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High-cycle fatigue behaviour of a pultruded composite material used instructural applications

机译:结构应用中使用的拉挤复合材料的高周疲劳行为

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Dealing with composites in polymeric matrix, the pultruded ones are among the more suitable for large production rates and volumes. For this reason, their use is increasing also in structural applications in civil and mechanical engineering. However, their use is still limited by the partial knowledge of their fatigue behaviour; in many applications it is, indeed, required a duration of many millions of cycles, while most of the data that can be found in literature refer to a maximum number of cycles equal to 3 millions. In this paper a pultruded composite used for manufacturing structural beams is considered and its mechanical behaviour characterized by means of static and high-cycle fatigue tests. The results allowed to determine the S-N curve of the material and to assess the existence of a fatigue limit. Observations at the scanning electronic microscope (SEM) allowed to evaluate the damage mechanisms involved in the static and fatigue failure of the material.
机译:在聚合物基质中处理复合材料,被拉挤成的材料是更适合于大的生产率和体积的。因此,他们的使用也在公用和机械工程中的结构应用中增加。然而,他们的使用仍然受到他们疲劳行为的部分了解的限制;在许多应用中,实际上,需要许多数百万个周期的持续时间,而在文献中可以找到的大多数数据是指等于3百万的最大循环次数。在本文中,考虑了一种用于制造结构梁的覆布拉德复合材料,其机械行为以静态和高循环疲劳试验为特征。允许的结果确定材料的S-N曲线,并评估疲劳极限的存在。扫描电子显微镜(SEM)的观察允许评估静态和疲劳失效的损伤机制。

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