Siraya Tech Fibreheart PAHT-CF PPA-CF 3D Printer Filament, High-Performance PPA (Polyphthalamide) Nylon Reinforced with Carbon Fiber for Exceptional Strength and Thermal Stability - (1kg, Black)
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Siraya Tech Fibreheart PAHT-CF PPA-CF 3D Printer Filament, High-Performance PPA (Polyphthalamide) Nylon Reinforced with Carbon Fiber for Exceptional Strength and Thermal Stability - (1kg, Black)
Advanced PPA Material: Fibreheart PAHT-CF utilizes PPA (Polyphthalamide), a superior alternative to traditional Nylon. This high-performance engineering thermoplastic offers enhanced strength, chemical resistance, and thermal stability, making it perfect for demanding applications where standard Nylon falls short.
Significantly Reduced Moisture Absorption: Unlike conventional Nylon filaments, our PPA-based PAHT-CF exhibits remarkably low hygroscopicity. This crucial advantage ensures superior dimensional stability, improved printability, and consistent performance even in humid environments, eliminating many common issues associated with Nylon materials.
Carbon Fiber Reinforcement for Unmatched Performance: Incorporating 15% chopped carbon fibers using Smart Fiber Reinforced Technology, Fibreheart PAHT-CF creates a robust internal structure. This enhancement further elevates the already impressive properties of PPA, resulting in exceptional mechanical strength, heat resistance, and reduced warping.
Engineered for Extreme Conditions: Harness the superior thermal properties of PPA with Fibreheart PAHT-CF. Its exceptional heat resistance surpasses that of standard Nylon, maintaining strength and abrasion resistance even in high-temperature environments. This makes it the ideal choice for automotive parts and industrial machinery exposed to constant heat stress.
Precision Engineering Meets Superior Material Science: Fibreheart PAHT-CF combines the precision of 3D printing with the advanced properties of PPA and carbon fiber reinforcement. This synergy results in highly accurate, dimensionally stable prints that excel in applications demanding both thermal and mechanical resilience. From automotive components to industrial assemblies, achieve new levels of performance and reliability with every print.