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首页> 外文期刊>Journal of Materials Science >Deformation micromechanics of a thermoplastic-thermoset interphase of epoxy composites reinforced with poliethylene fiber
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Deformation micromechanics of a thermoplastic-thermoset interphase of epoxy composites reinforced with poliethylene fiber

机译:聚丙烯树脂纤维增强的环氧树脂复合材料的热塑性-热固性中间相的变形微力学

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摘要

The polyethylene fibre is one of the strongest man-made materials; its strength is based on its high crystalinity order. Nevertheless, due to the Polyethylene chemical nature, it shows a low reactivity, which limits its use for composite materials, especially with thermoset matrices like the Epoxy resin. The present work uses Raman Spectroscopy to monitor the loading and failure of a thermoplastic-thermoset interface. Pull-out specimens were prepared with Spectra 1000 Polyethylene fibre embedded in a epoxy resin block; the fibre extraction was performed in a stepwise fashion and with the aid of a micro-Raman, spectra were taken along the interface through out the whole process. The technique allowed to measure the interface strength and to monitor the propagation of the debonding front up to total failure. Some results correspond to specimens were the interface was improved by changing the surface chemistry of the thermoplastic fibre to make it more compatible to the thermoset matrix. (C) 2004 Kluwer Academic Publishers.
机译:聚乙烯纤维是最坚固的人造材料之一。它的强度基于其高结晶度。然而,由于聚乙烯的化学性质,它显示出低反应性,这限制了其用于复合材料的用途,尤其是在热固性基质(例如环氧树脂)中。本工作使用拉曼光谱法监测热塑性-热固性界面的载荷和失效。用Spectra 1000聚乙烯纤维包埋在环氧树脂块中制备拉出样品;纤维的提取是逐步进行的,并借助显微拉曼光谱在整个过程中沿界面采集光谱。该技术允许测量界面强度并监控脱粘锋面的传播直至完全失效。通过改变热塑性纤维的表面化学性质使其与热固性基体更加相容,界面改善了界面,这与标本相对应。 (C)2004 Kluwer学术出版社。

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