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LG Chemical 80HF SAN, High Transparency, Heat Resistance, Chemical Resistance
Categories:
Polymer
;
Thermoplastic
;
SAN Polymer
Material Notes:
Feature: Injection Molding, SAN, High Transparency, Heat Resistance, Chemical Resistance
Application: Refrigerator Sleeves, Miscellaneous
CAS No. 9003-54-7
Information provided by LG Chemical
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Physical Properties
Metric
English
Comments
Specific Gravity
1.07
g/cc
1.07
g/cc
ASTM D792
Maximum Moisture Content
0.010
0.010
Injection Molding
Linear Mold Shrinkage, Flow
0.0040
-
0.0070
cm/cm
@Thickness 3.20 mm
0.0040
-
0.0070
in/in
@Thickness 0.126 in
ASTM D955
Melt Flow
3.0
g/10 min
@Load 5.00 kg,
Temperature 200 °C
3.0
g/10 min
@Load 11.0 lb,
Temperature 392 °F
ASTM D1238
10
g/10 min
@Load 3.80 kg,
Temperature 230 °C
10
g/10 min
@Load 8.38 lb,
Temperature 446 °F
ASTM D1238
29
g/10 min
@Load 10.0 kg,
Temperature 220 °C
29
g/10 min
@Load 22.0 lb,
Temperature 428 °F
ASTM D1238
Mechanical Properties
Metric
English
Comments
Hardness, Rockwell R
123
123
ASTM D785
Tensile Strength, Yield
73.5
MPa
@Thickness 3.20 mm
10700
psi
@Thickness 0.126 in
50mm/min; ASTM D638
Elongation at Break
6.0 %
@Thickness 3.20 mm
6.0 %
@Thickness 0.126 in
50mm/min; ASTM D638
Tensile Modulus
3.11
GPa
@Thickness 3.20 mm
451
ksi
@Thickness 0.126 in
1 mm/min; ASTM D638
Flexural Yield Strength
118
MPa
@Thickness 3.20 mm
17100
psi
@Thickness 0.126 in
15mm/min; ASTM D790
Flexural Modulus
3.68
GPa
@Thickness 3.20 mm
533
ksi
@Thickness 0.126 in
15mm/min; ASTM D790
Izod Impact, Notched
0.0981
J/cm
@Thickness 6.40 mm,
Temperature 23.0 °C
0.184
ft-lb/in
@Thickness 0.252 in,
Temperature 73.4 °F
ASTM D256
0.0981
J/cm
@Thickness 6.40 mm,
Temperature -30.0 °C
0.184
ft-lb/in
@Thickness 0.252 in,
Temperature -22.0 °F
ASTM D256
Electrical Properties
Metric
English
Comments
Volume Resistivity
1.00e+15
ohm-cm
1.00e+15
ohm-cm
Dielectric Strength
29.0
kV/mm
737
kV/in
Arc Resistance
120
-
180
sec
120
-
180
sec
ASTM D495
Comparative Tracking Index
400
-
600
V
400
-
600
V
Hot Wire Ignition, HWI
7.0
-
15
sec
@Thickness >=1.50 mm
7.0
-
15
sec
@Thickness >=0.0591 in
15
-
30
sec
@Thickness >=3.00 mm
15
-
30
sec
@Thickness >=0.118 in
High Amp Arc Ignition, HAI
>=
120
arcs
@Thickness 1.50 mm
>=
120
arcs
@Thickness 0.0591 in
>=
120
arcs
@Thickness 3.00 mm
>=
120
arcs
@Thickness 0.118 in
Thermal Properties
Metric
English
Comments
Deflection Temperature at 1.8 MPa (264 psi)
>=
90.0
°C
@Thickness 6.40 mm
>=
194
°F
@Thickness 0.252 in
Unannealed; ASTM D648
Vicat Softening Point
100
°C
@Load 5.00 kg
212
°F
@Load 11.0 lb
50°C/h; ASTM D1525
UL RTI, Electrical
50.0
°C
@Thickness >=1.50 mm
122
°F
@Thickness >=0.0591 in
50.0
°C
@Thickness >=3.00 mm
122
°F
@Thickness >=0.118 in
UL RTI, Mechanical with Impact
50.0
°C
@Thickness >=1.50 mm
122
°F
@Thickness >=0.0591 in
50.0
°C
@Thickness >=3.00 mm
122
°F
@Thickness >=0.118 in
UL RTI, Mechanical without Impact
50.0
°C
@Thickness <=1.50 mm
122
°F
@Thickness <=0.0591 in
50.0
°C
@Thickness <=3.00 mm
122
°F
@Thickness <=0.118 in
Flammability, UL94
HB
@Thickness >=1.50 mm
HB
@Thickness >=0.0591 in
HB
@Thickness >=3.00 mm
HB
@Thickness >=0.118 in
Processing Properties
Metric
English
Comments
Rear Barrel Temperature
170
-
190
°C
338
-
374
°F
Injection Molding
Middle Barrel Temperature
180
-
200
°C
356
-
392
°F
Injection Molding
Front Barrel Temperature
190
-
210
°C
374
-
410
°F
Injection Molding
Nozzle Temperature
190
-
220
°C
374
-
428
°F
Injection Molding
Melt Temperature
190
-
220
°C
374
-
428
°F
Injection Molding
Mold Temperature
40.0
-
70.0
°C
104
-
158
°F
Injection Molding
Drying Temperature
80.0
°C
176
°F
Injection Molding
Dry Time
2.00
-
4.00
hour
2.00
-
4.00
hour
Injection Molding
Back Pressure
29.4
-
58.8
MPa
4260
-
8530
psi
Injection Molding
Screw Speed
30
-
60
rpm
30
-
60
rpm
Injection Molding
Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's
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PLAY188 / 148198
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