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Strain Measurement in an Elastic Material under Large Deformation Using Optical Reconstruction Methods

机译:使用光学重建方法在大变形下测量弹性材料中的应变

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The aim of this study was to explore photo-grammetry- optical imaging method used to describe the local variation of strain in an elastic material undergoing large deformation. The material under investigation was marked with reference points (to identify the relative deformation) and imaged with two stereoscopically positioned cameras during a tensile test (strain rate 10 mm/ 60 s). The cameras were cali brated using the Bouguet calibration toolbox in Matlab to characterize their optics and establish their positions. Two dimensional (2D) images from both cameras were investigated to obtain the three dimensional (3D) position of the markers. The deformation of the elastic material was determined by 3D reconstruction of the deformed geometry. Strain results de rived from Matlab were in good agreement (99 % ± 0.3 %) with a manual measurement using a caliper. Camera calibra tion and reconstruction accuracy results indicated an uncer tainty of dot separation of the order 30 μm, with inter-point distance of approximately 3 mm. The feasibility of application of photogrammetry for strain measurement through 3D reconstruction of an investigated object has been demonstrated in this study. The optical tech nique shows potential for development to investigate local strain variation in elastic biological materials.
机译:这项研究的目的是探索用于描述经受大变形的弹性材料中应变的局部变化的照相测量法-光学成像方法。被测材料标有参考点(以识别相对变形),并在拉伸试验(应变速率10 mm / 60 s)中用两个立体定位的相机成像。使用Matlab中的Bouguet校准工具箱对摄像机进行了校准,以表征其光学特性并确定其位置。研究了两个相机的二维(2D)图像,以获得标记的三维(3D)位置。弹性材料的变形通过变形几何形状的3D重建来确定。使用卡尺进行手动测量,从Matlab得出的应变结果非常一致(99%±0.3%)。相机校准和重建精度结果表明点间距的不确定性约为30μm,点间距离约为3 mm。这项研究证明了摄影测量法通过3D重建研究对象进行应变测量的可行性。光学技术显示出研究弹性生物材料中局部应变变化的发展潜力。

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