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首页> 外文期刊>Journal of Tribology >Volume Fraction Dependent Wear Behavior of Titanium-Reinforced Aluminum Matrix Composites Manufactured by Melt Infiltration Casting
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Volume Fraction Dependent Wear Behavior of Titanium-Reinforced Aluminum Matrix Composites Manufactured by Melt Infiltration Casting

机译:由熔融渗透铸造制造的钛增强铝基基复合材料的体积分数依赖性行为

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摘要

This study aims to investigate the effect of volume fraction of commercially pure titanium (CP-Ti) on microstructural, mechanical, and tribological features of A356 aluminum matrix composites. Vacuum-assisted melt infiltration casting was performed to produce composites with 50%, 65%, 75%, and 80% CP-Ti contents. CP-Ti sawdusts were assembled under mechanical pressure in order to attain porous one-piece CP-Ti preforms which were infiltrated by A356 melt at 730 degrees C under 10(-5) Pa vacuum atmosphere. TiAl3 layer was formed at the interface between A356 and CP-Ti phases. Owing to increased diffusion time through decreased diffusion path length, both thickness and hardness of TiAl3 phase were increased with increasing CP-Ti ratio, whereas the best wear resistance was obtained at 65% CP-Ti ratio. The main reason for decrease in wear resistance of 75% and 80% CP-Ti reinforced composites was fragmentation of TiAl3 layer during wear process due to its excessively increased brittleness. Strongly bonded TiAl3 phase at the interface provided better wear resistance, while weakly bonded ones caused to multiply wear rate.
机译:本研究旨在探讨商业纯钛(CP-TI)的体积分数对A356铝基基复合材料的微观结构,机械和摩擦学特征的影响。进行真空辅助熔融渗透铸件,以生产50%,65%,75%和80%CP-Ti含量的复合材料。在机械压力下组装CP-TI锯末,以获得多孔的单件CP-TI预制件,其在10(-5)PA真空气氛下通过A356熔体渗透被A356熔体渗透。在A356和CP-TI相之间的界面形成TiA13层。由于通过降低的扩散路径长度的扩散时间增加,随着CP-Ti比的增加而增加TiAl3相的厚度和硬度,而最佳耐磨性以65%的Cp-Ti比率得到增加。耐磨性降低75%和80%CP-Ti增强复合材料的主要原因是由于其过度增加的脆性而在磨损过程中TiAl3层的碎片化。在界面处强粘合的TiAl3相提供更好的耐磨性,而弱粘合的粘接率较多。

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