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Pressure Induced Liquid-to-Liquid Transition in Zr-based Supercooled Melts and Pressure Quenched Glasses

机译:锆基过冷熔体和压力淬火玻璃中的压力诱导液-液转变

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摘要

Through high-energy x-ray diffraction and atomic pair density function analysis we find that Zr-based metallic alloy, heated to the supercooled liquid state under hydrostatic pressure and then quenched to room temperature, exhibits a distinct glassy structure. The PDF indicates that the Zr-Zr distances in this glass are significantly reduced compared to those quenched without pressure. Annealing at the glass transition temperature at ambient pressure reverses structural changes and the initial glassy state is recovered. This result suggests that pressure causes a liquid-to-liquid phase transition in this metallic alloy supercooled melt. Such a pressure induced transition is known for covalent liquids, but has not been observed for metallic liquids. The High Pressure Quenched glasses are stable in ambient conditions after decompression.
机译:通过高能X射线衍射和原子对密度函数分析,我们发现Zr基金属合金在静水压力下加热至过冷液态,然后淬火至室温,表现出独特的玻璃状结构。 PDF表明,与未加压淬火的玻璃相比,该玻璃中的Zr-Zr距离明显减小。在环境压力下于玻璃化转变温度下进行的退火可逆转结构变化,并恢复初始玻璃态。该结果表明压力在该金属合金过冷熔体中引起了液相到液相的转变。对于共价液体,这种由压力引起的转变是已知的,但对于金属液体却没有观察到。高压淬火玻璃减压后在环境条件下稳定。

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