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Friction and wear behaviour of ceramic-hardened steel couples under reciprocating sliding motion

机译:往复运动下陶瓷硬化钢对的摩擦磨损性能

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摘要

The friction and wear behaviour of ZrO2-Y203, ZrO2-Y203-CeO2 and ZrO2-A1203 composite ceramics against hardened steel AISI-52100 were investigated using a pin on plate configuration under reciprocating motion. The reproducibility of the results was examined in this configuration. Wear characteristics were separated into system and material contributions. Under the conditions used, all the ceramic components exhibited rather low wear rates (less than 10-6mm3N-1m-1). The frictional behaviour of ceramic-metal couples depended on a metallic layer transferred from the steel plate to the ceramic pin. A relation was determined between surface hardness and friction of ceramic-metal pairs. It was shown that the affinity for the transfer of the metal towards ceramic surfaces depended on the physical properties of the materials. In the tribosystems investigated, the effect of the hardness of the ceramics on friction and wear behaviour is found to be more important than that of toughness of the ceramics.
机译:在往复运动下,使用销钉在板结构上研究了ZrO2-Y203,ZrO2-Y203-CeO2和ZrO2-A1203复合陶瓷对AISI-52100硬化钢的摩擦磨损性能。在此配置下检查了结果的可重复性。磨损特征分为系统贡献和材料贡献。在所使用的条件下,所有陶瓷组件都表现出相当低的磨损率(小于10-6mm3N-1m-1)。陶瓷金属偶的摩擦行为取决于从钢板转移到陶瓷销的金属层。确定了表面硬度与陶瓷-金属对的摩擦之间的关系。结果表明,金属向陶瓷表面转移的亲和力取决于材料的物理性质。在研究的摩擦系统中,发现陶瓷硬度对摩擦和磨损行为的影响比陶瓷的韧性更重要。

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