
POM Delrin® 500P NC010 DUPONT USA
375
- Unit Price:US$ 4,687 /MT
- Packaging Specification:25 KG/PKG
- Packaging Material:Paper bag
- Supply Quantity:228.01MT
- Delivery Terms:FOB
- Port of Loading :China Main Port
- Accepted Payment Methods:T/T
- Shipping:Negotiate supplier for shipping details
- Material Comparison:POM Delrin® 500P NC010 DUPONT SHENZHEN
Supplier Information
ASIA PLASTIC EXCHANGE LIMITED
+86 755 ********View
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For more details, please contact the supplier!
Material Description
- Material Properties:High rigidity|Aging resistance|currency|Weather resistance
- Application Areas:Automotive sector|Fitness equipment
- Color:--
- Grade:Injection grade
Material Certification

Technical Data Sheet
physical property | Test Condition | Test Method | Test Result |
---|---|---|---|
density | ISO 1183 | 1.42 g/cm³ | |
melt mass-flow rate | ISO 1133 | 15 g/10min | |
Melt volume flow rate | ISO 1133 | 13.0 cm3/10min | |
Shrinkage rate | ISO 294-4 | 1.9 % | |
ISO 294-4 | 2.0 % | ||
Water absorption rate | ISO 62 | 1.4 % | |
ISO 62 | 0.40 % | ||
MediumDensity | 1.19 g/cm³ | ||
ThermalConductivityofMelt | 0.24 W/m/K |
hardness | Test Condition | Test Method | Test Result |
---|---|---|---|
Rockwell hardness | ISO 2039-2 | 92 | |
ISO 2039-2 | 120 | ||
ball-indentation hardness | ISO 2039-1 | 192 Mpa |
flammability | Test Condition | Test Method | Test Result |
---|---|---|---|
UL flame retardant rating | IEC 60695-11-10,-20 | HB | |
IEC 60695-11-10,-20 | HB | ||
Limiting Oxygen Index | ISO 4589-2 | 22 % | |
FMVSS flammability | FMVSS302 | B | |
atomization | ISO 6452 | 90 % | |
ISO 6452 | 3.5E-04 g | ||
burning rate | ISO 3795 | 20 mm/min | |
UL flame retardant rating | UL 94 | HB | |
UL 94 | HB |
Supplementary Information | Test Condition | Test Method | Test Result |
---|---|---|---|
Emission | VDA275 | <8.00 mg/kg | |
Emissions of Organic Compounds | VDA277 | 3.10 µgC/g |
Mechanical properties | Test Condition | Test Method | Test Result |
---|---|---|---|
Tensile modulus | ISO 527-2 | 3100 Mpa | |
tensile strength | ISO 527-2 | 71.0 Mpa | |
Tensile strain | ISO 527-2 | 17 % | |
Nominal tensile fracture strain | ISO 527-2 | 30 % | |
Tensile creep modulus | ISO 899-1 | 2800 Mpa | |
ISO 899-1 | 1600 Mpa | ||
Flexural modulus | ISO 178 | 3000 Mpa | |
bending strength | ISO 178 | 80.0 Mpa | |
Poisson's ratio | ISO 527 | 0.35 |
Impact resistance | Test Condition | Test Method | Test Result |
---|---|---|---|
Suspended wall beam without notch impact strength | ISO 180/1U | 250 kJ/m² | |
ISO 180/1U | 280 kJ/m² | ||
Multi axis Instrumented Impact Energy | ISO 6603-2 | 3.00 J | |
Multi axis Instrumented Peak Impact Force | ISO 6603-2 | 2000 N | |
Charpy Notched Impact Strength | ISO 179/1eA | 8.0 kJ/m² | |
ISO 179/1eA | 9.0 kJ/m² | ||
Impact strength of simply supported beam without notch | ISO 179/1eU | 280 kJ/m² | |
ISO 179/1eU | 320 kJ/m² | ||
Impact strength of cantilever beam gap | ISO 180/1A | 8.0 kJ/m² | |
ISO 180/1A | 9.0 kJ/m² |
Electrical performance | Test Condition | Test Method | Test Result |
---|---|---|---|
Surface Resistivity | IEC 60093 | 4E+14 ohms | |
Volume resistivity | IEC 60093 | 2E+14 ohms·cm | |
dielectric strength | IEC 60243-1 | 44 KV/mm | |
relative permittivity | IEC 60250 | 3.80 | |
IEC 60250 | 3.80 | ||
Dissipation Factor | IEC 60250 | 9E-03 | |
IEC 60250 | 5.5E-03 | ||
Compared to the Leakage Tracking Index (CTI) | IEC 60112 | PLC 0 |
Thermal performance | Test Condition | Test Method | Test Result |
---|---|---|---|
Heat distortion temperature | ISO 75-2/B | 160 °C | |
ISO 75-2/A | 95.0 °C | ||
vicat | ISO 306/B50 | 155 °C | |
ball-indentation hardness | IEC 60695-10-2 | Pass | |
melting temperature | ISO 11357-3 | 178 °C | |
Linear coefficient of thermal expansion | ISO 11359-2 | 1E-04 cm/cm/°C | |
ISO 11359-2 | 9E-05 cm/cm/°C | ||
ISO 11359-2 | 1E-04 cm/cm/°C | ||
ISO 11359-2 | 9E-05 cm/cm/°C | ||
ISO 11359-2 | 160 °C | ||
ISO 11359-2 | 30.0 min/mm | ||
ISO 11359-2 | 9E-08 m²/s |
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.
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