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Shear-induced changes of the potential energy landscape underlying n-butane liquids and glasses

机译:剪切引起正丁烷液体和玻璃的势能变化

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The effects of shear strain on n-butane liquids and glasses are examined with molecular simulations. The simulations focus on the nonlinear mechanical properties and the transport properties of these systems. These properties are analyzed in terms of the changes in the potential energy landscape with strain, which is quantified by the curvature of the energy minima and the height, position, and curvature of barriers between minima. Shear strain is shown to cause local minima to disappear and barrier heights to decrease to zero, which renders the system mechanically unstable and forces the system toward alternate local minima. These disappearances of energy minima and barriers lead to plastic deformation in mechanically stressed n-butane glasses, and enhanced diffusion and molecular alignment in flowing n-butane liquids. (C) 2000 American Institute of Physics. [S0021-9606(00)50506-6]. [References: 36]
机译:通过分子模拟研究了剪切应变对正丁烷液体和玻璃的影响。仿真着重于这些系统的非线性机械性能和传输性能。根据势能随应变的变化来分析这些属性,该变化通过能量最小值的曲率以及最小值之间的势垒的高度,位置和曲率来量化。已显示出剪切应变会导致局部最小值消失,并且势垒高度减小至零,这使系统在机械上不稳定,并迫使系统趋向于替代的局部最小值。能量极小值和势垒的这些消失导致在机械应力的正丁烷玻璃中发生塑性变形,并在流动的正丁烷液体中增强了扩散和分子排列。 (C)2000美国物理研究所。 [S0021-9606(00)50506-6]。 [参考:36]

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