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Three-Dimensional Crack Detection Method for Structures Using Simulated Strain Gages and the Body Force Method

机译:模拟应变计的三维结构裂纹检测方法和体力法

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A method for estimating the stress field of an observed domain by considering the surface of a 3-dimensional object as a pseudo-3-dimensional object has been proposed in a previous report by the present authors. In this method, some strain gages and the body force method are used. In this paper, the method is applied to crack detection in notched structures. A characteristic stress field attributable to the crack can be expected in the observed domain. Crack detection is then tried by showing the characteristic stress field. Detection of an ideal crack, which is a through crack or a quarter-circular crack on the hidden side, is studied using the finite-element method (FEM). Moreover, the stress fields are estimated using the present method from the FEM's stress values instead of actual stress values. In both a through crack and a quarter-circular hidden crack, the characteristic stress field can be shown; the characteristic stress field means that two stress concentrations exist along the notch. Finally, the application limits of the present method are shown.
机译:在当前作者的先前报告中已经提出了一种通过将3维物体的表面视为伪3维物体来估计观察域的应力场的方法。在这种方法中,使用了一些应变计和体力法。本文将该方法应用于带缺口结构的裂缝检测。可以在观察到的区域中预期归因于裂纹的特征应力场。然后通过显示特征应力场尝试进行裂纹检测。使用有限元方法(FEM)研究了理想裂纹的检测,该裂纹是隐藏侧的贯穿裂纹或四分之一圆形裂纹。而且,使用本方法从FEM的应力值而不是实际应力值估计应力场。在贯穿裂纹和四分之一圆形的隐藏裂纹中,都可以显示特征应力场。特征应力场意味着沿缺口存在两个应力集中。最后,示出了本方法的应用范围。

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