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Energy consumption and performance optimisation of laser cleaning for coating removal

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journal contribution
posted on 2022-02-08, 10:54 authored by Jinglei Ouyang, Paul Mativenga, Nick Goffin, Wen Liu, Zhu Liu, Nazanin Mirhosseini, Lewis JonesLewis Jones, Elliot WoolleyElliot Woolley, Lin Li
Selective removal of coatings by lasers can facilitate the reuse of coated tools in a circular economy. In order to optimise and control the process, it is essential to study the impact of process input variables on process performance. In this paper, coating removal from tooling was carried out using a picosecond a pulsed fibre laser, in order to investigate the effects of laser pulse energy, pulse frequency, galvo scanning speed and scanning track stepover. A fractional factorial design of experiments and analysis of variance was used to optimise the process; considering cleaning rate, specific energy consumption and surface integrity as assessed by changes in surface roughness and composition of the tooling after laser cleaning. The results shows synergy between cleaning rate and specific energy with the laser pulse frequency and galvo scanning speed as the two most significant factors, while the laser pulse energy had the greatest contribution to changes in surface composition. Based on extensive experiments, the relationship between processing rate and system specific energy consumption was mathematically modelled. The paper contributes a new specific energy model for laser cleaning and provides a benchmark of the process energy requirements compared to other manufacturing processes. Additionally, the generic scientific learning from this is that the rate of energy input is a key tool for maximising cleaning rate and minimising specific energy requirements, while the intensity of energy applied, is a key metric that influences surface integrity. More complex factors, influence the surface integrity.

Funding

Research on the theory and key technology of laser processing and system optimisation for low carbon manufacturing (LASER-BEAMS)

Engineering and Physical Sciences Research Council

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History

School

  • Mechanical, Electrical and Manufacturing Engineering

Published in

CIRP Journal of Manufacturing Science and Technology

Volume

37

Pages

245 - 257

Publisher

Elsevier

Version

  • AM (Accepted Manuscript)

Rights holder

© CIRP

Publisher statement

This paper was accepted for publication in the journal CIRP Journal of Manufacturing Science and Technology and the definitive published version is available at https://doi.org/10.1016/j.cirpj.2022.02.001.

Acceptance date

2022-02-01

Publication date

2022-02-16

Copyright date

2022

ISSN

1755-5817

Language

  • en

Depositor

Dr Lewis Jones. Deposit date: 7 February 2022

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