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Structure and dynamics of polyethylene/clay films

机译:聚乙烯/粘土膜的结构和动力学

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The relationships between structure and rheology of polyethylene / clay hybrid composite blown films were investigated through rheological tests both in shear and elongational flow. Two polymer matrices (low density polyethylene, LDPE and linear low density polyethylene, LLDPE) with different relaxation kinetics were used. Independently from the matrix, morphological analyses (TEM, XRD, and SEM) indicate that the hybrid structures are similarly constituted of delaminated platelets or tactoids having a relevant degree of orientation along the draw direction. This strongly affects the rheological behavior of materials. However, despite the similarities emerged from morphological analyses, both shear (steady shear and oscillatory) and elongation measurements show a negligible effect upon the rheology of LDPE-based nanohybrids. Conversely, relevant increases of shear viscosity, dynamic moduli and melt strength of LLDPE-based nanohybrids have been detected. The effects of homopolymer relaxation kinetics have been investigated by means of stress relaxation tests. The results obtained seem to be consistent with the existence of a roughly bimodal population of dynamical species: a matrix component behaving like the homopolymer, and a fraction interacting with the filler, whose rheological behavior is controlled by the particles and their interactions with the polymer. Mechanical properties of hybrid films were also investigated. Differently from what happens in the melt state, the solid-state properties mainly depend on the filler amount. The relative increases of tensile modulus and melt strength are of the same order of magnitude for both the matrices used, indirectly confirming the similarities in hybrids structures. (c) 2006 Wiley Periodicals, Inc.
机译:通过流变试验,在剪切流动和伸长流动中研究了聚乙烯/粘土杂化复合吹塑薄膜的结构与流变性之间的关系。使用两种具有不同松弛动力学的聚合物基质(低密度聚乙烯,LDPE和线性低密度聚乙烯,LLDPE)。形态分析(TEM,XRD和SEM)独立于基体,表明杂化结构类似地由分层的血小板或触针组成,它们沿拉伸方向具有一定的取向度。这极大地影响了材料的流变行为。然而,尽管从形态学分析中发现了相似之处,但剪切(稳态剪切和振荡)和伸长率测量结果对基于LDPE的纳米杂化物的流变学影响都可以忽略不计。相反,已经检测到基于LLDPE的纳米混杂物的剪切粘度,动态模量和熔体强度的相应增加。已经通过应力松弛试验研究了均聚物松弛动力学的影响。所获得的结果似乎与动力学物种的大致双峰种群的存在是一致的:基质组分的行为类似于均聚物,并且一部分与填料相互作用,其流变行为受颗粒及其与聚合物的相互作用所控制。还研究了杂化膜的机械性能。与熔融状态不同,固态性能主要取决于填料量。对于所使用的两种基质,拉伸模量和熔体强度的相对增加处于相同数量级,间接证实了杂化结构的相似性。 (c)2006年Wiley Periodicals,Inc.

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