PBT VALOX™ 420SE0-8051 SABIC INNOVATIVE US
115
- Unit Price:
- $3675 USD/MT
- Packaging Specification:
- 25 KG/PKG
- Supply Quantity:
- 15MT
- Delivery Terms:
- FOB
- Port of Loading:
- China Main Port
- Accepted Payment Methods:
- T/T
- Shipping:
- Negotiate supplier for shipping details
Supplier Information
ASIA PLASTIC EXCHANGE LIMITED
+86 755 2787 3515View
serv********View
For more detailed information including pricing, customization, and shipping, please contact supplier.
Material Description
Technical Data Sheet
Material Description
- Material Properties:Glass fiber reinforced high strength
- Application Areas:Office supplies Electronic accessories
- Color:--
- Grade:Injection grade
Technical Data Sheet
physical property | Test Condition | Test Method | Test Result | Unit |
---|---|---|---|---|
Density/specific gravity | ASTMD792 | 1.63 | g/cm³ | |
Specific volume | ASTMD792 | 0.610 | cm³/g | |
Density/specific gravity | ISO1183 | 1.63 | g/cm³ | |
Melt mass flow rate | 250°C/5.0kg | ASTMD1238 | 42 | g/10min |
Melt volume flow rate | 250°C/5.0kg | ISO1133 | 29.0 | cm3/10min |
Shrinkage rate | MD:--2 | 内部方法 | 0.10to0.50 | % |
MD:3.20mm | 内部方法 | 0.50to0.70 | % | |
TD:--2 | 内部方法 | 0.40to0.80 | % | |
TD:3.20mm | 内部方法 | 0.50to1.0 | % | |
Water absorption rate | Saturation,23°C | ISO62 | 0.090 | % |
Equilibrium,23°C,50%RH | ISO62 | 0.070 | % | |
Outdoor applicability | UL746C | f2 |
Mechanical performance | Test Condition | Test Method | Test Result | Unit |
---|---|---|---|---|
Tensile modulus 3 | ASTMD638 | 12000 | Mpa | |
Bending modulus 5 | 50.0mmSpan | ASTMD790 | 9800 | Mpa |
Tensile strain | Break | ISO527-2/5 | 1.9 | % |
Elongation rate 4 | Break | ASTMD638 | 2.0 | % |
Tensile strain | Yield | ISO527-2/5 | 1.9 | % |
Elongation rate 4 | Yield | ASTMD638 | 2.0 | % |
Tensile stress | Break | ISO527-2/5 | 120 | Mpa |
Tensile strength 4 | Break | ASTMD638 | 120 | Mpa |
Tensile stress | Yield | ISO527-2/5 | 120 | Mpa |
Tensile strength 4 | Yield | ASTMD638 | 120 | Mpa |
Tensile modulus | ISO527-2/1 | 10000 | Mpa | |
Taber abraser | 1000Cycles,1000g,CS-17Wheel | 内部方法 | 22.0 | mg |
FlexuralStrength5 | Break,50.0mmSpan | ASTMD790 | 186 | Mpa |
Bending stress | ISO178 | 180 | Mpa | |
Bending modulus 6 | ISO178 | 9500 | Mpa |
Thermal performance | Test Condition | Test Method | Test Result | Unit |
---|---|---|---|---|
Linear coefficient of thermal expansion | MD:-40to40°C | ASTME831 | 2.5E-05 | cm/cm/°C |
Hot deformation temperature | 1.8MPa,Unannealed,64.0mmSpan10 | ISO75-2/Af | 200 | °C |
Vicat softening temperature | ASTMD152511 | 200 | °C | |
-- | ISO306/A50 | 220 | °C | |
-- | ISO306/B50 | 200 | °C | |
-- | ISO306/B120 | 200 | °C | |
BallPressure Test | 125°C | IEC60695-10-2 | Pass | |
Hot deformation temperature | 1.8MPa,Unannealed,100mmSpan9 | ISO75-2/Ae | 195 | °C |
1.8MPa,Unannealed,3.20mm | ASTMD648 | 200 | °C | |
Hot deformation temperature 9 | 0.45MPa,Unannealed,100mmSpan | ISO75-2/Be | 220 | °C |
Linear coefficient of thermal expansion | MD:-40to40°C | ISO11359-2 | 2.5E-05 | cm/cm/°C |
MD:23to80°C | ISO11359-2 | 2.5E-05 | cm/cm/°C | |
TD:-40to40°C | ASTME831 | 8.9E-05 | cm/cm/°C | |
TD:-40to40°C | ISO11359-2 | 8.9E-05 | cm/cm/°C | |
TD:23to80°C | ISO11359-2 | 1.2E-04 | cm/cm/°C | |
thermal conductivity | ISO8302 | 0.25 | W/m/K | |
RTIElec | UL746 | 130 | °C | |
Evolution Calendar intelligent importer | UL746 | 130 | °C | |
RTIStr | UL746 | 140 | °C | |
Hot deformation temperature | 0.45MPa,Unannealed,3.20mm | ASTMD648 | 212 | °C |
Electrical performance | Test Condition | Test Method | Test Result | Unit |
---|---|---|---|---|
Compared to the anti leakage trace index | CTI | UL746 | PLC3 | |
Leakage Trace Index | -- | IEC60112 | 175 | V |
SolutionB | IEC60112 | 125 | V | |
High arc combustion index | HAI | UL746 | PLC0 | |
High voltage arc tracing rate | HVTR | UL746 | PLC4 | |
Hot wire ignition | HWI | UL746 | PLC2 | |
Surface resistivity | IEC60093 | >1.0E+15 | ohms | |
Volume resistivity | ASTMD257 | >1.0E+15 | ohms·cm | |
IEC60093 | >1.0E+15 | ohms·cm | ||
Dielectric strength | 1.60mm,in Oil | ASTMD149 | 24 | KV/mm |
3.20mm,inAir | ASTMD149 | 19 | KV/mm | |
Relative permittivity | 60Hz | IEC60250 | 3.30 | |
100Hz | IEC60250 | 3.80 | ||
1MHz | IEC60250 | 3.30 | ||
Dissipation factor | 100Hz | ASTMD150 | 2E-03 | |
1MHz | ASTMD150 | 0.020 | ||
50Hz | IEC60250 | 1E-03 | ||
60Hz | IEC60250 | 1E-03 | ||
100Hz | IEC60250 | 2E-03 | ||
1MHz | IEC60250 | 0.010 | ||
Arc resistance 12 | ASTMD495 | PLC6 | ||
Dielectric strength | 0.800mm,in Oil | IEC60243-1 | 23 | KV/mm |
1.60mm,in Oil | IEC60243-1 | 22 | KV/mm | |
3.20mm,in Oil | IEC60243-1 | 16 | KV/mm | |
Dielectric constant | 100Hz | ASTMD150 | 3.80 | |
1MHz | ASTMD150 | 3.70 | ||
Relative permittivity | 50Hz | IEC60250 | 3.30 |
Impact performance | Test Condition | Test Method | Test Result | Unit |
---|---|---|---|---|
Impact strength of cantilever beam gap | 23°C | ASTMD256 | 60 | J/m |
-30°C | ASTMD256 | 57 | J/m | |
The impact strength of a simply supported beam without a notch is 7 | 23°C | ISO179/1eU | 50 | kJ/m² |
-30°C | ISO179/1eU | 50 | kJ/m² | |
Impact strength of simply supported beam gap 7 | 23°C | ISO179/1eA | 7.0 | kJ/m² |
-30°C | ISO179/1eA | 6.0 | kJ/m² | |
Suspended wall beam gap impact strength 8 | -30°C | ISO180/1A | 6.0 | kJ/m² |
23°C | ISO180/1A | 7.0 | kJ/m² | |
Impact strength of cantilever beam gap | 23°C | ASTMD4812 | 620 | J/m |
Unscented Izod Impact Strength 8 | -30°C | ISO180/1U | 45 | kJ/m² |
23°C | ISO180/1U | 45 | kJ/m² | |
Dart impact equipped with measuring instruments | 23°C,TotalEnergy | ASTMD3763 | 5.00 | J |
hardness | Test Condition | Test Method | Test Result | Unit |
---|---|---|---|---|
Rockwell hardness | R-Scale | ASTMD785 | 119 | |
R-Scale | ISO2039-2 | 119 | ||
Ball pressure hardness | H358/30 | ISO2039-1 | 118 | Mpa |
flammability | Test Condition | Test Method | Test Result | Unit |
---|---|---|---|---|
Extreme Oxygen Index | ISO4589-2 | 32 | % | |
UL flame retardant rating | 0.40mm | UL94 | V-2 | |
0.71mm | UL94 | V-0 | ||
2.0mm | UL94 | 5VA | ||
Burning wire flammability index | 1.0mm | IEC60695-2-12 | 960 | °C |
IMPORTANT NOTES: Plas.com collected the data in the data sheet from the material manufacturers. Plas.com makes the best effort to improve the accuracy of the data, but has no responsibility for the data. We strongly recommend verifying the validity of the data with the material manufacturers before making a final decision.