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A Novel Non-Planar Transverse Stretching Process for Micro-Porous PTFE Membranes and Resulting Characteristics

机译:一种用于微多孔PTFE膜的新型非平面横向拉伸工艺及其特性

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摘要

Polytetrafluoroethylene (PTFE) micro-porous membranes were prepared from PTFE fine powder through extruding, rolling, and uniaxial longitudinally stretching. In contrast to conventional planar transverse stretching, a novel 3D mold design of non-planar transverse stretching process was employed in this study to produce micro-porous structure. The morphology, membrane thickness, mean pore size, and porosity of the PTFE membrane were investigated. The results show that the non-planar transverse stretched membranes exhibit more uniform average pore diameter with thinner membrane thickness. Morphological changes induced by planar and non-planar transverse stretching for pore characteristics were investigated. The stretching conditions, stretching temperature and rate, affect the stretched membrane. Increasing temperature facilitated the uniformity of pore size and uniformity of membrane thickness. Moreover, increase in stretching rate resulted in finer pore size and thinner membrane.
机译:通过挤出,轧制和单轴纵向拉伸由PTFE细粉制备聚四氟乙烯(PTFE)微多孔膜。 与传统的平面横向拉伸相比,本研究中使用了非平面横向拉伸过程的新型3D模具设计,以产生微孔结构。 研究了PTFE膜的形态,膜厚度,平均孔径和孔隙率。 结果表明,非平面横向拉伸膜具有更均匀的平均孔径,具有较薄的膜厚度。 研究了由平面和非平面横向拉伸进行孔隙特性诱导的形态学变化。 拉伸条件,拉伸温度和速率,影响拉伸膜。 增加温度促进了孔径的均匀性和膜厚度的均匀性。 此外,拉伸速率的增加导致更细的孔径和薄膜。

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