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Stick and Slip Behaviour of Confined Oligomer Melts under Shear. A Molecular-Dynamics Study.

机译:受限制的低聚物熔体在剪切作用下的粘滑特性。分子动力学研究。

摘要

The flow behaviour of melts of short chains, confined in molecularly thin Couette flow geometries, is studied with molecular-dynamics simulations. The effect of wall attraction and confinement on the density and velocity profiles is analysed. In these highly inhomogeneous films, a strong correlation between the density and velocity profile is found. Sticking of the interfacial layer on the wall and slip on the wall and inside the film is manifested by changes in the velocity profile. The location of the slip is determined by the strength of the wall attraction.
机译:通过分子动力学模拟研究了局限于分子薄的库埃特流动几何形状的短链熔体的流动行为。分析了壁吸引和约束对密度和速度分布的影响。在这些高度不均匀的薄膜中,发现密度和速度分布之间有很强的相关性。界面轮廓在壁上的粘附以及在壁上和薄膜内部的滑动通过速度分布的变化来证明。滑移的位置取决于墙面吸引力的强度。

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