Laser cladding processing has been used in different industry sector to improve the surface properties or to reconstruct damaged pieces. In order to cover areas considerably larger than the diameter of the laser beam, successive partially overlapping tracks are deposited. With no control over the process variables this conduces to an increase of the temperature which could decrease mechanical properties of the coating. In some cases, the process is monitored and controlled by a PC using cameras, but this control suffers from a lack of speed caused by the image processing step. The aim of this work is to design an FPGA-based laser cladding control system. This system is intended to modify the laser beam power according to the melt pool width, which is measured using a CMOS camera. All the control and monitoring tasks are carried out by a FPGA, taking advantage of its abundance of resources and speed of operation. The robustness of the image processing algorithm is assessed, as well as the control system performance. Laser power is decreased as substrate temperature increases, thus maintaining a constant clad width. Both PC and FPGA implementations are also compared, demonstrating that the use of a FPGA yields a faster and more powerful controller thanks to its higher speed.
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ICALEO 2011: 30th International Congress on Laser Materials Processing, Laser Microprocessing and Nanomanufacturing
October 23–27, 2011
Orlando, Florida, USA
ISBN:
978-0-912035-94-9
PROCEEDINGS PAPER
Improvements in laser cladding process through an FPGA-Based control system Available to Purchase
Félix Vidal;
Félix Vidal
1
AIMEN Technology Center
, Porriño, Spain
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J. L. Mato;
J. L. Mato
1
AIMEN Technology Center
, Porriño, Spain
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M. Ángeles Montealegre;
M. Ángeles Montealegre
1
AIMEN Technology Center
, Porriño, Spain
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Pablo Colodrón;
Pablo Colodrón
2Department of Electronic Technology,
University of Vigo
, Vigo, Spain Technology Centre AIMEN, Relva 27A - O Porriño, Pontevedra, 36410, Spain
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José Fariña;
José Fariña
2Department of Electronic Technology,
University of Vigo
, Vigo, Spain Technology Centre AIMEN, Relva 27A - O Porriño, Pontevedra, 36410, Spain
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Juan J. Rodriguez-Andina
Juan J. Rodriguez-Andina
2Department of Electronic Technology,
University of Vigo
, Vigo, Spain Technology Centre AIMEN, Relva 27A - O Porriño, Pontevedra, 36410, Spain
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Published Online:
October 01 2011
Citation
Félix Vidal, J. L. Mato, M. Ángeles Montealegre, Pablo Colodrón, José Fariña, Juan J. Rodriguez-Andina; October 23–27, 2011. "Improvements in laser cladding process through an FPGA-Based control system." Proceedings of the ICALEO 2011: 30th International Congress on Laser Materials Processing, Laser Microprocessing and Nanomanufacturing. ICALEO 2011: 30th International Congress on Laser Materials Processing, Laser Microprocessing and Nanomanufacturing. Orlando, Florida, USA. (pp. pp. 205-210). ASME. https://doi.org/10.2351/1.5062237
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