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Shear stresses of colloidal dispersions at the glass transition in equilibrium and in flow

机译:胶态分散体在平衡态和流动态下在玻璃化转变时的剪切应力

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We consider a model dense colloidal dispersion at the glass transition, and investigate the connection between equilibrium stress fluctuations, seen in linear shear moduli, and the shear stresses under strong flow conditions far from equilibrium, viz., flow curves for finite shear rates. To this purpose, thermosensitive core-shell particles consisting of a polystyrene core and a cross-linked poly(N-isopropylacrylamide) shell were synthesized. Data over an extended range in shear rates and frequencies are compared to theoretical results from integrations through transients and mode coupling approaches. The connection between nonlinear rheology and glass transition is clarified. While the theoretical models semiquantitatively fit the data taken in fluid states and the predominant elastic response of glass, a yet unaccounted dissipative mechanism is identified in glassy states. (C) 2008 American Institute of Physics.
机译:我们考虑了在玻璃化转变时模型稠密的胶体分散,并研究了在线性剪切模量中看到的平衡应力波动与在远离平衡(即有限剪切速率的流动曲线)的强流动条件下的剪切应力之间的关系。为此,合成了由聚苯乙烯核和交联的聚(N-异丙基丙烯酰胺)壳组成的热敏核-壳颗粒。将剪切速率和频率的扩展范围内的数据与通过瞬态和模式耦合方法进行积分得到的理论结果进行比较。阐明了非线性流变学和玻璃化转变之间的联系。虽然理论模型半定量地拟合了流体状态和玻璃的主要弹性响应中获得的数据,但在玻璃态中发现了尚未解释的耗散机制。 (C)2008美国物理研究所。

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