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The Dry Sliding Wear Properties of Nano-Sized TiCp/Al-Cu Composites at Elevated Temperatures

机译:纳米TiCp / Al-Cu复合材料在高温下的干滑磨损性能

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摘要

Nano-sized ceramic particle reinforced aluminum composites exhibit excellent room-temperature mechanical properties. However, there is limited research on the dry sliding wear behavior of those composites at elevated temperatures, which should be one of the major concerns on elevated temperature applications. Here the Al-Cu composites reinforced with nano-sized TiCp were fabricated. The dry sliding wear behaviors of the nano-sized TiCp/Al-Cu composites at various temperatures (140–220 °C) and loads (10–40 N) with different TiCp contents were studied, and the results showed that the nanocomposites exhibited superior wear resistance. For instance, the relative wear resistance of the 0.5 wt.% nano-sized TiCp/Al-Cu composite was 83.5% higher than that of the Al-Cu matrix alloy at 180 °C under 20 N, and was also 16.5% higher than that of the 5 wt.% micro-sized TiCp/Al-Cu composite, attributed to the pronounced Orowan strengthening effect of nanoparticles. The wear rates of the nanocomposites were always lower than those of the Al-Cu matrix alloy under the same test condition, which increased with the increase in temperature and load and with the decrease in TiCp content.
机译:纳米尺寸的陶瓷颗粒增强铝复合材料具有出色的室温机械性能。但是,对这些复合材料在高温下的干滑磨损行为的研究很少,这应该是高温应用中的主要问题之一。在这里,制备了纳米尺寸的TiCp增强的Al-Cu复合材料。研究了纳米TiCp / Al-Cu复合材料在不同温度(140–220°C)和载荷(10–40 N)下具有不同TiCp含量时的干滑磨损行为,结果表明纳米复合材料表现出优异的磨损性能。耐磨性。例如,0.5 wt。%的纳米尺寸TiCp / Al-Cu复合材料的相对耐磨性在180 N和20 N下比Al-Cu基合金的相对耐磨性高83.5%,也比18%的相对耐磨性高16.5%。 5%(重量)的TiCp / Al-Cu复合材料具有明显的纳米颗粒的Orowan增强作用。在相同的测试条件下,纳米复合材料的磨损率始终低于Al-Cu基合金,随着温度和载荷的增加以及TiCp含量的降低而增加。

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