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Influence of heat-setting temperature on the properties of a stretched polypropylene microporous membrane

机译:热定型温度对拉伸聚丙烯微孔膜性能的影响

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摘要

The influence of heat-setting temperature on the stress-strain curves, differential scanning calorimetry (DSC) curves and properties of a stretched polypropylene microporous membrane was studied. It was found that with an increase of heat-setting temperature, a plastic plateau region in the stress-strain curves and a melting endotherm plateau in the DSC curves became apparent. The permeability and porosity firstly increased with the temperature to 145 °C and then decreased. The pore structure arrangement showed similar changing trend. On the one hand, higher heat-setting temperature could decrease the shrinkage of the microporous membrane. On the other hand, the crystallization of some chains around separated lamellae during heat-setting was unfavorable to the properties of the microporous membrane. The occurrence of crystallization during heat-setting explained the origin of the plastic plateau. For the fabrication of microporous membranes based on the melt-stretching mechanism with good dimensional stability, heat-setting is necessary, but too high a heat-setting temperature can destroy the permeability.
机译:研究了热定型温度对拉伸聚丙烯微孔膜应力-应变曲线,差示扫描量热法(DSC)曲线和性能的影响。发现随着热定型温度的升高,在应力-应变曲线中的塑性平稳区和在DSC曲线中的熔化的吸热平稳区变得明显。渗透率和孔隙率首先随温度升高至145°C,然后下降。孔结构排列呈现相似的变化趋势。一方面,较高的热定型温度可以减少微孔膜的收缩。另一方面,热定形过程中分离的薄片周围一些链的结晶不利于微孔膜的性能。热定形过程中结晶的发生解释了塑料平稳期的起源。对于基于具有良好尺寸稳定性的熔体拉伸机理的微孔膜的制造,热定型是必要的,但是太高的热定型温度会破坏渗透性。

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