DocumentCode :
1412823
Title :
Feedback Control of Melt Pool Temperature During Laser Cladding Process
Author :
Song, Lijun ; Mazumder, Jyoti
Author_Institution :
Center for Laser Aided Intell. Manuf., Univ. of Michigan, Ann Arbor, MI, USA
Volume :
19
Issue :
6
fYear :
2011
Firstpage :
1349
Lastpage :
1356
Abstract :
Laser cladding is a multiple-parameter-dependent process, and a feedback control is critical for the process stabilization. This paper presents a generalized predictive control strategy with input constraints to stabilize the melt pool temperature during a high-power diode laser cladding process. A dual-color pyrometer was used to monitor the melt pool temperature. A state-space dynamic model relating the laser drive signal (laser power) to the melt pool temperature was identified experimentally using the subspace method. A generalized predictive controller with input constraints was implemented in real time using the state-space model. The closed-loop process was able to track the melt pool temperature to a reference temperature profile. Laser cladding of H13 tool steel on a substrate with uneven surface showed that the closed-loop process was able to compensate for an under-fill with 3-mm depth after 40-layer depositions.
Keywords :
cladding techniques; closed loop systems; feedback; laser materials processing; melt processing; predictive control; pyrometers; state-space methods; temperature control; tool steel; H13 tool steel; closed-loop process; dual-color pyrometer; feedback control; generalized predictive control strategy; generalized predictive controller; high-power diode laser cladding process; input constraints; laser drive signal; laser power; melt pool temperature; multiple-parameter-dependent process; process stabilization; reference temperature profile; state-space dynamic model; state-space model; Feedback control; Laser applications; Predictive control; Temperature control; Direct metal deposition (DMD); laser cladding; laser materials-processing applications; model predictive control; temperature control;
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2010.2093901
Filename :
5675755
Link To Document :
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