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Fatigue damage observed non-destructively in fibre composite coupon test specimens by X-ray CT

机译:通过X射线CT在纤维复合试样试样中非破坏性地观察到疲劳损伤

摘要

This study presents a method for monitoring the 3D fatigue damage progression on a micro-structural level in a glass fibre/polymer coupon test specimen by means of laboratory X-ray Computed Tomography (CT). A modified mount and holder made for the standard test samples to fit into the X-ray CT scanner along with a tension clamp solution is presented. Initially, the same location of the test specimen is inspected by ex-situ X-ray CT during the fatigue loading history, which shows the damage progression on a micro-structural level. The openings of individual uni-directional (UD) fibre fractures are seen to generally increase with the number of cycles, and new regions of UD fibre fractures also appear. There are some UD fibre fractures that are difficult to detect since their opening is small. Therefore, the effect of tension on the crack visibility is examined afterwards using a tension clamp solution. With applied tension some additional cracks become visible and the openings of fibre fractures increases, which shows the importance of applied tension during the scan.
机译:这项研究提出了一种通过实验室X射线计算机断层扫描(CT)监测玻璃纤维/聚合物试样试样中3D疲劳损伤进展的方法。提出了一种改进的安装座和支架,用于将标准测试样品与张力夹具解决方案一起安装到X射线CT扫描仪中。最初,在疲劳载荷历史过程中,通过异位X射线CT检查试样的相同位置,这表明了损伤在微观结构上的进展。各个单向(UD)纤维断裂的开口通常随着循环次数的增加而增加,并且UD纤维断裂的新区域也出现了。有一些UD纤维裂缝由于开口小而难以检测。因此,随后使用张力夹溶液检查张力对裂纹可见性的影响。在施加张力的情况下,一些额外的裂缝变得可见,并且纤维断裂的开口增加,这表明在扫描过程中施加张力的重要性。

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