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首页> 外文期刊>The Journal of Chemical Physics >Shear thinning and shear dilatancy of liquid n-hexadecane via equilibrium and nonequilibrium molecular dynamics simulations: Temperature, pressure, and density effects
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Shear thinning and shear dilatancy of liquid n-hexadecane via equilibrium and nonequilibrium molecular dynamics simulations: Temperature, pressure, and density effects

机译:通过平衡和非平衡分子动力学模拟,液体正十六烷的剪切稀化和剪胀性:温度,压力和密度效应

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摘要

Equilibrium and nonequilibrium molecular dynamics (MD) simulations have been performed in both isochoric-isothermal (NVT) and isobaric-isothermal (NPT) ensemble systems. Under steady state shearing conditions, thermodynamic states and rheological properties of liquid n-hexadecane molecules have been studied. Between equilibrium and nonequilibrium states, it is important to understand how shear rates (gamma) affect the thermodynamic state variables of temperature, pressure, and density. At lower shear rates of gamma < 1x10(11) s(-1), the relationships between the thermodynamic variables at nonequilibrium states closely approximate those at equilibrium states, namely, the liquid is very near its Newtonian fluid regime. Conversely, at extreme shear rates of gamma > 1x10(11) s(-1), specific behavior of shear dilatancy is observed in the variations of nonequilibrium thermodynamic states. Significantly, by analyzing the effects of changes in temperature, pressure, and density on shear flow system, we report a variety of rheological properties including the shear thinning relationship between viscosity and shear rate, zero-shear-rate viscosity, rotational relaxation time, and critical shear rate. In addition, the flow activation energy and the pressure-viscosity coefficient determined through Arrhenius and Barus equations acceptably agree with the related experimental and MD simulation results. (c) 2008 American Institute of Physics.
机译:在等静压-等温(NVT)和等压-等温(NPT)集成系统中都进行了平衡和非平衡分子动力学(MD)模拟。在稳态剪切条件下,研究了液态正十六烷分子的热力学状态和流变性质。在平衡状态和非平衡状态之间,重要的是要了解剪切速率(γ)如何影响温度,压力和密度的热力学状态变量。在较低的gamma <1x10(11)s(-1)剪切速率下,非平衡状态下的热力学变量之间的关系非常接近平衡状态下的关系,即液体非常接近其牛顿流体状态。相反,在伽玛> 1x10(11)s(-1)的极限剪切速率下,在非平衡热力学状态的变化中观察到剪胀性的特定行为。重要的是,通过分析温度,压力和密度变化对剪切流动系统的影响,我们报告了各种流变特性,包括粘度与剪切速率之间的剪切稀化关系,零剪切速率粘度,旋转弛豫时间和临界剪切速率。此外,通过Arrhenius和Barus方程确定的流动活化能和压力-粘度系数与相关的实验和MD模拟结果可以接受。 (c)2008年美国物理研究所。

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