Injection Molding, PC/ASA, Non-flame Retardancy
Description
- General Purpose , UV Resistant
Application
- Auto, Electronics
| Original Document | Technical Datasheet-ASTM(English) Technical Datasheet-ISO(English) | |||
| Features | UV Stabiltiy | |||
| Applications | Electronics & Electrical ApplicationsAutomotive Parts | |||
| Processing | Injection | |||
| Physical | Value/Unit(Sign in to View) | Test Standard | Test Condition |
|---|---|---|---|
Density/Specific Gravity | *** g/cm³ | ISO 1183 | 23°C |
Density/Specific Gravity | *** g/cm³ | ASTM D792 | 23℃ |
Melt Mass Flow Rate(MFR) | |||
250°C/2.16 kg | *** g/10min | ASTM D1238 | |
260°C/5.0 kg | *** g/10min | ISO 1133 | |
Mold Shrinkage | |||
Flow | ***~*** % | ASTM D955 | 2.0mm |
Flow | ***~*** % | ISO 294-4 | 2.0mm |
Across Flow | ***~*** % | ASTM D955 | 2.0mm |
Across Flow | ***~*** % | ISO 294-4 | 2.0mm |
Water Absorption | *** % | ASTM D570 | 23°C, 50% RH |
Water Absorption | *** % | ISO 62 | 23°C, 50% RH |
| Mechanical | Value/Unit(Sign in to View) | Test Standard | Test Condition |
Tensile Modulus | *** kg/cm² | ASTM D638 | 3.2mm, 50mm/min |
Tensile Modulus | *** Mpa | ISO 527 | 4.0mm, 1mm/min |
Tensile Strength | |||
Yield | *** kg/cm² | ASTM D638 | 3.2mm, 50mm/min |
Yield | *** Mpa | ISO 527 | 4.0mm, 50mm/min |
Break | *** Mpa | ISO 527 | 4.0mm, 50mm/min |
Break | *** kg/cm² | ASTM D638 | 3.2mm, 50mm/min |
Tensile Elongation | |||
Yield | *** % | ASTM D638 | 3.2mm, 50mm/min |
Yield | *** % | ISO 527 | 4.0mm, 50mm/min |
Break | *** % | ASTM D638 | 3.2mm, 50mm/min |
Break | *** % | ISO 527 | 4.0mm, 50mm/min |
Flexural Modulus | *** kg/cm² | ASTM D790 | 3.2mm, 10mm/min |
Flexural Modulus | *** Mpa | ISO 178 | 4.0mm, 2.0mm/min |
Flexural Strength | |||
- | *** kg/cm² | ASTM D790 | 3.2mm, 10mm/min |
- | *** Mpa | ISO 178 | 4.0mm, 2.0mm/min |
| Impact | Value/Unit(Sign in to View) | Test Standard | Test Condition |
Charpy Notched Impact Strengh | |||
-40℃ (-40℉) | *** kJ/m² | ISO 179 | 4.0mm |
-30℃ (-22℉) | *** kJ/m² | ISO 179 | 4.0mm |
23℃ (73℉) | *** kJ/m² | ISO 179 | 4.0mm |
Izod Notched Impact Strengh | |||
-40℃ (-40℉) | *** kg·cm/cm | ASTM D256 | 6.4mm |
-40℃ (-40℉) | *** kJ/m² | ISO 180 | 4.0mm |
-30℃ (-22℉) | *** kg·cm/cm | ASTM D256 | 3.2mm |
-30℃ (-22℉) | *** kg·cm/cm | ASTM D256 | 6.4mm |
-30℃ (-22℉) | *** kJ/m² | ISO 180 | 4.0mm |
23℃ (73℉) | *** kg·cm/cm | ASTM D256 | 3.2mm |
23℃ (73℉) | *** kg·cm/cm | ASTM D256 | 6.4mm |
23℃ (73℉) | *** kJ/m² | ISO 180 | 4.0mm |
| Hardness | Value/Unit(Sign in to View) | Test Standard | Test Condition |
Rockwell R | *** R | ASTM D785 | |
Rockwell R | *** R | ISO 2039 | |
| Thermal | Value/Unit(Sign in to View) | Test Standard | Test Condition |
Heat Deflection Temperature(HDT) | |||
0.45 Mpa (66 psi)(4.6kg/cm²) | *** °C | ASTM D648 | 6.4mm, Unannealed |
0.45 Mpa (66 psi)(4.6kg/cm²) | *** °C | ISO 75 | 4.0mm, Flatwise Unannealed |
1.8 Mpa (264 psi)(18.6kg/cm²) | *** °C | ASTM D648 | 6.4mm, Unannealed |
1.8 Mpa (264 psi)(18.6kg/cm²) | *** °C | ISO 75 | 4.0mm, Flatwise Unannealed |
Vicat Softening Temperature(VST) | *** °C | ASTM D1525 | 5kg, 50℃/hr |
Vicat Softening Temperature(VST) | *** °C | ISO 306 | 50N, 50℃/hr |
Coefficient of Linear Thermal Expansion | |||
Flow | *** E-6/°C | ASTM D 696 | -30℃ ∼ 80℃ |
Flow | *** E-6/°C | ISO 11359 | -30℃ ∼ 80℃ |
Across Flow | *** E-6/°C | ASTM D 696 | -30℃ ∼ 80℃ |
Across Flow | *** E-6/°C | ISO 11359 | -30℃ ∼ 80℃ |
| Electrical | Value/Unit(Sign in to View) | Test Standard | Test Condition |
Volume Resistivity | *** Ohm-m | ASTM D257 | 23℃ |
Volume Resistivity | *** Ohm-m | IEC 60093 | 23℃ |
Surface Resistivity | *** Ohm | ASTM D257 | 23℃ |
Surface Resistivity | *** Ohm | IEC 60093 | 23℃ |
Dielectric Constant(Permittivity) | |||
- | *** - | ASTM D150 | 23℃ |
Dielectric Strength | *** kV/mm | ASTM D149 | 23℃, 2.0mm |
The information presented on this datasheet was acquired by AjiEng.com from the producer of the material. AjiEng.com makes substantial efforts to assure the accuracy of this data. However, AjiEng.com assumes no responsibility for the data values and strongly encourages that upon final material selection, data points are validated with the material supplier.