3D printer Intamsys Funmat Pro 410
Intamsys Funmat Pro 410 — an industrial FFF 3D printer designed for manufacturing functional parts from high-temperature polymers and composite materials. With a nozzle heating system reaching up to 500 °C, an enclosed thermally stabilized chamber, and a dual-nozzle system, the printer supports PEEK, PEKK, PPS, and carbon-fiber-reinforced composites. The build volume of 305 × 305 × 406 mm allows you to print large parts and engineering components with complex geometries.
Model Features and Functionality
High-Temperature Architecture for Stable Printing
The Intamsys Funmat Pro 410 features a high-temperature printing system with a dual extruder, heated build platform, and enclosed build chamber. This allows the printer to maintain a stable temperature during printing and reduces the risk of part deformation:
- Nozzle temperature — up to 500 °C;
- Build platform temperature — up to 160 °C;
- Build chamber temperature — up to 90 °C;
- Liquid cooling system for maintaining a uniform temperature.
Dual-Nozzle Printing System
The printer is equipped with two nozzles for manufacturing complex parts and support structures. The system allows different materials to be used within a single printing cycle.
Sealed Filament Storage and Feeding System
The filament chamber features a sealed design and is equipped with a reusable molecular sieve. It automatically feeds the material while monitoring temperature and humidity:
- Filament storage in a dry environment for more than 30 days;
- Real-time temperature and humidity monitoring;
- Automatic material feeding;
- Sealed storage chamber design.
Intelligent Printing Process Control
The automation and remote control system reduces the likelihood of printing interruptions:
- Automatic platform calibration;
- Automatic nozzle cleaning;
- Filament runout warning;
- Material clogging warning;
- Remote monitoring and print start via network connection.
Supported Materials
The Intamsys Funmat Pro 410 supports printing with a wide range of high-temperature, engineering, and composite materials:
- PAEK family materials: PEEK, PEEK-CF, PEEK-GF, PEKK;
- High-temperature polymers: PPS;
- Engineering thermoplastics: PC, PC-ABS, PA6/66, PA12, ABS, ASA, HIPS;
- Composite materials: PPA-CF, PPA-GF, PA6-CF, PA12-CF, as well as carbon- and glass-fiber-filled materials;
- Support materials: PVA.
The printer is used to manufacture prototypes, functional parts, production tooling, and end-use products designed to withstand increased mechanical, thermal, and chemical loads.
Application Examples
Knitting Equipment Gear Segment
Used as a replacement for the original aluminum component in knitting equipment.
- Part material: PEEK.
- Advantages of use:
- Lower cost compared with manufacturing a metal component;
- Fast production and component replacement;
- Mechanical strength and wear resistance;
- Ability to quickly restore equipment operability.
CubeSat Microsatellite Housing
CubeSat is a standardized format for compact satellites used for scientific research, Earth observation, technology testing, and space experiments. These spacecraft operate under vacuum conditions, temperature fluctuations, and strict weight limitations.
- Part material: PEEK.
- Advantages of use:
- Lower weight compared with metal structures;
- Heat resistance and retention of mechanical properties across a wide temperature range;
- Manufacturing of complex geometries without specialized tooling;
- Ability to make design changes during development and testing;
- Reduced production time for experimental and functional prototypes.
Load-Bearing Bracket
A lightweight bracket with internal reinforcing ribs and triangular cutouts designed to withstand high mechanical loads. The design serves as a replacement for an aluminum component.
- Part material: PA6-CF.
- Advantages of use:
- Lower weight compared with metal counterparts;
- Rigidity and mechanical strength;
- Reduced manufacturing time to 4–5 hours;
- Ability to quickly modify the design and reproduce the part.
Technical Specifications
| Parameter | Value |
| Printing technology | FFF |
| Chamber type | Fully enclosed |
| Number of nozzles | 2 |
| Max. number of spools | 2 pcs. up to 3 kg each |
| Filament storage system | Sealed storage chamber with reusable molecular sieve, automatic material feeding, and temperature and humidity monitoring |
| Filament diameter | 1.75 mm |
| Standard nozzle | 0.4 mm |
| Supported nozzles | 0.25 / 0.6 mm |
| Layer thickness | 0.1–0.5 mm |
| Max. nozzle temperature | 500 °C |
| Max. platform temperature | 160 °C |
| Max. chamber temperature | 90 °C |
| Max. printing speed | 120 mm/s |
| Max. XY travel speed | 300 mm/s |
| Max. Z travel speed | 50 mm/s |
| Build surface | Ceramic glass platform with magnetic fixation system |
| Max. build volume | 305 × 305 × 406 mm |
| Platform calibration | Automatic and manual |
| Resolution | XY: 15.6 µm; Z: 1.56 µm |
| Display | 7" touchscreen |
| Software | INTAMSUITE™ |
| Supported file types | .stl, .obj, .x3d, .3mf, .stp, .iges |
| Compatible operating systems | Windows |
| Connectivity interfaces | Wi-Fi, Ethernet, USB |
| Max. power | 3 kW |
| Input voltage | 200–240 V, 15 A, 50–60 Hz |
| Drive system | High-precision drive system with closed-loop control |
| External model cooling | Liquid cooling system and fan cooling |
| Safety features | Electromagnetic door lock, overheat protection, overload protection, leakage current protection, warning labels |
| Certification and standards | CE, FCC, SGS, EN60204 |
| Operating temperature / humidity | 15 °C – 30 °C / 30–70% |
| Storage temperature / humidity | 0 °C – 35 °C / 20–90% |
| Device dimensions | 728 × 684 × 1480 mm |
| Device weight | 230 kg |
Assistance in Selecting Equipment and Materials
You can buy the Intamsys Funmat Pro 410 on the 3DPrinter website with delivery across Ukraine. For assistance in selecting high-temperature polymers, composite materials, or configuring the equipment for specific production requirements, contact the company's specialists.
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