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Statistical properties of microcracking in polyurethane foams under tensile test, influence of temperature and density

机译:拉伸试验下聚氨酯泡沫微裂纹的统计特性,温度和密度的影响

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We report tensile failure experiments on polyurethane (PU) foams. Experiments have been performed by imposing a constant strain rate. We work on heterogeneous materials for whom the failure does not occur suddenly and can develop as a multistep process through a succession of microcracks that end at pores. The acoustic energy and the waiting times between acoustic events follow power-law distributions. This remains true while the foam density is varied. However, experiments at low temperatures (PU foams more brittle) have not yielded power-laws for the waiting times. The cumulative acoustic energy has no power-law divergence at the proximity of the failure point which is qualitatively in agreement with other experiments done at imposed strain. We notice a plateau in cumulative acoustic energy that seems to occur when a single crack starts to propagate.
机译:我们报告了聚氨酯(PU)泡沫的拉伸破坏实验。通过施加恒定的应变率进行了实验。我们研究的异质材料不会突然发生故障,并且可以通过一系列终止于孔的微裂纹以多步骤的方式发展。声事件之间的声能和等待时间遵循幂律分布。当泡沫密度变化时,这仍然是正确的。但是,低温下的实验(PU泡沫较脆)没有得出等待时间的幂律。累积的声能在失效点附近没有幂律发散,其定性与在施加应变时进行的其他实验一致。我们注意到,当单个裂纹开始传播时,似乎会出现累积声能的平稳状态。

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