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Morphology Development and Mechanical Properties Variation during Cold-Drawing of Polyethylene-Clay Nanocomposite Fibers

机译:聚乙烯黏土纳米复合纤维冷拉伸过程中的形貌发展和力学性能变化

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摘要

In this work, the influence of composition and cold-drawing on nano- and micro-scale morphology and tensile mechanical properties of PE/organoclay nanocomposite fibers was investigated. Nanocomposites were prepared by melt compounding in a twin-screw extruder, using a maleic anhydride grafted linear low density polyethylene (LLDPE–g–MA) and an organomodified montmorillonite (Dellite 67G) at three different loadings (3, 5 and 10 wt %). Fibers were produced by a single-screw extruder and drawn at five draw ratios (DRs): 7.25, 10, 13.5, 16 and 19. All nanocomposites, characterized by XRD, SEM, TEM, and FT-IR techniques, showed an intercalated/exfoliated morphology. The study evidenced that the nanoclay presence significantly increases both elastic modulus (up to +115% for fibers containing 10 wt % of D67G) and drawability of as-spun nanocomposite fibers. Moreover, at fixed nanocomposite composition, the cold-drawing process increases fibers elastic modulus and tensile strength at increasing DRs. However, at high DRs, “face-to-edge” rearrangement phenomena of clay layers (i.e., clay layers tend to rotate and touch each other) arise in fibers at high nanoclay loadings. Finally, nanocomposite fibers show a lower diameter reduction during drawing, with respect to the plain system, and surface feature of adjustable roughness by controlling the composition and the drawing conditions.
机译:在这项工作中,研究了组成和冷拉伸对PE /有机粘土纳米复合纤维的纳米和微观形貌以及拉伸力学性能的影响。纳米复合材料是通过在双螺杆挤出机中熔融配混制备的,使用马来酸酐接枝的线性低密度聚乙烯(LLDPE–g–MA)和有机改性的蒙脱石(Dellite 67G),以三种不同的负载量(3、5和10 wt%) 。纤维由单螺杆挤出机生产,并以五个拉伸比(DR)拉伸:7.25、10、13.5、16和19。所有以XRD,SEM,TEM和FT-IR技术表征的纳米复合材料均表现出插层/脱落的形态。研究证明,纳米粘土的存在显着提高了弹性模量(对于含有10 wt%的D67G的纤维而言,高达+ 115%)和初生纳米复合纤维的可拉伸性。而且,在固定的纳米复合材料组成下,冷拉伸过程在增加的DR时增加了纤维的弹性模量和拉伸强度。然而,在高DR下,在高纳米粘土负载下,纤维中出现了粘土层的“面对面”重排现象(即,粘土层倾向于旋转并彼此接触)。最后,相对于普通系统,纳米复合纤维在拉伸过程中显示出较小的直径减小,并且通过控制组成和拉伸条件可调节粗糙度的表面特征。

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