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Comparison of the Foamability of Linear and Long-Chain Branched Polypropylene-The Legend of Strain-Hardening as a Requirement for Good Foamability

机译:线性和长链支化聚丙烯的可发泡性的比较 - 应变硬化的传说作为良好发泡性的要求

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Polypropylene (PP) is an outstanding material for polymeric foams due to its favorable mechanical and chemical properties. However, its low melt strength and fast crystallization result in unfavorable foaming properties. Long-chain branching of PP is regarded as a game changer in foaming due to the introduction of strain hardening, which stabilizes the foam morphology. In this work, a thorough characterization with respect to rheology and crystallization characteristics of a linear PP, a PP/PE-block co-polymer, and a long-chain branched PP are conducted. Using these results, the processing window in foam-extrusion trials with CO2 and finally the foam properties are explained. Although only LCB-PP exhibits strain hardening, it neither provide the broadest foaming window nor the best foam quality. Therefore, multiwave experiments were conducted to study the gelation due to crystallization and its influence on foaming. Here, linear PP exhibited a gel-like behavior over a broad time frame, whereas the other two froze quickly. Thus, apart from strain hardening, the crystallization behavior/crystallization kinetics is of utmost importance for foaming in terms of a broad processing window, low-density, and good morphology. Therefore, the question arises, whether strain hardening is really essential for low density foams with a good cellular morphology.
机译:聚丙烯(PP)是聚合物泡沫的优异材料,由于其有利的机械和化学性质。然而,其低熔体强度和快速结晶导致不利的发泡性能。由于引入应变硬化,PP的长链分支被认为是发泡的游戏改变,这稳定了泡沫形态。在这项工作中,对线性PP,PP / PE嵌段共聚物和长链支化PP的流变学和结晶特性进行彻底表征。使用这些结果,解释了具有CO 2的泡沫挤出试验中的处理窗口,最后解释了泡沫性质。虽然只有LCB-PP表现出应变硬化,但既不提供最广泛的发泡窗,也不是最好的泡沫质量。因此,进行了多波实验以研究由于结晶及其对发泡的影响而研究的凝胶化。这里,线性PP在广泛的时间框架上表现出类似的凝胶样行为,而另外两个速溶于速度。因此,除了应变硬化外,结晶行为/结晶动力学对于在广泛的加工窗口,低密度和良好的形态方面最重要的是发泡。因此,问题出现,是否应变硬化对于具有良好细胞形态的低密度泡沫真正必不可少。

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