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Imaging of three-dimensional crack open/closed distribution by nonlinear ultrasonic phased array based on fundamental wave amplitude difference

机译:基于基础波振幅差异的非线性超声相控阵的三维裂纹开放/闭合分布的成像

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摘要

We investigated the imaging capability of fixed-voltage fundamental wave amplitude difference (fixed-voltage FAD), which is one of the nonlinear ultrasonic phased array imaging techniques, for three-dimensional crack open/closed distribution. We fabricated two fatigue crack specimens with different thicknesses, which were selected to create different open/closed distributions in them. As a result of applying fixed-voltage FAD with mechanical scans to the thick and thin specimens, the difference in the crack open/closed distribution was successfully visualized. The results are in good agreement with fracture mechanics. Thus, it was demonstrated that fixed-voltage FAD is useful not only for nondestructive testing for aging infrastructures but also for the progress in fracture mechanics. (C) 2020 The Japan Society of Applied Physics
机译:我们调查了固定电压基波幅度差(固定电压FAD)的成像能力,其是非线性超声波相位阵列成像技术之一,用于三维裂纹开口/封闭分布。我们制造了两种具有不同厚度的疲劳裂纹标本,选择在它们中产生不同的开放/封闭分布。由于将固定电压用机械扫描施加到厚薄的标本,因此成功地可视化了裂缝开口/封闭分布的差异。结果与骨折力学有关。因此,证明固定电压FAD不仅用于对老化基础设施的非破坏性测试而且还用于骨折力学的进展。 (c)2020日本应用物理学会

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