Production-scale PAEK 3D printing
The Intamsys Funmat Pro 310 Apollo is an industrial 3D printer engineered for batch and continuous production with high-performance materials such as PAEK. The platform is built to produce full-strength functional parts while supporting true continuous production workflows.
Built for high-performance materials
This printer is designed for demanding applications that require high-temperature polymers and consistent mechanical performance. Support for full-range PAEK materials makes the system suitable for end-use manufacturing where strength, thermal stability, and repeatability matter.
Supported materials include: PEEK, PEKK, PEEK-CF, and PEEK-GF.

Why the material capability matters
- Supports full-range PAEK for advanced industrial part production
- Delivers up to 40 MPa Z-tensile strength for stronger printed parts
- Targets tough jobs that need durable, functional components
High-speed printing for end-use parts
The Funmat Pro 310 Apollo is designed to make high-performance polymer printing practical at production speed. The system addresses the mechanical and thermal demands of high-requirement industries while maintaining reliability for functional applications.

End-use part manufacturing made real
- Meets the mechanical and thermal demands of high-requirement industries
- Ensures reliability and durability for functional applications

PAEK-optimised high-speed printing system
The printer combines a high-speed motion and extrusion platform with hardware tuned for advanced polymers. The result is faster production without shifting the focus away from part performance.
How fast can the printer produce PAEK parts?
- Prints at up to 200 mm/s with the first PAEK-optimised dual-nozzle system in the industry
- Achieves more than 4 times the speed of standard PEEK printers

Dual IDEX for PAEK manufacturing
- Independent dual-extrusion system optimised for high-temperature materials
- Supports mirror mode and duplicate mode printing for double productivity

Faster cycles without compromising strength
- Shortens production cycles while supporting both batch manufacturing and end-use part delivery
- Balances speed with the strength requirements of functional industrial parts

Auto-cleaning nozzles for efficient material use
- No prime tower is needed
- Reduces part print time and helps conserve materials

Continuous production workflow
The Intamsys platform is built to keep printers running for long jobs and repeat production. Material handling, print stability, and traceability features are integrated to reduce interruptions and support predictable output.

Long-duration printing without pause
- Dual 3 kg active dry boxes, up to 65
- Ensures up to one week of uninterrupted printing with no material changeovers and no downtime

Traceability built into the process
- Real-time data logging with the INTAMQuality system
- Full part tracking and material traceability
- RFID-based INTAMSYS spool recognition
- Quality validation from start to finish

Stable high-temperature printing environment
- Optimised hardware and software for PAEK materials
- Supports repeatability, precision, and a high print success rate
- Maintains stable chamber temperature up to 100C
- Helps minimise warping and material inconsistency

Intelligent control platform for stable, trackable production
The control ecosystem combines process planning, adaptation, and fleet-level oversight. These tools are intended to make advanced polymer printing more consistent across different geometries, materials, and production volumes.
Multi-physics equilibrium
Coupled field control achieves precise balance across thermal, flow, and path planning conditions.

Adaptive process planning
INTAMSUITE NEO delivers optimised toolpaths and adaptive process control for every material and geometry.

Remote monitoring and centralised control
INTAMSUITE Local Print enables centralised management, remote monitoring, and full remote control, from a single printer to an entire print bureau.

Industrial applications for PAEK and reinforced polymers
The Funmat Pro 310 Apollo is intended for high-requirement industrial applications where material performance must align with specific operating conditions. The supported polymer set maps to sectors that need strength, temperature resistance, stiffness, and stable production output.
How the printer fits aerospace and aircraft part production
For aerospace and aircraft-related work, the platform supports PEEK and PEKK applications where strength, stability, and material-specific performance are important.
Aerospace (PEEK)
- Superior strength and stability
- Superior radiation resistance

Aerocraft (PEKK)
- Extremely high Z-strength
- Prominent all-round properties comparable to PEEK
- Easy to print, no post-processing required

How the printer fits robotics and industrial equipment manufacturing
For robotics manufacturing, carbon-fibre-reinforced PEEK supports stiffer parts with improved modulus and surface quality. For oil and gas applications, reinforced high-temperature materials address wear, rigidity, and thermal demands.
Robotics Manufacturing (PEEK-CF)
- Reinforced with 10% carbon fibre
- Ultra-high modulus and increased stiffness
- Fine surface quality

Oil & Gas (PPS-GF)
- Excellent conductivity and wear resistance
- High strength and high temperature resistance
- Excellent rigidity
| Supported material family | Full-range PAEK |
| Supported PAEK materials | PEEK, PEKK, PEEK-CF, PEEK-GF |
| Z-tensile strength | Up to 40 MPa |
| Maximum print speed | Up to 200 mm/s |
| Extrusion system | PAEK-optimised dual-nozzle system |
| Extrusion architecture | Independent dual extrusion (IDEX) |
| Dry box configuration | Dual 3 kg active dry boxes |
| Maximum chamber temperature | Up to 100C |
| PEEK-CF reinforcement | 10% carbon fibre |
Electrical Safety & Certifications
Learn more about Canadian electrical standards, certification types, and what they mean for you.
Intamsys Funmat Pro 310 Apollo
All orders are shipped from and processed in Canada. Duties, taxes, tariffs, and credit card foreign transaction fees may apply.