-40
-30
-20
-10
0
10
20
30
-0.009 -0.006 -0.003 0.000 0.003 0.006 0.009
Strain
)
a
P
M
(
s
s
e
r
t
S
Test
Simulation
Fig. 6.30 Uniaxial stressstrain hysteresis loop from
simulation vs. experimental
data for cycle 495 at 75
C
with strain amplitude of
0.6%
-40
-30
-20
-10
0
10
20
30
-0.009 -0.006 -0.003 0.000 0.003 0.006 0.009
Strain
)
a
P
M
(
s
s
e
r
t
S
Test
Simulation
Fig. 6.29 Uniaxial stressstrain hysteresis loop from
simulation vs. experimental
data for cycle 100 at 75
C
with strain amplitude of
0.6%
0.3
0.25
0.2
0.15
T.S.I
0.1
0.05
0.0
0
3 0
6 0
Simulation
Experimental Measurement
Number of Cycles
90
120
Fig. 6.31 Comparison of
TSI at room temperature
with strain amplitude of
0.6%
340
6 Unified Micromechanics of Particulate Composites
-30
-20
-10
0
10
20
30
-0.009 -0.006 -0.003 0.000 0.003 0.006 0.009
Strain
)
a
P
M
(
s
s
e
r
t
S
Test
Simulation
Fig. 6.30 Uniaxial stressstrain hysteresis loop from
simulation vs. experimental
data for cycle 495 at 75
C
with strain amplitude of
0.6%
-40
-30
-20
-10
0
10
20
30
-0.009 -0.006 -0.003 0.000 0.003 0.006 0.009
Strain
)
a
P
M
(
s
s
e
r
t
S
Test
Simulation
Fig. 6.29 Uniaxial stressstrain hysteresis loop from
simulation vs. experimental
data for cycle 100 at 75
C
with strain amplitude of
0.6%
0.3
0.25
0.2
0.15
T.S.I
0.1
0.05
0.0
0
3 0
6 0
Simulation
Experimental Measurement
Number of Cycles
90
120
Fig. 6.31 Comparison of
TSI at room temperature
with strain amplitude of
0.6%
340
6 Unified Micromechanics of Particulate Composites
