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首页> 外文期刊>British Ceramic Transactions >Viscosity of concentrated clay suspensions: effect of solids volume fraction, shear stress, and deflocculant content
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Viscosity of concentrated clay suspensions: effect of solids volume fraction, shear stress, and deflocculant content

机译:浓缩粘土悬浮液的粘度:固体体积分数,剪切应力和抗絮凝剂含量的影响

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摘要

Using the same clay, 28 concentrated clay suspensions were prepared with varied solids volume fractions and deflocculant contents. T he apparent viscosity of each suspension was determined at a range of shear stresses to produce flow curves. A functional relationship was derived based on the K rieger equation, describing the combined effect of solids volume fraction, deflocculant content, and shear stress on suspension viscosity when suspension behaviour is shear thinning. Intrinsic viscosity, a K rieger equation parameter, may be considered to be independent of deflocculant content. In contrast, intrinsic viscosity decreases significantly as shear stress rises, tending asymptotically to a constant value at high shear. Maximum solids volume fraction, the other K rieger equation parameter, rises as shear stress and suspension deflocculant content increase.
机译:使用相同的粘土,制备了28种浓缩的粘土悬浮液,它们具有不同的固体体积分数和抗絮凝剂含量。在剪切应力范围内确定每种悬浮液的表观粘度以产生流动曲线。基于K rieger方程推导了一个函数关系,描述了当悬浮液行为是剪切稀化时,固体体积分数,抗絮凝剂含量和剪切应力对悬浮液粘度的综合影响。特性粘度,K rieger方程参数,可以认为与絮凝剂含量无关。相反,特性粘度随切应力的增加而显着降低,在高切应力下渐近趋于恒定。最大的固体体积分数,另一个K rieger方程参数,随着剪切应力和悬浮絮凝剂含量的增加而增加。

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