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首页> 外文期刊>Journal of Applied Polymer Science >Morphologies of blends of isotactic polypropylene and ethylene copolymer by rapid expansion of supercritical solution and isobaric crystallization from supercritical solution
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Morphologies of blends of isotactic polypropylene and ethylene copolymer by rapid expansion of supercritical solution and isobaric crystallization from supercritical solution

机译:超临界溶液的快速膨胀和超临界溶液的等压结晶使等规聚丙烯和乙烯共聚物的共混物的形态

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Isotactic polypropylene (iPP) and ethylene-butene (EB) copolymers were dissolved in supercritical propane and precipitated by rapid expansion of supercritical solution (RESS) and isobaric crystallization from SS (ICSS). The cloud-point pressures of the ternary solutions were found to increase as the immiscibility of PP and EB copolymer increased (i.e., as the number of ethyl branches in the EB copolymers decreased). The RESS process resulted in microfibers and a trace of microparticles, and the EB copolymer domains in the blends decreased in size as the ethyl branch content in the EB copolymers increased. The thermal stability of the copolymer domains was improved by synthesizing thermoplastic vulcanizate (TPV) from PP and ethylene-propylene-diene terpolymer in a supercritical propane solution followed by RESS. The ICSS process produced microcellular polymeric foamlike materials, but the two polymers were precipitated independently by thermally induced phase separation. (C) 2000 John Wiley & Sons, Inc. [References: 28]
机译:将全同立构聚丙烯(iPP)和乙烯-丁烯(EB)共聚物溶解在超临界丙烷中,然后通过超临界溶液(RESS)的快速膨胀和SS(ICSS)的等压结晶而沉淀。发现三元溶液的浊点压力随着PP和EB共聚物的不溶混性的增加而增加(即,随着EB共聚物中乙基支链数的减少)。 RESS过程产生了微纤维和痕量的微粒,随着EB共聚物中乙基支链含量的增加,共混物中的EB共聚物结构域尺寸减小。通过在超临界丙烷溶液中合成PP和乙烯-丙烯-二烯三元共聚物的热塑性硫化橡胶(TPV),然后再进行RESS,可以提高共聚物域的热稳定性。 ICSS工艺产生了微孔聚合物泡沫状材料,但是两种聚合物通过热诱导相分离而独立地沉淀。 (C)2000 John Wiley&Sons,Inc. [参考:28]

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