Category: | PEI , Polyether Imide |
Manufacturer: | Stratasys |
Trademark: | Stratasys |
Fillers: | - |
Ports: | Qinzhou, Shekou, Shanghai, Ningbo |
Delivery Terms | FOB, CIF, DAP, DAT, DDP |
PDF: | fTLGdl_Stratasys-ULTEM-9085.pdf ![]() |
PRICE: | Order Products email sales@su-jiao.com |
Message |
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Production-Grade Thermoplastic for Fortus 3D Production Systems ULTEM 9085 is a flame retardant high performance thermoplastic for direct digital manufacturing and rapid prototyping. It is ideal for the transportation industry due to its high strength-to-weight ratio and its FST (flame, smoke, and toxicity) rating. This unique material's preexisting certifications make it an excellent choice for the commercial transportation industry - especially aerospace, marine and ground vehicles. Combined with a Fortus® 3D Production System, ULTEM 9085 allows design and manufacturing engineers to produce fully functional parts that are ideal for advanced functional prototypes or end use without the cost or lead time of traditional tooling. |
General Information | |
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Features |
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Uses |
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UL File Number |
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Appearance |
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Processing Method |
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Physical | Nominal Value | Unit | Test Method |
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Specific Gravity | 1.34 | g/cm³ | ASTM D792 |
Thickness - Layer Capability | 254.0 to 330.2 | µm |
Electrical | Nominal Value | Unit | Test Method |
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Volume Resistance 1 | 6.0E+13 to 1.0E+14 | ohms | ASTM D257 |
Flammability | Nominal Value | Unit | Test Method |
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Flammability - FAA | < 5.00 | FAR 25.853 | |
Heat Release - 65/65, <40HR Peak (1.52 mm) | Passed | FAR 25.853 | |
NBS Smoke Density | ASTM F814/E662 | ||
flaming | Passed | ||
non-flaming | Passed | ||
OSU Total Heat Release | FAR 25.853 | ||
2 min test | 16.0 | kW·min/m² | |
5 min test | 36.0 | kW/m² | |
Vertical Burn - 60 second (1.02 to 6.35 mm) | 2.0 | sec | FAR 25.853 |
Additional Information | Nominal Value | Unit | Test Method |
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Fungal Resistance - Method 508.6 | Passed | MIL STD-810G | |
Outgassing | ASTM E595 | ||
Collected Volatile Condensable Material (CVCM) | -0.10 | % | |
Total Mass Lost (TML) | 0.41 | % | |
Water Vapor Recovered (WVR) | -0.37 | % |
Mechanical | Nominal Value | Unit | Test Method |
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Tensile Modulus 2(3.18 mm) | 2220 | MPa | ASTM D638 |
Tensile Strength 3(3.18 mm) | 71.7 | MPa | ASTM D638 |
Tensile Elongation 4(Break, 3.18 mm) | 6.0 | % | ASTM D638 |
Flexural Modulus 5 | 2500 | MPa | ASTM D790 |
Flexural Strength 6 | 115 | MPa | ASTM D790 |
Compressive Modulus | 1930 | MPa | ASTM D732 |
Compressive Strength | 105 | MPa | ASTM D695 |
Shear Strength (6.35 mm) | 57.2 | MPa | ASTM D732 |
Impact | Nominal Value | Unit | Test Method |
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Notched Izod Impact (23°C) | 110 | J/m | ASTM D256A |
Unnotched Izod Impact (23°C) | 610 | J/m | ASTM D256 |
Thermal | Nominal Value | Unit | Test Method |
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Deflection Temperature Under Load (1.8 MPa, Unannealed, 3.18 mm) | 153 | °C | ASTM D648 |
Glass Transition Temperature | 367 | °C | DSC |
CLTE - Flow | 6.6E-5 | cm/cm/°C | ASTM E228 |
Electrical | Nominal Value | Unit | Test Method |
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Dielectric Strength | 4.3 to 11 | kV/mm | ASTM D149 |
Dielectric Constant 7 | 3.00 to 3.20 | ASTM D150 | |
Dissipation Factor 8 | 2.6E-3 to 2.7E-3 | ASTM D150 |
Flammability | Nominal Value | Unit | Test Method |
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Flame Rating | V-0 | UL 94 |
Note Message | |
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1 . | All Electrical Property values were generated from the average of test plaques built with default part density (solid). Test plaques were 4.0 x 4.0 x 0.1 inches (102 x 102 x 2.5 mm) and were built both in the flat and vertical orientation. The range of values is mostly the result of the difference in properties of test plaques built in the flat vs. vertical orientation. |
2 . | Type I, 5.1 mm/min |
3 . | Type I, 5.1 mm/min |
4 . | Type I, 5.1 mm/min |
5 . | Method I (3 point load), 1.3 mm/min |
6 . | Method I (3 point load), 1.3 mm/min |
7 . | All Electrical Property values were generated from the average of test plaques built with default part density (solid). Test plaques were 4.0 x 4.0 x 0.1 inches (102 x 102 x 2.5 mm) and were built both in the flat and vertical orientation. The range of values is mostly the result of the difference in properties of test plaques built in the flat vs. vertical orientation. |
8 . | All Electrical Property values were generated from the average of test plaques built with default part density (solid). Test plaques were 4.0 x 4.0 x 0.1 inches (102 x 102 x 2.5 mm) and were built both in the flat and vertical orientation. The range of values is mostly the result of the difference in properties of test plaques built in the flat vs. vertical orientation. |
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