Sun Wei, Zhao Jie, Li Xin, Xu Zhongda, Chen Zhenning
College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.
Materials (Basel). 2023 Jun 10;16(12):4301. doi: 10.3390/ma16124301.
To study the compressive properties of an elastomeric porous cylinder, a 360° 3D digital image correlation (DIC) system is proposed. This compact vibration isolation table system captures different segments of the object from four different angles and fields of view, enabling a comprehensive measurement of the full surface of the object. To increase the stitching quality, a coarse-fine coordinate matching method is presented. First, a three-dimensional rigid body calibration auxiliary block is employed to track motion trajectory, which enables preliminary matching of four 3D DIC sub-systems. Subsequently, scattered speckle information characteristics guide fine matching. The accuracy of the 360° 3D DIC system is verified through a three-dimensional shape measurement conducted on a cylindrical shell, and the maximum relative error of the shell's diameter is 0.52%. A thorough investigation of the 3D compressive displacements and strains exerted on the full surface of an elastomeric porous cylinder are investigated. The results demonstrate the robustness of the proposed 360° measuring system on calculating images with voids and indicate a negative Poisson's ratio of periodically cylindrical porous structures.
为了研究弹性多孔圆柱体的压缩特性,提出了一种360°三维数字图像相关(DIC)系统。这种紧凑的隔振台系统从四个不同角度和视野捕捉物体的不同部分,能够对物体的整个表面进行全面测量。为了提高拼接质量,提出了一种粗-细坐标匹配方法。首先,采用三维刚体校准辅助块跟踪运动轨迹,实现四个三维DIC子系统的初步匹配。随后,散射散斑信息特征引导精细匹配。通过对圆柱壳进行三维形状测量,验证了360°三维DIC系统的精度,壳直径的最大相对误差为0.52%。深入研究了弹性多孔圆柱体整个表面上的三维压缩位移和应变。结果证明了所提出的360°测量系统在计算有空隙图像时的稳健性,并表明周期性圆柱多孔结构的泊松比为负。