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Study of structure and properties of polypropylene microporous membrane by hot stretching

机译:热拉伸聚丙烯微孔膜的结构与性能研究

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The polypropylene (PP) microporous membrane is prepared by only hot stretching of annealed PP film under different stretching rate and temperature. The structure and properties are compared with those by cold and hot stretching. The results show that apparent connecting bridges are observed on the surface of final microporous membrane only by hot stretching. With increasing stretching rate and decreasing stretching temperature, the pore size decreases and the air permeability becomes worse. The membrane only by hot stretching under 50 mm/min shows better lamellae separation, whereas under 10 mm/min the membrane gives lowest Gurley value. Compared with cold and hot stretching under the same stretching rate and whole stretching ratio, the membrane stretched only by hot stretching shows longer connecting bridges length, higher porosity and lower Gurley value. During only hot stretching, first the tie chains in the amorphous region are stretched. Then the combination of crystalline main lamellae and crystalline part formed during annealing is stretched and converted to connecting bridges. Through the control of stretching temperature and rate, PP microporous membrane with better permeability property can be obtained by only hot stretching, where room-temperature stretching is not needed. The obtained membrane can be used in Li-ion battery field as a separator, where the air permeability is an important technical parameter to characterize the Li-ion penetration ability through the separator.
机译:聚丙烯(PP)微孔膜仅通过在不同的拉伸速率和温度下对退火的PP膜进行热拉伸来制备。将其结构和性能与通过冷拉伸和热拉伸进行比较。结果表明,仅通过热拉伸在最终的微孔膜的表面上观察到明显的连接桥。随着拉伸速率的增加和拉伸温度的降低,孔径减小并且透气性变差。仅通过以50 mm / min的速度热拉伸的膜才显示出更好的薄片分离,而在10 mm / min的情况下,膜的Gurley值最低。与相同拉伸倍率和相同拉伸比的冷,热拉伸相比,仅通过热拉伸拉伸的膜具有更长的连接桥长度,更高的孔隙率和更低的Gurley值。在仅热拉伸期间,首先拉伸无定形区域中的连接链。然后,将晶体主薄片和退火过程中形成的晶体部分的组合拉伸并转化为连接桥。通过控制拉伸温度和速率,仅通过热拉伸就可以得到渗透性更好的PP微孔膜,不需要室温拉伸。所获得的膜可以用作锂离子电池领域的隔膜,其中透气度是表征锂离子穿过隔膜的渗透能力的重要技术参数。

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