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Bubble growth in the microcellular foaming of CO_2/polypropylene solutions

机译:CO_2 /聚丙烯溶液微孔发泡中的气泡生长

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摘要

This article is concerned with bubble growth dynamics in the CO _2/polypropylene microcellular foaming process. The effect of the melt strength on the bubble growth was thoroughly investigated in theory for the first time. The theoretical results indicate that enhanced melt strength effectively restrains the bubble growth and stabilizes the bubble oscillation. Higher melt strength leads to lower bubble growth rate, shorter growth time, and smaller ultimate bubble size. Compared to the melt strength, the viscoelasticity and the gas pressure have less effect on the microcellular foaming process. The bubble growth varies a little as the viscoelasticity is varied. The bubble oscillation and growth rate are enhanced with increasing gas pressure, which leads to the augmentation of the bubble size.
机译:本文关注的是CO _2 /聚丙烯微孔发泡过程中的气泡生长动力学。在理论上首次彻底研究了熔体强度对气泡生长的影响。理论结果表明,增强的熔体强度有效地抑制了气泡的生长并稳定了气泡的振荡。较高的熔体强度导致较低的气泡生长速率,较短的生长时间和较小的最终气泡尺寸。与熔体强度相比,粘弹性和气压对微孔发泡过程的影响较小。随着粘弹性的变化,气泡的增长也有所变化。随着气压的增加,气泡的振荡和生长速率增加,这导致气泡尺寸的增加。

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