3D printers
High quality 3D printers

High-quality 3D printing solutions for demanding projects
Order Parts now!The perfect symbiosis of quality and quantity!
Complex geometries with ideal properties!
High-resolution components with a wide variety of materials!
High-performance components with sustainable production!
A wide range of materials and ultra-fast production!
Ideal for a wide range of dental indications!
The process from simple component to product!
Fully automate your production!
Fast processing and successful management!
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Send EmailThe Hyper Core filament line is oriented towards a new-generation of professional and industrial fiber-reinforced composite filaments for Hyper FFF®.
Fiber-reinforced composite filaments are the ideal material for industrial and end-use parts production and heavy-duty applications with superio strength, stiff and heat resistance. However, high-speed printing using fiber-reinforced filament brings many challenges, such as lower flowability and poorer interlayer bonding quality, and quicker wearing out of the nozzle.
To overcome these challenges, Raise3D Hyper Core PPA CF25 filament is an extrusion technology that has been specially developed to form a fiber-rich inner core where most of the carbon fiber (25 wt.%) is well-aligned and distributed. During high-speed printing, the outstanding heat conductivity of the carbon-fiber rich core will speed up filament melting in the hot end. Meanwhile, more residual thermal energy is obtained from the fiber-rich inner core, improving polymer healing and welding processes across the interface of adjacent and lines. Compared to the regular PPA CF, the Hyper Core PPA CF25 significantly improves the Z-direction strength, the surface quality and also the nozzle lifetime. It is ideal for industrial grade applications where high performance, stability and efficiency are required.
- Developed for Hyper FFF®
- Superior strength and stiffness
- Tailored fiber distribution
- Outstanding surface finish
- Excellent interlayer bonding
- Lower nozzle abrasion
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