Technical Data Sheet
physical property | Test Condition | Test Method | Test Result |
---|---|---|---|
Shrinkage rate | 内部方法 | 0.40to0.80 % | |
内部方法 | 0.40to0.80 % | ||
Water absorption rate | ISO 62 | 0.35 % | |
ISO 62 | 0.15 % | ||
Melt volume flow rate | ISO 1133 | 7.50 cm³/10min | |
melt mass-flow rate | ASTM D1238 | 8.0 g/10min | |
density | ISO 1183 | 1.18 g/cm³ | |
ASTM D792 | 1.19 g/cm³ |
flammability | Test Condition | Test Method | Test Result |
---|---|---|---|
UL flame retardant rating | UL 94 | HB |
Mechanical properties | Test Condition | Test Method | Test Result |
---|---|---|---|
elongation | ASTM D638 | 100 % | |
Break | ISO 527-2/50 | 88 % | |
Flexural modulus | ASTM D790 | 2000 MPa | |
Tensile modulus | ASTM D638 | 1720 MPa | |
ISO 527-2/1 | 2280 MPa | ||
bending strength | ASTM D790 | 79.3 MPa | |
ISO 178 | 85.0 MPa | ||
Flexural modulus | ISO 178 | 2090 MPa | |
tensile strength | ASTM D638 | 55.2 MPa | |
Yield | ISO 527-2/50 | 54.0 MPa | |
ASTM D638 | 60.0 MPa | ||
Break | ISO 527-2/50 | 58.0 MPa | |
elongation | ASTM D638 | 5.5 % | |
Yield | ISO 527-2/50 | 6.0 % |
Impact resistance | Test Condition | Test Method | Test Result |
---|---|---|---|
Impact strength of cantilever beam gap | ASTM D256 | 800 J/m | |
ASTM D256 | 690 J/m | ||
Impact strength of simply supported beam without notch | ISO 179/1eU | 无断裂 | |
ISO 179/1eU | 无断裂 | ||
Charpy Notched Impact Strength | ISO 179/1eA | 70 kJ/m² | |
ISO 179/1eA | 60 kJ/m² | ||
Dart impact | ASTM D3763 | 62.1 J | |
ASTM D3763 | 61.0 J | ||
Suspended wall beam without notch impact strength | ISO 180/1U | 无断裂 | |
ISO 180/1U | 无断裂 | ||
ASTM D4812 | 3200 J/m | ||
Impact strength of cantilever beam gap | ISO 180/1A | 70 kJ/m² | |
ISO 180/1A | 60 kJ/m² |
Electrical performance | Test Condition | Test Method | Test Result |
---|---|---|---|
Surface Resistivity | IEC 60093 | 4.1E+17 ohms | |
Volume resistivity | IEC 60093 | 1.7E+17 ohms·cm | |
dielectric strength | IEC 60243-1 | 18 kV/mm | |
relative permittivity | IEC 60250 | 2.69 | |
Dissipation Factor | IEC 60250 | 9.4E-03 | |
arc resistance | ASTM D495 | PLC 5 | |
Compared to the Leakage Tracking Index (CTI) | UL 746 | PLC 3 | |
High arc combustion index (HAI) | UL 746 | PLC 0 | |
High Voltage Arc Traceability Rate (HVTR) | UL 746 | PLC 3 | |
Hot wire ignition (HWI) | UL 746 | PLC 2 |
Thermal performance | Test Condition | Test Method | Test Result |
---|---|---|---|
RTI Elec | UL 746 | 80.0 °C | |
RTI Imp | UL 746 | 80.0 °C | |
RTI | UL 746 | 80.0 °C | |
Heat distortion temperature | ASTM D648 | 122 °C | |
ISO 75-2/Ae | 122 °C | ||
vicat | ASTMD152511 | 141 °C | |
ISO 306/B120 | 140 °C | ||
ball-indentation hardness | IEC 60695-10-2 | 通过 | |
Linear coefficient of thermal expansion | ASTME831 | 7E-05 cm/cm/°C | |
ISO 11359-2 | 6.9E-05 cm/cm/°C | ||
ASTME831 | 7.2E-05 cm/cm/°C | ||
ISO 11359-2 | 7.3E-05 cm/cm/°C | ||
Heat distortion temperature | ISO 75-2/Be | 136 °C | |
ASTM D648 | 136 °C |
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.
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