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Phase Stability in Wear-Induced Supersaturated Al-Ti Solid Solution

机译:磨损诱导的超饱和Al-Ti固溶体的相位稳定性

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Al-Ti supersaturated solid solutions were introduced by wear testing and the rapid quenching of an Al/Al_3Ti composite (part of an Al/Al_3Ti functionally graded material) that was fabricated using the centrifugal method. The phase stability of the supersaturated solid solution was studied through systematic annealing of the supersaturated solid solution. It was found that the AI-Ti supersaturated solid solution decomposed into Al and Al_3Ti intermetallic compound phases during the heat treatment. The Al-Ti supersaturated solid solutions fabricated were, therefore, not an equilibrium phase, and thus decomposed into the equilibrium phases during heat treatment. It was also found that heat treatment leads to a significant hardness increase for the Al-Ti supersaturated solid solution. Finally, it was concluded that formation of the wear-induced supersaturated solid solution layer was a result of severe plastic deformation.
机译:通过磨损试验引入Al-Ti超饱和固溶体,并通过使用离心方法制造的Al / Al_3Ti复合物(Al / Al_3Ti功能梯质的一部分)的快速猝灭引入。通过对超饱和固溶体的系统退火研究过饱和固溶体的相位稳定性。发现在热处理期间将Ai-Ti过饱和固溶体分解成Al和Al_3Ti金属间化合物相。因此,制备的Al-Ti过饱和固溶体不是平衡相,因此在热处理期间分解成平衡相。还发现热处理导致Al-Ti过饱和固溶体的显着硬度增加。最后,得出结论,耐磨诱导的过饱和固溶层层的形成是严重塑性变形的结果。

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