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Morphology and Thermomechanical Properties in Epoxy Acrylate Interpenetrated Networks

机译:环氧丙烯酸酯间形态和热机械性能互向网络

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Interpenetrated Polymer Networks (IPNs) were produced from the simultaneous UV-photocuring of Bisphenol A propoxylate diacrylate (BPA-PDA) and 3,4-epoxycyclohexylmethyl 3,4-epoxycyclohexanecarboxylate (ECH) under a poly- chromatic source. Atomic Force Microscopy (AFM) and Transmission Electron Microscopy (TEM) were used to investigate the morphology of the samples, when dependence in thermal stability with the composition was evidenced from Thermogravimetric Analysis (TGA). The aptitude to create a wide range of thermomechanical properties was investigated towards Differential Scanning Calorimetry (DSC), Dynamic mechanical Analysis (DMA) and tensile tests. Post- curing contributes to increase the glass transition and the strain at break of the materials, and is also responsible to higher resistance to thermal degradation. Results show promising possibilities for the future development of graded materials with property control at different scales.
机译:由双酚A丙氧基化丙烯酸酯(BPA-PDA)和3,4-环氧环己基己基3,4-环氧环己己基羧酸甲酸酯(ECH)的3,4-环氧环己基甲基羧酸甲酯(ECH)产生互连的聚合物网络(IPNS)。使用原子力显微镜(AFM)和透射电子显微镜(TEM)来研究样品的形态,当依赖于与组合物的热稳定性依赖于热量分析(TGA)时。为鉴别扫描量热法(DSC),动态机械分析(DMA)和拉伸试验,研究了创造各种热机械性能的能力。后固化有助于增加玻璃过渡和突破材料的菌株,也负责更高的热降解抗性。结果表明,在不同尺度下具有房地产控制的分级材料未来发展的有希望的可能性。

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