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Epoxy/Polycaprolactone Systems with Triple-Shape Memory Effect: Electrospun Nanoweb with and without Graphene Versus Co-Continuous Morphology

机译:具有三重形状记忆效应的环氧树脂/聚己内酯体系:带或不带石墨烯的静电纺纳米网与共连续形态

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摘要

Triple-shape memory epoxy (EP)/polycaprolactone (PCL) systems (PCL content: 23 wt %) with different structures (PCL nanoweb embedded in EP matrix and EP/PCL with co-continuous phase structure) were produced. To set the two temporary shapes, the glass transition temperature (Tg) of the EP and the melting temperature (Tm) of PCL served during the shape memory cycle. An attempt was made to reinforce the PCL nanoweb by graphene nanoplatelets prior to infiltrating the nanoweb with EP through vacuum assisted resin transfer molding. Morphology was analyzed by scanning electron microscopy and Raman spectrometry. Triple-shape memory characteristics were determined by dynamic mechanical analysis in tension mode. Graphene was supposed to act also as spacer between the nanofibers, improving the quality of impregnation with EP. The EP phase related shape memory properties were similar for all systems, while those belonging to PCL phase depended on the structure. Shape fixity of PCL was better without than with graphene reinforcement. The best shape memory performance was shown by the EP/PCL with co-continuous structure. Based on Raman spectrometry results, the characteristic dimension of the related co-continuous network was below 900 nm.
机译:制备了具有不同结构(嵌入在EP基质中的PCL纳米纤维网和具有共连续相结构的EP / PCL)的三重形状记忆环氧树脂(EP)/聚己内酯(PCL)系统(PCL含量:23 wt%)。为了设置两个临时形状,在形状记忆周期中使用了EP的玻璃化转变温度(Tg)和PCL的熔融温度(Tm)。尝试通过石墨烯纳米片增强PCL纳米纤维网,然后再通过真空辅助树脂传递模塑法将EP渗透到纳米纤维网中。通过扫描电子显微镜和拉曼光谱分析形态。通过张力模式下的动态力学分析确定三重形状记忆特性。据推测,石墨烯还可以充当纳米纤维之间的间隔物,从而提高了EP的浸渍质量。 EP相位相关的形状记忆特性在所有系统中都是相似的,而属于PCL相位的形状记忆特性则取决于结构。没有石墨烯增强的情况下,PCL的形状固定性更好。具有连续结构的EP / PCL表现出最佳的形状记忆性能。根据拉曼光谱法的结果,相关的共连续网络的特征尺寸在900 nm以下。

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