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首页> 外文期刊>Journal of Materials Science >WEAR OF CERAMIC PARTICLE-REINFORCED METAL-MATRIX COMPOSITES .1. WEAR MECHANISMS
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WEAR OF CERAMIC PARTICLE-REINFORCED METAL-MATRIX COMPOSITES .1. WEAR MECHANISMS

机译:陶瓷颗粒增强的金属基复合材料的磨损1。磨损机理

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摘要

Pin-on-disc dry sliding tests were carried out to study the wear mechanisms in a range of metal-matrix composites. 6061-aluminium alloys reinforced with 10 and 20 vol % SiC and Al2O3 particles were used as pin materials, and a mild steel disc was used as a counterface. A transition from mild wear to severe wear was found for the present composites; the wear rate increased by a factor of 10(2). The effects of the ceramic particles on the transition load and wear with varying normal pressure were thoroughly investigated. Three wear mechanisms were identified: abrasion in the running-in period, oxidation during steady wear at low load levels, and adhesion at high loads. A higher particle volume fraction raised the transition load but increased the wear rate in the abrasion and adhesion regimes. Increase of particle size was more effective than increase of volume fraction to prolong the transition from mild wear to adhesive wear. The reasons for different wear mechanisms were determined by analyses of the worn surfaces and wear debris. [References: 16]
机译:进行了盘上圆盘干式滑动测试,以研究一系列金属基复合材料的磨损机理。用10和20 vol%的SiC和Al2O3颗粒增强的6061铝合金用作销钉材料,而软钢圆盘用作对面。对于本发明的复合材料,发现了从轻度磨损到严重磨损的转变。磨损率增加了10(2)倍。彻底研究了陶瓷颗粒对变化的法向压力下的过渡载荷和磨损的影响。确定了三种磨损机理:磨合期的磨损,低负荷水平的稳定磨损期间的氧化以及高负荷下的粘附。较高的颗粒体积分数增加了过渡负荷,但增加了磨损和粘附方式下的磨损率。增加颗粒尺寸比增加体积分数更有效,以延长从轻度磨损到胶粘剂磨损的过渡。通过分析磨损表面和磨损碎屑来确定不同磨损机理的原因。 [参考:16]

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