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首页> 外文期刊>International Journal of Fatigue >Tensile Fatigue Of Conventional And Negative Poisson's Ratio Open Cell Pu Foams
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Tensile Fatigue Of Conventional And Negative Poisson's Ratio Open Cell Pu Foams

机译:常规和负泊松比的开孔聚氨酯泡沫的拉伸疲劳

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摘要

In this paper, we present a comparative analysis between the cyclic loading tensile behaviour of conventional and auxetic thermoplastic PU foams. While the two types of foam share the same base material (open cell PU-PE), one batch is transformed into an auxetic one (i.e., negative Poisson's ratio) using a special manufacturing process involving moulding and exposure to particular temperature profiles to stabilise the transformation of the microstructure. The effect of the stiffness degradation and accumulation of energy dissipation versus the number of cycles are discussed for different loading levels r. The results show that the fatigue behaviour until failure, subjected to cyclic loading depends on the loading levels and occur in three stages. The results obtained shows also that the auxetic foam have enhanced characteristics under static loading and tensile fatigue compared to the conventional parent phase form.
机译:在本文中,我们对常规热塑性聚氨酯泡沫塑料和膨胀热塑性聚氨酯泡沫塑料的循环载荷拉伸行为进行了比较分析。虽然两种类型的泡沫使用相同的基础材料(开孔PU-PE),但使用一种特殊的制造工艺(包括模塑和暴露于特定的温度曲线)将一批转变为膨胀型(即负泊松比)。微观结构的转变。对于不同的载荷水平r,讨论了刚度下降和能量耗散累积与循环次数的关系。结果表明,直到循环破坏的疲劳行为取决于循环载荷水平,并分三个阶段发生。所获得的结果还表明,与常规母相形式相比,该膨胀性泡沫在静态载荷和拉伸疲劳下具有增强的特性。

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