Title :
The aeronautical drilling robot based on flexible track
Author :
Tao Yong ; Yuan Peijiang ; Wang Tianmiao
Author_Institution :
Sch. of Mech. Eng., Beihang Univ., Beijing, China
Abstract :
Automatic drilling and riveting technology is one of the key technologies for developing the digital flexible assembly of a new generation of aircraft. With the development of ARJ21 and C919 aircraft, it is very important to study the low-cost, flexible and efficient robot drilling system, which not only realizes the drilling automation but also reduces the costs. The flexible track drilling robot experimental platform is designed and implemented, based on the automatic drill riveting, advanced robot mechanism and automatic control method. The hardware design, software control framework, robotic control process and experimental testing method are proposed in this paper. The validity of the robot system is verified through the automatic drilling experiments. The processing parameters of the aircraft assembly such as the consistency of automatic drilling, the surface smoothness, the normal verticality and so on, are enhanced through integrating the automatic drilling and intelligent robotic control technology. The aeronautical drilling robot provides technical support for the implementation of the aircraft digital flexible assembly.
Keywords :
aircraft; aircraft manufacture; cost reduction; drilling; drilling machines; flexible manufacturing systems; intelligent control; riveting; robotic assembly; ARJ21 aircraft; C919 aircraft; advanced robot mechanism; aeronautical drilling robot; aircraft assembly; automatic control method; automatic drill riveting; automatic drilling technology; automatic riveting technology; cost reduction; digital flexible assembly; experimental testing method; flexible track; flexible track drilling robot experimental platform; hardware design; intelligent robotic control technology; normal verticality; robot drilling system; robotic control process; software control framework; surface smoothness; Aircraft; Aircraft propulsion; Assembly; Educational institutions; Electronic mail; Process control; Robots; Aeronautical Drilling; Flexible Track; Normal Adjustment; Robotic Control;
Conference_Titel :
Control Conference (CCC), 2013 32nd Chinese
Conference_Location :
Xi´an