Variable Powder Flow Rate Control in Laser Metal Deposition Processes

Author:

Tang Lie1,Ruan Jianzhong1,Landers Robert G.1,Liou Frank1

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, 1870 Miner Circle, Rolla, MO 65409-0050

Abstract

This paper proposes a novel method, called variable powder flow rate control (VPFRC), for the regulation of powder flow rate in laser metal deposition processes. The idea of VPFRC is to adjust the powder flow rate to maintain a uniform powder deposition per unit length even when disturbances occur (e.g., the motion system accelerates and decelerates). Dynamic models of the powder delivery system motor and the powder transport system (i.e., 5m pipe, powder dispenser, and cladding head) are constructed. A general tracking controller is then designed to track variable powder flow rate references. Since the powder flow rate at the nozzle exit cannot be directly measured, it is estimated using the powder transport system model. The input to this model is the dc motor rotation speed, which is estimated online using a Kalman filter. Experiments are conducted to examine the performance of the proposed control methodology. The experimental results demonstrate that the VPFRC method is successful in maintaining a uniform track morphology, even when the motion system accelerates and decelerates.

Publisher

ASME International

Subject

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

Reference10 articles.

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5. Hu, Y. P., Chen, C. W., and Mukherjee, K., 1997, “An Analysis of Powder Feeding Systems on the Quality of Laser Cladding,” Advances in Powder Metallurgy and Particulate Materials, Chicago IL, June 29–July 2, Vol. 3, pp. 21.17–21.31.

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