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The enhancing effect of mesogen-jacketed liquid crystalline polymer PBPCS on epoxy resin

机译:薄膜夹层液晶聚合物PBPC对环氧树脂的增强作用

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The mixtures of mesogen-jacketed liquid crystalline polymers (MJLCP) and epoxy resin (E-51) have been prepared in a certain proportion. The category of the MJLCP is poly {2, 5-bis[(4-butoxyphenyl) oxycarbonyl] styrenes} (PBPCS). Methyl tetrahydro phthalic anhydride (MeTHPA) is served as a curing agent, and N, N-dimethylbenzylamine plays the role of catalyst. Then, based on the curing process, the modified materials have been acquired by casting molding. The effect of PBPCS's improvement has been researched through the mechanical properties test, dynamic thermal mechanical test and scanning electron microscope (SEM). The results indicated that PBPCS could apparently improve the mechanical properties of resin E-51. Compared with unmodified materials, the elongation at break and the tensile strength of PBPCS have been improved remarkably through modification. Both mechanical properties of the 4wt% PBPCS/E-51/MeTHPA were enhanced by 48% and 153% separately, and the characteristics of the 3wt% one were raised by 47% and 19% respectively. Also, the ductile fracture morphology of the resins was exhibited in SEM photograph clearly.
机译:以一定比例制备了脱胶夹型液晶聚合物(M20mLCP)和环氧树脂(E-51)的混合物。 MJLCP的类别是聚{2,5-双[(4-丁基苯基)氧基羰基]苯乙烯}(PBPC)。甲基四羟基邻苯二甲酸酐(甲基)用作固化剂,N,N-二甲基苄胺起到催化剂的作用。然后,基于固化过程,通过铸造成型获取改性材料。通过机械性能测试,动态热机械测试和扫描电子显微镜(SEM)研究了PBPCS改进的影响。结果表明,PBPC可能显然可以改善树脂E-51的机械性能。与未修饰的材料相比,通过修饰显着提高了破裂的伸长和PBPC的拉伸强度。 4wt%PBPCS / E-51 /甲基甲基的机械性能分别增强48%和153%,3wt%的特征分别升高47%和19%。此外,在SEM照片中显示出树脂的延性骨折形态。

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