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首页> 外文期刊>Mechanics of materials >A two-phase model for the mechanical behaviour of semicrystalline polymers. Part II - Modelling of the time-dependent mechanical behaviour of an isotropic and a highly oriented HDPE grade
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A two-phase model for the mechanical behaviour of semicrystalline polymers. Part II - Modelling of the time-dependent mechanical behaviour of an isotropic and a highly oriented HDPE grade

机译:半结晶聚合物力学行为的两阶段模型。第二部分-各向同性和高取向HDPE牌号随时间变化的力学行为的建模

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摘要

This paper presents an application of the model presented in Part 1 for the prediction of the mechanical response of two semicrystalline polymers. This Part II particularly emphasises the capacity of the model to predict the time-dependent behaviour of semicrystalline polymers, whereas Part I illustrates the potentiality of the model to predict their multiaxial and large strains behaviour.rnThe two studied materials consist of an initially isotropic HDPE, studied up to the beginning of the tensile hardening, and of any highly oriented HDPE bands, so that their meso-structure state can be considered constant in the studied strains domains. This paper shows that the large strains model can be simplify to predict the mechanical behaviour of SCPs, as well isotropic as anisotropic.rnThe model is validated for the two studied HDPE materials under uniaxial tension on the basis of experimental data, which evidence the sensitivity to the strain rate, and the short-time and long-time viscous behaviour.
机译:本文介绍了第1部分中提出的模型在预测两种半结晶聚合物的机械响应中的应用。第二部分特别强调了模型预测半结晶聚合物随时间变化行为的能力,而第一部分则说明了模型预测半轴聚合物多轴应变和大应变行为的潜力。这两种研究材料均由最初的各向同性HDPE组成,在拉伸硬化和任何高取向HDPE带开始之前进行了研究,因此可以认为它们的介观结构状态在研究的应变域中是恒定的。本文表明,可以简化大应变模型来预测SCP的力学行为以及各向同性和各向异性.rn该模型在实验数据的基础上针对两种研究的HDPE材料在单轴拉伸下进行了验证,证明了对应变率以及短期和长期粘性行为。

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