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首页> 外文期刊>Polymer Degradation and Stability >In-process assessment of clay dispersion in PLA during melt compounding: Effects of screw speed and filler content
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In-process assessment of clay dispersion in PLA during melt compounding: Effects of screw speed and filler content

机译:熔融配合过程中PLA粘土分散体的过程评估:螺杆速度和填料含量的影响

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摘要

Shear viscosity, clay particle size and volume fraction are measured in-situ during the extrusion of PLA-clay nanocomposites. These in-process measurements are particularly adequate to assess the dispersion of fillers in thermo-mechanically sensitive systems, as the additional degradation associated with sample preparation for off-line characterization is readily avoided. Overall, results point towards the impact of PLA degradation on the clay dispersion mechanism. A better dispersion is reported for composites compounded with more clay. Clay-enhanced PLA degradation reduces the viscosity of the polymer matrix. Thus, melt intercalation is facilitated which favors clay swelling and subsequent exfoliation. Increasing the screw speed does not produce the larger hydrodynamic stresses necessary for improving clay dispersion. Viscous heating is more important at larger screw speeds. This thermally activates the diffusion of clay platelets in the more degraded PLA matrix, and enhances clay dispersion at early stages of the process. However, progressive clay re-agglomeration occurs along the extruder which results in larger volume fractions of bigger clay particles, eventually leading to PNC with larger shear viscosity as the screw speed is increased.
机译:在挤出PLA-粘土纳米复合材料期间,在原位测量剪切粘度,粘土粒径和体积分数。这些过程中的测量特别适用于评估填料在热机械敏感系统中的分散体,因为随着与偏心表征的样品制剂相关的额外降解被容易避免。总体而言,结果指出了PLA劣化对粘土分散机制的影响。报告了用更多粘土复合的复合材料的更好的分散体。粘土增强的PLA劣化降低了聚合物基质的粘度。因此,促进了熔融嵌入,其粘土溶胀和随后的去角质。增加螺杆速度不会产生改善粘土分散的较大的流体动力学应力。粘性加热在较大的螺杆速度下更为重要。这热激活粘土血小板在更劣化的PLA基质中的扩散,并在该方法的早期阶段增强粘土分散体。然而,沿挤出机发生渐进式粘土重聚,导致较大的粘土颗粒的体积分数,最终导致PNC具有较大的剪切粘度,因为螺杆速度增加。

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