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首页> 外文期刊>Journal of Applied Polymer Science >Effects of the diluent mixing ratio and conditions of the thermally induced phase-separation process on the pore size of microporous polyethylene membranes
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Effects of the diluent mixing ratio and conditions of the thermally induced phase-separation process on the pore size of microporous polyethylene membranes

机译:稀释剂混合比和热诱导相分离过程的条件对微孔聚乙烯膜孔径的影响

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摘要

Microporous polyethylene (PE) membranes having a controlled pore size were produced via the thermally induced phase separation process by manipulation of the phase boundary of the PE/diluent blend and process conditions. The phase boundary of the PE blend, caused by upper critical solution temperature type phase behavior, was controlled by the use of a diluent mixture, that is, an isoparaffin/soybean oil mixture. The phase-separation temperature of the PE/soybean oil blend was always higher than that of the PE/isoparaffin blend. In PE /(isoparaffin /soybean oil) ternary blends, the phase-separation temperature of the ternary blend rapidly increased with increasing soybean oil content in the diluent mixture. Furthermore, the phase-separation temperatures of ternary blends were always higher than that of the PF/soybean oil blend, regardless of the blend compositions, when the diluent mixture contained more than 50 wt % soybean oil. The observed phase behavior of the ternary blends was analyzed with interaction energy densities calculated with the Flory-Huggins theory and ternary stability conditions. The growth of droplets caused by both coalescence and the Oswald ripening process was observed after the onset of phase separation. As the blends became less stable, the droplet growth rate increased, and larger equilibrium droplets were formed. Microporous membranes with the desired pore structure could be prepared by control of the phase boundary and the variation of processing conditions such as the quenching depth, annealing time, and cooling rate. (C) 2008 Wiley Periodicals, Inc.
机译:通过控制PE /稀释剂共混物的相界和工艺条件,通过热诱导的相分离工艺生产出孔径可控的微孔聚乙烯(PE)膜。由上临界溶液温度类型的相行为引起的PE共混物的相界通过使用稀释剂混合物即异链烷烃/大豆油混合物来控制。 PE /大豆油混合物的相分离温度总是高于PE /异链烷烃混合物的相分离温度。在PE /(异链烷烃/大豆油)三元混合物中,三元混合物的相分离温度随着稀释剂混合物中大豆油含量的增加而迅速增加。此外,当稀释剂混合物包含超过50重量%的大豆油时,三元混合物的相分离温度总是高于PF /大豆油混合物的相分离温度。利用Flory-Huggins理论和三元稳定性条件计算的相互作用能密度分析了三元混合物的观察到的相行为。在相分离开始后,观察到由聚结和奥斯瓦尔德熟化过程引起的液滴生长。随着共混物变得不太稳定,液滴的生长速率增加,并且形成了更大的平衡液滴。具有所需孔结构的微孔膜可以通过控制相边界和改变加工条件(例如淬火深度,退火时间和冷却速率)来制备。 (C)2008 Wiley期刊公司

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