| About |
|---|
| ULTEMTM 1000F3SP powder is a RoHS compliant polyetherimide (PEI) powder offering a glass transition temperature (Tg) of 217?C. This FDA compliant powder is available in a spherical shape with an average particle size (D50) of 15 micron and a maximum particle size (D100) of 75 micron.&& |
| Product Description | |
|---|---|
| Supplier | SABIC |
| Generic | Polyetherimide |
| Material Status | Commercial: Active |
| Availabilitys | North America,Europe |
| Process Methods | Injection Molding |
| Technical Data | |||
|---|---|---|---|
| PHYSICAL | Nominal value | Unit | Test method |
| Density | 1.27 | g/cm³ | ASTM D792 |
| Apparent density | 0.78 | g/cm³ | ASTM D1895 |
| Melt Flow Rate | |||
| 337℃,6.60kg | 9.0 | g/10min | ASTM D1238 |
| Shrinkage rate | |||
| MD:3.2 mm | 0.50 to 0.70 | % | Internal Method |
| Water absorption rate | |||
| Equilibrium, 23 ℃ | 1.3 | % | ASTM D570 |
| 24hr | 0.25 | % | ASTM D570 |
| Average particle size | 15.0 | µm | Internal Method |
| IMPACT | Nominal value | Unit | Test method |
|---|---|---|---|
| Impact strength of cantilever beam notch | |||
| 23℃ | 1300 | J/m | ASTM D4812 |
| 23℃ | 53 | J/m | ASTM D256 |
| Drop hammer impact | |||
| 23℃ | 36.6 | J | ASTM D3029 |
| THERMAL | Nominal value | Unit | Test method |
|---|---|---|---|
| Hot deformation temperature | |||
| 1.8 MPa, unannealed, 6.4 mm | 201 | ℃ | ASTM D648 |
| 0.45 MPa, unannealed, 6.4 mm | 210 | ℃ | ASTM D648 |
| Vicat Softening Temp | 219 | ℃ | ASTM D1525 5 |
| Linear coefficient of thermal expansion | |||
| TD:-20:150℃ | 5.4E-5 | 1/℃ | ASTM E831 |
| MD:-20~150℃ | 5.6E-5 | 1/℃ | ASTM E831 |
| Thermal conductivity coefficient | 0.22 | W/m/K | ASTM C177 |
| Electrical performance | Nominal value | Unit | Test method |
|---|---|---|---|
| Volume resistivity | 1.0E+17 | ohms·cm | ASTM D257 |
| Dielectric strength | ASTM D149 | ||
| 1.6 mm in air | 33 | kV/mm | ASTM D149 |
| 1.6 mm in oil | 28 | kV/mm | ASTM D149 |
| Dielectric constant | |||
| 1 kHz | 3.15 | ASTM D150 | |
| Dissipation factor | ASTM D150 | ||
| 1 kHz | 1.3E-3 | ASTM D150 | |
| 2.45 GHz | 2.5E-3 | ASTM D150 |
| FLAME CHARACTERISTICS | Nominal value | Unit | Test method |
|---|---|---|---|
| Extreme oxygen index | 47 | % | ASTM D2863 |
| MECHANICAL | Nominal value | Unit | Test method |
|---|---|---|---|
| Tensile modulus | 3590 | MPa | ASTM D638 |
| tensile strength | |||
| yield | 110 | MPa | ASTM D638 |
| Tensile strain | |||
| fracture | 60 | % | ASTM D638 |
| yield | 7.0 | % | ASTM D638 |
| Bending modulus | |||
| 100 mm span | 3310 | MPa | ASTM D790 |
| bending strength | |||
| Yield, 100 mm span | 152 | MPa | ASTM D790 |
| Poisson’s ratio | 0.36 | ASTM D638 | |
| Taber abraser | |||
| 1000 cycles, 1000 g, CS-17 wheels | 10.0 | mg | ASTM D1044 |
| Rockwell hardness | |||
| M-level | 109 | ASTM D785 |
| Process Conditions | |||
|---|---|---|---|
| injection | Nominal value | Unit | Test method |
| Drying temperature | 149 | °C | |
| Drying time | 4.0 to 6.0 | hr | |
| Drying time, maximum | 24 | hr | |
| Recommended maximum moisture content | 0.020 | % | |
| Recommended injection volume | 40 to 60 | % | |
| Barrel rear temperature | 332 to 399 | °C | |
| Barrel middle temperature | 338 to 399 | °C | |
| Barrel front temperature | 343 to 399 | °C | |
| Nozzle temperature | 343 to 399 | °C | |
| Processing (melt) temperature | 349 to 399 | °C | |
| Mold temperature | 135 to 163 | °C | |
| Back pressure | 0.345 to 0.689 | MPa | |
| Screw speed | 40 to 70 | rpm | |
| Vent depth | 0.025 to 0.076 | mm | |
| Notes |
|---|
| 1. Typical properties: these are not to be construed as specifications. |
| 2. 0.20 in/min |
| 3. Type I, 0.20 in/min |
| 4. 0.10 in/min |
| 5. Rate A (50°C/h), Loading 2 (50 N) |
| 【 Disclaimer 】 Guangzhou Soliao Information Technology Co., Ltd. reserves all rights. The information in this data table was obtained from the manufacturer of the material on soliao.com. Soliao.com makes every effort to ensure the accuracy of this data. However, the search company does not assume any responsibility for the uncertainty and consequences caused to users by these data values and suggestions, and strongly recommends verifying the data values with the material supplier before the final selection of materials. |
