首页> 外文会议>PRICM 7;Pacific Rim International Conference on Advanced Materials and Processing >Effect of Interfacial Reaction on High Temperature Properties of Fe-Cr-Si Fiber Reinforced AC8A Aluminum Composites
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Effect of Interfacial Reaction on High Temperature Properties of Fe-Cr-Si Fiber Reinforced AC8A Aluminum Composites

机译:界面反应对Fe-Cr-Si纤维增强AC8A铝复合材料高温性能的影响

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摘要

Metallic fibers (Fe-Cr-Si) with an excellent high temperature strength are expected to be use as a reinforced material of the engine piston head. However, the high reactivity of Al with most metals has disturbed the use of metallic fibers in aluminum composites until now. In this study, the influence of the reaction products at the fiber/matrix interface on high temperature properties of the composites was investigated by different solution treatment conditions. It is found that hardness and strength increase with an increase the solution treatment temperature (Tst). Reaction products (Al-Fe intermetallic compounds) resulting from solution treatments were formed along the fiber/matrix interface at 773 K or higher. The composites without interfacial reaction products (Tst=763 K) showed excellent rotating-bending fatigue life at 573 K. The fatigue crack propagation in this composite occurred at the necking region of the metal fiber because no cracks were observed in the interfacial reaction products.
机译:预计具有优异的高温强度的金属纤维(Fe-Cr-Si)可用作发动机活塞头的增强材料。然而,到目前为止,Al与大多数金属的高反应性一直困扰着金属纤维在铝复合材料中的使用。在这项研究中,通过不同的固溶处理条件,研究了反应产物在纤维/基体界面处对复合材料高温性能的影响。已经发现,硬度和强度随着固溶处理温度(Tst)的增加而增加。固溶处理产生的反应产物(Al-Fe金属间化合物)沿着纤维/基质界面在773 K或更高温度下形成。没有界面反应产物(Tst = 763 K)的复合材料在573 K时表现出优异的旋转弯曲疲劳寿命。该复合材料的疲劳裂纹扩展发生在金属纤维的颈缩区域,因为在界面反应产物中未观察到裂纹。

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