
PEI 1000-7101 SABIC INNOVATIVE US
58
Form:Granules
Properties:
Glass fiber reinforcedFlame retardantenhance
Typical Applications:
Automotive sectorElectrical fieldElectronic field
Product Description
Certificates(0)
Datasheet
Product Description
| Typical Applications: | Automotive sector | Electrical field | Electronic field |
| Properties: | Glass fiber reinforced | Flame retardant | enhance |
Certificates
No Data...
Technical Data Sheet
| impact performance | Test Condition | Test Method | Test Result | Test Unit |
|---|---|---|---|---|
| Suspended wall beam without notch impact strength | 23°C | ASTM D4812 | 1300 | J/m |
| Dart impact | 23°C | ASTM D3029 | 36.0 | J |
| Reverse notch impact | 3.20 mm | ASTM D256 | 1300 | J/m |
| flammability | Test Condition | Test Method | Test Result | Test Unit |
| UL flame retardant rating | 0.40 mm | UL 94 | V-2 | |
| 0.75 mm | UL 94 | V-0 | ||
| 3.0 mm | UL 94 | 5VA | ||
| Extreme Oxygen Index | ASTM D2863 | 47 | % | |
| mechanical properties | Test Condition | Test Method | Test Result | Test Unit |
| Taber abraser | 1000 Cycles, 1000 g, CS-17 Wheel | ASTM D1044 | 10.0 | mg |
| Poisson's ratio | ASTM E132 | 0.36 | ||
| bending strength | Yield, 100 mm Span | ASTM D790 | 165 | Mpa |
| Bending modulus | 100 mm Span | ASTM D790 | 3510 | Mpa |
| elongation | Break | ASTM D638 | 60 | % |
| Yield | ASTM D638 | 7.0 | % | |
| tensile strength | Yield | ASTM D638 | 110 | Mpa |
| Tensile modulus | ASTM D638 | 3580 | Mpa | |
| injection | Test Condition | Test Method | Test Result | Test Unit |
| Temperature in the middle of the barrel | 340 to 400 | °C | ||
| Temperature at the front of the material cylinder | 345 to 400 | °C | ||
| Spray nozzle temperature | 345 to 400 | °C | ||
| Processing (melt) temperature | 350 to 400 | °C | ||
| Mold temperature | 135 to 165 | °C | ||
| Back pressure | 0.300 to 0.700 | Mpa | ||
| Screw speed | 40 to 70 | rpm | ||
| Exhaust hole depth | 0.025 to 0.076 | mm | ||
| drying temperature | 150 | °C | ||
| drying time | 4.0 to 6.0 | hr | ||
| Suggested maximum moisture content | 0.020 | % | ||
| Suggested injection volume | 40 to 60 | % | ||
| Temperature at the rear of the barrel | 330 to 400 | °C | ||
| thermal performance | Test Condition | Test Method | Test Result | Test Unit |
| RTI | UL 746 | 170 | °C | |
| RTI Imp | UL 746 | 170 | °C | |
| Linear coefficient of thermal expansion | Flow : -20 to 150°C | ASTM E831 | 5.6E-5 | cm/cm/°C |
| Vicat softening temperature | ASTM D15254 | 218 | °C | |
| Hot deformation temperature | 1.8 MPa, Unannealed, 6.40 mm | ASTM D648 | 201 | °C |
| 0.45 MPa, Unannealed, 6.40 mm | ASTM D648 | 210 | °C | |
| RTI Elec | UL 746 | 170 | °C | |
| thermal conductivity | ASTM C177 | 0.22 | W/m/K | |
| Linear coefficient of thermal expansion | Across Flow : -20 to 150°C | ASTM E831 | 5.4E-5 | cm/cm/°C |
| Physical properties | Test Condition | Test Method | Test Result | Test Unit |
| Water absorption rate | Equilibrium, 23°C | ASTM D570 | 1.3 | % |
| 24 hr | ASTM D570 | 0.25 | % | |
| Shrinkage rate | 3.20 mm,Flow | Internal Method | 0.50 - 0.70 | % |
| melt mass-flow rate | 337°C/6.6 kg | ASTM D1238 | 9.0 | g/10 min |
| Electrical performance | Test Condition | Test Method | Test Result | Test Unit |
| Volume resistivity | ASTM D257 | 1.0E+17 | ohms·cm | |
| Dielectric strength | 1.60 mm, in Air | ASTM D149 | 33 | KV/mm |
| High voltage arc tracing rate | UL 746 | PLC 2 | ||
| Dielectric strength | 1.60 mm, in Oil | ASTM D149 | 28 | KV/mm |
| 3.20 mm, in Oil | ASTM D149 | 20 | KV/mm | |
| Dielectric constant | 100 Hz | ASTM D150 | 3.15 | |
| 1 kHz | ASTM D150 | 3.15 | ||
| Dissipation factor | 100 Hz | ASTM D150 | 1.5E-3 | |
| 1 kHz | ASTM D150 | 1.2E-3 | ||
| 2.45 GHz | ASTM D150 | 2.5E-3 | ||
| Arc resistance | ASTM D495 | PLC 5 | ||
| Compared to the anti leakage trace index | UL 746 | PLC 4 | ||
| High arc combustion index | UL 746 | PLC 3 | ||
| Hot wire ignition | UL 746 | PLC 1 | ||
| hardness | Test Condition | Test Method | Test Result | Test Unit |
| Rockwell hardness | M-Scale | ASTM D785 | 109 |
IMPORTANT NOTES: Plas.com collected the data in the data sheet from the material manufacturers. Plas.com makes the best effort to improve the accuracy of the data, but has no responsibility for the data. We strongly recommend verifying the validity of the data with the material manufacturers before making a final decision.