Category: | PAI , Polyamide-imide |
Manufacturer: | Quadrant Engineering Plastic Products |
Trademark: | Duratron® |
Fillers: | - |
Ports: | Qinzhou, Shekou, Shanghai, Ningbo |
Delivery Terms | FOB, CIF, DAP, DAT, DDP |
PDF: | ocRdSd_Duratron-T4301-EXTRUSION-.pdf ![]() |
PRICE: | Order Products email sales@su-jiao.com |
Message |
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Duratron® T4301 extruded PAI is primarily used for wear and friction parts. It offers a very low expansion rate, low coefficient of friction and exhibits little or no slip-stick in use. Duratron® T4301's flexural modulus of 1,000,000 psi is higher than most other advanced engineering plastics. This grade excels in severe service wear applications such as non-lubricated bearings, seals, bearing cages and reciprocating compressor parts. Duratron® PAI is the highest performing melt processable plastic. It has superior resistance to elevated temperatures. It is capable of performing under severe stress conditions at continuous temperatures to 500°F (260°C). Parts machined from Duratron® PAI stock shapes provide greater compressive strength and higher impact resistance than most advanced engineering plastics. Its extremely low coefficient of linear thermal expansion and high creep resistance deliver excellent dimensional stability over its entire use range. Duratron® PAI is an amorphous material with a Tg (glass transition temperature) of 537°F (280°C). Quadrant EPP's extruded Duratron® stock shapes are post-cured using the latest technology and procedures developed jointly by Amoco Performance Products and Quadrant EPP eliminating the need for additional curing by the end user in most situations. A post-curing cycle is recommended for components fabricated from extruded shapes where optimization of chemical resistance and/or wear performance is required. Data provided by Quadrant Engineering Plastic Products from tests on stock shapes and parts produced by Quadrant EPP. |
General Information | |
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Features |
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Uses |
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Forms |
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Processing Method |
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Physical | Nominal Value | Unit | Test Method |
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Specific Gravity | 1.45 | g/cm³ | ASTM D792 |
Water Absorption | ASTM D570 | ||
24 hr | 0.40 | % | |
Saturation | 1.5 | % |
Hardness | Nominal Value | Unit | Test Method |
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Rockwell Hardness | ASTM D785 | ||
E-Scale | 70 | ||
M-Scale | 106 |
Mechanical | Nominal Value | Unit | Test Method |
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Tensile Modulus | 6210 | MPa | ASTM D638 |
Tensile Strength (Ultimate) | 103 | MPa | ASTM D638 |
Tensile Elongation (Yield) | 3.0 | % | ASTM D638 |
Flexural Modulus | 5520 | MPa | ASTM D790 |
Flexural Strength (Yield) | 159 | MPa | ASTM D790 |
Compressive Modulus | 6550 | MPa | ASTM D695 |
Compressive Strength (10% Strain) | 152 | MPa | ASTM D695 |
Shear Strength | 113 | MPa | ASTM D732 |
Coefficient of Friction (vs. Steel - Static) | 0.20 | Internal Method | |
Wear Factor | 20 | 10^-8 mm³/N·m | ASTM D3702 |
Impact | Nominal Value | Unit | Test Method |
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Notched Izod Impact | 43 | J/m | ASTM D256A |
Thermal | Nominal Value | Unit | Test Method |
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Deflection Temperature Under Load (1.8 MPa, Unannealed) | 279 | °C | ASTM D648 |
Maximum Use Temperature - Long Term, Air | 260 | °C |
Additional Information | Nominal Value | Unit | Test Method |
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Limiting Pressure Velocity 1 | 0.788 | MPa·m/s | Internal Method |
Thermal | Nominal Value | Unit | Test Method |
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Glass Transition Temperature | 275 | °C | ASTM D3418 |
CLTE - Flow 2(-40 to 149°C) | 2.5E-5 | cm/cm/°C | ASTM E831 |
Thermal Conductivity | 0.53 | W/m/K | ASTM F433 |
Electrical | Nominal Value | Unit | Test Method |
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Surface Resistivity 3 | 1.0E+13 | ohms | Internal Method |
Dielectric Constant (1 MHz) | 6.00 | ASTM D150 | |
Dissipation Factor (1 MHz) | 0.037 | ASTM D150 |
Flammability | Nominal Value | Unit | Test Method |
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Flame Rating (3.18 mm, Estimated Rating) | V-0 | UL 94 |
Note Message | |
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1 . | 4:1 safety factor |
2 . | 68°F |
3 . | EOS/ESD S11.11 |
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