1. S.NO REFERENCE
PAPER
Chemical
Composition
Schematic illustration of:
a cold rolling samples cut from the hot band, and
b force analysis in the skew rolling process
1. Texture
evolution
during skew
cold rolling
and annealing
of a non-
oriented
electrical steel
containing
0.9 wt%
silicon
C: 0.0021
Mn: 0.307
P: 0.010
S: 0.0011
Si: 0.875
Al: 0.461
Fe Bal.
2. Microstructure
Evolutionin
Deformedand
Recrystallized
Electrical Steel
Si: 3.2 %
Al:0.96 %
C: 34 ppm
S: 9 ppm
N: 18 ppm
O: 17 ppm
3. Kinetics of
carbon
precipitation
and re-solution
inlowSi-
contentsilicon
iron
lowSi-
charged
siliconiron
(Fe +
0.1%Si)
warm upabove Ta ≤ 650 K
4. Microstructural
evolutionand
magnetic
propertiesin
strip cast non-
orientedsilicon
steel produced
by warm rolling
0.005% C,
2.8% Si,
0.44% Al,
0.21% Mn,
0.004% N
and0.004%
S (in
mass%)
50–300 °C warm rolling
2. 5. Microstructure,
texture and
magnetic
propertiesof
strip-cast 1.3%
Sinon-oriented
electrical steels
0038% C,
1.3% Si,
0.38%
Mn,0.22%
Al, 0.0044%
S and
0.0042%
6. Texture and
magnetic
propertiesof
non-oriented
electrical
steelsprocessed
by an
unconventional
cold rolling
scheme
Low silicon
Si: 0.9
C: 0.002
Mn: 0.31
S: 0.001
P: 0.01
Al:0.46
Fe:
Balance
7. Influence of
Process
Parameters
on Grain
Size and
Texture
Evolution of
Fe-3.2 wt.-
% Si Non-
Oriented
Electrical
Steels
C: 0.002
Mn: 0.17
Si:3.16
Al:0.89
S: 0.003
N: 0.006
P:0.07
Fe balance
3. OTHER REFERENCES:
1.THE EFFECT OF ANNEALINGPROCESSON THE MICROSTRUCTURE OF FE-0.3%SIELECTRICAL STEEL
2. The evolutionof cube ({001} < 10 0 > ) texture innon-orientedelectrical steel
3. Effectof a transverse weakmagneticfieldonthe texture evolutionandmagneticpropertyof Fe-1.0wt.%Si alloyduringbulksolidification
4. Texture Evolutionof Non-OrientedElectrical SteelsduringThermomechanical Processing
5.Influence of Process Parameters on Grain Size and Texture Evolution of Fe-3.2 wt.-% Si Non-Oriented Electrical Steels
6. Lee,S.; De Cooman,B.C.Effectof Warm Rollingonthe RollingandRecrystallizationTexturesof Non-oriented3%Si Steel. ISIJInt. 2011, 51, 1545–1552.
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