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High-Temperature Tribo-Oxidative Wear of a Cu-Based Metal-Matrix Composite Dry Sliding Against Heat-Treated Steel

机译:高温摩擦磨损Cu基金属 - 基质复合滑动对热处理钢的干湿滑动

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摘要

The tribo-oxidative wear of a Cu-based metal-matrix composite, dry sliding against a steel counterface, was investigated at 400 degrees C by means of pin-on-disc sliding tests. The applied pressure was 0.5 and 1 MPa, and the sliding velocity was 1.57 and 7 m/s. Special emphasis was given to the determination of the characteristics of the friction layers, whose constituents were identified and quantified by means of SEM and XRD measurements, and using the Rietveld analysis of the XRD patterns. The pin friction layers were found to be mainly made by compacted CuO/Cu2O oxides and by Fe oxides (mainly Fe3O4) transferred from the disc surface. The disc friction layers were made by CuO transferred from the pin surface and Fe3O4-rich regions, formed by direct asperity oxidation, due to the quite high (600 degrees C or more) flash temperatures achieved during sliding. This information was used to explain the experimental dependency of the coefficient of friction and the wear rate with the adopted tribological parameters.
机译:通过引脚盘滑动试验在400℃下研究了Cu基金属 - 基质复合材料的摩擦磨损,抵靠钢配合物。施加的压力为0.5和1MPa,滑动速度为1.57和7m / s。特别强调确定摩擦层的特性,其成分通过SEM和XRD测量来鉴定和定量,并使用XRD图案的RIETVELD分析。发现销摩擦层主要由压实的CuO / Cu 2 O氧化物和通过从盘表面转移的Fe氧化物(主要Fe3O4)制成。由于在滑动期间实现的相当高(600℃或更多)闪光温度,通过从销表面和富含Fe3O4的区域转移的CuO通过从销表面和富含Fe3O4的区域进行的CuO制备。该信息用于解释摩擦系数和磨损率与采用的摩擦学参数的实验依赖性。

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