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correlations of mechanical properties and microstructural parameters in annealed drawn film of liquid crystalline polymer in situ reinforced PP

机译:液晶聚合物原位增强聚丙烯退火拉伸薄膜力学性能与微观结构参数的相关性

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Drawn composite thin film based on thermotropic liquid crystalline polymer (TLCP) and polypropylene (PP) was annealed at 130 °C at different times. The influence of annealing time on microstructural and mechanical properties of the composite film has been studied. The correlation in mechanical properties and their microstructural parameters has also been investigated. X-Ray diffraction results reveal that the smectic mesophase transforms progressively into the monoclinic phase as annealing time is increased. Consequently, the true crystallinity (Xc), crystal thickness (L) as well as relative level of molecular orientation of PP crystalline phase in the annealed TLCP/PP films are increased significantly. Also, the TLCP fibrils have no influence on the microstructure of PP crystalline phase. The apparent crystallinity (Xc,a) of PP phase evaluated by DSC also increase significantly with annealing time. As a result, the increases of these microstructural parameters coupled with the reinforcement of TLCP fibrils could be contributed directly to the remarkable enhancement of mechanical properties of the annealed TLCP/PP film in both machine (MD) and transverse (TD) directions. The correlation of moduli with microstructural parameters (Xc, Xc,a and L) exhibits nonlinear relations. However, the relative level of molecular orientation is a more suitable parameter to correlate with the improvement of mechanical properties of the annealed TLCP/PP film. Finally, this work presents that the mechanical properties of the TLCP in situ reinforced thermoplastics can be significantly enhanced via a simple thermal treatment.
机译:将基于热致液晶聚合物(TLCP)和聚丙烯(PP)的拉伸复合薄膜在130°C的不同时间退火。研究了退火时间对复合膜微结构和力学性能的影响。力学性能和它们的微观结构参数之间的关系也已进行了研究。 X射线衍射结果表明,随着退火时间的增加,近晶中间相逐渐转变为单斜晶相。因此,退火的TLCP / PP薄膜中PP结晶相的真实结晶度(Xc),晶体厚度(L)以及分子取向的相对水平得到了显着提高。而且,TLCP原纤维对PP结晶相的微观结构没有影响。通过DSC评估的PP相的表观结晶度(Xc,a)也随着退火时间而显着增加。结果,这些微结构参数的增加,加上TLCP原纤维的增强,可以直接促进退火TLCP / PP膜在纵向(MD)和横向(TD)方向上的机械性能的显着提高。模量与微观结构参数(Xc,Xc,a和L)的相关性呈非线性关系。然而,分子取向的相对水平是与退火的TLCP / PP膜的机械性能的改善相关的更合适的参数。最后,这项工作表明,通过简单的热处理可以显着提高TLCP原位增强热塑性塑料的机械性能。

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