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| Electrical performance | Test Condition | Test Method | MITSUBISHI ENGINEERING JAPAN/F20-03 E9000 |
|---|---|---|---|
| Dielectric constant | ASTM D150/IEC 60250 | 3.9 | |
| Arc resistance | ASTM D495/IEC 60112 | 600 | |
| Surface resistivity | ASTM D257/IEC 60093 | 1.E+16 Ω | |
| Volume resistivity | ASTM D257/IEC 60093 | 1.E+12 Ω.cm | |
| mechanical properties | Test Condition | Test Method | MITSUBISHI ENGINEERING JAPAN/F20-03 E9000 |
| Tensile modulus | ASTM D638/ISO 527 | 2900 kg/cm²(MPa)[Lb/in²] | |
| Elongation at Break | ASTM D638/ISO 527 | 30 % | |
| Bending modulus | ASTM D790/ISO 178 | 2600 kg/cm²(MPa)[Lb/in²] | |
| bending strength | ASTM D790/ISO 178 | 90 kg/cm²(MPa)[Lb/in²] | |
| Physical properties | Test Condition | Test Method | MITSUBISHI ENGINEERING JAPAN/F20-03 E9000 |
| Water absorption rate | ASTM D570/ISO 62 | 0.22 % | |
| Shrinkage rate | ASTM D955 | 2.0 % | |
| density | ASTM D792/ISO 1183 | 1.41 | |
| machinability | Test Condition | Test Method | MITSUBISHI ENGINEERING JAPAN/F20-03 E9000 |
| Mold temperature | 60-80 °C | ||
| Processing temperature | 170 °C | ||
| Screw speed | 80-120 rpm | ||
| thermal performance | Test Condition | Test Method | MITSUBISHI ENGINEERING JAPAN/F20-03 E9000 |
| Linear coefficient of thermal expansion | ASTM D696/ISO 11359 | 1.1E-04 mm/mm.℃ | |
| Combustibility (rate) | UL 94 | HB |
