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Kinetics of the shear-induced isotropic-to-lamellar transition of an amphiphilic model system: A nonequilibrium molecular dynamics simulation study

机译:两性模型系统的剪切诱导的各向同性向层状转变的动力学:非平衡分子动力学模拟研究

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The shear-induced isotropic-to-lamellar phase transition in the amphiphilic systems in the vicinity of the quiescent order-to-disorder transition point is investigated by the large-scale parallel nonequilibrium molecular dynamics simulations of simple amphiphilic model systems. There is a shear-induced upward shift of the ordering temperature. The initial isotropic phase orders into a lamellar phase perpendicular to the shear vorticity. The phase diagram as a function of temperature and shear rate is established. The dependency of the ordering transition on interaction strength and shear rate is rationalized by the competition between shear rate and chain relaxation. The time evolution of morphology reveals that the shear-induced ordering proceeds via nucleation and growth, a signature of a first-order phase transition. At low shear rate, a single ordered domain grows after an incubation period. With increasing shear rate ordering speeds up, but eventually develops in a lamellar system with disordered shear bands. The time dependence of the order parameter follows that of the mean-squared end-to-end distance, shear viscosity, and bulk pressure, and follows an Avrami scheme with an Avrami exponent between 2 and 4.
机译:通过简单的两亲模型系统的大规模平行非平衡分子动力学模拟,研究了在静态有序到无序转变点附近的两亲系统中,剪切诱导的各向同性至层状相变。剪切引起的订购温度上升。初始各向同性相变成垂直于剪切涡度的层状相。建立了随温度和剪切速率变化的相图。有序转变对相互作用强度和剪切速率的依赖性通过剪切速率和链松弛之间的竞争而合理化。形态的时间演变揭示了剪切诱导的有序化是通过成核和生长而进行的,成核和生长是一阶相变的标志。在低剪切速率下,潜伏期后会生长一个有序域。随着剪切速率的增加,排列速度加快,但最终在具有无序剪切带的层状系统中发展。阶次参数的时间依赖性遵循端到端均方距离,剪切粘度和体积压力的时间依赖性,并遵循具有2至4的Avrami指数的Avrami方案。

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