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Rheology of Highly Filled Natural CaCO3 Composites.I.Effects of Solid Loading and Particle Size Distribution on Capillary Rheometry

机译:高填充天然CaCO3复合材料的流变学.I。固体载量和粒度分布对毛细管流变学的影响

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The rheology of poly(di-methyl siloxane)suspensions containing various loadings of natural CaCO3 particles,of several particle size distributions,was studied using capillary rheometry.Highly loaded suspensions were investigated,emphasizing the unique behavior of high filler loaded compositions.Mild shear thinning was observed for most suspensions,whereas shear thickening was observed for suspensions containing nearly maximal possible solid loadings.The dominancy of particle size distribution was demonstrated by studying the relative suspensions viscosity as function of shear rate.It was further illustrated by the influence of the filler specific surface area on the flow properties.A seemingly slight changes in the particles-specific surface area caused significant changes in the viscosity of maximal solid loaded unimodal suspensions.Fair agreement with the Chong and Krieger and Dougherty models was found for unimodal suspensions,while the combined Farris-Chong model showed an improved fit for the bimodal suspensions.Evidence for wall slip was demonstrated,using scanning electron microscopy and energy dispersive spectrometry,as a clear difference in the extrudate outer and bulk compositions;although no influence on the flow data was observed.
机译:使用毛细管流变仪研究了含有各种负载量,粒径分布不同的天然CaCO3颗粒的聚(二甲基硅氧烷)悬浮液的流变学。研究了高负载悬浮液,强调了高填料负载组合物的独特性能。轻度剪切稀化在大多数悬浮液中都观察到了这种现象,而在含有几乎最大可能固体负荷的悬浮液中观察到了剪切增稠。通过研究相对悬浮液的粘度与剪切速率的关系,证明了粒度分布的优势。比表面积对流动特性的影响。颗粒比表面积的细微变化导致最大固体负载单峰悬浮液的粘度发生显着变化。单峰悬浮液与Chong和Krieger和Dougherty模型具有较好的一致性,而Farris-Chong组合模型显示出一种改进使用扫描电子显微镜和能量分散光谱法证明了壁滑的证据,表明挤出物的外部和本体组成存在明显差异;尽管未观察到对流动数据的影响。

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