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Effect of Particle Specific Surface Area on the Rheology of Non-Brownian Silica Suspensions

机译:颗粒特异性表面积对非褐色二氧化硅悬浮液流变的影响

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摘要

Industrial formulations very often involve particles with a broad range of surface characteristics and size distributions. Particle surface asperities (roughness) and porosity increase particle specific surface area and significantly alter suspension rheology, which can be detrimental to the quality of the end product. We examine the rheological properties of two types of non-Brownian, commercial precipitated silicas, with varying specific surface area, namely PS52 and PS226, suspended in a non-aqueous solvent, glycerol, and compare them against those of glass sphere suspensions (GS2) with a similar size distribution. A non-monotonic effect of the specific surface area (S) on suspension rheology is observed, whereby PS52 particles in glycerol are found to exhibit strong shear thinning response, whereas such response is suppressed for glass sphere and PS226 particle suspensions. This behaviour is attributed to the competing mechanisms of particle–particle and particle–solvent interactions. In particular, increasing the specific surface area beyond a certain value results in the repulsive interparticle hydration forces (solvation forces) induced by glycerol overcoming particle frictional contacts and suppressing shear thinning; this is evidenced by the response of the highest specific surface area particles PS226. The study demonstrates the potential of using particle specific surface area as a means to tune the rheology of non-Brownian silica particle suspensions.
机译:工业配方通常涉及具有宽范围的表面特性和尺寸分布的颗粒。颗粒表面粗糙度(粗糙度)和孔隙率增加颗粒特异性表面积,并且显着改变悬浮流变学,这可能对最终产品的质量有害。我们研究两种类型的非褐色,商业沉淀二氧化硅的流变性质,具有不同的比表面积,即PS52和PS226,悬浮在非水溶剂,甘油中,并将它们与玻璃球体悬浮液(GS2)的比较。具有类似的尺寸分布。观察到比表面积对悬浮流变学的非单调效应,从而发现甘油中的PS52颗粒表现出强烈的剪切稀释响应,而这种反应被抑制用于玻璃球和PS226颗粒悬浮液。这种行为归因于颗粒颗粒和颗粒溶剂相互作用的竞争机制。特别地,增加了超过一定值的比表面积导致由甘油克服颗粒摩擦触点和抑制剪切变薄诱导的排斥颗粒水合力(溶剂化力);这是通过最高比表面积粒子PS226的响应来证明。该研究证明了使用颗粒特异性表面积作为调节非褐色二氧化硅颗粒悬浮液的流变学的手段的潜力。

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