|
|
Rating |
System of units |
Test method |
| Physical property |
Density (23°C) |
1.2 |
g/cm³ |
ISO 1183 |
| Apparent density 1 |
0.66 |
g/cm³ |
ISO 60 |
| Melt rate (melt flow rate) (300°C/ 1.2kg) |
10 |
g/10 min |
ISO 1133 |
| Melting volume flow rate (MVR) (300°C/ 1.2kg) |
9 |
cm³/10min |
ISO 1133 |
| Shrinkage rate |
|
|
|
| Vertical flow direction |
0.60-0.80 |
% |
ISO 2577 |
| Direction of flow |
0.60-0.80 |
% |
ISO 2577 |
| Vertical flow direction: 2.00mm 2 |
0.7 |
% |
ISO 294-4 |
| Flow direction: 2.00mm 3 |
0.65 |
% |
ISO 294-4 |
| Water absorption rate |
|
|
ISO 62 |
| Saturated, 23°C |
0.3 |
% |
ISO 62 |
| Equilibrium, 23°C, 50% RH |
0.12 |
% |
ISO 62 |
| Hardness |
Ball pressure hardness |
115 |
MPa |
ISO 2039-1 |
| Mechanical property |
Tensile modulus (23°C) |
2400 |
MPa |
ISO 527-2/1 |
| Tensile stress |
|
|
ISO 527-2/50 |
| Yield, 23°C |
66 |
MPa |
ISO 527-2/50 |
| Fracture, 23°C |
70 |
MPa |
ISO 527-2/50 |
| Tensile strain |
|
|
ISO 527-2/50 |
| Yield, 23°C |
6.2 |
% |
ISO 527-2/50 |
| 23°C Fracture, 23°C |
130 |
% |
ISO 527-2/50 |
| Nominal tensile fracture strain (23°C) |
> 50 |
% |
ISO 527-2/50 |
| Tensile creep modulus |
|
|
ISO 899-1 |
| 1 hr |
2200 |
MPa |
ISO 899-1 |
| 1000 hr |
1900 |
MPa |
ISO 899-1 |
| Bending modulus 4(23°C) |
2400 |
MPa |
ISO 178 |
| Bending stress 5 |
|
|
ISO 178 |
| 3.5% strain at 23°C |
73 |
MPa |
ISO 178 |
| 23°C |
97 |
MPa |
ISO 178 |
| Flexural Strain at Flexural Strength (23°C) 6 |
7.1 |
% |
ISO 178 |
| Flammability |
Application of Flame from Small Burner - Method K and F (2.00 mm) |
K1, F1 |
|
DIN 53438-1, -3 |
| Burning Rate - US-FMVSS (> 1.00 mm) |
Passed |
|
ISO 3795 |
| Flash Ignition Temperature |
480 |
°C |
ASTM D1929 |
| Glow Wire Test |
|
|
EDF HN60 E.02 |
| 1.50 mm |
750 |
°C |
EDF HN60 E.02 |
| 3.00 mm |
750 |
°C |
EDF HN60 E.02 |
| Needle Flame Test |
|
|
IEC 60695-11-5 |
| Method F : 1.50 mm |
1 |
min |
IEC 60695-11-5 |
| Method F : 2.00 mm |
1 |
min |
IEC 60695-11-5 |
| Method F : 3.00 mm |
2 |
min |
IEC 60695-11-5 |
| Method K : 1.50 mm |
0.1 |
min |
IEC 60695-11-5 |
| Method K : 2.00 mm |
0.1 |
min |
IEC 60695-11-5 |
| Method K : 3.00 mm |
0.2 |
min |
IEC 60695-11-5 |
| Self Ignition Temperature |
550 |
°C |
ASTM D1929 |
| Supplementary information |
Electrolytic Corrosion (23°C) |
A1 |
|
IEC 60426 |
| ISO Shortname |
ISO 7391-PC,MR,(,,)-09-9 |
|
|
| Impact property |
Notched impact strength of simply supported beam 7 |
|
|
ISO 7391 |
| -30°C, complete fracture |
16 |
kJ/m² |
ISO 7391 |
| 23°C, local fracture |
75 |
kJ/m² |
ISO 7391 |
| No notched impact strength of simply supported beams |
|
|
ISO 179/1eU |
| -60°C |
No fracture |
|
ISO 179/1eU |
| -30°C |
No fracture |
|
ISO 179/1eU |
| 23°C |
No fracture |
|
ISO 179/1eU |
| Notched impact strength of overhanging beam 8 |
|
|
ISO 7391 |
| -30°C, complete fracture |
15 |
kJ/m² |
ISO 7391 |
| 23°C, local fracture |
70 |
kJ/m² |
ISO 7391 |
| Multi-axial instrumented impact energy |
|
|
ISO 6603-2 |
| -30°C |
65 |
J |
ISO 6603-2 |
| 23°C |
60 |
J |
ISO 6603-2 |
| Multiaxial instrumentation peak impact force |
|
|
ISO 6603-2 |
| -30°C |
6300 |
N |
ISO 6603-2 |
| 23°C |
5400 |
N |
ISO 6603-2 |
| Thermal performance |
Thermal deformation temperature |
|
|
|
| 0.45MPa, not annealed |
137 |
°C |
ISO 75-2/B |
| 1.8 MPa, not annealed |
125 |
°C |
ISO 75-2/A |
| Glass conversion temperature 9 |
145 |
°C |
ISO 11357-2 |
| Vica softening temperature |
|
|
|
| -- |
144 |
°C |
ISO 306/B50 |
| -- |
146 |
°C |
ISO 306/B120 |
| Ball Pressure Test (136°C) |
Pass |
|
IEC 60695-10-2 |
| Linear coefficient of thermal expansion |
|
|
ISO 11359-2 |
| Flow: 23 to 55°C |
6.50E-05 |
cm/cm/°C |
ISO 11359-2 |
| Transverse: 23 to 55°C |
6.50E-05 |
cm/cm/°C |
ISO 11359-2 |
| Thermal conductivity 10(23°C) |
0.2 |
W/m/K |
ISO 8302 |
| RTI Elec (1.50 mm) |
125 |
°C |
UL 746 |
| RTI Imp (1.50 mm) |
115 |
°C |
UL 746 |
| RTI (1.50 mm) |
125 |
°C |
UL 746 |
| Electrical performance |
Surface resistivity |
1.00E+16 |
ohms |
IEC 60093 |
| Volume resistivity (23°C) |
1.00E+16 |
ohms·cm |
IEC 60093 |
| Dielectric strength (23°C, 1.00 mm) |
34 |
kV/mm |
IEC 60243-1 |
| Relative capacitance |
|
|
IEC 60250 |
| 23°C, 100 Hz |
3.1 |
|
IEC 60250 |
| 23°C, 1 MHz |
3 |
|
IEC 60250 |
| Dissipation factor |
|
|
IEC 60250 |
| 23°C, 100 Hz |
5.00E-04 |
|
IEC 60250 |
| 23°C, 1 MHz |
9.00E-03 |
|
IEC 60250 |
| Leakage trace index |
|
|
IEC 60112 |
| Solution A |
250 |
V |
IEC 60112 |
| Solution B |
125 |
V |
IEC 60112 |
| Flammability |
UL flame retardant rating |
|
|
UL 94 |
| 2.50 mm |
HB |
|
UL 94 |
| 0.750 mm |
V-2 |
|
UL 94 |
| Flammability index of hot wire |
|
|
IEC 60695-2-12 |
| 0.750 mm |
850 |
°C |
IEC 60695-2-12 |
| 1.50 mm |
850 |
°C |
IEC 60695-2-12 |
| 3.00 mm |
930 |
°C |
IEC 60695-2-12 |
| Hot filament ignition temperature |
|
|
IEC 60695-2-13 |
| 0.750 mm |
875 |
°C |
IEC 60695-2-13 |
| 1.00 mm |
875 |
°C |
IEC 60695-2-13 |
| 1.50 mm |
875 |
°C |
IEC 60695-2-13 |
| 3.00 mm |
900 |
°C |
IEC 60695-2-13 |
| 11 Limiting oxygen index 11 |
28 |
% |
ISO 4589-2 |
| Optical property |
Refractive index 12 |
1.586 |
|
ISO 489 |
| Transmittance |
|
|
ISO 13468-2 |
| 1000 µm |
89 |
% |
ISO 13468-2 |
| 2000 µm |
89 |
% |
ISO 13468-2 |
| 3000 µm |
88 |
% |
ISO 13468-2 |
| 4000 µm |
87 |
% |
ISO 13468-2 |
| Fog degree (3000 µm) |
< 0.80 |
% |
ISO 14782 |