轮廓仪
刀(考古)
结构光三维扫描仪
投影(关系代数)
准确度和精密度
高动态范围
点云
计量系统
计算机科学
像素
动态范围
数字光处理
人工智能
计算机视觉
材料科学
机械工程
算法
物理
工程类
复合材料
表面粗糙度
量子力学
投影机
扫描仪
天文
作者
Hongzhi Jiang,Qi Wang,Haitao Zhao,Xudong Li
标识
DOI:10.1016/j.optlastec.2023.110085
摘要
Aeroengine blade is a core component of aircrafts. Accurate measurement of its profile has a great significance for flight safety. However, obtaining a high-quality 3D model of blade is difficult because traditional methods are limited in simultaneously meeting the requirements of large-scale measurement of smooth areas and high-precision measurement of fine structures. We develop a high-precision composite 3D shape measurement method of aeroengine blade. The proposed system consists of two sensors: a global sensor for large-range measurement and a local sensor for high-precision measurement. The global sensor based on parallel single-pixel imaging is used for smooth areas such as blade body and back, which undertakes most of the measurement tasks. The local sensor based on high-dynamic range N-step fringe projection profilometry has a high resolution to measure fine structures such as blade edge and top. We also use the local sensor to complete the missing point cloud of strong reflective areas. A phase-based data alignment method is developed to obtain coordinate transformation between the global and local sensors. Experiment results demonstrate that the proposed method can achieve accurate measurement and finally reconstruct the high-quality 3D model of aeroengine blade.
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