Shear Thickening in Concentrated Soft Sphere Colloidal Suspensions: A Shear Induced Phase Transition

J. Kaldasch, B. Senge, J. Laven
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引用次数: 2

Abstract

A model of shear thickening in dense suspensions of Brownian soft sphere colloidal particles is established. It suggests that shear thickening in soft sphere suspensions can be interpreted as a shear induced phase transition. Based on a Landau model of the coagulation transition of stabilized colloidal particles, taking the coupling between order parameter fluctuations and the local strain-field into account, the model suggests the occurrence of clusters of coagulated particles (subcritical bubbles) by applying a continuous shear perturbation. The critical shear stress of shear thickening in soft sphere suspensions is derived while reversible shear thickening and irreversible shear thickening have the same origin. The comparison of the theory with an experimental investigation of electrically stabilized colloidal suspensions confirms the presented approach.
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浓缩软球胶体悬浮液的剪切增稠:剪切诱导的相变
建立了布朗软球胶体颗粒致密悬浮液的剪切增稠模型。这表明软球悬浮液中的剪切增厚可以解释为剪切诱导的相变。该模型基于稳定胶体颗粒凝固转变的朗道模型,考虑了序参量波动与局部应变场之间的耦合,认为施加连续剪切扰动会导致颗粒团簇(亚临界气泡)的发生。在可逆剪切增厚与不可逆剪切增厚同源的情况下,导出了软球悬浮液中剪切增厚的临界剪应力。理论与实验研究的电稳定胶体悬浮液的比较证实了所提出的方法。
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