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Influence of molecular parameters on high-strain deformation of polyethylene in the plane-strain compression. Part I. Stress-strain behavior

机译:分子参数对聚乙烯在平面应变压缩过程中高应变变形的影响。第一部分应力应变行为

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Deformation behavior of several polyethylenes and ethylene-based copolymers with various molecular architecture (linear and branched polyethylene, ethylene based copolymers), and a broad range of molecular mass and its distribution, was studied. Due to the differences in molecular characteristic, this series exhibited a relatively broad range of crystallite sizes as well as crystallinity level, varying from less than 10% up to more than 70%.The samples of polyethylenes and copolymers were subjected to high-strain compression in the plane-strain conditions. The true strain exceeded frequently the value of 2 (a corresponding deformation ratio up to around 10). Plastic deformation to high strain was associated with an intense strain-hardening, leading to very high stress, above 500 MPa. It was found that the yield behavior and the stress of plastic flow depended mainly on the amount of amorphous and crystalline components and on the thickness of lamellar crystals, while the strain hardening behavior depended primarily on the density of chain entanglements in the amorphous component, which in turn was controlled by molecular mass and chain architecture of the polymer, both influencing the process of network modification upon crystallization. (c) 2005 Elsevier Ltd. All rights reserved.
机译:研究了几种具有各种分子结构的聚乙烯和基于乙烯的共聚物(线性和支化聚乙烯,基于乙烯的共聚物)的变形行为,以及广泛的分子量和分布。由于分子特性的差异,该系列显示了相对较大的微晶尺寸和结晶度范围,从小于10%到大于70%不等。聚乙烯和共聚物样品经受了高应变压缩在平面应变条件下。真实应变经常超过2的值(相应的变形率大约为10)。塑性变形到高应变与强烈的应变硬化有关,导致超过500 MPa的非常高的应力。发现屈服行为和塑性流动应力主要取决于非晶态和晶体成分的数量以及层状晶体的厚度,而应变硬化行为主要取决于非晶态成分中链缠结的密度。进而受聚合物的分子量和链结构的控制,两者都影响结晶时网络修饰的过程。 (c)2005 Elsevier Ltd.保留所有权利。

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