In the last 20 years, public and private organizations involvement in laser cladding R&D activities is increasing. These activities are mainly conducted in universities, public research institutes and technical centres of private companies worldwide. This study presents a bibliometric analysis of the patents and scientific publications in the laser cladding field for the period ranging from 1985 to 2005 and seeks to identify the activity and trends in its environment for strategic purposes. All the laser cladding processes and all the substrates (steel, aluminium and superalloys) used for coating, repairing and 3D fabrication were taken into account. At first, the world patent production was analysed in terms of volume (580 patent families found since 1985), frequency and applications. Then the same strategy was applied to the scientific publications for a total volume of 588 targeted papers. Using bibliometric techniques, an analysis and mapping of the information was performed to highlight the temporal, geographical and institutional aspects of R&D activities. The patented applications were also classified in order to identify opportunities. This study shows the evolution of the scientific and technological environments of the laser cladding technology and can help public or private organizations to generate new ideas, gain awareness of emerging trends and validate the relevance of projects.

1.
Li
,
Y.
,
Yang
,
H.
,
Lin
,
X.
,
Huang
,
W.
,
Li
,
J.
&
Zhou
,
Y.
(
2003
)
The influences of processing parameters on forming characterizations during laser rapid forming
,
Materials Science and Engineering A
,
360
(
1-2
),
18
25
.
2.
Lin
,
J.
&
Steen
,
W.M.
(
1998
)
Design characteristics and development of a nozzle for coaxial laser cladding
,
Journal of Laser Applications
,
10
(
2
),
55
63
.
3.
Das
,
D.K.
,
Prasad
,
K.S.
&
Paradkar
,
A.G.
(
1994
)
Evolution of microstructure in laser surface alloying at aluminium with nickel
,
Materials Science and Engineering A
,
A174
(
1
),
75
84
.
4.
Tomlinson
,
W.J.
&
Bransden
,
A.S.
(
1994
)
Sliding wear of laser alloyed coatings on Al-12% Si
,
Journal of Material Science Letters
,
13
(
15
),
1086
1088
.
5.
Dubourg
,
L.
,
Pelletier
,
H.
,
Vaissiere
,
D.
,
Hlawka
,
F.
&
Comet
,
A.
(
2002
)
Mechanical characterisation of laser surface alloyed aluminium-copper systems
,
Wear
253
(
9-10
),
1077
1085
.
6.
Qiu
,
Y.Y.
,
Almeida
,
A.
&
Vilar
,
R.
(
1998
)
Structure characterization of a laser-processed Al-Mo alloy
,
Journal of Material Science
33
(
10
),
2639
2651
.
7.
Qiu
,
Y.Y.
,
Almeida
,
A.
&
Vilar
,
R.
(
1995
)
Microstructure of Al-4.3(AT.%)Cr alloy produced by laser surface alloying
,
Scripta Metallurgica et Materialia
,
33
(
6
),
863
870
.
8.
Pei
,
Y. T.
&
De Hosson
,
J. Th. M.
(
2000
)
Functionally graded materials produced by laser cladding
,
Acta Materialia
,
48
(
10
),
2617
2624
.
9.
Lietchi
,
T.
&
Blank
,
E.
(
1995
)
Laser processing of MMC [metal matrix composites] coatings for aluminium alloys
in
Proceedings of the Eighth International Conference on Surface Modification Technologies
,
Nice
,
France
,
421
427
.
10.
Pelletier
,
J M
;
Sallamand
P
; &
Criqui
,
B.
(
1994
)
Microstructure and mechanical properties of some metal matrix composites coatings by laser cladding
in
Proceedings of the 3rd International Conference Laser M2P
,
Lyon
,
France
,
93
96
.
11.
Pritchard
,
A.
(
1969
)
Statistical Bibliography or Bibliometrics
,
Journal of Documentation
,
24
,
348
349
.
12.
Archambault
,
E.
(
2002
)
Methods for using patents in cross-country comparisons
,
Scientometrics
,
54
(
1
),
15
30
.
14.
Cozzens
,
S.E.
(
1989
)
What do citations count? The rhetoric-first model
,
Scientometrics
,
15
,
437
447
.
15.
Frandsen
,
T.F.
&
Rousseau
,
R.
(
2005
)
Article impact calculated over arbitrary periods
,
Journal of the American Society for Information Science and Technology
,
56
(
1
),
58
62
.
16.
Kotler
,
M.
&
Hamilton
,
Gary
, W. (
1995
)
A guide to Japan Patent System, Technology report
.
This content is only available via PDF.
You do not currently have access to this content.