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首页> 外文期刊>The Journal of Supercritical Fluids >Foaming of linear isotactic polypropylene based on its non-isothermal crystallization behaviors under compressed CO2
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Foaming of linear isotactic polypropylene based on its non-isothermal crystallization behaviors under compressed CO2

机译:线性等规聚丙烯在压缩CO2下的非等温结晶行为使其起泡

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The non-isothermal crystallization behaviors of isotactic polypropylene (iPP) under ambient N2 and compressed CO2 (5-50 bar) at cooling rates of 0.2-5.0 ℃/min were carefully studied using high-pressure differential scanning calorimeter. The presence of compressed CO2 had strong plasticization effect on the iPP matrix and retarded the formation of critical size nuclei, which effectively postponed the crystallization peak to lower temperature region. On the basis of these findings, a new foaming strategy was utilized to fabricate iPP foams using the ordinary unmodified linear iPP with supercritical CO2 as the foaming agent. The foaming temperature range of this strategy was determined to be as wide as 40 ℃ and the upper and lower temperature limits were 155 and 105℃, which were determined by the melt strength and crystallization temperature of the iPP specimen under supercritical CO2, respectively. Due to the acute depression of CO2 solubility in the iPP matrix during the foaming process, the iPP foams with the bi-modal cell structure were fabricated.
机译:使用高压差示量热仪,仔细研究了等规聚丙烯(iPP)在环境氮气和压缩二氧化碳(5-50 bar),冷却速度为0.2-5.0℃/ min下的非等温结晶行为。压缩CO2的存在对iPP基体具有很强的增塑作用,并延迟了临界尺寸核的形成,从而有效地将结晶峰推迟到了较低的温度区域。基于这些发现,使用一种新的发泡策略来制造iPP泡沫,该工艺使用具有超临界CO2作为发泡剂的普通未改性线性iPP。该方法的发泡温度范围确定为40℃,上限和下限分别为155和105℃,这分别取决于iPP样品在超临界CO2下的熔体强度和结晶温度。由于在发泡过程中二氧化碳在iPP基质中的溶解度急剧下降,因此制成了具有双峰泡孔结构的iPP泡沫。

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