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PA10T-HT1040GA
High‑temperature nylon PA10T is a high‑performance engineering plastic that offers exceptional heat resistance, excellent dimensional stability, low water absorption, chemical resistance, and superior mechanical and electrical properties. It is widely used in the automotive industry for engine‑adjacent components such as intake manifolds and sensor housings, as well as in fuel‑system parts that must withstand fuel‑induced corrosion; it also finds applications in high‑temperature connectors, IC package substrates, and LED heat‑dissipation brackets. In the aerospace sector, it serves as a lightweight structural material and radiation‑resistant component, while in industrial manufacturing it is employed for gears, bearings, and seals that require wear resistance and fatigue resistance.
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High‑temperature nylon PA10T is a high‑performance engineering plastic that offers exceptional heat resistance, excellent dimensional stability, low water absorption, chemical resistance, and superior mechanical and electrical properties. It is widely used in the automotive industry for engine‑adjacent components such as intake manifolds and sensor housings, as well as in fuel‑system parts that must withstand fuel‑related corrosion; it also finds applications in high‑temperature connectors, IC package substrates, and LED heat‑dissipation brackets. In the aerospace sector, it serves as a lightweight structural material and radiation‑resistant component, while in industrial manufacturing it is employed for gears, bearings, and seals that require wear resistance and fatigue resistance.
| Detection Performance Properties |
Unit Unit |
Testing Standards Test Standard |
Test conditions Test condition |
Product Category Grade Grade |
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| PA10T+40GF General-purpose |
PA10T+40GF Flame-retardant, V0 grade |
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| HT1040GA | HT1040GFRV0 | |||||
| Density Density |
g/cm3 | ISO 1183 | - | 1.47 | 1.47 | |
| Filler content Filler content |
% | ISO 1172 | - | GF40 | GF40 | |
| Mold shrinkage rate Mold shrinkage |
% | ISO 294 | Parallel | 0.2 | 0.2 | |
| Vertical | 0.6 | 0.6 | ||||
| Tensile breaking strength Tensile strength |
MPa | ISO 527 | I type sample 50 mm/min |
240 | 180 | |
| Nominal strain at fracture Elongation at break |
% | ISO 527 | I type sample 50 mm/min Gauge length 50mm |
2 | 2 | |
| Flexural strength Flexural strength |
MPa | ISO 178 | 23℃ 2mm/min | 290 | 270 | |
| Flexural modulus Flexural modulus |
MPa | ISO 178 | 23℃ 2mm/min | 13000 | 10500 | |
| Notched impact strength of a cantilever beam Izod impact strength (notched) |
KJ/m2 | ISO 180 | 23°C | 16.5 | 13 | |
| Simply supported beam notched impact strength Charpy impact strength (unnotched) |
KJ/m2 | ISO 179 | 23°C | 90 | 80 | |
| Melting point Melting point |
°C | ISO 11357-1 | - | 318 | 318 | |
| Hot deformation temperature HDT |
°C | ISO 75 | 1.8MPa | 265 | 265 | |
| UL Flame Rating Flammability |
Class | UL-94 | - | HB | V0 | |
| Surface resistivity Surface resistivity |
Omega | IEC60093 | - | 1.00E+14 | 1.00E+14 | |
| Volume resistivity Volume resistivity |
Ω•cm | IEC60093 | - | 1.00E+15 | 1.00E+15 | |
| Comparative Tracking Index (CTI) Comparative Tracking Index |
V | IEC60112 | - | - | 600 | |
| Note: The above data are typical values and are provided for material selection purposes only. Note: The above data are typical, only for reference- |
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