Digital Image Correlation Test Method and Its Parameter Sensitivity Analysis for Elastic Constants of 2A12 Aluminum Alloy

摘 要
建立了基于三维数字图像相关(3D-DIC)的非接触光学测试系统,对2A12铝合金弹性常数进行了测试,在此基础上分析了DIC子区和步长的大小对材料弹性常数测试结果的影响,并探讨了2A12铝合金在拉伸载荷作用下的变形演化规律。结果表明:3组2A12铝合金试样测得的弹性模量和泊松比分别为66.32,67.51,63.08 GPa和0.333,0.336,0.347;改变子区大小将引起图像噪音的变化,对测试结果的影响较改变步长的影响更为明显,步长则主要作用于DIC算法的运行时间;2A12铝合金试样在整个拉伸过程中依次经过弹性变形、均匀塑性流动以及应变局部化三个阶段后发生断裂。












Abstract
Non-contact optical measurement system based on three-dimensional digital image correlation (3D-DIC) was established to test the elastic constants of 2A12 aluminum alloy. The effects of different sizes of DIC parameters, i.e. subset size and step size, on the elastic constant test results of the material were investigated, and the deformation evolution law of 2A12 aluminum alloy under the action of tensile load was also discussed. The results show that the elastic modulus and Poisson ratio of three groups of 2A12 aluminum alloy specimens were 66.32, 67.51, 63.08 GPa and 0.333, 0.336, 0.347, respectively. Changing the subset size caused the change of image noise, subset size had more influence on the test results compared to step size, and step size mainly controlled the computational time of DIC algorithm. The 2A12 aluminum alloy specimen fractured after three stages of elastic deformation, uniform plastic flow and strain localization.
中图分类号 O348.1 TG146.2 DOI 10.11973/lhjy-wl201808003
所属栏目 专题报道(光测力学试验技术)
基金项目 中央高校基本科研业务费专项(3122014H002)
收稿日期 2017/11/28
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备注刘海淙(1991-),男,硕士,主要从事航空器结构变形试验检测与数值模拟研究,mathislhc@163.com
引用该论文: LIU Haicong,LI Xiangping. Digital Image Correlation Test Method and Its Parameter Sensitivity Analysis for Elastic Constants of 2A12 Aluminum Alloy[J]. Physical Testing and Chemical Analysis part A:Physical Testing, 2018, 54(8): 557~562
刘海淙,李湘萍. 2A12铝合金弹性常数数字图像相关测试法及其参数灵敏度分析[J]. 理化检验-物理分册, 2018, 54(8): 557~562
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【8】胡斌,贺玲凤,张蕊. 橡胶材料弹性模量数字图像相关测得法[J]. 实验力学,2011,26(2):151-157.
【9】ZHU F P, BAI P X, ZHANG J B, et al. Measurement of true stress-strain curves and evolution of plastic zone of low carbon steel under uniaxial tension using digital image correlation[J]. Optics and Laser in Engineering,2015,65:81-88.
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