首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Tuning the water permeability of ultra-high molecular weight polyethylene microporous membrane by molecular self-assembly and flow field
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Tuning the water permeability of ultra-high molecular weight polyethylene microporous membrane by molecular self-assembly and flow field

机译:通过分子自组装和流场调节超高分子量聚乙烯微孔膜的透水性

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摘要

We have systematically studied phase separation behavior in ultra-high molecular weight polyethylene/ liquid paraffin/dibenzylidene sorbitol (UHMWPE/LP/DBS) ternary blends. The aim of this paper is to investigate the combined effect of DBS and flow field on the structure and water permeability of UHMWPE microporous membrane. The experimental results show that DBS molecules self-assemble into fibrils firstly during cooling and the blends exhibit a gel-like state before liquide-liquid phase transition. The relaxation time of DBS fibrils is quite long, which shows a great sensitivity to flow field as compared to UHMWPE chain. UHMWPE microporous membrane was prepared via thermally induced phase separation method. DBS fibrils, as in situ formed nucleating agent, decrease the pore size and water permeability and enhance mechanical properties of membrane remarkably. Shear flow can result in alignment of DBS fibrils, which facilitates the nucleation of UHMWPE and induces the lamellae aligned perpendicular to flow direction. This feature was used to design thermal and mechanical histories and obtained oriented UHMWPE microporous membrane. In comparison to the isotropic UHMWPE microporous membrane, the oriented UHMWPE microporous membrane provides low tortuous paths across the membrane and produces high water permeability.
机译:我们已经系统地研究了超高分子量聚乙烯/液体石蜡/二亚苄基山梨醇(UHMWPE / LP / DBS)三元共混物的相分离行为。本文旨在研究DBS和流场对UHMWPE微孔膜结构和透水性的综合影响。实验结果表明,DBS分子首先在冷却过程中自组装为原纤维,而共混物在液-液相转变之前呈凝胶状。 DBS原纤维的弛豫时间相当长,与UHMWPE链相比,它对流场显示出极大的敏感性。通过热诱导相分离法制备了UHMWPE微孔膜。 DBS原纤维作为原位形成的成核剂,可减小孔径和透水性,并显着提高膜的机械性能。剪切流可导致DBS原纤维的排列,这有助于UHMWPE的成核并诱导垂直于流动方向排列的薄片。该特征用于设计热和机械历史,并获得取向的UHMWPE微孔膜。与各向同性的UHMWPE微孔膜相比,定向的UHMWPE微孔膜在整个膜上提供了低曲折的路径,并产生了高透水性。

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