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Digital Image Correlation technique: application to early fatigue damage detection in stainless steel

机译:数字图像相关技术:在不锈钢中提前疲劳损伤检测的应用

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In the context of development of a numerical model, to accurately predict the fatigue life of a structural component, it is fundamental to consider both the initiation stage and the propagation stage of micro-cracks. Such a development requires dedicated experimental tools both to provide the physical understanding needed for designing models and to validate the proposed approaches and models. Thus, this paper presents the experimental means that need to be used for such a purpose. The approach is based on the analysis of displacement field measurements by digital image correlation (DIC) during low-cycle fatigue tests. A specific filtering tool is also presented to minimize the committed errors when derivative operation is performed for strain calculation. Therefore, in this quite recent application of DIC, the reproducibility of the method has to be questioned and validated, with help of some more conventional strain measurements devices. It seems that the experimental conditions have to be carefully controlled, so that the results can be interpreted in terms of mechanical phenomena.
机译:在开发数值模型的背景下,准确地预测结构部件的疲劳寿命,这是考虑发起阶段和微裂纹的传播阶段的基础。这种开发需要专用的实验工具,以提供设计模型所需的物理理解,并验证所提出的方法和模型。因此,本文提出了需要用于此目的的实验方法。该方法基于在低循环疲劳试验期间通过数字图像相关(DIC)对位移场测量的分析。还呈现特定的滤波工具以最小化当对应变计算执行导数操作时的承诺错误。因此,在最近的DIC应用中,必须在一些更传统的应变测量装置的帮助下解决和验证该方法的再现性。似乎必须仔细控制实验条件,以便在机械现象方面可以解释结果。

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