About |
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XENOY™X4870HH是一种半结晶,高热量,高模量和延展性好的聚对苯二甲酸丁二酯(PET)和聚碳酸酯(PC)合金。具有高尺寸稳定性,良好的流动性,良好的耐化学性,高耐热性,蠕变极低,热膨胀系数(CTE),高热稳定性,优异的耐低温性和高耐冲击性。适用于注塑加工。XENOY™树脂X4870HH推荐使用于车身面板,外壳,医疗设备外壳和户外运动设备等应用 |
Product Description | |
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Supplier | SABIC |
Generic | PC+PET |
Material Status | Commercial: Active |
Features | Ductility,Good liquidity,Heat Stabilized,High modulus |
Availabilitys | Asia Pacific |
Technical Data | |||
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MECHANICAL | Nominal value | Unit | Test method |
bending strength | |||
Yield, 50 mm span | 104 | MPa | ASTM D790 |
Bending modulus | |||
2 mm/mim | 4000 | MPa | ISO 178 |
1.3 mm/min,50mm跨距 | 4250 | MPa | ASTM D790 |
Taber wear and tear | |||
CS-17,1 kg | 30 | mg/1000cy | Internal Method |
tensile strength | |||
Fracture, Type I, 5 mm/min | 45 | MPa | ASTM D638 |
Fracture, Type I, 50 mm/min | 50 | MPa | ASTM D638 |
Fracture, 5 mm/min | 45 | MPa | ISO 527 |
Fracture, 50 mm/min | 45 | MPa | ISO 527 |
Yield, Type I, 50 mm/min | 65 | MPa | ASTM D638 |
Yield, Type I, 5 mm/min | 61 | MPa | ASTM D638 |
Yield, 5 mm/min | 63 | MPa | ISO 527 |
Yield, 50 mm/min | 67 | MPa | ISO 527 |
Tensile strain | |||
Fracture, Type I, 5 mm/min | 60 | % | ASTM D638 |
Fracture, Type I, 50 mm/min | 30 | % | ASTM D638 |
Fracture, 5 mm/min | 10 | % | ISO 527 |
Fracture, 50 mm/min | 10 | % | ISO 527 |
Yield, Type I, 50 mm/min | 3.3 | % | ASTM D638 |
Yield, Type I, 5 mm/min | 3.7 | % | ASTM D638 |
Yield, 50 mm/min | 3.8 | % | ISO 527 |
Yield, 5 mm/min | 3.6 | % | ISO 527 |
Tensile modulus | |||
5 mm/min | 4600 | MPa | ASTM D638 |
1 mm/min | 4300 | MPa | ISO 527 |
bending strength | |||
Yield, 2 mm/min | 98 | MPa | ISO 178 |
Ball hardness | |||
H358/30 | 105 | MPa | ISO 2039-1 |
IMPACT | Nominal value | Unit | Test method |
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Impact strength of cantilever beam notch | |||
23℃ | 90 | J/m | ASTM D256 |
Impact strength of cantilever beam notch | |||
-30℃,80*10*4 | 6 | kJ/m² | ISO 180-1A |
23℃,80*10*4 | 10 | kJ/m² | ISO 180-1A |
0℃ | 80 | J/m | ASTM D256 |
Impact strength of cantilever beam notch | |||
-30℃ | 70 | J/m | ASTM D256 |
Multiaxial impact | 90 | J | ISO 6603 |
Total energy of instrument impact | |||
23℃ | 60 | J | ASTM D 3763 |
-20℃ | 60 | J | ASTM D 3763 |
Notched impact strength of cantilever beam | |||
23℃,80*10*4 | NB | J | ISO 180/1U |
Charpy Notched Impact Strength | |||
23 ℃, 80 * 10 * 4, 62mm span | NB | kJ/m² | ISO 179/1eU |
23 ℃, 80 * 10 * 4, 62mm span | 11 | kJ/m² | ISO 179/1eA |
-30 ℃, 80 * 10 * 4, 62mm span | 7 | kJ/m² | ISO 179/1eA |
THERMAL | Nominal value | Unit | Test method |
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Vicat Softening Temp | 137 | ℃ | ASTM D1525 |
Hot deformation temperature | |||
0.45 MPa, 64 mm span | 131 | ℃ | ISO 75/Bf |
1.8 MPa, 64 mm span | 113 | ℃ | ISO 75/Af |
1.8 MPa, unannealed, 3.2 mm | 113 | ℃ | ASTM D648 |
0.45 MPa, unannealed, 3.2 mm | 132 | ℃ | ASTM D648 |
Thermal conductivity coefficient | 0.2 | W/m/℃ | ISO 8302 |
Linear coefficient of thermal expansion | |||
TD:-40~40℃ | 6.4E-05 | 1/℃ | ASTM E831 |
TD:-30~80℃ | 6.8E-05 | 1/℃ | ISO 11359-2 |
MD:-40~40℃ | 4.3E-05 | 1/℃ | ASTM E831 |
MD:-30~80℃ | 4.8E-05 | 1/℃ | ISO 11359-2 |
Vicat Softening Temp | 137 | ℃ | ISO 306 |
Vicat Softening Temp | 139 | ℃ | ISO 306 |
PHYSICAL | Nominal value | Unit | Test method |
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Density | 1.34 | ASTM D792 | |
Shrinkage rate | |||
MD:3.2 mm | 0.5 – 0.7 | % | Internal Method |
Melt Flow Rate | |||
266℃,5.0kg | 8 | g/10min | ASTM D1238 |
Density | 1.34 | g/cm³ | ISO 1183 |
Water absorption rate | |||
Saturation, 23 ℃ | 0.42 | % | ISO 62 |
23℃,50% RH | 0.14 | % | ISO 62 |
Melt Volume Rate | |||
265℃,5 kg | 7 | cm³/10min | ISO 1133 |
Process Conditions | |||
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injection molding | Nominal value | Unit | Test method |
Drying temperature | 110 – 120 | °C | |
Drying time | 4 – 6 | hrs | |
Maximum water content | 0.02 | % | |
Melt temperature | 265 – 275 | °C | |
Nozzle temperature | 260 – 275 | °C | |
Front Section Zone 3 Temperature | 260 – 280 | °C | |
Temperature in Zone 2 of the middle section | 250 – 275 | °C | |
Temperature in Zone 1 of the rear section | 240 – 270 | °C | |
Hopper temperature | 60 – 80 | °C | |
Mold temperature | 60 – 100 | °C |
Notes |
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