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Rheological and Fusion Behaviors of PVC Micro- and Nano-composites Evaluated From Torque Rheometer Data

机译:用扭矩流变仪数据评估PVC微纳米复合材料的流变和融合行为

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摘要

The effects of calcium carbonate (CaCO3) particle size on the fusion and rheological behaviors of rigid polyvinyl chloride) (PVC) composites prepared in a Haake torque rheometer were investigated by means of torque data recorded during processing. Increasing the number of particles in the same blend volume by decreasing the particle size resulted in increasing fric-tional forces. This increase led in turn to increased fusion torque and decreased fusion time and temperature. The power-law-index values of the composites increased with decreasing particle size except for 25-nm CaCO3. The viscosities of all composites were found to decrease with shear rate; therefore, high pseudoplasticity was observed. At a particular rotor speed, viscosity of the composites decreased with decreasing particle size except for 25-nm CaCO3. The overall results showed that the particle size of CaCO3 altered the fusion characteristics and rheological behavior of PVC.
机译:通过在加工过程中记录的扭矩数据,研究了碳酸钙(CaCO3)粒度对在Haake扭矩流变仪中制备的硬质聚氯乙烯(PVC)复合材料的熔融和流变行为的影响。通过减小粒度来增加相同共混物体积中的颗粒数会导致摩擦力的增加。这种增加又导致熔化扭矩增加,熔化时间和温度降低。除25 nm CaCO3外,复合材料的幂律指数值随粒径的减小而增加。发现所有复合材料的粘度均随剪切速率而降低。因此,观察到高假塑性。在特定的转子速度下,除了25 nm的CaCO3外,复合材料的粘度随着粒径的减小而降低。总体结果表明,CaCO3的粒径改变了PVC的熔融特性和流变行为。

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