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MICROSTRUCTURE-TOUGHNESS-WEAR RELATIONSHIP OF TETRAGONAL ZIRCONIA CERAMICS

机译:四角形锆石陶瓷的微结构-韧性-磨损关系

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The goal of the present work was to investigate the influence of microstructural variables (grain size, overall yttria content and yttria distribution) and toughness on the tribological behavior of yttria-stabilised tetragonal zirconia (Y-TZP) ceramics. Unlubricated fretting tests were performed on Y-TZP ceramics against commercial hardmetal (WC-Co) ball under ambient conditions of temperature and humidity. The ceramics were processed from commercial yttria-coated and co-precipitated powder as well as newly formulated powder mixtures with varying overall Yttria content and yttria distribution! Microstructural investigation of the worn surfaces was performed and wear mechanisms were studied. Based on measured tribological data, relationships among the friction coefficient, wear, toughness and microstructural variables were elucidated. Within the investigated fretting regime, phase transformation (tetragonal to monoclinic zirconia) induced microcracking and spalling was found to play a major role in the wear of high toughness TZP ceramics. The significant outcome of this research is that a trade-off between the fracture toughness and wear resistance is achieved in the newly processed Y-TZPs.
机译:本工作的目的是研究微观结构变量(晶粒尺寸,整体氧化钇含量和氧化钇分布)和韧性对氧化钇稳定的四方氧化锆(Y-TZP)陶瓷的摩擦学性能的影响。在温度和湿度的环境条件下,对Y-TZP陶瓷针对商用硬金属(WC-Co)球进行了无润滑的微动测试。陶瓷是用商业氧化钇涂层和共沉淀粉末以及新的粉末混合物制成的,这些混合物具有不同的整体氧化钇含量和氧化钇分布!进行了磨损表面的微观结构研究,并研究了磨损机理。根据测得的摩擦学数据,阐明了摩擦系数,磨损,韧性和微观结构变量之间的关系。在研究的微动范围内,发现相变(四方氧化锆到单斜晶氧化锆)引起的微裂纹和剥落在高韧性TZP陶瓷的磨损中起主要作用。这项研究的重要成果是在新加工的Y-TZP中实现了断裂韧性与耐磨性之间的权衡。

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