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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Batch foaming of poly(epsilon-caprolactone) using carbon dioxide: Impact of crystallization on cell nucleation as probed by ultrasonic measurements
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Batch foaming of poly(epsilon-caprolactone) using carbon dioxide: Impact of crystallization on cell nucleation as probed by ultrasonic measurements

机译:使用二氧化碳分批发泡聚(ε-己内酯):超声测量探测结晶对细胞成核的影响

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The effect of crystallization on the foaming of poly(epsilon-caprolactone), a semi-crystalline biodegradable polymer, was studied using batch processing and CO, as the physical blowing agent (PBA). Previous work on the same system suggested that the formation of high cell population densities of small open cells was crystalline fraction dependent. In this work, ultrasonic sensors were used to investigate the effect of crystallization on the cell nucleation mechanism through the monitoring of ultrasonic velocity, attenuation and specific volume characteristics. Analysis of the ultrasonic data allowed to determine the crystallization temperature and thus determined the effect of crystallization on the pressure at which phase separation occurred (degassing pressure). Clearly, the presence of crystals leads to a 5-10-fold increase in the degassing pressure with respect to the amorphous system. In addition, it was shown that the talc content did not significantly influence the degassing pressure for a full amorphous system. However, talc particles can drastically affect the degassing conditions through their role of precursors for crystal formation. Different mechanisms are proposed as possible explanations for the enhancement of cell nucleation in such semi-crystalline polymer systems. Crown Copyright (c) 2006 Published by Elsevier Ltd. All rights reserved.
机译:使用分批处理和使用CO作为物理发泡剂(PBA),研究了结晶对半结晶生物可降解聚合物聚ε-己内酯发泡的影响。在同一系统上的先前工作表明,小的开孔细胞的高细胞种群密度的形成是依赖晶体分数的。在这项工作中,使用超声波传感器通过监测超声波速度,衰减和比体积特性来研究结晶对细胞成核机制的影响。超声数据的分析可以确定结晶温度,从而确定结晶对发生相分离的压力(脱气压力)的影响。显然,晶体的存在导致脱气压力相对于非晶态系统增加了5-10倍。另外,已经表明,对于完全无定形体系,滑石含量没有显着影响脱气压力。但是,滑石颗粒通过其前体形成晶体的作用,可以极大地影响脱气条件。提出了不同的机制作为在这种半结晶聚合物体系中增强细胞成核作用的可能解释。 Crown版权所有(c)2006,由Elsevier Ltd.发行。保留所有权利。

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