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Synthesis of compatibilizers and characterization of the compatibilized and noncompatibilized blends of PP/Rodrun LC3000

机译:PP / Rodrun LC3000增容剂的合成及增容与不增容混合物的表征

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The addition of a liquid crystalline polymer (LCP) to a matrix of a flexible thermoplastic (TP) has been used in the last two decades as an in situ reinforcement of the matrix. Owing to the immiscibility of the two phases and the high degree of orientation typical of LCPs, the dispersed phase is, after processing, essentially constituted by fibrillar structures, which are responsible for the reinforcement of the matrix and the decrease of viscosity with respect to the matrix. The low degree of adhesion typical of LCP/TP blends often requires the use of compatibilizers, which will act reducing the interfacial tension between the two components. In this work, we present the synthesis of three different compatibilizers, as well as the mechanical characterization of the corresponding compatibilized blends. Some scanning electron microphotographs will be also presented to better explain the mechanical results. The mechanical properties of these blends were compared with the noncompatibilized blend, as well as with the ones presented by blends obtained with two commercial compatibilizers, leading to the conclusion that, considering our compatibilizer C, the one that leads to the higher enhancement of the Young's modulus, when compared with the noncompatibilized blend, we obtain a Young's modulus 27% higher than the one presented by the noncompatibilized blend. Comparing this result with those presented by the blends compatibilized with the two commercial compatibilizers, D and E, we conclude that this enhancement is higher than those presented by those blends (increase in Young's modulus of 16% for both compatibilizers). (c) 2007 Wiley Periodicals, Inc.
机译:在过去的二十年中,已经将液晶聚合物(LCP)添加到柔性热塑性塑料(TP)的基质中,作为基质的原位增强。由于两相的不溶性以及LCP的典型取向度高,分散相在加工后基本上由原纤维结构构成,这些结构负责增强基体和降低相对于胶体的粘度。矩阵。 LCP / TP共混物典型的低粘附力通常需要使用增容剂,这会降低两种组分之间的界面张力。在这项工作中,我们介绍了三种不同增容剂的合成,以及相应增容混合物的机械特性。还将提供一些扫描电子显微照片,以更好地解释机械结果。将这些共混物的机械性能与不相容的共混物,以及与两种市售增容剂获得的共混物所呈现的机械性能进行了比较,得出的结论是,考虑到我们的增容剂C,可以使杨氏纤维的扬程更高。模量,与不相容的共混物相比,我们获得的杨氏模量比不相容的共混物高出27%。将该结果与与两种市售增容剂D和E增容的共混物所呈现的结果进行比较,我们得出的结论是,这种增强作用高于那些共混物所呈现的结果(两种增容剂的杨氏模量均提高16%)。 (c)2007年Wiley Periodicals,Inc.

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