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3D Full-Field Deformation Measuring Technique Using Digital Image Correlation

机译:使用数字图像相关的3D全场变形测量技术

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Full-field deformation measurements are crucial as it offers detailed information to better understand both micro and macroscopic nature of material behavior. The practice of employing Digital Image Correlation (DIC) based measuring techniques in experiments has increased due to its ability to generate full-field deformation information with minimal effort. Even though DIC systems are commercially available, the affordability of those systems is questionable in local context due to high capital costs. Most of the past studies related to DIC were focused on testing concrete, masonry and metallic alloy specimens, and little effort has been made on materials with recoverable large elongations. This paper presents a 3D full-field deformation measuring system that has been developed with a special focus on hyperelastic materials. The proposed system requires two common digital cameras for image acquisition, as the depth information is of interest. Images are then processed using the MATLAB-based algorithm developed to produce the full-field deformation map. Hyperelastic specimens of two different thicknesses were tested over 70% strain and the accuracy of the strain measurement using the proposed system is validated against physical measurements. The results have shown that the strains can be captured to an accuracy greater than 90% using the proposed technique.
机译:全场形变测量至关重要,因为它提供了详细的信息,以更好地了解材料行为的微观和宏观性质。由于能够以最少的精力生成全场变形信息,因此在实验中采用基于数字图像相关(DIC)的测量技术的实践有所增加。即使DIC系统是可商购的,但由于高昂的资本成本,这些系统的可负担性在本地情况下还是令人怀疑的。过去与DIC有关的大多数研究都集中在测试混凝土,砖石和金属合金试样上,而对于可恢复大伸长率的材料所做的工作很少。本文介绍了专门针对超弹性材料开发的3D全场变形测量系统。所提出的系统需要两个通用的数码相机来进行图像采集,因为深度信息令人关注。然后,使用基于MATLAB的算法处理图像,以生成全场变形图。在70%的应变下测试了两种不同厚度的超弹性试样,并针对物理测量验证了使用所提出的系统进行应变测量的准确性。结果表明,使用所提出的技术可以将应变捕获到大于90%的精度。

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