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Exploring the Effect of Poly(propylene carbonate)Polyol in a Biobased Epoxy Interpenetrating Network

机译:探索聚碳酸亚丙酯的作用生物基环氧互穿网络中的多元醇

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摘要

Poly(propylene carbonate) (PPC) polyol derived from carbon dioxide has been used to make a tough biobased interpenetrating polymer network (IPN). PPC polyol (10, 20, and 30 phr) was added to an epoxy/poly(furfuryl alcohol) IPN, and the effect of PPC polyol on the tensile modulus, tensile strength, tensile toughness, and notched Izod impact strength was determined. Dynamic mechanical analysis (DMA) was used to investigate the effect of PPC polyol on the glass-transition temperature. Loss area (LA) as a characteristic of IPN damping properties was evaluated using DMA. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) were used to obtain more information on the morphology of IPNs on the micro- and nanoscale. It was found that the incorporation of PPC polyol improved the notched Izod impact strength and tensile toughness up to 190 and 220%, respectively. The damping factor peak was broadened with the addition of PPC polyol, and the glass-transition temperature was decreased as the amount of PPC polyol increased. The IPN with 20 phr PPC polyol exhibited betterdamping properties than neat epoxy and the epoxy/PFA IPN. SEM andAFM images revealed that PPC polyol domains were dispersed in theepoxy phase with an average diameter of around 280 nm.
机译:源自二氧化碳的聚碳酸亚丙酯(PPC)多元醇已用于制造坚韧的生物基互穿聚合物网络(IPN)。将PPC多元醇(10、20和30 phr)添加到环氧/聚(糠醇)IPN中,确定PPC多元醇对拉伸模量,拉伸强度,拉伸韧性和缺口悬臂梁式冲击强度的影响。动态力学分析(DMA)用于研究PPC多元醇对玻璃化转变温度的影响。使用DMA评估了IPN阻尼特性的损耗面积(LA)。扫描电子显微镜(SEM)和原子力显微镜(AFM)用于获得有关微米级和纳米级IPN形态的更多信息。已经发现,PPC多元醇的掺入将缺口悬臂梁式冲击强度和拉伸韧性分别提高至190%和220%。随着PPC多元醇的添加,阻尼因子峰变宽,并且随着PPC多元醇的增加,玻璃化转变温度降低。具有20 phr PPC多元醇的IPN表现更好阻尼性能比纯环氧树脂和环氧/ PFA IPN好。扫描电镜和AFM图像显示PPC多元醇域分散在环氧相,平均直径约为280 nm。

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