A prototype robot for polishing and milling large objects

Author:

Zieliński Cezary,Mianowski Krzysztof,Nazarczuk Kazimierz,Szynkiewicz Wojciech

Abstract

The paper describes a prototype robot which due to its serial‐parallel structure exhibits, high stiffness and has a large work envelope. These features make this robot suitable for relatively high precision machining operations on large workpieces. The conroller for this robot was based on MRROC++, which is a robot programming framework. Thus the controller could be tailored to the tasks at hand, including the capability of in‐program switching of kinematic model parameters. To obtain those parameters for different locations in the work‐space a calibration procedure using linear measurement guides has been devised.

Publisher

Emerald

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Control and Systems Engineering

Reference16 articles.

1. Alami, R., Chatila, R., Fleury, S., Ghallab, M. and Ingrand, F. (1998), “An architecture for autonomy”, International Journal of Robotics Research, Vol. 17 No. 4, pp. 315–37.

2. Fitzgerald, J.M. (1993), “Evaluating the Stewart platform for manufacturing”, Robotics Today, Vol. 6 No. 1, pp. 1–6.

3. GREIF – Roboter‐Gestutzte Shleif‐und Polierzellen Typ MC‐560 (2001), Greif Grindrobot Schleifsystem GmbH Materials, Gevelsberg, Germany, http://www. greif‐grindrobot.de/Start/Produkte/81‐3A/81‐3a.html

4. Kilpi, V., Sundelin, K., Halinen, K. and Leikas, E. (1994), Grinding of ship propellers with industrial robot, Proceedings of the 25th International Symposium on Industrial Robots, 25‐27 April, Hannover, Germany, pp. 615‐20.

5. Madesater, A. (1993), “Robot‐based machine tool for the aerospace industry – flexible robot in a production cell at Saab‐Scania”, Industrial Robot, Vol. 20 No. 3, pp. 11–13.

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