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Sheet sensor using SrAl2O4:Eu mechanoluminescent material for visualizing inner crack of high-pressure hydrogen vessel

机译:使用SrAl2O4:Eu机械发光材料的薄片传感器用于可视化高压氢容器的内部裂纹

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摘要

A new non-destructive evaluation technique to detect cracks emanating from the inner surface (inner cracks) of a high-pressure hydrogen storage cylinder was developed by means of mechanoluminescence (ML) sensor consisting of SrAl2O4:Eu ML material and epoxy resin. To visualize the inner crack, a sheet ML sensor was attached onto the outer surface of the storage cylinder subjected to hydraulic pressure cycling with the maximum pressure of 45 MPa. The ML pattern was changed with an increase in the cycle number and the ML sensor could visualize the inner crack. The stress analysis by the finite element method clarified that the ML sensor provided unique equivalent strain distribution associated with stress concentration at the crack tip, i.e. the distance between two points having high equivalent strains was inversely proportional to the crack depth; consequently, the growth behavior of the inner crack was non-destructively quantified with the ML sensor attached on the outer surface. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:借助于由SrAl2O4:Eu ML材料和环氧树脂组成的机械发光(ML)传感器,开发了一种检测高压储氢瓶内表面产生的裂纹(内部裂纹)的新的无损评估技术。为了可视化内部裂缝,将片状ML传感器连接到经受最大压力为45 MPa的液压循环的储气筒外表面。 ML模式随循环次数的增加而变化,并且ML传感器可以可视化内部裂纹。通过有限元方法进行的应力分析表明,ML传感器提供了与裂纹尖端处的应力集中相关的独特等效应变分布,即具有较高等效应变的两点之间的距离与裂纹深度成反比;因此,通过安装在外表面的ML传感器可以无损地定量内部裂纹的扩展行为。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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