlY coating. The mode of wear was further studied by the detailed microstructural observation of worn track and correlating it with the wear kinetics and coefficient of friction.
机译:陶瓷基质复合材料是用于高温施加的优选材料,由于它们的低密度,改善的强度和韧性,以及高温能力。在本研究中,我们报告了通过热喷涂技术开发的氧化钇稳定的氧化锆(YSZ)基于复合涂层的线性往复磨损的动力学和机理。在施加的正常载荷10 n的施加正常载荷下对WC反体进行线性往复磨损,对具有不同体积分数的复合涂层进行线性往复磨损。通过测量涂覆组分的涂覆组分对抗WC表面的时间随着时间的推移来研究磨损动力学。 100%环形涂层中的粘合剂磨损负责在100%YSZ涂层的情况下改变为三体磨损的涂层中的摩擦增加。组合物涂层对伴随碳酸涂层的磨损机理具有显着影响,往复式负荷裂缝。微裂纹繁殖和陶瓷Splats的压裂是陶瓷涂料中的主要磨损模式。 100%YSZ涂层显示出显着磨损比100%同色谱和50%YSZ + 50%的同色涂层。磨损方式随着50%YSZ + 50%的环状涂层中的金属相的存在而改变。通过磨损轨道的详细微观结构观察和将其与磨损动力学和摩擦系数相关的磨损方式进一步研究。

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