形状记忆聚氨酯箔的热发泡。

IF 4.3 3区 化学 Q2 POLYMER SCIENCE Macromolecular Rapid Communications Pub Date : 2025-02-06 DOI:10.1002/marc.202401103
Anna-Lisa Poser, Thorsten Pretsch
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引用次数: 0

摘要

本文介绍了以聚(1,6-己二酸酯)二醇、4,4′-亚甲基二苯基二异氰酸酯、聚乙二醇和水为发泡剂合成的相分离聚酯聚氨酯尿素(PEUU)泡沫半成品FOIM。FOIM是FOIl和foaM的新词。PEUU通过一次合成得到,其硬/软段比为1.06,开孔含量为78%。差示扫描量热法发现,在45°C时存在熔融峰,在14°C时存在结晶信号,这两个信号都与软段的相变有关。玻璃化转变温度为1°C,通过动态力学分析确定为tan δ内的局部最大值。在编程过程中,泡沫在60°C下被严重压缩。一旦在23°C下卸载,就会得到半透明的箔,即FOIM。当再加热到60°C时,由于其明显的形状记忆特性,铝箔又切换回泡沫。有趣的是,根据浮力和传热测量,该结构在很大程度上没有受到剧烈变形的影响。制造和功能的便利性使该技术对低运输量和剧烈形状变化的应用具有吸引力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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FOIM: Thermal Foaming of Shape Memory Polyurethane Foil

This work introduces the semi-finished product FOIM, a neologism from FOIl and foaM, a phase segregated polyester urethane urea (PEUU) foam, which is synthesized from poly(1,6-hexylene adipate) diol, 4,4’-methylene diphenyl diisocyanate, polyethylene glycol and water as blowing agent. The PEUU is obtained by following a one-shot synthesis and is characterized by a hard/soft segment ratio of 1.06 and an open pore content of 78%. Differential scanning calorimetry reveals a melting peak at 45 °C and a crystallization signal at 14 °C, both of which are associated with the phase transitions of the soft segment. The glass transition temperature, which is determined as a local maximum within the tan δ using dynamic mechanical analysis, is 1 °C. During programming, the foam is heavily compressed at 60 °C. Once unloaded at 23 °C, a translucent foil, the FOIM, is obtained. When reheated to 60 °C, the foil switches back to the foam due to its pronounced shape memory properties. Intriguingly, the structure remains largely unaffected by the drastic deformation as indicated by buoyancy and heat transmission measurements. The ease of manufacture and functionality makes the technology attractive for applications, in which both low transport volumes and drastic shape changes are desired.

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来源期刊
Macromolecular Rapid Communications
Macromolecular Rapid Communications 工程技术-高分子科学
CiteScore
7.70
自引率
6.50%
发文量
477
审稿时长
1.4 months
期刊介绍: Macromolecular Rapid Communications publishes original research in polymer science, ranging from chemistry and physics of polymers to polymers in materials science and life sciences.
期刊最新文献
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