About |
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TYRIL* styrene-acrylonitrile (SAN) resins are designed to offer superior chemical resistance, strength, hardness and dimensional stability in a broad range of product applications. The key property of TYRIL 867 is excellent balance of physical properties. TYRIL 867 E is specifically designed to provide good processability, good chemical and heat resistance and very good strength. The UV-stabilized version exhibits excellent weather ability, suitable in particular for extruded sheet and thermoforming applications. Applications: Small appliances: transparent kitchen-robot parts Extruded sheet for shower cabinets, light-diffusers Housewares: food storage containers Sanitary accessories: soap dishes, toilet seats Complies with: U.S. FDA 21 CFR 181.32 European Food-Contact Compliance&& |
Product Description | |
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Supplier | Trinseo |
Generic | SAN |
Material Status | Commercial: Active |
Features | Good Rigidity,Excellent Processability,Good Dimensional Stability,Food contact compliance,High Heat Resistance,Solvent resistance,HB |
Availabilitys | Europe |
Process Methods | Thermo forming |
Technical Data | |||
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PHYSICAL | Nominal value | Unit | Test method |
Density | 1.08 | g/cm³ | ASTM D792 |
Density | 1.08 | g/cm³ | ISO 1183/B |
Density | 1.08 | g/cm³ | ISO 1183-2 |
Apparent density | 0.69 | g/cm³ | ASTM D1895 |
Apparent density | 0.69 | g/cm³ | ISO 60 |
Melt Flow Rate | ASTM D1238 | ||
220℃,10.0kg | 12 | g/10min | ASTM D1238 |
230℃,3.80kg | 4.0 | g/10min | ASTM D1238 |
Melt Flow Rate | ISO 1133 | ||
220℃,10.0kg | 12 | g/10min | ISO 1133 |
230℃,3.80kg | 4.0 | g/10min | ISO 1133 |
Melt Volume Rate | |||
220℃,10 kg | 12.0 | cm³/10min | ISO 1133 |
Water absorption rate | |||
saturated | 0.10 | % | ISO 62-2 |
balance | 0.50 | % | ISO 62-2 |
Viscosity value | 121 | cm³/g | ISO 307, 1157, 1628 2 |
IMPACT | Nominal value | Unit | Test method |
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Charpy Unnotch Impact strength | |||
23℃ | 17 | kJ/m² | ISO 179 |
Charpy impact strength | |||
23℃ | 17.0 | kJ/m² | ISO 179/1eU 2 |
-30℃ | 18.0 | kJ/m² | ISO 179/1eU 2 |
Notched impact strength of cantilever beam | |||
23℃ | 14 | kJ/m² | ISO 180 |
Tensile Notch Impact Strength | |||
23℃ | 19.0 | kJ/m² | ISO 8256/1 2 |
THERMAL | Nominal value | Unit | Test method |
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Hot deformation temperature | |||
1.8 MPa, annealed | 101 | ℃ | ASTM D648 |
1.8 MPa, annealed | 101 | ℃ | ISO 75-2/A |
1.8 MPa | 101 | ℃ | ISO 75-2 2 |
Vicat Softening Temp | |||
B50 | 104 | ℃ | ISO 306 2 |
— | 101 | ℃ | ASTM D1525 4 |
— | 110 | ℃ | ASTM D1525 5 |
Linear coefficient of thermal expansion | |||
TD | 6.0E-5 | 1/℃ | ISO 11359-2 2 |
MD | 5.0E-5 | 1/℃ | DIN 53752 |
MD | 5.0E-5 | 1/℃ | ISO 11359-2 2 |
specific heat | 1380 | J/kg/℃ | ASTM D2766 |
Electrical performance | Nominal value | Unit | Test method |
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Surface resistivity | > 1.0E+15 | ohms | IEC 60093 2 |
Volume resistivity | > 1.0E+15 | ohms·cm | IEC 60093 2 |
Dielectric strength | 9.1 | kV/mm | IEC 60243-1 |
Relative permittivity | |||
100 Hz | 3.00 | IEC 60250 2 | |
1 MHz | 3.00 | IEC 60250 2 | |
1 MHz | 3.00 | IEC 60250 | |
Dissipation factor | |||
1 MHz | 1.0E-4 | IEC 60250 |
FLAME CHARACTERISTICS | Nominal value | Unit | Test method |
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1.60 mm | HB | UL 94 | |
Flame retardant level | |||
1.60 mm | HB | ISO 1210 2 |
MECHANICAL | Nominal value | Unit | Test method |
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Tensile modulus | 3700 | MPa | ASTM D638 |
Tensile modulus | 3700 | MPa | ISO 527-2 |
Tensile modulus | 3700 | MPa | ISO 527-2 2 |
tensile strength | |||
fracture | 70.0 | MPa | ISO 527-2/5 |
fracture | 70.0 | MPa | ASTM D638 |
yield | 72.0 | MPa | ISO 527-2 2 |
Tensile strain | |||
yield | 2.6 | % | ISO 527-2 2 |
Nominal strain at break | 2.6 | % | ISO 527-2 2 |
bending strength | 97.0 | MPa | ASTM D790 |
bending strength | 97.0 | MPa | ISO 178 |
Rockwell hardness | |||
M-level | 83 | ASTM D785 | |
M-level | 83 | ISO 2039-2 |
Notes |
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1. Typical properties: these are not to be construed as specifications. |
2. Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
3. 0.20 in/min |
4. Rate A (50°C/h), Loading 2 (50 N) |
5. Rate B (120°C/h), Loading 1 (10 N) |
6. This rating not intended to reflect hazards presented by this or any other material under actual fire conditions. |
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