智能面法向调节系统及其在航空钻井机器人中的应用

Rui Zhang, Peijiang Yuan, Maozhen Gong
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引用次数: 8

摘要

航空钻井机器人以其高效、可靠的特点在飞机制造中得到了广泛的应用。而自动钻孔则要求钻头垂直于机身曲面。本文提出了一种智能曲面法向调节系统来解决这一问题。该系统通过激光测距传感器获取三个测量位置来计算表面法向量,并为创新的二元角度调整机构提供校正值,以实时调节钻头的进给方向。我们对航空钻井机器人进行了多项实验。实验结果表明,该系统可将表面法向误差减小到±0.5°以内,满足现代飞机制造的要求。
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Intelligent Surface-normal Adjustment System and Application in Aeronautical Drilling Robot
Aeronautical drilling robot has been widely adopted in aircraft manufacturing with its high efficiency and reliability. Automatic drilling, however, requires the drill bit to be perpendicular to the curved surface of fuselage. In this paper, we present an intelligent surface-normal adjustment system to deal with the problem. This system calculates surface-normal vector by obtaining three measurement positions with laser range sensors and provides correction values to an innovative binary angular adjustment mechanism to regulate the feed direction of the drilling bit in real-time. We carried out a number of experiments on the aeronautical drilling robot. The experimental results demonstrate that this system can decrease the surface-normal error to less than ±0.5° and well meet the demand of modern aircraft manufacturing.
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