The objective of this work is to improve the surface properties and adhesion of coatings on polyimide substrates by laser surface treatment. The coating can be deposited by different techniques such as physical vapour deposition, conventional chemical vapour deposition, laser chemical vapor deposition and low temperature thermal spray. The polyimide substrates can be laser-treated first to create a regular, roll-like texture and carbon-rich laser-modified surface to improve the subsequent deposition of coatings on the substrate. In other approaches, the coating is first deposited on the polymer substrate by other technique and then the coating is laser-treated either to melt the coating-polymer interface through heat conduction or modify the coating microstructures depending on different coating component and quality. The laser surface treatment in all of these cases are expected to improve the surface properties, such as the corrosion-, oxidation-, wear and erosion-resistant properties, by modifying the coating microstructures and/or enhances the adhesion of coating to the substrate and partial of them have been verified by the surface property tests.

1.
Inagaki
,
N.
,
Tasaka
,
S.
,
Ohmori
,
H.
&
Mibu
,
S.
(
1996
)
Improvement in the adhesion between copper metal and polyimide substrate by plasma polymer deposition of cyano compounds onto polyimdie
,
Journal of Adhesion Science and Technology
10
,
243
256
.
2.
Ebe
,
A.
,
Takahashi
,
E.
,
Iwamoto
,
Y.
,
Kuratani
,
N.
,
Nishiyama
,
S.
,
Imai
,
O.
,
Ogata
,
K.
,
Setsuhara
,
Y.
&
Miyake
,
S.
(
1996
)
Improvement of the adhesion to polyimide substrates of copper films prepared by an ion beam and vapor deposition (IVD) method
,
Thin Solid Films
281-282
,
356
359
.
3.
Qin
,
Z.Y.
,
Du
,
B. Y.
,
Zhang
,
J.
,
He
,
T.B.
,
Qin
L.
&
Y.S.
Zhang
(
2001
)
Thermal influence on excimer-laser-induced electrical conductivity on polyimide film surfaces
,
Applied Physics A
72
,
711
715
.
4.
Callewaert
,
K.
,
Martele
,
Y.
,
Breban
,
L.
,
Naessens
,
K.
,
Vandaele
,
P.
,
Baets
,
R.
,
Geuskens
G.
&
Schacht
E.
(
2003
)
Excimer laser induced patterning of polymeric surfaces
,
Applied Surface Science
208-209
,
218
225
.
5.
Brezini
A.
&
Zekri
,
N.
(
1994
)
X-ray photoelectron spectroscopy analysis of polyimide films modified by ultraviolet pulsed laser radiation at 193 nm
,
Journal of Applied Physics
75
,
2015
2019
.
6.
Arenholz
,
E.
,
Heitz
,
J.
,
Wagner
,
M.
,
Bauerle
,
D.
&
Hibst
,
H.
(
1993
)
Laser-induced surface modification and structure formation of polymers
,
Applied Surface Science
69
,
16
19
.
7.
Serra
,
P.
,
Miguel
,
J.M.
,
Morenza
J.L.
&
Guilemany
J.M.
(
2000
)
Laser surface treatment of ceramic-metal composite coatings
, in
Proceedings of 19th International Congress on Applications of Lasers & electro-Optics
,
Dearborn, USA
,
D194
198
.
8.
Yung
,
K.C.
,
Zeng
,
D.W.
&
Yue
T.M.
(
2001
)
XPS investigation of Upilex –S polyimide ablated by 355 nm Nd:YAG laser irradiation
,
Applied Surface Science
173
,
193
202
.
9.
Knittel
,
D.
,
Kesting
W.
&
Schollmeyer
,
E.
(
1997
)
Surface structuring of synthetic fibres by UV laser irradiation, Part I: phenomenological report
,
Polymer International
43
,
231
239
.
10.
Bäuerle
,
D.
(
2000
)
Laser Processing and Chemistry
,
Springer-Verlag
,
228
pp.
11.
Bäuerle
,
D.
(
2000
)
Laser Processing and Chemistry
,
Springer-Verlag
,
561
pp.
12.
Zergioti
,
I.
,
de Laat
,
A.W.M.
,
Guntow
,
U.
,
Hutter
,
F.
&
Maerten
,
O.
(
1999
)
Laser sintering of perovskite-oxide and metal coatings by the sol gel process
,
Applied Physics A
69
[Suppl.],
S433
S436
.
13.
Maeda
,
K.
&
Childs
,
T.H.C.
(
2004
)
Laser sintering (SLS) of hard metal powders for abrasion resistant coatings
,
Journal of Materials Processing Technology
149
,
609
615
.
This content is only available via PDF.
You do not currently have access to this content.