Abstract

Gray cast iron has been used as a component in various mechanical parts, such as the blocks and heads of automobile and marine engines, cylinder liners for internal combustion engines, and machine tool bases. It is desirable because of its good castability and machinability, damping characteristics, and high performance-to-cost ratio. On the other hand, weak graphite flakes present in gray cast iron serve as stress concentrators and adversely affect the material strength. Therefore, it is crucial to examine the relationship between the distribution of graphite flakes and the strength or fracture of gray cast iron. In this study, tensile tests on gray cast iron were carried out using a plate specimen and observed by scanning electron microscopy, and the microscopic deformation was observed on the specimen surface. Particularly, the change in the size of graphite flakes during the tensile tests was examined, and the observed trend was discussed. The experimental results reveal that the dimensional changes in the graphite flakes vary in the observed area and that the final fracture occurs in an area where a large dimensional change is observed, suggesting that the fracture location or critical parts of gray cast iron can be predicted from the dimensional changes of the graphite flakes at an early stage of deformation.

References

1.
Wang
,
G.
,
Taylor
,
D.
,
Bouquin
,
B.
,
Devlukia
,
J.
, and
Ciepalowicz
,
A.
,
2000
, “
Prediction of Fatigue Failure in a Camshaft Using the Crack Modelling Method
,”
Eng. Failure Anal.
,
7
(
3
), pp.
189
197
.10.1016/S1350-6307(99)00015-1
2.
Branco
,
C. M.
,
Infante
,
V.
,
Sousa e Brito
,
A.
, and
Martins
,
R. F.
,
2002
, “
A Failure Analysis Study of Wet Liners in Maritime Diesel Engines
,”
Eng. Failure Anal.
,
9
(
4
), pp.
403
421
.10.1016/S1350-6307(01)00027-9
3.
Xu
,
X. L.
, and
Yu
,
Z. W.
,
2006
, “
Failure Analysis of a Diesel Engine Cylinder Head
,”
Eng. Failure Anal.
,
13
(
7
), pp.
1101
1107
.10.1016/j.engfailanal.2005.07.016
4.
Baicchi
,
P.
,
Collini
,
L.
, and
Riva
,
E.
,
2007
, “
A Methodology for the Fatigue Design of Notched Castings in Gray Cast Iron
,”
Eng. Fract. Mech.
,
74
(
4
), pp.
539
548
.10.1016/j.engfracmech.2006.04.018
5.
Casati
,
R.
,
Faccin
,
R.
, and
Vedani
,
M.
,
2018
, “
Microstructural Evolution and Thermal Fatigue Resistance of Grey Cast Iron
,”
Fatigue Fract. Eng. Mater. Struct.
,
41
(
1
), pp.
99
110
.10.1111/ffe.12656
6.
Iguchi
,
K.
,
Tada
,
N.
, and
Shimizu
,
I.
,
2008
, “
Finite Element Analysis of Static Strain Along the Fillet on Upper Deck of Diesel Engine Cylinder Block Produced by Tightening of Cylinder Head Bolts
,”
Trans. Jpn. Soc. Mech. Eng.
,
74
(
744
), pp.
1053
1059
.10.1299/kikaia.74.1053
7.
Iguchi
,
K.
,
Tada
,
N.
, and
Shimizu
,
I.
,
2009
, “
Finite Element Analysis of Fatigue Strength Along the Fillet on Upper Deck of Cylinder Block of Diesel Engine
,”
Trans. Jpn. Soc. Mech. Eng.
,
75
(
756
), pp.
1074
1081
.10.1299/kikaia.75.1074
8.
Iguchi
,
K.
,
Tada
,
N.
,
Shimizu
,
I.
, and
Iwasaki
,
K.
,
2009
, “
Numerical Study on Reducing Methods of Static Strain Along the Fillet on Upper Deck of Diesel Engine Cylinder Block
,” Proceedings of the 12th International Conference on Fracture (ICF12), Ottawa, ON, Canada, July 12–17, Paper No.
T12.038
.http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.877.5304&rep=rep1&type=pdf
9.
Wang
,
W.
,
Jing
,
T.
,
Gao
,
Y.
,
Qiao
,
G.
, and
Zhao
,
X.
,
2007
, “
Properties of a Gray Cast Iron With Oriented Graphite Flakes
,”
J. Mater. Process. Technol.
,
182
(
1–3
), pp.
593
597
.10.1016/j.jmatprotec.2006.09.028
10.
Hornbogen
,
E.
,
1985
, “
Fracture Toughness and Fatigue Crack Growth of Grey Cast Irons
,”
J. Mater. Res.
,
20
(
11
), pp.
3897
3905
.10.1007/BF00552378
11.
Bertolino
,
G.
, and
Perez-Ipiña
,
J. E.
,
2006
, “
Geometrical Effects on Lamellar Grey Cast Iron Fracture Toughness
,”
J. Mater. Process. Technol.
,
179
(
1–3
), pp.
202
206
.10.1016/j.jmatprotec.2006.03.082
12.
Iguchi
,
K.
,
Tada
,
N.
, and
Shimizu
,
I.
,
2013
, “
Evaluation of Strength of Diesel Engine Cylinder Block by Finite Element Analysis Based on Microstructure of Gray Cast Iron
,”
Trans. Jpn. Soc. Mech. Eng.
,
79
(
799
), pp.
281
293
.10.1299/kikaia.79.281
13.
Velichko
,
A.
,
Holzapfel
,
C.
, and
Mücklich
,
F.
,
2007
, “
3D Characterization of Graphite Morphologies in Cast Iron
,”
Adv. Eng. Mater.
,
9
(
1–2
), pp.
39
45
.10.1002/adem.200600175
14.
Tada
,
N.
,
Uemori
,
T.
, and
Nakata
,
T.
,
2017
, “
Elastic and Plastic Microscopic Undulation on the Surface of Polycrystalline Pure Titanium Under Tension
,”
Trans. ASME, J. Pressure Vessel Technol.
,
139
(
6
), p.
061403
.10.1115/1.4038012
15.
Tada
,
N.
,
Matsukawa
,
Y.
,
Uemori
,
T.
, and
Nakata
,
T.
,
2015
, “
Microscopic Deformation of Polycrystalline Pure Copper Wire During Tension
,”
IEEE Conference Publications
, Taipei, Taiwan, Oct. 21–23, pp.
229
232
. IMPACT 2015.10.1109/IMPACT.2015.7365226
16.
Tada
,
N.
, and
Matsukawa
,
Y.
,
2015
, “
Small Change in Surface Height and Microscopic Deformation in Tension of High-Density Polyethylene
,”
Mechanical Engineering Congress
, Sapporo, Japan, Sept. 13–16, p.
G0300402
.10.1299/jsmemecj.2015._G0300402-
17.
Broek
,
D.
,
1986
,
Elementary Engineering Fracture Mechanics
,
Kluwer Academic Publishers
,
Dordrecht, The Netherlands
, pp.
75
98
.
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