DocumentCode :
1433991
Title :
Laser Guiding in the Randomicity of Discrete Surface Strengthening by Arc Discharge
Author :
Zhitong, Wang ; Zhongqiang, Zhou ; Yanliang, Han ; Mao, Shi ; Mingjiang, Yang
Author_Institution :
Key Lab. of Mech. in Adv. Manuf., Chinese Acad. of Sci., Beijing, China
Volume :
38
Issue :
4
fYear :
2010
fDate :
4/1/2010 12:00:00 AM
Firstpage :
943
Lastpage :
947
Abstract :
Several discharge areas by laser-guided discharge (LGD) were compared with those by common arc discharge. The randomicity of discharge areas by common arc discharge was controlled by laser guiding on two scales: large scale (the spacing of the discharge areas) and small scale (the inside of the discharge area). The position of the discharge area overlapped completely with a laser focus; therefore, the distribution and surface shape of the discharge areas were controlled. The stochastic movement of anode spot in the discharge area was controlled by laser guiding. As such, the repetitive melting and solidifying of microstructures in the discharge area was constrained. The tempered microstructures in the discharge area were voided, the utilization efficiency of input energy was improved, and the strengthened depth of the discharge areas was increased. The regularity of cross-sectional shape of the discharge area was also improved. The hardness of microstructures in both discharge areas is greater than that of the base material. The highest level of hardness of microstructures in both discharge areas measures above 1000 HV. In summary, the hardness of microstructures in the discharge area by LGD is larger and more discrete than that by common arc discharge.
Keywords :
arcs (electric); hardness; laser hardening; melting; plasma materials processing; plasma production by laser; random processes; solidification; stochastic processes; surface discharges; tempering; voids (solid); arc discharge; cross-sectional shape; discharge area distribution; discharge area randomicity; discharge area surface shape; discrete surface strengthening; hardness; laser focus; laser guiding; laser-guided discharge; microstructure solidification; repetitive melting; stochastic anode spot movement; strengthened depth; tempered microstructures; utilization efficiency; voids; Common arc discharge; discrete surface strengthening; laser-guided discharge (LGD); tempered microstructures;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2010.2041673
Filename :
5427014
Link To Document :
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