Category: | Nylon 66 , Polyamide 66 |
Manufacturer: | Ascend Performance Materials Operations LLC |
Trademark: | Vydyne® |
Fillers: | - |
Ports: | Qinzhou, Shekou, Shanghai, Ningbo |
Delivery Terms | FOB, CIF, DAP, DAT, DDP |
PDF: | nGGorv_VydyneR513HNAT.pdf ![]() |
PRICE: | Order Products email sales@su-jiao.com |
Message |
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Vydyne R513H NAT is general-purpose, 13% glass-fiber reinforced, heat-stabilized PA66 resin. Available in natural, it is an injection-molding grade resin that is lubricated for machine feed, flow, and mold release. Glass-reinforced Vydyne resins provide a higher heat distortion temperature, better resistance to creep, higher impact, and better dimensional stability when compared with unreinforced PA66. This product has good chemical resistance to a broad range of chemicals, including many aliphatic and aromatic hydrocarbons found in most solvents, gasoline, hydraulic fluids, greases and machine oils. Vydyne R513H NAT has tensile strength and modulus properties just below aluminum and zinc and can replace these metals in numerous applications due to an excellent balance of properties. Reduction in production costs, energy consumption and part weight are key advantages of Vydyne glass-reinforced PA66 resins over aluminum and/or zinc die-cast parts. Vydyne R513H NAT is heat-stabilized and formulated to minimize the oxidative and thermal degradation of the PA66 polymer when exposed to elevated temperatures for extended periods of time. Vydyne R513H NAT provides improved retention of physical properties under exposure to long-term heat. The continuous operating use temperature is 275° F, with short-term peak temperatures as high as 475° F. Typical Applications/End Uses: Vydyne R513H NAT resin has been used for many under-the-hood automotive applications, motor housings for power tools and garden appliances. This resin has also been used in miscellaneous brackets, gears and clips, which require high rigidity and strength. |
General Information | |
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Features |
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Agency Ratings |
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UL File Number |
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Appearance |
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Processing Method |
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Physical | Dry | Conditioned | Unit | Test Method |
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Density | 1.23 | -- | g/cm³ | ISO 1183 |
Molding Shrinkage | ISO 294-4 | |||
Lateral flow : 23°C, 2.00mm | 1.0 | -- | % | ISO 294-4 |
Traffic : 23°C, 2.00mm | 0.50 | -- | % | ISO 294-4 |
Water Absorption | ISO 62 | |||
23°C, 24 hr | 1.0 | -- | % | ISO 62 |
Equilibrium, 23°C, 50% RH | 2.2 | -- | % | ISO 62 |
Mechanical | Dry | Conditioned | Unit | Test Method |
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Tensile Modulus (23°C) | 6200 | 3900 | MPa | ISO 527-2 |
Tensile Stress (Break, 23°C) | 115 | 75.0 | MPa | ISO 527-2 |
Tensile Strain (Break, 23°C) | 3.0 | 13 | % | ISO 527-2 |
Flexural Modulus (23°C) | 5200 | 3150 | MPa | ISO 178 |
Flexural Stress (23°C) | 165 | 106 | MPa | ISO 178 |
Poisson's Ratio | 0.40 | -- | ISO 527-2 |
Impact | Dry | Conditioned | Unit | Test Method |
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Charpy Notched Impact Strength | ISO 179 | |||
-30°C | 6.0 | 5.3 | kJ/m² | ISO 179 |
23°C | 6.0 | 7.5 | kJ/m² | ISO 179 |
Charpy Unnotched Impact Strength | ISO 179 | |||
-30°C | 31 | 37 | kJ/m² | ISO 179 |
23°C | 38 | 42 | kJ/m² | ISO 179 |
Notched Izod Impact | ISO 180 | |||
-30°C | 5.0 | 5.4 | kJ/m² | ISO 180 |
23°C | 5.1 | 8.5 | kJ/m² | ISO 180 |
Thermal | Dry | Conditioned | Unit | Test Method |
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Heat Deflection Temperature | ||||
0.45 MPa, not annealed | 258 | -- | °C | ISO 75-2/B |
1.8 MPa, not annealed | 240 | -- | °C | ISO 75-2/A |
Melting Temperature | 260 | -- | °C | ISO 11357-3 |
Linear thermal expansion coefficient | ISO 11359-2 | |||
Flow : 23 to 55°C, 2.00mm | 3.0E-5 | -- | cm/cm/°C | ISO 11359-2 |
Lateral : 23 to 55°C, 2.00mm | 1.1E-4 | -- | cm/cm/°C | ISO 11359-2 |
RTI Elec | UL 746 | |||
0.75 mm | 140 | -- | °C | UL 746 |
1.5 mm | 140 | -- | °C | UL 746 |
3.0 mm | 140 | -- | °C | UL 746 |
RTI Imp | UL 746 | |||
0.75 mm | 120 | -- | °C | UL 746 |
1.5 mm | 120 | -- | °C | UL 746 |
3.0 mm | 120 | -- | °C | UL 746 |
RTI | UL 746 | |||
0.75 mm | 125 | -- | °C | UL 746 |
1.5 mm | 140 | -- | °C | UL 746 |
3.0 mm | 140 | -- | °C | UL 746 |
Electrical | Dry | Conditioned | Unit | Test Method |
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Volume Resistivity (0.750 mm) | 1.0E+13 | -- | ohms·cm | IEC 60093 |
Dielectric Strength (1.00 mm) | 20 | -- | kV/mm | IEC 60243 |
Arc Resistance (3.00 mm) | PLC 6 | -- | ASTM D495 | |
Comparative Tracking Index (3.00 mm) | 250 - 399 | -- | V | IEC 60112 |
High Amp Arc Ignition (HAI) | UL 746 | |||
0.75 mm | PLC 0 | -- | UL 746 | |
1.5 mm | PLC 0 | -- | UL 746 | |
3.0 mm | PLC 0 | -- | UL 746 | |
High Voltage Arc Tracking Rate (HVTR) | PLC 1 | -- | UL 746 | |
Hot-wire Ignition (HWI) | UL 746 | |||
0.75 mm | PLC 4 | -- | UL 746 | |
1.5 mm | PLC 3 | -- | UL 746 | |
3.0 mm | PLC 4 | -- | UL 746 |
Flammability | Dry | Conditioned | Unit | Test Method |
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Flame Rating | UL 94 | |||
0.75 mm | HB | -- | UL 94 | |
1.5 mm | HB | -- | UL 94 | |
3.0 mm | HB | -- | UL 94 | |
Glow Wire Flammability Index | IEC 60695-2-12 | |||
0.75 mm | 675 | -- | °C | IEC 60695-2-12 |
1.5 mm | 675 | -- | °C | IEC 60695-2-12 |
3.0 mm | 675 | -- | °C | IEC 60695-2-12 |
Glow Wire Ignition Temperature | IEC 60695-2-13 | |||
0.75 mm | 700 | -- | °C | IEC 60695-2-13 |
1.5 mm | 700 | -- | °C | IEC 60695-2-13 |
3.0 mm | 700 | -- | °C | IEC 60695-2-13 |
Oxygen Index | 25 | -- | % | ISO 4589-2 |
Injection | Dry | Unit | |
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Drying Temperature | 80 | °C | |
Drying Time | 4.0 | hr | |
Suggested Max Regrind | 25 | % | |
Rear Temperature | 280 - 310 | °C | |
Middle Temperature | 280 - 310 | °C | |
Front Temperature | 280 - 310 | °C | |
Nozzle Temperature | 280 - 310 | °C | |
Processing (Melt) Temp | 285 - 305 | °C | |
Mold Temperature | 65 - 95 | °C |
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