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Application of complementary optical methods for strain investigation in composite high pressure vessel

机译:互补光学方法在复合高压容器应变研究中的应用

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The work presents the methodology of displacement and strain measurements (in type IV composite high pressure hydrogen and methane storage vessels in areas of the gaseous fuel cell vehicle. The research was conducted in vessels with so called programmed defects in the form of notches and delamination. The complementary optical methods, namely: optical fibre sensing based on Bragg gratings (FBG) and digital image correlation (DIC) method were used for performing local and full-field displacement/strain measurements respectively. It has been shown that DIC can be successfully applied as the method for defect identification in full field of view and that it can support an optimal localization of FBG sensors and their calibration. As FBG sensors are devoted to be integrated with the vessel structure, the proposed methodology constitutes a solution to the difficult problem of building an efficient Structural Health Monitoring (SHM) system for composite high pressure vessels for gaseous fuels. At the same time the measurement data from both systems supports calibration of numerical models of the vessels.
机译:这项工作提出了位移和应变测量的方法(在气态燃料电池车辆区域的IV型复合高压氢和甲烷存储容器中进行。研究是在具有所谓的程序缺陷的容器中进行的,这些缺陷以缺口和分层的形式出现)。互补光学方法分别是:基于布拉格光栅的光纤传感(FBG)和数字图像相关(DIC)方法分别进行局部和全场位移/应变测量,结果表明DIC可以成功地应用。作为全视野下的缺陷识别方法,它可以支持FBG传感器的最佳定位及其校准;由于FBG传感器致力于与血管结构集成,因此所提出的方法构成了解决难题的方法。为用于气体燃料的复合高压容器建立有效的结构健康监测(SHM)系统s。同时,来自两个系统的测量数据都支持对容器数值模型的校准。

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