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Melt crystallization of constrained polyethylene chains in uniaxially drawn film and solution-grown lamellae

机译:单轴拉伸薄膜和溶液生长薄片中约束聚乙烯链的熔融结晶

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摘要

When a uniaxially drawn polyethylene film was coated by evaporation of carbon in a vacuum, the deposited carbon layer fixed the texture and molecular orientation. Polyethylene single crystals were fixed at the fold surface on a carbon pedestal by carbon deposition. Since molecular chains of these samples were anchored on the carbon pedestal, their translational displacement on the pedestal, and longitudinal sliding along their axis, were largely restricted even when their thermal motions were activated at high temperatures. Consequently, the original molecular direction and the stacked lamellar morphology in drawn film, and the lozenge shape of polyethylene single crystals, were retained in the molten state. On crystallizing from melt, the stacked lamellar structure was reconstructed in the drawn film as double orientation was performed, and the c axis was parallel to the drawing direction, as the b axis was aligned preferentially parallel to the film surface. In single crystals, constrained chains crystallized in such a way that the b axis was kept in the lamellar plane, and their chain axis was tilted toward the long axis of the lozenge (the a axis) from the lamellar normal with an angle of 30°-54°.
机译:当通过在真空中蒸发碳来涂覆单轴拉伸的聚乙烯膜时,沉积的碳层固定了纹理和分子取向。通过碳沉积将聚乙烯单晶固定在碳台座的折叠表面上。由于这些样品的分子链固定在碳基架上,因此即使在高温下激活了它们的热运动,它们在基架上的平移位移以及沿其轴的纵向滑动也受到很大限制。因此,拉伸膜中的原始分子方向和堆叠的层状形态以及聚乙烯单晶的菱形保持在熔融状态。在从熔体中结晶时,当进行双重取向时,在拉伸膜中重建堆叠的层状结构,并且c轴平行于拉伸方向,因为b轴优选平行于膜表面取向。在单晶中,受约束的链以b轴保持在层状平面中的方式结晶,并且其链轴从层状法线向菱形的长轴(a轴)倾斜30°角; -54°。

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