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Intrinsic viscosities of non-spherical colloids by Brownian dynamics simulations

机译:布朗动力学模拟非球形胶体的固有粘度

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摘要

A numerical study is presented on the intrinsic viscosities of sheared dilute suspensions of nonspherical Brownian colloidal particles. The simulations confirm theoretical predictions on the intrinsic viscosities of highly oblate and highly prolate spheroids in the limits of weak and strong Brownian noise (i.e., for low and high Peclet numbers). Numerical data and fit functions are provided covering the entire shear-thinning regime, for spheroids ranging from highly oblate to highly prolate. The tumbling motion and intrinsic viscosities of a hemispherical cap and a helix are briefly discussed. Published under license by AIP Publishing.
机译:提出了一种数值研究,呈现出非球形褐色胶体颗粒的剪切稀悬浮液的内在粘度。 模拟确认了对弱褐色噪声的极限和强大的褐色噪声限制的高度扁平和高增长球状体的理论预测(即,用于低和高PECLET编号)。 提供了数值数据和配合功能,覆盖整个剪切稀疏状态,用于从高度扁平的高度增长的球体。 简要讨论了半球帽和螺旋的翻滚运动和内在粘度。 通过AIP发布在许可证下发布。

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