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首页> 外文期刊>Journal of Rheology >A study on the flow, failure, and rupture mechanisms of low-density polyethylene in controlled-stress uniaxial extensional flow
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A study on the flow, failure, and rupture mechanisms of low-density polyethylene in controlled-stress uniaxial extensional flow

机译:低密度聚乙烯在控制应力单轴拉伸流中的流动,破坏和破裂机理研究

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摘要

The main aim of this work is to study the flow, failure, and rupture dynamics of a benchmark low-density polyethylene (BASF Lupolen 1840H) in true tensile creep conditions in both the viscoelastic and elastic deformation regimes. For this, we used a novel extensional rheometer that for the first time allows real controlled-stress conditions to be applied to the materials (as opposed to nominally controlled-stress) until physical rupture occurs (as opposed to being limited by maximum Hencky strain). We observed that constant strain rate was achieved for all flow conditions, and depending on the level of applied tensile stress, one or two states were obtained. In the former case, the observed mode of rupture was ductile, or liquid-like, and in the latter was cohesive, or elastic-like. The coupling at the molecular level between these flow and rupture mechanisms is not yet fully understood, although some recent studies in the literature may be able to offer at least partial explanations.
机译:这项工作的主要目的是研究在粘弹性和弹性变形条件下,在真实拉伸蠕变条件下基准低密度聚乙烯(BASF Lupolen 1840H)的流动,破坏和破裂动力学。为此,我们使用了一种新颖的拉伸流变仪,该拉伸流变仪首次允许对材料施加实际的受控应力条件(与名义上的受控应力相反),直到发生物理破裂(而不是受到最大Hencky应变的限制) 。我们观察到,在所有流动条件下均实现了恒定应变率,并且取决于所施加的张应力水平,获得了一种或两种状态。在前一种情况下,观察到的破裂方式是韧性的或液体状的,而在后者下则是粘结的或弹性状的。尽管在文献中一些最新研究可能能够提供至少部分的解释,但是在这些流动和破裂机制之间在分子水平上的偶联还没有被完全理解。

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