高温下二十面体I-Al-Pd-Mn准晶的小尺度塑性研究

Changjun Cheng, Yuan Xiao, M. Haché, Zhiying Liu, A. Sologubenko, J. Wheeler, Y. Zou
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引用次数: 0

摘要

准晶材料具有独特的有序而非周期性的结构。尽管它们具有特殊的结构和许多有用的特性,但在低于熔点75%的温度下,它们通常非常脆,这使得它们难以加工,通常不适合实际应用。在这里,我们研究了一个典型的二十面体准晶体(i-Al-Pd-Mn)在25-500°C的温度范围内的力学行为,这是以前从未探索过的。观察到一些有趣的现象,包括微柱收缩、相变、晶粒细化和变形行为的热诱导转变(从脆性断裂到锯齿状塑性流动,然后到均匀流动)。此外,我们讨论了该温度下准晶力学行为的多种潜在机制,探索了表面蒸发/扩散、扩散增强的塑性、位错活动和晶界旋转/滑动。我们的研究弥补了准晶体的室温和高温塑性之间的差距,为在广泛的尺寸和温度范围内研究复杂的金属间相提供了新的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probing the Small-Scale Plasticity of an Icosahedral Quasicrystal I-Al-Pd-Mn at Elevated Temperatures
Quasicrystalline materials possess a unique structure that is ordered yet not periodic. Despite their special configuration and many useful properties, they are typically very brittle at temperatures below ~75% of their melting points, rendering them difficult to process and often unsuitable for practical implementation. Here, we study the mechanical behavior of a typical icosahedral quasicrystal (i-Al-Pd-Mn) using micro-thermomechanical techniques over the temperature range of 25-500 °C, which has never been explored before. A few interesting phenomena have been observed, including micro-pillar shrinkage, phase transformations, grain refinement, and thermally induced transitions in deformation behavior (from brittle fracture to serrated plastic flows, and then to homogeneous flows). Furthermore, we discuss the multiple underlying mechanisms on the mechanical behavior of the quasicrystal in this temperature regime, exploring surface evaporation/diffusion, diffusion-enhanced plasticity, dislocation activities, and grain boundary rotation/sliding. Our study bridges the gap between room-temperature and high-temperature plasticity in quasicrystals, demonstrating a new opportunity to study complex intermetallic phases in broad size and temperature regimes.
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