Material Comparison
Product Info
Product Name
Brand Name
Usages
Properties
Certificates

PC/ABS MC1300-GY6026 SABIC INNOVATIVE NANSHA
CYCOLOY™
Automotive sector
High impact resistance、High mobility、Easy electroplating
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Plastic Datasheets
Impact resistance | Test Condition | Test Method | SABIC INNOVATIVE NANSHA/MC1300-GY6026 |
---|---|---|---|
Dart impact | -30°C, Total Energy | ASTM D3763 | 33.0 J |
23°C, Total Energy | ASTM D3763 | 40.0 J |
Mechanical properties | Test Condition | Test Method | SABIC INNOVATIVE NANSHA/MC1300-GY6026 |
---|---|---|---|
Tensile modulus | ASTM D638 | 2130 Mpa | |
elongation | 断裂 | ASTM D638 | 150 % |
屈服 | ASTM D638 | 8.6 % | |
bending strength | 屈服, 50.0 mm 跨距 | ASTM D790 | 72.0 Mpa |
tensile strength | 断裂 | ASTM D638 | 44.0 Mpa |
屈服 | ASTM D638 | 50.0 Mpa | |
Flexural modulus | 50.0 mm 跨距 | ASTM D790 | 2060 Mpa |
physical property | Test Condition | Test Method | SABIC INNOVATIVE NANSHA/MC1300-GY6026 |
---|---|---|---|
Shrinkage rate | 横向流动 : 3.20 mm | 内部方法 | 0.50 - 0.70 % |
Water absorption rate | 24 hr | ASTM D570 | 0.10 % |
Shrinkage rate | 流动 : 3.20 mm | 内部方法 | 0.50 - 0.80 % |
melt mass-flow rate | 260°C/5.0 kg | ASTM D1238 | 14 g/10 min |
Thermal performance | Test Condition | Test Method | SABIC INNOVATIVE NANSHA/MC1300-GY6026 |
---|---|---|---|
Linear coefficient of thermal expansion | 流动 : -40 到 40°C | ASTM E831 | 7.2E-5 cm/cm/°C |
thermal conductivity | ASTM C177 | 0.20 W/m/K | |
vicat | ASTM D15255 | 111 °C | |
Heat distortion temperature | 0.45 MPa, 未退火, 3.20 mm,HDT | ASTM D648 | 115 °C |
Linear coefficient of thermal expansion | 横向 : -40 到 40°C | ASTM E831 | 9.0E-5 cm/cm/°C |
Heat distortion temperature | 1.8 MPa, 未退火, 3.20 mm,HDT | ASTM D648 | 98.0 °C |
injection | Test Condition | Test Method | SABIC INNOVATIVE NANSHA/MC1300-GY6026 |
---|---|---|---|
screw speed | 40 to 70 rpm | ||
Suggested maximum moisture content | 0.020 % | ||
Processing (melt) temperature | 260 to 290 °C | ||
drying temperature | 100 to 105 °C | ||
Suggested injection volume | 30 to 80 % | ||
drying time | 3.0 to 4.0 hr | ||
Temperature in the middle of the barrel | 255 to 290 °C | ||
Temperature at the rear of the barrel | 250 to 280 °C | ||
Exhaust hole depth | 0.038 to 0.076 mm | ||
Temperature at the front of the material cylinder | 255 to 290 °C | ||
Back pressure | 0.300 to 0.700 Mpa | ||
Temperature | 75 to 100 °C | ||
Spray nozzle temperature | 260 to 290 °C |
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