State Key Laboratory of Material Processing and Die & Mould Technology, Huazhong University of Science and Technology, Wuhan 430074, China.
Wuhan Vision 3D Technology Ltd., Wuhan 430074, China.
Sensors (Basel). 2018 Dec 10;18(12):4368. doi: 10.3390/s18124368.
The three-dimensional (3D) geometric evaluation of large thermal forging parts online is critical to quality control and energy conservation. However, this online 3D measurement task is extremely challenging for commercially available 3D sensors because of the enormous amount of heat radiation and complexity of the online environment. To this end, an automatic and accurate 3D shape measurement system integrated with a fringe projection-based 3D scanner and an industrial robot is presented. To resist thermal radiation, a double filter set and an intelligent temperature control loop are employed in the system. In addition, a time-division-multiplexing trigger is implemented in the system to accelerate pattern projection and capture, and an improved multi-frequency phase-shifting method is proposed to reduce the number of patterns required for 3D reconstruction. Thus, the 3D measurement efficiency is drastically improved and the exposure to the thermal environment is reduced. To perform data alignment in a complex online environment, a view integration method is used in the system to align non-overlapping 3D data from different views based on the repeatability of the robot motion. Meanwhile, a robust 3D registration algorithm is used to align 3D data accurately in the presence of irrelevant background data. These components and algorithms were evaluated by experiments. The system was deployed in a forging factory on a production line and performed a stable online 3D quality inspection for thermal axles.
大型热锻件的三维(3D)几何在线评估对于质量控制和节能至关重要。然而,由于热辐射量巨大且在线环境复杂,商用 3D 传感器很难完成这项在线 3D 测量任务。为此,提出了一种集成基于条纹投影的 3D 扫描仪和工业机器人的自动、精确的 3D 形状测量系统。为了抵抗热辐射,系统采用了双滤光片组和智能温度控制回路。此外,系统中实现了时分复用触发,以加速图案的投影和采集,并提出了一种改进的多频相移法,以减少 3D 重建所需的图案数量。因此,3D 测量效率大大提高,同时减少了对热环境的暴露。为了在复杂的在线环境中执行数据对准,系统采用视图集成方法,根据机器人运动的重复性,对来自不同视图的非重叠 3D 数据进行对准。同时,使用稳健的 3D 配准算法,即使存在不相关的背景数据,也能精确对准 3D 数据。通过实验对这些组件和算法进行了评估。该系统已部署在锻造厂的生产线上,成功地对热轴进行了稳定的在线 3D 质量检测。