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Composition Distribution, Damping and Thermal Properties of the Thickness-Continuous Gradient Epoxy/Polyurethane Interpenetrating Polymer Networks

机译:厚度-连续梯度环氧/聚氨酯互穿聚合物网络的组成分布,阻尼和热性能

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摘要

A thickness gradient interpenetrating polymer network (IPN) was easily created that takes advantage of the relatively poor compatibility and curing rates discrepancy between epoxy (EP) and polyurethane (PU). Ultraviolet absorption spectrum (UV-Vis), thermogravimetric (TG), Differential scanning calorimetry (DSC), Dynamic thermomechanical analysis (DMA), Atomic force microscope (AFM) and water contact angle were adopted to characterize this IPN structure. We found that the absorption in visible light region, glass-transition temperatures (Tg), thermal decomposition temperatures (Td) and Derjaguin–Muller–Toporov (DMT) modulus were increasing along with the gradient direction from bottom side to top side of the IPN. While the absorption in ultraviolet region and adhesion force were decreasing along with the gradient direction from bottom side to top side of the IPN. DMA analysis demonstrates that this continuous gradient IPN has a good balance between the damping temperature range and the loss factor which is suitable for using as a self-supporting damping structure.
机译:可以轻松创建厚度梯度互穿聚合物网络(IPN),该网络利用了环氧树脂(EP)和聚氨酯(PU)之间相对较差的相容性和固化速率差异。采用紫外吸收光谱(UV-Vis),热重(TG),差示扫描量热法(DSC),动态热力学分析(DMA),原子力显微镜(AFM)和水接触角来表征该IPN结构。我们发现,在可见光区域的吸收,玻璃化转变温度(Tg),热分解温度(Td)和Derjaguin–Muller–Toporov(DMT)模量随着IPN底面到顶面的梯度方向的增加而增加。而从IPN的底侧到顶侧,紫外线区域的吸收和粘附力随着梯度方向减小。 DMA分析表明,该连续梯度IPN在阻尼温度范围和损耗因子之间具有良好的平衡,适合用作自支撑阻尼结构。

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