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Shape Memory Effect and Properties Memory Effect of Polyurethane

机译:聚氨酯的形状记忆效应和性能记忆效应

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摘要

The relationship between shape and properties memory effect, especially viscoelastic properties of polyurethane under study is the main aim of this research work. Tensile tests have been performed in order to introduce 100% of deformation in the polyurethane samples. Under this deformation, stress–relaxation experiments have been performed in order to eliminate the residual stresses. This deformation of the samples has been fixed by cooling. Recovery tests, then, were carried out at different isothermal temperatures that varied from 30 C to 60 C. Viscoelastic behavior has been studied by a biparabolic model and by using the Cole–Colemethod. It was shown that this model describes the behavior of the polymer at the different states of shape memory tests. The constants of this model then have been determined. This study leads to a better understanding of the mechanism of shape memory effect. The comparison between the virgin polymer and the polymer after a recovery test by DMTA (dynamic mechanical thermal analysis) and by Cole–Cole method has illustrated that the polymer does not obtain its initial properties even when it was totally regained its initial shape. These results have been confirmed by three successive shape memory tests on the same sample and by comparingthe mechanical characteristics of different cycles because ‘‘shape memory effect’’ and ‘‘properties memory effect’’ do not follow the same mechanisms.
机译:形状和性能记忆效应之间的关系,尤其是所研究的聚氨酯的粘弹性是本研究的主要目的。为了将100%的变形引入聚氨酯样品中,已经进行了拉伸试验。在这种变形下,已经进行了应力松弛实验以消除残余应力。样品的这种变形已通过冷却固定。然后,在30°C到60°C的不同等温温度下进行了恢复测试。已经通过双抛物线模型和Cole-Colemethod研究了粘弹性行为。结果表明,该模型描述了聚合物在形状记忆测试的不同状态下的行为。然后确定了该模型的常数。这项研究可以更好地了解形状记忆效应的机理。原始聚合物与通过DMTA(动态机械热分析)和科尔-科尔方法进行的恢复测试后的聚合物之间的比较表明,即使完全恢复了其初始形状,该聚合物也无法获得其初始性能。这些结果已通过在同一样品上进行三个连续的形状记忆测试并通过比较不同循环的机械特性得到了证实,因为“形状记忆效应”和“特性记忆效应”并不遵循相同的机理。

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