3D printer Intamsys Funmat Pro 610HT
Intamsys Funmat Pro 610HT is an industrial FDM 3D printer designed to work with high-temperature engineering thermoplastics and produce large functional components. The maximum extruder temperature reaches 500 °C, while the build chamber can reach 300 °C, providing controlled conditions for printing parts from demanding polymers. The build volume of 610 × 508 × 508 mm makes it possible to produce large-scale parts as a single piece, without unnecessary splitting of the design into sections and subsequent assembly.
Design Features and Functionality
Large Build Volume for Industrial Production
The 610 × 508 × 508 mm build area is designed for producing large parts in a single cycle. This helps reduce the number of assembly operations and minimize reliance on joining individual components. Intamsys Funmat Pro 610HT is suitable for creating industrial prototypes, manufacturing fixtures, and finished functional products where dimensions, accuracy, and consistent results are important.
High-Temperature Printing System
The model is equipped with two extruders capable of heating up to 500 °C and a heated chamber with a maximum temperature of 300 °C. Maintaining a stable microclimate inside the build area promotes uniform material cooling and helps reduce the likelihood of warping or cracking of printed parts.
Process Automation and Control System
Intamsys Funmat Pro 610HT features a set of automated functions that simplify operator work and improve the predictability of long printing tasks:
- automatic build platform leveling;
- automatic nozzle cleaning;
- automatic filament reloading;
- filament jam warning;
- material-out warning;
- remote control and remote print start.
Automation of key operations reduces the need for constant operator intervention and makes the printer suitable for long production cycles.
High Printing Accuracy and Stability
The working mechanisms are driven by a servo system with high-precision ball screw drives. This design provides accurate positioning and smooth printhead movement. The maximum travel speed reaches 400 mm/s along the XY axes and 50 mm/s along the Z axis, allowing the equipment to combine high operating dynamics with precise positioning.
Design for Safe Operation
For use in industrial environments, Intamsys Funmat Pro 610HT is equipped with a comprehensive set of safety systems:
- independent safety PLC controller;
- electromagnetic door interlock;
- overheat protection;
- overload protection;
- emergency stop button;
- double-layer thermally insulated doors;
- thermal protection shield;
- three-color status indicator system.
Supported Materials
The high-temperature heating system expands the range of materials that the 3D printer can process.
- High-temperature polymers: PEEK, PEEK-CF, PEEK-GF, PEKK.
- Structural and engineering plastics: PA, PA-CF, PC, ABS, ASA.
- Basic prototyping materials: PLA.
Applications
Aircraft Air Duct
A functional air duct for use in an aircraft was manufactured using FDM technology on the industrial Intamsys Funmat Pro 610HT 3D printer.
Part material: ULTEM™.
Application benefits:
- High temperature resistance. The material retains the required mechanical properties at elevated temperatures, which is important for aircraft system components.
- Low weight. A polymer component can be significantly lighter than a comparable metal structure, helping reduce the overall weight of the aircraft.
- Precise manufacturing. FDM technology makes it possible to produce complex internal geometries, channels, and other structural elements without creating dedicated tooling.
- Fast production of functional parts. Additive manufacturing helps reduce the time between development and obtaining the finished component.
Functional Automotive Steering Wheel Prototype
A functional automotive steering wheel prototype was manufactured from ABS-PC using FDM technology on the Intamsys Funmat Pro 610HT 3D printer.
Part material: ABS-PC.
Application benefits:
- High impact strength. ABS-PC combines the characteristics of ABS and polycarbonate, making it suitable for functional prototypes.
- Fast design modification. 3D printing makes it possible to quickly modify the geometry of a product during design and testing.
- Reduced development costs. Creating a prototype does not require expensive molds or specialized production tooling.
- Functional testing. The printed product can be used to verify ergonomics, fit dimensions, and other structural parameters.
Aircraft Fairing
A functional aircraft fairing was manufactured from ULTEM™ 1010 using FDM technology on the Intamsys Funmat Pro 610HT for strength and temperature-resistance testing.
Part material: ULTEM™ 1010.
Application benefits:
- High thermal stability. The material is suitable for creating components operated at elevated temperatures.
- Mechanical strength. The product can withstand loads typical of functional testing of aerospace components.
- Complex geometry. FDM technology makes it possible to manufacture parts with complex aerodynamic shapes.
- Faster engineering testing. Additive manufacturing enables rapid production of test samples and helps shorten the overall development cycle.
Technical Specifications
| Parameter | Value |
| Printing technology | FFF |
| Chamber type | Fully enclosed |
| Number of nozzles | 2 |
| Max. number of spools | 4 pcs. up to 3 kg each |
| Filament storage system | 4 independent sealed compartments with active heating and automatic material feeding |
| Max. filament compartment temperature | 50 °C |
| Filament diameter | 1.75 mm |
| Standard nozzle | 0.4 mm |
| Supported nozzles | 0.6 / 0.8 mm |
| Layer thickness | 0.1–0.5 mm |
| Max. nozzle temperature | 500 °C |
| Max. chamber temperature | 300 °C |
| Max. printing speed | 160 mm/s |
| Max. XY travel speed | 400 mm/s |
| Max. Z travel speed | 50 mm/s |
| Build surface | Flexible platforms with vacuum holding system |
| Max. build volume | 610 × 508 × 508 mm |
| Platform calibration | Automatic |
| Resolution | XY: 12.5 µm; Z: 1.25 µm |
| Display | 10" touchscreen |
| Software | INTAMSUITE™ |
| Supported file types | .stl, .obj, .x3d, .3mf, .stp, .iges |
| Compatible operating systems | Windows |
| Connectivity interfaces | Wi-Fi, Ethernet, USB |
| Max. power | 15 kW |
| Input voltage | 3P 380 V, 30 A/phase, 50–60 Hz or 3P 200 V, 50 A/phase, 50–60 Hz |
| Drive system | Servo control system with high-precision ball screw drives |
| External model cooling | Liquid cooling and fan cooling |
| Safety features | Independent safety PLC, electromagnetic door interlock, overheat protection, overload protection, emergency stop button, double-layer thermally insulated doors, thermal protection shield, three-color status indicator |
| Certifications and standards | CE, FCC, SGS, EN60204 |
| Operating temperature / humidity | 15 °C – 30 °C / 30–70% |
| Storage temperature / humidity | -10 °C – 54 °C / 10–85% |
| Device dimensions | 1710 × 1425 × 2350 mm |
| Device weight | 1450 kg |
Ordering the 3D Printer, Material and Component Selection
You can buy the Intamsys FUNMAT PRO 610HT from our website with delivery across Ukraine. If you need help selecting high-temperature engineering thermoplastics, consumables, or components for industrial 3D printing, our specialists will help determine the optimal configuration according to your specific production tasks and requirements for finished parts.
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