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首页> 外文期刊>Macromolecular chemistry and physics >Time-resolved synchrotron SAXS observations on sheared syndiotactic poly(propylene) crystallization process
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Time-resolved synchrotron SAXS observations on sheared syndiotactic poly(propylene) crystallization process

机译:间断的间规聚丙烯结晶过程的时间分辨同步加速器SAXS观察

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The in situ crystallization kinetics of syndiotactic poly(propylene) (sPP) has been investigated by synchrotron small-angle X-ray scattering (SAXS). The structure evolutions during the isothermal crystallization of sPP with different shear rates have been observed. The results show that shear accelerates the process of crystallization kinetics. Even under low shear rate, the lamellae can be distinctly oriented. In contrast, the lamellar parameters such as the long period, lamellar thickness, and the scattering invariant 0 can change obviously only under high shear rate. A mesomorphic structure proposed by Strobl is adopted to elucidate the differences of shear effects with low and high shear rates. Based on all the analysis we are convinced that a relatively stable mesomorphic structure forms before shear is composed and the shear effects on the mesophase will be retained to a certain extent until crystallization is finished.
机译:通过同步加速器小角X射线散射(SAXS)研究了间同立构聚丙烯(sPP)的原位结晶动力学。已经观察到不同剪切速率的sPP等温结晶过程中的结构演变。结果表明,剪切加速了结晶动力学过程。即使在低剪切速率下,薄片也可以明显地定向。相反,只有在高剪切速率下,层状参数,如长周期,层状厚度和散射常数0才能明显变化。采用Strobl提出的介晶结构来阐明低和高剪切速率下剪切效应的差异。基于所有分析,我们确信在组成剪切之前会形成一个相对稳定的介晶结构,并且对介晶相的剪切作用将保持一定程度,直到完成结晶为止。

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