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首页> 外文期刊>Polymer engineering and science >Phase Morphology Development In a Low Interfacial Tension Immiscible Polyolefin Blend During Die Extrusion and Melt Spinning
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Phase Morphology Development In a Low Interfacial Tension Immiscible Polyolefin Blend During Die Extrusion and Melt Spinning

机译:模具挤出和熔体纺丝过程中低界面张力不混溶聚烯烃共混物的相形态发展

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We describe the development of phase morphology in polypropylene (PP)/ethylene-butene copolymer (EBM) blends in both extrusion through dies and in subsequent melt spinning to form filaments. This immiscible blend has a very low interfacial tension around 0.69 dynes/cm. In the die extrusion process, at low extrusion rates, the dispersed PP phase was sheared into fibrils; at higher extrusion rates, the PP fibrils formed an encapsulation layer near the die wall first, then it broke into droplets because of both interfacial tension and long residence time. These droplets agglomerated together to form a network. In melt spinning, the dispersed phase was also drawn down into fibrils, which coalesced into a continuous layer on the outer surface of the filaments at higher drawdown rates.
机译:我们描述了通过模具挤出以及随后的熔融纺丝以形成长丝的聚丙烯(PP)/乙烯-丁烯共聚物(EBM)共混物的相形态发展。这种不混溶的混合物具有非常低的界面张力,约为0.69达因/厘米。在模头挤出过程中,在低挤出速率下,分散的PP相被剪切成原纤维;在较高的挤出速率下,PP原纤维首先在模具壁附近形成包封层,然后由于界面张力和较长的停留时间而破裂成液滴。这些液滴凝聚在一起形成网络。在熔体纺丝中,分散相也被拉成原纤维,其以更高的回缩速率聚集成长丝外表面上的连续层。

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