A laser cladding technique is widely used for various industrial applications. This process have been employed infrared lasers with wavelength of 0.8-10.6um. But it is difficult for pure copper to coat on a metal substrate with IR lasers, of which a refractivity of copper has low in IR region and very narrow process window. On one hand, the reflectance of copper drastically decreases at wavelength less than 500 nm. So, in this study, in order to compare with IR and blue diode laser, the copper layer was formed on the SUS 304 stainless steel with our laser cladding system. The copper layer was formed on SUS plate to melt and solidify the powder by blue laser irradiation. From these results, it became clear that shorter-wavelength laser was effective to form the pure copper layer even if it was the same sweep speed and power density.

1.
A.
Gatto
,
E.
Bassoli
and
M.
Fornari
(
2004
)
Plasma Transferred Arc deposition of powdered high performances alloys
,
Surface & Coatings Technology
187
,
265
271
.
2.
A.
Rabiei
,
D.R.
Mumm
,
J.W.
Hutchinson
,
R.
Schweinfest
,
M.
Rühle
and
A.G.
Evans
(
1999
)
Microstructure, deformation and cracking characteristics of thermal spray ferrous coatings
,
Materials Science and Engineering A
269
,
152
165
.
3.
Steen
,
W.M.
&
Mazumder
,
J.
(
2010
)
Laser Material Processing
,
Springer
,
90
pp
4.
Tetsuya
Nakaaze
,
Masahiro
Tsukamoto
,
Yuji
Sato
,
Yoshinori
Funada
,
Daichi
Tanigawa
,
Masanori
Sengoku
,
Kohei
Asano
,
Ritsuko
Higashino
2 and
Nobuyuki
Abe
(
2016
)
Development of 100W Blue Direct Diode Laser System for Cladding of Copper
, in
Proceedings of ICALEO
2016
5.
Kohei
Asano
,
Masahiro
Tsukamoto
,
Yoshinori
Funada
,
Daichi
Tanigawa
,
Tetsuya
Nakaaze
,
Masanori
Sengoku
,
Taku
Yamazaki
and
Nobuyuki
Abe
(
2016
)
cOPPER LAYER formation produced with 100W blue direct diode laser system
, in
Proceedings of ICALEO
2016
This content is only available via PDF.
You do not currently have access to this content.