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Fatigue failure monitoring of 316L stainless steel coupons using optical fibre based distributed strain sensing

机译:316L不锈钢优惠券采用光纤分布式应变感应的疲劳故障监测

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摘要

We demonstrate the application of optical frequency domain reflectometry to detect, locate and track the propagation of fatigue cracks in simple beam-shaped stainless-steel specimens. To do so we recorded the strain distribution along the entire length of hot rolled and additively manufactured 316L steel specimens with a spatial resolution of 1 mm using an embedded optical fibre, and we evaluated fatigue induced damage under four-point bending load cycles. Our findings are threefold. First, we show that the onset of fatigue damage can be detected using our methodology based on a damage index adapted to optical frequency domain reflectometry measurements, which allows alerting for potential failure. We also show that our optical fibre mounting and embedding technique enables the fibre to survive critical failure of the steel specimen. In addition, we obtain strain profile measurements with a spatial resolution that allows linking the strain distribution with imperfections in the four-point bending set-up.
机译:我们展示了光学频域反射测量的应用来检测,定位和跟踪简单梁形不锈钢样品中疲劳裂缝的传播。为此,我们记录了沿着热轧的整个长度的应变分布,并使用嵌入光纤的空间分辨率为1mm的加热轧制和加剧制造的316L钢样品,并评估了四点弯曲载荷循环下的疲劳造成损伤。我们的研究结果是三倍。首先,我们表明,可以使用基于适用于光学频域反射测量测量的损伤指数来检测疲劳损坏的发作,这允许警报潜在故障。我们还表明,我们的光纤安装和嵌入技术使光纤能够存活钢标本的临界失效。另外,我们获得具有空间分辨率的应变型材测量,允许将应变分布与四点弯曲设置中的缺陷联系起来。

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