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The Anti-compaction Behavior of Aramid Fiber Based Polyvinylidene Fluoride Composite Separation Membranes

机译:芳族纤维基聚偏二氟乙烯复合膜的抗压缩行为

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摘要

Poly(p-phenylene terephthalamide) (PPTA), as the raw polymer material of Aramid fiber-1414, has high modulus and high strength which is commonly used in the reinforced composites. However, the general blending often accompany the microphase incompatibility in polymer matrix. In this study, PPTA molecules were incorporated into poly(vinylidene fluoride) (PVDF) membrane matrix through in situ polycondensation of p-phenylene diamine (PPD) and terephthaloyl chloride (TPC) in PVDF solution and PPTA/PVDF molecular composite membranes were prepared via the subsequent nonsolvent induced phase separation (NIPS) process. The anti-compaction properties of resulted PPTA/PVDF molecular composite membranes were systematically investigated including the variations of bursting pressure and membrane thickness, porosity, pure water flux under different pressures. The results suggested that membrane comprehensive anticompaction properties were improved with the increasing of PPTA content in PVDF membrane matrix. Combining the variation trends of membrane anti-compaction properties with morphologies, the compaction-deformation evolution processes of two membrane pore types (sponge-like and finger-like pores) were proposed at the end.
机译:聚(对苯二甲酰氨酰胺)(PPTA),作为芳族纤维-1414的原料聚合物材料,具有高模量和高强度,其通常用于增强复合材料中。然而,一般混合通常伴随聚合物基质中的微杂交不相容性。在本研究中,PPTA分子掺入聚(偏二氟乙烯)(PVDF)膜基质中通过对苯基二胺(PPD)的原位缩聚,并通过PVDF溶液中的对苯甲酰氯(TPC),通过PPTA / PVDF分子复合膜通过随后的非溶剂诱导的相分离(NIPS)方法。系统地研究了所得PPTA / PVDF分子复合膜的抗压缩性质,包括在不同压力下爆破压力和膜厚度,孔隙率,纯净水通量的变化。结果表明,随着PVDF膜基质中PPTA含量的增加,改善了膜综合抗化性特性。将膜抗压缩性能与形态的变化趋势相结合,最后提出了两种膜孔隙类型(海绵状和指状孔)的压实变形演化过程。

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