The present research aims to study the influence of equal channel angular extrusion (ECAE) parameters (die channel angle, die corner angle, and friction coefficient) on cracking and fracture tendency. For this type of analysis, a MATLAB code integrated with finite element Abaqus/Explicit model was developed and used. A parametric study is done to investigate how the damage tendency varies with changes of ECAE parameters. The distribution of the damage factor based on Cockcroft–Latham equation for different channel angles, corner angles, and friction coefficients is depicted. It is observed that the appearance of cracks on the upper surface is more likely to occur than on the lower surface. The reduction in friction coefficient does not guarantee minimum damage tendency. Finally, the optimum parameters for reducing the fracture tendency in ECAE are presented.

References

1.
Arab
,
M. S.
,
El Mahallawy
,
N.
,
Shehata
,
F.
, and
Agwa
,
M. A.
,
2014
, “
Refining SiCp in Reinforced Al-SiC Composites Using Equal-Channel Angular Pressing
,”
Mater. Des.
,
64
, pp.
280
286
.
2.
Comaneci
,
R.
,
Zaharia
,
L.
, and
Chelariu
,
R.
,
2011
, “
Damaging Prediction of Difficult-to-Work Aluminum Alloys During Equal Channel Angular Pressing
,”
J. Mater. Eng. Perform.
,
21
(
3
), pp.
287
297
.
3.
Xia
,
Y.-F.
,
Quan
,
G.-Z.
, and
Zhou
,
J.
,
2010
, “
Effects of Temperature and Strain Rate on Critical Damage Value of AZ80 Magnesium Alloy
,”
Trans. Nonferrous Met. Soc. China
,
10
(suppl. 2), pp.
580
583
.
4.
Yu-Feng
,
X.
,
Gui-Chang
,
L.
,
Dong-Senwu
,
Guo-Zheng
,
Q.
, and
Jie
,
Z.
,
2013
, “
The Evaluation of Varying Ductile Fracture Criteria for 3Cr20Ni10W2 Austenitic Heat-Resistant Alloy
,”
Adv. Mech. Eng.
,
5
, pp.
1
10
.
5.
Linardon
,
C.
,
Favier
,
D.
,
Chagnon
,
G.
, and
Gruez
,
B.
,
2014
, “
A Conical Mandrel Tube Drawing Test Designed to Assess Failure Criteria
,”
J. Mater. Process. Technol.
,
214
(
2
), pp.
347
357
.
6.
Topa
,
A.
, and
Shah
,
Q. H.
,
2014
, “
Failure Prediction in Bulk Metal Forming Process
,”
Int. J. Manuf. Eng.
, 2014, p.
385065
.
7.
Tohidlou
,
E.
, and
Bertram
,
A.
,
2017
, “
Effect of Initial Orientation on Subgrain Formation in Nickel Single Crystals During Equal Channel Angular Pressing
,”
Mech. Mater.
,
114
, pp.
30
39
.
8.
Figueiredo
,
R. B.
,
Cetlin
,
P. R.
, and
Langdon
,
T. G.
,
2007
, “
The Processing of Difficult-to-Work Alloys by ECAP with an Emphasis on Magnesium Alloys
,”
Acta Mater.
,
55
(
14
), pp.
4769
4779
.
9.
Semiatin
,
S. L.
,
DeLo
,
D. P.
, and
Shell
,
E. B.
,
2000
, “
The Effect of Material Properties and Tooling Design on Deformation and Fracture During Equal Channel Angular Extrusion
,”
Acta Mater.
,
48
(
8
), pp.
1841
1851
.
10.
Yu
,
X.
,
Li
,
Y.
,
Wei
,
Q.
,
Guo
,
Y.
,
Suo
,
T.
, and
Zhao
,
F.
,
2015
, “
Microstructure and Mechanical Behavior of ECAP Processed AZ31B over a Wide Range of Loading Rates Under Compression and Tension
,”
Mech. Mater.
,
86
, pp.
55
70
.
11.
Agwa
,
M. A.
,
Ali
,
M. N.
, and
Al-Shorbagy
,
A. E.
,
2016
, “
Optimum Processing Parameters for Equal Channel Angular Pressing
,”
Mech. Mater.
,
100
, pp.
1
11
.
12.
Rafsanjani
,
A.
, and
Abbasion
,
S.
,
2009
, “
Investigation of the Viscous and Thermal Effects on Ductile Fracture in Sheet Metal Blanking Process
,”
Int. J. Adv. Manuf. Technol.
,
45
(
5–6
), pp.
459
469
.
13.
Cao
,
T. S.
,
Bobadilla
,
C.
,
Montmitonnet
,
P.
, and
Bouchard
,
P. O.
,
2015
, “
A Comparative Study of Three Ductile Damage Approaches for Fracture Prediction in Cold Forming Processes
,”
J. Mater. Process. Technol.
,
216
, pp.
385
404
.
14.
Gouveia
,
B. P.
,
Rodrigues
,
J. M.
, and
Martins
,
P. A.
,
2000
, “
Ductile Fracture in Metalworking: Experimental and Theoretical Research
,”
J. Mater. Process. Technol.
,
101
(
1–3
), pp.
52
63
.
15.
Cockcroft
,
M. G.
, and
Latham
,
D. J.
,
1968
, “
Ductility and the Workability of Metals
,”
J. Inst. Met.
,
96
, pp.
33
39
.
16.
Cai
,
Z.
,
Jose
,
M. A.
,
Cesar
,
D. S.
, and Andrade Pires, F. M.,
2007
, “
A Comparison of Models for Ductile Fracture Prediction in Forging Processes
,”
Comput. Methods Mater. Sci.
,
7
(
4
), pp.
389
396
.
17.
Oyane
,
M.
,
Sato
,
T.
,
Okimoto
,
K.
, and
Shima
,
S.
,
1980
, “
Criteria for Ductile Fracture and Their Applications
,”
J. Mech. Work. Technol.
,
4
(
1
), pp.
65
81
.
18.
Oh
,
S. I.
,
Chen
,
C. C.
, and
Kobayashi
,
S.
,
1979
, “
Ductile Fracture in Axisymmetric Extrusion and Drawing—Part 2: Workability in Extrusion and Drawing
,”
ASME J. Eng. Ind.
,
101
(
1
), pp.
36
44
.
19.
Figueiredo
,
R. B.
, and
Langdon
,
T. G.
,
2009
, “
Achieving Microstructural Refinement in Magnesium Alloys Through Severe Plastic Deformation
,”
Mater. Trans.
,
50
(
1
), pp.
111
116
.
20.
Dizaji
,
S. A.
,
Darendeliler
,
H.
, and
Kaftanoğlu
,
B.
,
2018
, “
Prediction of Forming Limit Curve at Fracture for Sheet Metal Using New Ductile Fracture Criterion
,”
Eur. J. Mech.-A/Solids
,
69
, pp.
255
265
.
21.
Reihanian
,
M.
, and
Naseri
,
M.
,
2016
, “
An Analytical Approach for Necking and Fracture of Hard Layer During Accumulative Roll Bonding (ARB) of Metallic Multilayer
,”
Mater. Des.
,
89
, pp.
1213
1222
.
22.
Seung Chae
,
Y.
,
Cheon Hee
,
B.
,
Min Hong
,
S.
,
Taek-Soo
,
K.
, and
Hyoung Seop
,
K.
,
2008
, “
Comparison in Deformation and Fracture Behavior of Magnesium During Equal Channel Angular Pressing by Experimental and Numerical Methods
,”
Mater. Trans.
,
49
(
5
), pp.
963
966
.
23.
Comaneci
,
R.
, and
Comanici
,
A.
,
2010
, “
Damaging of AL-MG Alloys Severely Plastic Deformed by Equal Channel Angular Pressing
,”
21st International Daam Symposium
, Vienna, Austria, Oct. 20–23.
24.
Cerri
,
E.
,
De Marco
,
P. P.
, and
Leo
,
P.
,
2009
, “
FEM and Metallurgical Analysis of Modified 6082 Aluminum Alloys Processed by Multipass ECAP: Influence of Material Properties and Different Process Settings on Induced Plastic Strain
,”
J. Mater. Process. Technol.
,
209
(
3
), pp.
1550
1564
.
25.
Segal
,
V. M.
,
2004
, “
Engineering and Commercialization of Equal Channel Angular Extrusion ECAE
,”
Mater. Sci. Eng. A.
,
386
(
1–2
), pp.
269
276
.
26.
Berman
,
A. D.
,
Ducker
,
W. A.
, and
Israelachvili
,
J. N.
,
1996
, “
Experimental and Theoretical Investigations of Stick-Slip Friction Mechanisms
,”
Physics of Sliding Friction
,
B. N. J.
Persson
and
E.
Tosatti
, eds.,
Springer-Netherlands
, Dordrecht, The Netherlands, pp.
51
68
.
27.
Bhushan
,
B.
,
2013
,
Introduction to Tribology
,
Wiley
,
New York
.
28.
Agwa
,
M. A.
,
2011
,
Friction-Induced Dynamic Instabilities and Solution (Non-)Uniqueness in Contact Mechanics
,
Technical University of Lisbon, Instituto Superior Técnico
,
Lisbon, Portugal
.
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