Recently, Graphene has attracted a large variety of scientific communities due to its inimitable properties. Typically, Graphene Nanoplatelets (GNPs) are ideal reinforcements for the production of nanocomposites due to its excellent mechanical properties for strength enhancement. This paper reports the Aluminum-Graphene Nanoplatelets (Al/GNPs) composites synthesized through powder metallurgy method. The microstructural investigation was carried out to study the GNPs integration on the Al matrix. For this study, the samples Al-2wt% GNPs, Al-3wt% GNPs and Al- 4wt% GNPs are high-energy ball milled at 200rpm and sintered at 500°C,550°C, and 600°C. Microstructural characterization is carried out with optical microscopy, Scanning electron microscopy. Rockwell hardness test is conducted to evaluate the hardness behavior in Al/GNPs. Microstructural analysis revealed the homogeneous dispersion of GNPs in the Al matrix in all the samples. It is observed that the existence of the graphene nanoparticles and the rise of their concentrations in the aluminum matrix (2 wt.% to 4 wt.%) as reinforcement in addition to rising the sintering temperature (450°C to 600°C) greatly improve the mechanical properties of Al/GNPs composites.

1.
Peddavarapu
.
S
,
Raghuraman
.
S
,
Bharathi
,
R.J.
 et al.
Trans Indian Inst Met
70
(
2017
)
703
.
2.
Caterina
Soldano
,
Ather
Mahmood
and
Erik
Dujardin
,
Carbon
48
,
2127
2150
(
2010
).
3.
Lee
C
,
Wei
X
,
Kysar
JW
and
Hone
J
,
Science
321
(
5887
),
385
358
(
2008
).
4.
Gomez-Navarro
C
,
Burghard
M
and
Kern
K
,
Nano Letters
8
(
7
),
2045
9
(
2008
).
5.
Cai
D
,
Yusoh
K
and Song
M, Nanotechnology
20
(
8
),
08571
(
2009
)
6.
Stankovich
S
,
Dikin
DA
,
Dommett
GHB
,
Kohlhaas
KM
,
Zimney
EJ
,
Stach
EA
, et al.,
Nature
442
(
7100
):
282
6
(
2006
).
7.
A.M.
Al-Qutub
,
A.
Khalil
,
N.
Saheb
and
A.S.
Hakeem
,
wear
297
,
752
761
(
2013
).
8.
Afsaneh Dorri
Moghadam
,
Emad
Omrani
,
Pradeep L.
Menezes
and
Pradeep K.
Rohatgi
,
Composites Part B
77
402
420
(
2015
).
9.
S.
Iijima
,
Nature
354
, |p56—58 (
1991
).
10.
E. W.
Wong
,
P. E.
Sheehan
and
C. M.
Liebert
,
Science
277
,
1971
1975
(
1997
).
11.
C.
Suryanarayana
,
Journal of Alloys and Compounds
509
,
229
234
(
2011
).
12.
F.H.
Latief
,
El
Sayed
and
M.
Sherif
,
Journal of Industrial and Engineering Chemistry
18
,
2129
2134
(
2012
).
13.
A.
Ghazaly
,
B.
Seif
and
H.G.
Salem
,
Light Metals
411
415
(
2013
).
14.
K.H.
Min
,
S.P.
Kang
,
D.G.
Kim
and
Y.D.
Kim
,
Journal of Alloys and Compounds
400
,
150
(
2005
).
15.
R.M.
German
,
Sintering theory and practice, New York
,
Wiley
, (
1996
).
16.
H.
Sevik
,
S.C.
Kurnaz
,
Materials and Design
27
,
676
(
2006
).
17.
G.E.
Dieter
, Mechanical Metallurgy, third ed.,
McGraw-Hill
, (
1976
).
18.
A.
Yeoh
,
C.
Persad
,
Z.
Eliezer
,
Scripta Materialia
37
,
271
(
1997
).
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