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Mechanical features of the rubbery amorphous phase in tension and torsion in a semi-crystalline polymer

机译:橡胶态非晶态相在半结晶聚合物中的拉伸和扭转力学特性

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Mechanical tension and torsion tests are performed to characterize the mechanical behaviour of a semi-crystalline thermoplastic (Polyamide 11) far above its glassy transition temperature. The aim is to investigate the relaxed state of its amorphous phase. A strain-rate independent loading curve (called "asymptotic curve") is observed below a critical strain-rate depending on temperature. Comparison between tension and torsion indicate that this "asymptotic curve" does not depend on the hydrostatic stress. Such observations are consistent with a relaxed state of the rubbery amorphous phase. Nevertheless, the unloading curve significantly differs from the loading one. Besides that, creep or stress-relaxation responses are observed when loading is interrupted along the "asymptotic curve". An additional micro-mechanism involving crystalline lamellae is suggested to explain the high-temperature behaviour. Nevertheless, numerical simulations show that a non-linear elasto-viscoplastic law capturing most of the usual features and the strain-rate sensitivity of polymers behaviour is insufficient to model this particular behaviour. Both the viscoelastic and viscoplastic contributions must be considered to build a suitable model.
机译:进行机械张力和扭转测试以表征远远高于其玻璃态转变温度的半结晶热塑性塑料(聚酰胺11)的机械性能。目的是研究其非晶相的松弛状态。在取决于温度的临界应变速率以下观察到应变速率无关的加载曲线(称为“渐近曲线”)。张力和扭转之间的比较表明,该“渐近曲线”不依赖于静水压力。这些观察结果与橡胶态无定形相的松弛状态一致。然而,卸载曲线与加载曲线明显不同。除此之外,当载荷沿“渐近曲线”中断时,观察到蠕变或应力松弛响应。建议使用另外一种涉及晶体薄片的微观机制来解释高温行为。然而,数值模拟表明,捕获大多数通常特征的非线性弹黏塑性定律和聚合物行为的应变率敏感性不足以对这种特殊行为进行建模。为了建立合适的模型,必须同时考虑粘弹性和粘塑性作用。

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