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Identification of Boundary Condition from Measured Displacements for Linear Elastic Deformation Fields

机译:根据线性弹性形变场的测量位移识别边界条件

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An experimental-numerical hybrid method is proposed for obtaining reliable and accurate stress and strain distributions from measured displacement fields. Tractions acting at the boundary of the local analysis region are inversely determined from the measured displacements inside that region. Then, stresses are obtained by finite element direct analysis by applying the computed boundary condition. Effectiveness is validated by applying the proposed method to the displacement fields around a hole in a perforated plate obtained by electronic speckle pattern interferometry, and the displacement fields around a crack tip obtained by digital image correlation. Results show that the boundary condition for a local finite element model can be determined from the measured displacements and then the accurate and reliable stresses can be obtained by the proposed method. It is expected that the proposed method can be powerful tool for stress analysis.
机译:为了从测量的位移场中获得可靠和准确的应力和应变分布,提出了一种实验数字混合方法。反作用于局部分析区域边界的牵引力由该区域内部测得的位移反向确定。然后,通过应用计算的边界条件,通过有限元直接分析获得应力。通过将所提出的方法应用于通过电子散斑图案干涉法获得的穿孔板中孔周围的位移场以及通过数字图像相关获得的裂纹尖端周围的位移场来验证有效性。结果表明,根据所测得的位移可以确定局部有限元模型的边界条件,进而可以得到准确可靠的应力。期望该方法可以成为进行应力分析的有力工具。

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