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Strain Rate Induced Crystallization in Bulk Metallic Glass-Forming Liquid

机译:大块金属玻璃形成液中应变速率诱导的结晶

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摘要

We report on the solidification of Au49Ag5.5Pd2.3Cu26.9Si16.3 bulk metallic glass under various strain rates. Using a copper mold casting technique with a low strain rate during solidification, this alloy is capable of forming glassy rods of at least 5 mm in diameter. Surprisingly, when the liquid alloy is splat cooled at much higher cooling rates and large strain rates, the solidified alloy is no longer fully amorphous. Our finding suggests that the large strain rate during splat cooling induces crystallization. The pronounced difference in crystallization behavior cannot be explained by the previously observed strain rate effect on viscosity alone. A strain rate induced phase separation process is suggested as one of the explanations for this crystallization behavior. The strain-rate-dependent critical cooling rate must be considered in order to assess the intrinsic glass forming ability of metallic liquid.
机译:我们报告了在不同应变速率下Au49Ag5.5Pd2.3Cu26.9Si16.3大块金属玻璃的凝固过程。使用凝固过程中应变率低的铜铸模技术,该合金能够形成直径至少为5 mm的玻璃状棒。出人意料的是,当液态合金以高得多的冷却速率和大应变速率进行板喷冷却时,凝固的合金不再是完全非晶态的。我们的发现表明,在splat冷却过程中,大应变速率会导致结晶。结晶行为的显着差异不能由先前观察到的应变速率对粘度的影响来解释。建议采用应变速率诱导的相分离过程作为这种结晶行为的解释之一。为了评估金属液体的固有玻璃形成能力,必须考虑应变速率相关的临界冷却速率。

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