首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Phase Transformation and Its Effect on Dry Sliding Wear of Electro- Pressure Sintered Cobalt and Cobalt-Base Composites
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Phase Transformation and Its Effect on Dry Sliding Wear of Electro- Pressure Sintered Cobalt and Cobalt-Base Composites

机译:电压力烧结钴和钴基复合材料的相变及其对干滑动磨损的影响

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摘要

Room-temperature dry sliding wear behavior of hot-pressure sintered monolithic Co, Co-20 wt.% CuSn and Co-20 wt.% WC composites were investigated. Wear tests of the materials were carried out using a pin-on-disk wear tester at various loads of 10N-100N under a constant sliding speed condition of 0.38m/s against glass (83% SiO_2) beads. Sliding distances were varied with a range of 100m-600m. A scanning electron microscopy was used to examine worn surfaces, cross sections, and wear debris. X-ray diffraction (XRD) was utilized to identify phases of the specimen and wear debris. All specimens exhibited low friction coefficients ranging from 0.12 to 0.4. The sintered Co exhibited distinctive wear that was characterized by shallow dug canals on worn surface, a very thin detaching surface layer, and fine debris. Thermal transformation of the Co specimen from ε (hcp) phase to α (fcc) phase occurred during the wear of the Co, which was inferred from XRD analysis of the wear debris. The transformation was suggested to cause the thin detaching surface layer and the fine wear debris of the sintered Co. The wear of the Co-CuSn composite proceeded by shear deformation of the CuSn particles, while WC particles of the Co-WC composite sustained most of the applied load, which resulted in the low wear rate with fine wear debris of the Co-WC composite.
机译:研究了热压烧结整体式Co,Co-20 wt。%CuSn和Co-20 wt。%WC复合材料的室温干滑动磨损行为。使用销盘式磨损测试仪在0.38m / s的恒定滑动速度条件下,对玻璃(83%SiO_2)珠的各种载荷下,在10N-100N的载荷下进行了材料的磨损测试。滑行距离在100m-600m范围内变化。扫描电子显微镜用于检查磨损的表面,横截面和磨损碎屑。 X射线衍射(XRD)用于识别样品和磨损碎片的相。所有样品均表现出0.12至0.4的低摩擦系数。烧结的钴表现出独特的磨损,其特征在于磨损表面上的浅挖槽,非常薄的分离表面层和细碎屑。 Co样品在磨损过程中发生了从ε(hcp)相到α(fcc)相的热转变,这是通过XRD分析磨损碎片得出的。提示该相变会导致烧结的Co产生较薄的分离表层和细小的磨屑。Co-CuSn复合材料的磨损通过CuSn颗粒的剪切变形而继续进行,而Co-WC复合材料的WC颗粒则大部分保持了磨损。施加的载荷,导致Co-WC复合材料的磨损率低,并产生细小的磨损碎片。

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