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The preparation of multiaxially oriented polyethylene morphologies with high mechanical properties in planar direactions

机译:平面二反应中具有高力学性能的多轴取向聚乙烯形貌的制备

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AbstractThe development of multiaxially oriented films of low molecular weight (Mw≈ 59,000) high density polyethylene with high mechanical properties in planer directions has been pursued by inducing fibrillar crystallization under curvilinear flow conditions in a contained geometry using an extrudomolding process and by simulating similar crystallization conditions in an optical plate–plate rheometer. The films, like the uniaxially drawn morphologies of the same low molecular weight high density polyethylene by solid‐state extrusion, had a high modulus (12–20 GPa) and strength (0.25 GPa) along the residual flow lines but they exhibited also a modulus enhancement (5 GPa) in the transverse direction as a result of the orientation gradient of the molecular chains in the thickness dir
机译:摘要通过使用挤出成型工艺在封闭几何形状中诱导纤维状结晶,并在光学板板流变仪中模拟类似的结晶条件,开发具有高机械性能的低分子量(Mw≈59,000)高密度聚乙烯的多轴取向薄膜。这些薄膜与通过固态挤出的相同低分子量高密度聚乙烯的单轴拉伸形态一样,沿残余流线具有高模量(12-20 GPa)和强度(0.25 GPa),但由于厚度dir中分子链的取向梯度,它们在横向上也表现出模量增强(5 GPa)

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