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Analysis of microporous membranes obtained from polypropylene films by stretching

机译:拉伸聚丙烯薄膜得到的微孔膜的分析

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摘要

Five different polypropylene resins were selected to develop microporous membranes through melt extrusion and stretching (cast film process). The effect of the polymer melt elongation properties on the row-nucleated lamellar crystallizationwas investigated. The arrangement and orientation of the crystalline and amorphous phases were examined byWAXD (wide angle X-ray diffraction) and FTIR (Fourier transform infrared) methods. The extrusion and cooling parameters were adjusted properly to obtain uniform precursor films with appropriate morphology. Annealing, cold and hot stretching were consequently employed to generate and enlarge the pores. It was found that molecular weight was the most important material factor that controlled the membrane structure. The role of annealing and stretching parameters was also investigated. The permeability to water vapor (under atmospheric condition) and nitrogen (under pressure) was measured. It was observed that the permeability increased with increasing pressure and went through a transition from Knudsen diffusion to Poiseuille flow.
机译:选择了五种不同的聚丙烯树脂,以通过熔融挤出和拉伸(浇铸膜工艺)制成微孔膜。研究了聚合物熔体伸长率特性对行形核层状结晶的影响。通过WAXD(广角X射线衍射)和FTIR(傅立叶变换红外)方法检查了结晶相和非晶相的排列和取向。适当调节挤出和冷却参数以获得具有适当形态的均匀前体膜。因此,采用退火,冷拉伸和热拉伸来产生和扩大孔。发现分子量是控制膜结构的最重要的材料因素。还研究了退火和拉伸参数的作用。测量了对水蒸气(在大气条件下)和氮气(在压力下)的渗透性。观察到渗透率随压力的增加而增加,并经历了从努森扩散到泊瓦伊流的过渡。

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