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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Comprehensive investigation of the microstructure-property relationship of differently manufactured Co-Cr-C alloys at room and elevated temperature
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Comprehensive investigation of the microstructure-property relationship of differently manufactured Co-Cr-C alloys at room and elevated temperature

机译:综合调查在室内不同制造的CO-C合金的微观结构 - 性能关系和升高温度

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摘要

The purpose of this study was to investigate the influence of the microstructure on sliding wear and hardness of four different Co-Cr-C alloys at room and elevated temperature. Different microstructures were produced by applying three different processes. The hardness, hot hardness and wear loss at room temperature of these alloys correlate strongly with the carbide volume content. In sliding wear tests against an Al2O3 ball, abrasive wear occurs at room temperature. The size or geometric arrangement of the carbides or metal matrix plays a minor role at room temperature. At 600 degrees C the wear behaviour changes due to the softening matrix. In alloys with small free matrix path lengths, the highest wear rates occur due to micro-fatigue and micro-cracking. In hypoeutectic alloys with a high free matrix path length, the carbides lose their effectiveness due to the lack of support by the matrix. In these alloys, wear is dominated by the properties of the matrix. A hypereutectic casting alloy with large primary carbides shows the best wear results, as the carbides support themselves due to their size and retain their wear-reducing effect.
机译:本研究的目的是探讨微观结构对室内四种不同CO-C合金的滑动磨损和硬度的影响。通过应用三种不同的方法产生不同的微观结构。这些合金室温下的硬度,热硬度和磨损损失强烈地与碳化物体积含量强烈相关。在滑动磨损试验上,抗AL2O3球,在室温下发生研磨磨损。碳化物或金属基质的尺寸或几何布置在室温下起着小的作用。在600摄氏度下,磨损行为由于软化矩阵而变化。在具有小游离基质路径长度的合金中,由于微疲劳和微裂纹,最高的磨损率发生。在具有高自由基质路径长度的双重结晶合金中,由于基质缺乏支持,碳化物损失了它们的有效性。在这些合金中,磨损以基质的性质为主。具有大初级碳化物的过度凝胶铸造合金显示出最佳磨损结果,因为碳化物由于其尺寸而支持它们,并且保留其耐磨效果。

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