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High-Accuracy 2D Digital Image Correlation Measurements with Bilateral Telecentric Lenses: Error Analysis and Experimental Verification

机译:双侧远心镜头的高精度二维数字图像相关测量:误差分析和实验验证

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摘要

By comparing two digital images of a test planar specimen surface recorded in different configurations, two-dimensional digital image correlation (2D-DIC) provides full-field displacements to sub-pixel accuracy and full-field strains in the recorded images. For the 2D-DIC systems using an optical lens, a simple pinhole imaging model is commonly used to describe the linear relationship between the measured sensor plane displacements and the actual displacements in the object surface. However, in a practical measurement, various unavoidable disadvantageous factors, such as small out-of-plane motion of the test object surface occurred after loading, small out-of-plane motion of the sensor target due to the self-heating or temperature variation of a camera, and geometric distortion of the imaging lens, may seriously impair or slightly change the originally assumed linear correspondence. In certain cases, these disadvantages may lead to significant errors in displacements and strains measured by 2D-DIC. In this work, the measurement errors of 2D-DIC due to the above three disadvantageous factors are first described in detail. Then, to minimize the errors associated with these disadvantages, a high-accuracy 2D-DIC system using a bilateral telecentric lens is established. The performance of the established 2D-DIC system and other two 2D-DIC systems using a conventional lens and an object-side telecentric lens are investigated experimentally using easy-to-implement stationary, out-of-plane and in-plane rigid body translation tests. A detailed examination reveals that a high-quality bilateral telecentric lens is not only insensitive to out-of-plane motion of the test object and the self-heating of a camera, but also demonstrates negligible lens distortion. Uniaxial tensile tests of an aluminum specimen were also performed to quantitatively compare the axial and transversal strains measured by the proposed 2D-DIC system and those measured by strain gage rosettes. The perfect agreement between the two measurements further verifies the accuracy of the established 2D-DIC system.
机译:通过比较以不同配置记录的测试平面样本表面的两个数字图像,二维数字图像相关性(2D-DIC)提供了全场位移到子像素精度和记录图像中的全场应变。对于使用光学透镜的2D-DIC系统,通常使用简单的针孔成像模型来描述所测传感器平面位移与物体表面实际位移之间的线性关系。然而,在实际测量中,各种不可避免的不利因素,例如在加载后发生测试对象表面的小的平面外运动,由于自热或温度变化而导致的传感器目标的小的平面外运动。照相机的角度和成像镜头的几何变形可能会严重损害或稍微改变最初假定的线性对应关系。在某些情况下,这些缺点可能会导致2D-DIC测量的位移和应变出现重大误差。在这项工作中,首先详细说明由于上述三个不利因素而导致的2D-DIC测量误差。然后,为了最小化与这些缺点相关的误差,建立了使用双侧远心镜头的高精度2D-DIC系统。使用易于实现的固定式,平面外和平面内刚体平移实验性地研究了已建立的2D-DIC系统和其他两个使用常规镜头和物方远心镜头的2D-DIC系统的性能测试。仔细检查发现,高质量的双侧远心镜头不仅对测试对象的平面外运动和照相机的自热不敏感,而且镜头畸变可以忽略不计。还对铝样品进行了单轴拉伸测试,以定量比较通过建议的2D-DIC系统测量的轴向应变和横向应变以及通过应变计玫瑰花结测量的应变。两次测量之间的完美一致性进一步验证了已建立的2D-DIC系统的准确性。

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