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Experimental monitoring of the self-heating properties of thermoplastic composite materials during tensile and cyclic tests

机译:拉伸和循环测试期间热塑性复合材料自热性能的实验监控

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The sizing of industrial structures with a given material requires to understand completely its fatigue behaviour. Yet, the full estimation of the fatigue lifetime of a material requires time-consuming and expensive fatigue testing campaigns, and a huge number of samples. An alternative experimental procedure is based on the monitoring of the self-heating properties of the studied material. The aim is to correlate the fatigue limit with a change of the thermal behaviour of the material during the self-heating tests. The main advantage of these tests is that they need only a limited number of mechanical cycles, and require few samples to test. Ultimately, self-heating tests lead to an accelerated estimation of the fatigue behaviour. The purpose of the present paper is to validate this approach for a woven carbon/thermoplastic composite material.
机译:使用给定材料确定工业结构的大小需要完全了解其疲劳行为。然而,要全面估计材料的疲劳寿命,需要耗时且昂贵的疲劳测试活动,并需要大量的样品。一种替代的实验程序是基于对所研究材料的自热特性的监控。目的是使疲劳极限与自热测试期间材料的热性能变化相关。这些测试的主要优点是,它们仅需要有限数量的机械循环,并且只需要很少的样品即可进行测试。最终,自热测试可以加快疲劳行为的估计速度。本文的目的是验证一种用于碳/热塑性复合材料编织的方法。

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