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首页> 外文期刊>Experimental Mechanics >An Out-of-Plane Motion Compensation Strategy for Improving Material Parameter Estimation Accuracy with 2D Field Measurements
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An Out-of-Plane Motion Compensation Strategy for Improving Material Parameter Estimation Accuracy with 2D Field Measurements

机译:利用二维场测量提高材料参数估计精度的平面外运动补偿策略

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摘要

In-plane surface displacements, when measured with 2D Digital Image Correlation (2D-DIC), are very sensitive to out-of-plane displacement components. Any out-of-plane motion of the surface can pollute the measured field by introducing artificial displacements. These displacements are difficult to separate from the underlying response of the surface and thereby limit the application of 2D-DIC in inverse problems where the test specimen has significant motion in the out-of-plane direction. In the context of inverse problems, we propose to partially relax this condition of no out-of-plane motion in 2D-DIC. With this approach, only the out-of-plane rigid-body motion of the specimen surface, which is initially in-plane, needs to be avoided while the requirement of surface deformations to be primarily in-plane is essentially waived. Compensation, based on the pinhole camera model, for out-of-plane displacements of the surface in response to applied load is included within the error function of the minimization problem. The improvements in material parameter estimation, obtained by using the proposed compensation strategy, are demonstrated by an example. The proposed technique makes it possible to utilize 2D-DIC with a simple conventional lens for an increased number of inverse problems; and in the process avoiding the computational and experimental difficulties associated with 3D measurement methods as well as the high cost and magnification limitations of a telecentric lens.
机译:当使用2D数字图像相关(2D-DIC)测量时,平面内表面位移对平面外位移分量非常敏感。表面的任何平面外运动都可能通过引入人工位移来污染测量场。这些位移很难与表面的基本响应分开,从而限制了2D-DIC在反问题中的应用,在反问题中,试样在平面外方向上有明显运动。在逆问题的背景下,我们建议部分放松2D-DIC中没有平面外运动的条件。通过这种方法,只需要避免最初在平面内的样品表面的平面外刚体运动,而基本上不需要主要在平面内的表面变形。基于针孔相机模型的,响应于施加的载荷的表面平面外位移的补偿包括在最小化问题的误差函数内。通过使用示例的补偿策略获得的材料参数估计的改进。所提出的技术使得可以将2D-DIC与简单的常规透镜一起使用来解决更多的反问题。并且避免了与3D测量方法相关的计算和实验困难以及远心镜头的高成本和放大倍数限制。

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