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首页> 外文期刊>Journal of Thermoplastic Composite Materials >Morphology and rheology of PP/POE blends in high shear stress field
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Morphology and rheology of PP/POE blends in high shear stress field

机译:高剪切应力场中PP / POE混合物的形态学和流变学

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Polypropylene (PP)/polyolefin elastomer (POE; ethylene-octene copolymer) blends with varying weight percentages of POE were prepared in a twin-screw extruder and molded through high shear rate injection-molding process. The morphologies and rheology of the PP/POE blends were systematically investigated based on rheological data and experimental analysis. The results indicate that the polymer blends of plastic and rubber in a high shear stress field result in a multilayered microstructure, which can be divided into skin, transitional, shear, and core layers according to the morphology of the dispersed phase. The morphology formation of the dispersed phase depends on the shear field and temperature field in the processing. Morphological evolution of the dispersed POE phases in PP matrix was described and quantified. A dragging ellipsoid model and capillary number were employed to describe the morphological evolution of the dispersed phase, and the morphological parameters were obtained. The results show that the dragging ellipsoid model is well suited to explain the morphological evolution of the dispersed phase in polymer blends molded under high shear rate.
机译:在双螺杆挤出机中制备聚丙烯(PP)/聚烯烃弹性体(POE;乙烯 - 辛烯共聚物)具有不同重量百分比的POE的共混物,并通过高剪切速率注塑方法模制。基于流变数据和实验分析,系统地研究了PP / POE共混物的形态和流变。结果表明,高剪切应力场中的塑料和橡胶的聚合物共混物导致多层微观结构,其可根据分散相的形态分成皮肤,过渡,剪切和芯层。分散相的形态形成取决于加工中的剪切场和温度场。描述和量化了PP基质中分散PoE相的形态学演变。采用拖动椭圆体模型和毛细管数来描述分散相的形态学化,并获得形态参数。结果表明,拖曳椭球模型非常适合于解释在高剪切速率下模塑聚合物共混物中分散相的形态学演变。

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