About |
---|
30%玻璃增强,UL94 V-0 / 5V额定值。 许多应用:边缘修剪机,食品搅拌机电机定子和换向器,冷却风扇,连接器,线轴,开关等 |
Product Description | |
---|---|
Supplier | SABIC |
Generic | polybutylene terephthalate |
Material Status | Commercial: Active |
Features | Flame Characteristics,Glass fiber reinforced |
Availabilitys | North America,Asia Pacific,Europe |
Technical Data | |||
---|---|---|---|
MECHANICAL | Nominal value | Unit | Test method |
Rockwell hardness | 119 | ASTM D785 | |
Taber wear and tear | |||
CS-17,1kg | 22 | mg/1000cy | Internal Method |
tensile strength | |||
5 mm/min | |||
Tensile strain | |||
yield | 120 | MPa | ISO 527 |
Yield, 1.3 mm/min, 50 mm span | 1.9 | % | ISO 527 |
fracture | 120 | MPa | ISO 527 |
Fracture, 1.3 mm/min, 50 mm span | 1.9 | % | ISO 527 |
Tensile modulus | |||
1 mm/min | 10000 | MPa | ISO 527 |
bending strength | 180 | MPa | ISO 178 |
Bending modulus | |||
2 mm/mim | 9500 | MPa | ISO 178 |
Ball hardness | |||
H358/30 | 118 | MPa | ISO 2039-1 |
Rockwell hardness | 119 | ISO 2039-2 |
IMPACT | Nominal value | Unit | Test method |
---|---|---|---|
Impact strength of cantilever beam notch | |||
23℃ | 60 | J/m | ASTM D256 |
-30℃ | 50 | J/m | ASTM D256 |
23℃ | 630 | J/m | ASTM D4812 |
Instrument control anti impact total energy 23 ℃ | 50 | cm-kgf | ASTM D 3763 |
Impact strength of cantilever beam, 80 * 10 * 4 | |||
No gap at 23 ℃ | 45 | kJ/m² | ISO 180/1U |
No gap -30 ℃ | 45 | kJ/m² | ISO 180/1U |
Gap 23 ℃ | 7 | kJ/m² | ISO 180/1A |
Gap -30 ℃ | 6 | kJ/m² | ISO 180/1A |
Charpy Notched Impact Strength | |||
80*10*4 | |||
Charpy Unnotch Impact strength | |||
23℃,80*10*4 | 50 | kJ/m² | ISO 179/1eU |
-30℃,80*10*4 | 50 | kJ/m² | ISO 179/1eU |
23℃ | 7 | kJ/m² | ISO 179/1eA |
-30℃ | 6 | kJ/m² | ISO 179/1eA |
THERMAL | Nominal value | Unit | Test method |
---|---|---|---|
Hot deformation temperature | |||
Unannealed, 3.2 mm | |||
Linear coefficient of thermal expansion | |||
MD:-40~40℃ | 2.5E-05 | 1/℃ | ASTM E831 |
TD:-40~40℃ | 8.9E-05 | 1/℃ | ASTM E831 |
MD:-40~40℃ | 2.5E-05 | 1/℃ | ISO 11359-2 |
TD:-40~40℃ | 8.9E-05 | 1/℃ | ISO 11359-2 |
0.45 MPa | 212 | ℃ | ASTM D 648 |
MD:23~80℃ | 2.5E-05 | 1/℃ | ISO 11359-2 |
1.8MPa | 200 | ℃ | ASTM D 648 |
TD:23~80℃ | 1.2E-04 | 1/℃ | ISO 11359-2 |
Vicat Softening Temp | |||
B50 | 200 | ℃ | ASTM D1525 |
A50 | 220 | ℃ | ISO 306 |
B50 | 200 | ℃ | ISO 306 |
B120 | 200 | ℃ | ISO 306 |
Hot deformation temperature | |||
0.45 MPa, unannealed, 64 mm span | 220 | ℃ | ISO 75/Be |
1.8 MPa, unannealed, 64 mm span | 195 | ℃ | ISO 75/Ae |
1.8 MPa, unannealed, 64 mm span | 200 | ℃ | ISO 75/Af |
Ball pressure test | |||
125℃±2℃ | PASSES | IEC 60695-10-2 | |
Thermal conductivity coefficient | 0.25 | W/m/℃ | ISO 8302 |
Relative temperature index | |||
Electrical performance | 130 | ℃ | UL 746B |
Impact mechanical performance | 130 | ℃ | UL 746B |
Non mechanical impact performance | 140 | ℃ | UL 746B |
PHYSICAL | Nominal value | Unit | Test method |
---|---|---|---|
Density | 1.63 | g/cm³ | ASTM D792 |
Specific product | 0.61 | cm³/g | ASTM D 792 |
Stretching rod shrinkage mold | |||
flow | 0.1-0.5 | % | SABIC Method |
TD | 0.4-0.8 | % | SABIC Method |
Shrinkage rate | |||
MD:3.2 mm | 0.5-0.7 | % | Internal Method |
TD:3.2 mm | 0.5-1 | % | Internal Method |
Melt Flow Rate | |||
250℃,5.0kg | 42 | g/10min | ASTM D1238 |
Density | 1.54 | g/cm³ | ISO 1183 |
Water absorption rate | |||
Saturation, 23 ℃ | 0.09 | % | ISO 62 |
23℃,50% RH | 0.07 | % | ISO 62 |
Melt Volume Rate | |||
250℃,5 kg | 29 | cm³/10min | ISO 1133 |
Electrical performance | Nominal value | Unit | Test method |
---|---|---|---|
Volume resistivity | >1.E+15 | ohms·cm | ASTM D257 |
Dielectric strength | |||
3.2 mm in air | 19 | kV/mm | ASTM D149 |
1.6 mm in oil | 24 | kV/mm | ASTM D149 |
Relative permittivity | |||
100 Hz | 3.8 | ASTM D150 | |
1 MHz | 3.7 | ASTM D150 | |
Dissipation factor | |||
100 Hz | 0.002 | ASTM D150 | |
1 MHz | 0.02 | ASTM D150 | |
Arc resistance | |||
Tungsten wire | 6 | PLC Code | ASTM D495 |
Hot wire ignition {PLC} | 2 | PLC Code | UL 746A |
High voltage arc marking rate {PLC} | 4 | PLC Code | UL 746A |
High current arc ignition (surface {PLC}) | 0 | PLC Code | UL 746A |
Compared to the leakage tracing index | 3 | PLC Code | UL 746A |
resistivity | |||
volume | >1.E+15 | Ohm-cm | IEC 60093 |
surface | >1.E+15 | Ohm | IEC 60093 |
Dielectric strength | |||
0.8 mm in oil | 23 | kV/mm | IEC 60243-1 |
1.6 mm in oil | 22 | kV/mm | IEC 60243-1 |
3.2 mm in oil | 16 | kV/mm | IEC 60243-1 |
Relative permittivity | |||
50-60 Hz | 3.3 | IEC 60250 | |
100 Hz | 3.8 | IEC 60250 | |
1 MHz | 3.3 | IEC 60250 | |
Dissipation factor | |||
50-60 Hz | 0.001 | IEC 60250 | |
100 Hz | 0.002 | IEC 60250 | |
1 MHz | 0.01 | IEC 60250 | |
Compared to the leakage tracing index | 175 | V | IEC 60112 |
CTI | 125 | V | IEC 60112 |
FLAME CHARACTERISTICS | Nominal value | Unit | Test method |
---|---|---|---|
Flame retardant level | |||
0.40 mm | V-2 | UL 94 | |
0.71 mm | V-0 | UL 94 | |
2.00 mm | 5VA | UL 94 | |
Glowing wire flammability index | |||
960 ℃, passed through | 1 | mm | IEC 60695-2-12 |
Extreme oxygen index | |||
LOI | 32 | % | ISO 4589 |
ultraviolet radiation | |||
Water exposure/immersion | F2 | – | UL 746C |
Process Conditions | |||
---|---|---|---|
injection molding | Nominal value | Unit | Test method |
Drying temperature | 120 | °C | |
Drying time | 3-4 | hrs | |
Drying time (gradually increasing) | 12 | hrs | |
Maximum water content | 0.02 | % | |
Melt temperature | 255-275 | °C | |
Nozzle temperature | 250-270 | °C | |
Front temperature | 255-275 | °C | |
Mid section temperature | 250-270 | °C | |
Post stage temperature | 245-265 | °C | |
Mold temperature | 65-90 | °C | |
Back pressure | 0.3 – 0.7 | MPa | |
Screw speed | 50-80 | rpm | |
Shooting cylinder size | 40 – 80 | % | |
Depth of exhaust groove | 0.025 – 0.038 | mm |
Notes |
---|
【 Disclaimer 】 Guangzhou Soliao Information Technology Co., Ltd. reserves all rights. The information in this data table was obtained from the manufacturer of the material on soliao.com. Soliao.com makes every effort to ensure the accuracy of this data. However, the search company does not assume any responsibility for the uncertainty and consequences caused to users by these data values and suggestions, and strongly recommends verifying the data values with the material supplier before the final selection of materials. |