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High damping property of microcellular polymer prepared by friendly environmental approach

机译:环保方法制备的微孔聚合物的高阻尼性能

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摘要

Foaming of polyurethane(PU)films using supercritical CO_2 as a blowing agent,a "green" and high-efficient approach,has been studied.Microcellular foam material was prepared by saturating the polymer with CO_2 and its morphology was characterized by scanning election microscopy(SEM).The influence of processing parameters,such as pressure,temperature and soaking time,on the foam morphology was investigated.It was found that the size and distribution of the micro-cell could be controlled conveniently by changing the processing conditions.The results of dynamic mechanical temperature analysis(DMTA)showed that the damping property of the foamed materials was greatly improved and had a maximum value,tan delta = 3.88 at 63 Hz due to the properties of the storage and loss moduli compared with the original PU.Reduction of the mass density led to a decline in the mechanical properties of the foamed materials.
机译:以超临界CO_2为发泡剂,对聚氨酯(PU)薄膜进行发泡研究,是一种“绿色”的高效方法。以CO_2饱和聚合物制备微孔泡沫材料,并通过扫描电子显微镜对其形貌进行表征。 SEM)。研究了压力,温度和保温时间等工艺参数对泡沫形态的影响,发现通过改变工艺条件可以方便地控制微孔的大小和分布。动态力学温度分析(DMTA)结果表明,与原始PU相比,由于具有储能和损耗模量的特性,泡沫材料的阻尼性能得到了极大的改善,并且在63 Hz时具有最大值tanδ= 3.88。质量密度的降低导致发泡材料的机械性能下降。

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