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INEOS Styrolution Luran® S 797SE ASA
Categories:
Polymer
;
Thermoplastic
;
ASA Polymer
;
Acrylonitrile/Styrene/Acrylate (ASA), Unreinforced, Molded
Material Notes:
Luran® S 797SE is suitable for extrusion applications. It provides the highest impact toughness within the product line. Highest impact strength, Suitable for extrusion. Applications: Surf boards, Truck cabin parts, Roof tiles.
Key Words:
S 797 SE
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Physical Properties
Metric
English
Comments
Bulk Density
0.590
g/cc
0.0213
lb/in³
with external lubricant
Density
1.07
g/cc
0.0387
lb/in³
ISO 1183
Moisture Absorption at Equilibrium
0.35 %
@Temperature 23.0 °C
0.35 %
@Temperature 73.4 °F
50% RH; ISO 62
Water Absorption at Saturation
1.65 %
@Temperature 23.0 °C
1.65 %
@Temperature 73.4 °F
ISO 62
Linear Mold Shrinkage
0.0050
-
0.0090
cm/cm
0.0050
-
0.0090
in/in
ISO 294-4
Melt Flow
5.5
g/10 min
@Load 10.0 kg,
Temperature 220 °C
5.5
g/10 min
@Load 22.0 lb,
Temperature 428 °F
Volumetric; cm3/10 min; ISO 1133
Mechanical Properties
Metric
English
Comments
Hardness, Rockwell R
90
90
ASTM Test
Hardness, Shore A
97
97
ISO 868
Hardness, Shore D
83
83
ISO 868
Ball Indentation Hardness
65.0
MPa
9430
psi
ISO 2039-1
Tensile Strength, Yield
42.0
MPa
6090
psi
ISO 527
Elongation at Break
11 %
11 %
ISO 527
Elongation at Yield
3.5 %
3.5 %
ISO 527
Tensile Modulus
2.00
GPa
290
ksi
ISO 527
Flexural Strength
60.0
MPa
8700
psi
ISO 178
Izod Impact, Notched
0.570
J/cm
@Temperature -40.0 °C
1.07
ft-lb/in
@Temperature -40.0 °F
ASTM Test
2.80
J/cm
@Thickness 3.17 mm
5.25
ft-lb/in
@Thickness 0.125 in
ASTM Test
Izod Impact, Notched (ISO)
10.0
kJ/m²
@Temperature -30.0 °C
4.76
ft-lb/in²
@Temperature -22.0 °F
ISO 180/A
30.0
kJ/m²
@Temperature 23.0 °C
14.3
ft-lb/in²
@Temperature 73.4 °F
ISO 180/A
Charpy Impact, Notched
0.900
J/cm²
@Temperature -30.0 °C
4.28
ft-lb/in²
@Temperature -22.0 °F
ISO 179/1eA
4.00
J/cm²
@Temperature 23.0 °C
19.0
ft-lb/in²
@Temperature 73.4 °F
ISO 179/1eA
Tensile Creep Modulus, 1000 hours
1100
MPa
160000
psi
ISO 899
Electrical Properties
Metric
English
Comments
Volume Resistivity
1.00e+14
ohm-cm
1.00e+14
ohm-cm
IEC 60093
Surface Resistance
1.00e+13
ohm
1.00e+13
ohm
IEC 60093
Dielectric Constant
3.8
@Frequency 100 Hz
3.8
@Frequency 100 Hz
IEC 60250
Dissipation Factor
0.0090
@Frequency 100 Hz
0.0090
@Frequency 100 Hz
IEC 60250
0.026
@Frequency 1e+6 Hz
0.026
@Frequency 1e+6 Hz
IEC 60250
Thermal Properties
Metric
English
Comments
CTE, linear
80.0
-
110
µm/m-°C
44.4
-
61.1
µin/in-°F
ISO 11359
Thermal Conductivity
0.170
W/m-K
1.18
BTU-in/hr-ft²-°F
DIN 52612-1
Deflection Temperature at 0.46 MPa (66 psi)
100
°C
212
°F
annealed 4 hours at 80°C; ISO 75
Deflection Temperature at 1.8 MPa (264 psi)
95.0
°C
203
°F
annealed 4 hours at 80°C; ISO 75
Vicat Softening Point
90.0
°C
@Load 5.10 kg
194
°F
@Load 11.2 lb
VST/B/50. 50C/h; ISO 306
104
°C
@Load 1.02 kg
219
°F
@Load 2.25 lb
VST/A/50. 50C/h; ISO 306
Optical Properties
Metric
English
Comments
Haze
<= 1.0 %
<= 1.0 %
ASTM D1003
Transmission, Visible
90 %
@Wavelength 550 nm
90 %
@Wavelength 550 nm
ASTM D1003
Processing Properties
Metric
English
Comments
Drying Temperature
80.0
°C
@Time 7200 - 14400 sec
176
°F
@Time 2.00 - 4.00 hour
Compliance Properties
Metric
English
Comments
NSF
No
No
NSF Std. 51
No
No
NSF Std. 61
USP Class VI
No
No
Descriptive Properties
Color
Natural
Commercial Status
North America and Europe
Form
Pellets
Impact Modified
Yes
Injection Molding Regrind
<30%
Primary Processing Technique
Extrusion
Processing
Blow Molding
Other Extrusion
Profile Extrusion
Sheet Extrusion
Thermoforming
Special characteristic
Heat stabilized or stable to heat
Light stabilized or stable to light
U.V. stabilized or stable to weather
UL.UL-C
Yes
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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