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Effects of configurational changes on electrical resistivity during glass-liquid transition of two bulk metal-alloy glasses

机译:两种金属合金玻璃在玻璃-液体转变过程中结构变化对电阻率的影响

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Consequences of increase in structural fluctuations on heating Pd40Ni10Cu30P20 and Zr46.75Ti8.25Cu7.5Ni10Be27.5 through their glass to liquid transition range were investigated by measuring the electrical resistivity,., an electron scattering property. The temperature coefficient of resistivity (TCR = (1/rho) d rho/dT) of the liquid and glassy states is negative. The plots of their. against T in the T-g (glass to liquid transition) range show a gradual change in the slope similar to the change observed generally for the plots of the density, elastic modulus, and refractive index. As fluctuations in the melt structure involve fewer configurations on cooling,. increases rho In the energy landscape description, the melt's structure explores fewer minima with decrease in T, vibrational frequencies increase, and electron scattering and. increase rho Plots of (-d rho/dT) against T resemble the plot of the specific heat of other glasses and show a sub-T-g feature and a rapid rise at T near T-g. Analysis shows that the magnitude of negative TCR is dominated by change in the phonon characteristics, and configurational fluctuations make it more negative. The TCR of the liquid and glassy states seems qualitatively consistent with the variation in the structure factor in Ziman's model for pure liquid metals as extended by Nagel to metal alloys and used to explain the negative TCR of a two-component metal glass. (C) 2014 AIP Publishing LLC.
机译:通过测量电阻率,电子散射特性,研究了在加热Pd40Ni10Cu30P20和Zr46.75Ti8.25Cu7.5Ni10Be27.5时从玻璃到液体的转变范围内结构波动增加的后果。液态和玻璃态的电阻率温度系数(TCR =(1 / rho)d rho / dT)为负。他们的情节。在T-g(玻璃到液体的转变)范围内对T的变化相对于T而言,显示出斜率的逐渐变化,类似于对密度,弹性模量和折射率图通常观察到的变化。由于熔体结构的波动涉及较少的冷却配置。在能量能级描述中,随着T的减小,振动频率的增加以及电子的散射,熔体的结构探索的极小值更少。增加-(-d rho / dT)相对于T的图类似于其他玻璃的比热图,并显示出亚T-g特征,并在T附近接近T-g迅速上升。分析表明,负TCR的大小主要受声子特性变化的影响,而构型波动使其负值更大。液态和玻璃态的TCR在质量上似乎与Ziman模型中纯液体金属的结构因子的变化一致,后者被Nagel扩展到金属合金,并用来解释两组分金属玻璃的负TCR。 (C)2014 AIP Publishing LLC。

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