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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Physical assessment of essential work of fracture parameters based on m-LLDPE blown films
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Physical assessment of essential work of fracture parameters based on m-LLDPE blown films

机译:基于m-LLDPE吹膜的断裂参数基本功的物理评估

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摘要

A new experimental approach based on essential work of fracture (EWF) method and an in-situ digital image correlation strain mapping analysis has been developed to quantify different aspects of fracture energy on model metallocene linear low-density polyethylene (m-LLDPE) blown films. Three distinctive fracture process zones have been identified from the photoelastic observation of the model m-LLDPE blown films. These three zones include the essential work (W-e) zone due to necking and crack propagation, the non-essential plastic deformation zone (W-p), and a newly proposed recoverable viscoelastic deformation zone (W-v), which is found to be nontrivial. Furthermore, in contrast to the assumption involved in the EWF theory, W-e is found to be proportional to the volume of the materials involved in the inner fracture process zone. The current approach allows for exact physical interpretation of the EWF parameters and their correlation to material characteristics. Usefulness of the present work for development of stronger polymeric blown films is discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了一种基于断裂基本功(EWF)和原位数字图像相关应变映射分析的新实验方法,以量化模型茂金属线性低密度聚乙烯(m-LLDPE)吹膜的断裂能的不同方面。从模型m-LLDPE吹塑薄膜的光弹性观察中已经确定了三个独特的断裂过程区。这三个区域包括由于颈缩和裂纹扩展而产生的基本功(W-e)区,非必要的塑性变形区(W-p)和新提议的可恢复的粘弹性变形区(W-v),这是不重要的。此外,与EWF理论中涉及的假设相反,发现W-e与内部断裂过程区域中涉及的材料体积成比例。当前的方法允许对EWF参数及其与材料特性的相关性进行精确的物理解释。讨论了本发明对开发更坚固的聚合物吹塑薄膜的有用性。 (C)2016 Elsevier Ltd.保留所有权利。

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