首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Numerical simulation of laser-generated ultrasonic waves for identification of branched -breaking defects
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Numerical simulation of laser-generated ultrasonic waves for identification of branched -breaking defects

机译:激光产生超声波识别分支缺陷缺陷的数值模拟

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In order to detect stress corrosion cracking (SCC) type defects, this paper uses the finite element method (FEM) to simulate the branched-breaking defects and use the laser-generated ultrasonic wave to detect the branched-breaking defects. The branched-breaking defects often influence the reflection and mode conversion of ultrasonic wave. When the branch surface defects are at the top of the slot, the maximum amplitude of the R-wave signal spectrum gradually increases as the angle of the branch defect decreases. However, when the branch surface defects are at the center of the slot, the Rayleigh wave (R-wave) has the same characteristics and the maximum amplitude of the R-wave signal spectrum are much lower than the branch defects are at the top of the slot. The proposed method may provide an useful way to identify and distinguish the branchedbreaking defects.
机译:为了检测应力腐蚀裂解(SCC)型缺陷,本文使用有限元方法(FEM)来模拟分支缺陷,并使用激光产生的超声波检测分支缺陷。 分枝破坏缺陷通常会影响超声波的反射和模式转换。 当分支表面缺陷位于槽的顶部时,随着分支缺陷的角度减小,R波信号谱的最大幅度逐渐增加。 然而,当分支表面缺陷处于槽的中心时,瑞利波(R波)具有相同的特性,R波信号谱的最大幅度远低于分支缺陷在顶部 插槽。 该方法可以提供识别和区分分支缺陷的有用方法。

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