Khodadad Davood, Singh Alok Kumar, Pedrini Giancarlo, Sjödahl Mikael
Appl Opt. 2016 Sep 20;55(27):7735-43. doi: 10.1364/AO.55.007735.
The objective of this paper is to describe a full-field deformation measurement method based on 3D speckle displacements. The deformation is evaluated from the slope of the speckle displacement function that connects the different reconstruction planes. For our experiment, a symmetrical arrangement with four illuminations parallel to the planes (x,z) and (y,z) was used. Four sets of speckle patterns were sequentially recorded by illuminating an object from the four directions, respectively. A single camera is used to record the holograms before and after deformations. Digital speckle photography is then used to calculate relative speckle displacements in each direction between two numerically propagated planes. The 3D speckle displacements vector is calculated as a combination of the speckle displacements from the holograms recorded in each illumination direction. Using the speckle displacements, problems associated with rigid body movements and phase wrapping are avoided. In our experiment, the procedure is shown to give the theoretical accuracy of 0.17 pixels yielding the accuracy of 2×10 in the measurement of deformation gradients.
本文的目的是描述一种基于三维散斑位移的全场变形测量方法。通过连接不同重建平面的散斑位移函数的斜率来评估变形。在我们的实验中,采用了一种对称布置,有四个平行于平面(x,z)和(y,z)的照明。分别从四个方向照射物体,依次记录四组散斑图案。使用单个相机记录变形前后的全息图。然后利用数字散斑摄影计算两个数值传播平面之间每个方向上的相对散斑位移。三维散斑位移矢量是通过组合在每个照明方向记录的全息图中的散斑位移来计算的。利用散斑位移,避免了与刚体运动和相位包裹相关的问题。在我们的实验中,该方法显示出理论精度为0.17像素,在变形梯度测量中产生的精度为2×10 。