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Mechanical and morphological properties of lyocell blends: Comparison with lyocell nanocomposites (I)

机译:莱赛尔共混物的机械和形态特性:与莱赛尔纳米复合材料的比较(I)

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The mechanical properties and morpholoaies of polyblends of lyocell with three different fillers are compared. Poly(vinyl alcohol) (PVA), poly(vinyl alcoholco-ethylene) (EVOH), and poly(acrylic acid-co-maleic acid) (PAM) were used as fillers in blends with lyocell produced through solution blending. The variations of their properties with polymer matrix filler content are discussed. The ultimate tensile strength of the PVA/lyocell blend is highest for a blend lyocell content of 30 wt %, and decreases as the lyocell content is increased up to 40 wt %. The ultimate tensile strengths of the EVOH/lyocell and PAM/lyocell blends are highest for a lyocell loading of 20 wt %, and decrease with the increasing filler content. The variations in the initial moduli of the blends with filler content are similar. Of the three blend systems, the blends with PVA exhibit the best tensile properties. Lyocell/organoclay hybrid films were prepared by the solution intercalation method, using dodecyltriphenylphosphonium-Mica (C(12)PPhMica) as the organoclay. The variation of the mechanical tensile properties of the hybrids with the matrix polymer organoclay content was examined. These properties were found to be optimal for an organoclay content of up to 5 wt 0%. Even polymers with low organoclay contents exhibited better mechanical properties than pure lyocell. The addition of organoclay to lyocell to produce nanocomposite films was found to be less effective in improving its ultimate tensile strength than blending lyocell with the polymers. However, the initial moduli of the nanocomposites were found to be higher than those of the polyblend films. (c) 2007 Wiley Periodicals, Inc.
机译:比较了具有三种不同填料的莱赛尔混合纤维的力学性能和形态。聚乙烯醇(PVA),聚乙烯醇-乙烯(EVOH)和聚丙烯酸-马来酸(PAM)用作与通过溶液共混产生的莱赛尔纤维共混的填料。讨论了它们的性能随聚合物基质填料含量的变化。对于共混的莱赛尔含量为30 wt%,PVA /莱赛尔共混物的极限抗拉强度最高,并且随着莱赛尔含量增加至40 wt%而降低。 EVOH /莱赛尔和PAM /莱赛尔共混物的极限拉伸强度在20 wt%的莱赛尔载荷下最高,并且随着填料含量的增加而降低。具有填料含量的共混物的初始模量的变化是相似的。在这三种共混体系中,具有PVA的共混体系表现出最佳的拉伸性能。通过溶液插层方法,使用十二烷基三苯基phosph-云母(C(12)PPhMica)作为有机粘土,制备了莱赛尔/有机粘土杂化膜。检查了具有基体聚合物有机粘土含量的杂化物的机械拉伸性能的变化。发现这些性质对于高达5重量%的有机粘土含量是最佳的。甚至具有低有机粘土含量的聚合物也显示出比纯莱赛尔更好的机械性能。发现将有机粘土添加至莱赛尔以制备纳米复合膜比将莱赛尔与聚合物共混在提高其最终拉伸强度方面效果不佳。然而,发现纳米复合材料的初始模量高于多掺混薄膜的模量。 (c)2007年Wiley Periodicals,Inc.

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