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Numerical modeling of general cracks from the viewpoint of eddy current simulations

机译:从涡流模拟的角度看一般裂纹的数值模拟

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This study discusses numerical modeling of fatigue and stress corrosion cracking in eddy current simulations. Ten fatigue crack specimens and another 10 stress corrosion crack specimens are prepared for this purpose. The specimens are made of type 316 stainless steel and measure 10 mm in thickness for a general evaluation of the model. Eddy current inspections of the specimens are performed using a differential type plus point probe; the specimens then undergo destructive tests to confirm the true profiles of the cracks. Subsequent numerical simulations are conducted to evaluate the equivalent conductivity and width of the cracks. The simulations demonstrate that a fatigue crack can be modeled as a non-conductive region, and it is not necessary to know exactly how wide the opening of a fatigue crack is. They also revealed, in contrast, that stress corrosion cracking needs to be modeled as a conductive region with a certain width.
机译:本研究讨论了涡流模拟中疲劳和应力腐蚀裂纹的数值模型。为此准备了十个疲劳裂纹样本和另外十个应力腐蚀裂纹样本。样品由316型不锈钢制成,厚度为10毫米,用于模型的一般评估。样品的涡流检查使用差动式加点探针进行;然后对样品进行破坏性测试以确认裂纹的真实轮廓。随后进行了数值模拟,以评估裂纹的等效电导率和宽度。仿真表明,可以将疲劳裂纹建模为非导电区域,因此不必确切知道疲劳裂纹的开口宽度。相反,他们还发现,应力腐蚀开裂需要建模为具有一定宽度的导电区域。

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