

Two Fusion - Filament Maker Two
Built for Research, Recycling, and Filament Production
An intelligent filament extrusion system that integrates sensing, heating, pulling, and winding to deliver stable output with minimal manual intervention.
Accelerate material development and ensure repeatable production with in-house material processing.
Material Validation and Filament Production
Filament Maker Two enables teams to evaluate material behavior, optimize extrusion conditions, and produce filament for testing, validation, and in-house production.
Ideal for material development, recycled polymer applications, and industrial filament production that demand consistent performance.
Material Validation and Filament Production
Filament Maker Two enables teams to evaluate material behavior, optimize extrusion conditions, and produce filament for testing, validation, and in-house production.
Ideal for material development, recycled polymer applications, and industrial filament production that demand consistent performance.
How It Works
Explore the extrusion process from initial setup to finished filament.
Compatible Polymers
Process a wide range of thermoplastics, from common polymers to high-performance materials, supporting both material development and application-specific workflows.

Recycled & Common Polymers
- PET
- PLA
- PP
- HDPE
- PETG
- ABS
- PS
- LDPE
- PC
- PHB

Engineering Polymers
- TPU
- POM
- PA6
- PVA
- TPE
- PCL
- PA66
- PA
- ASA
- PA12

High-Performance Polymers
- PEEK
- PEI
- PSU
- PEKK
- PPSU

Recycled & Common Polymers
- PET
- PLA
- PP
- HDPE
- PETG
- ABS
- PS
- LDPE
- PC
- PHB

Engineering Polymers
- TPU
- POM
- PA6
- PVA
- TPE
- PCL
- PA66
- PA
- ASA
- PA12

High-Performance Polymers
- PEEK
- PEI
- PSU
- PEKK
- PPSU
Additives and Composites
Develop advanced material formulations using a wide range of additives and composite inputs.
-
Carbon fiber -
Ceramic powder -
Chemical additives -
Metal powder -
Wood
-
Glass fiber -
Nanoparticles -
Blends of polymers -
Biodegradable polymers
-
Carbon fiber -
Ceramic powder -
Chemical additives
-
Metal powder -
Wood
-
Glass fiber
-
Nanoparticles -
Blends of polymers -
Biodegradable polymers
Engineered for Maximum Uptime
The split housing design provides quick access for maintenance, material changes, and troubleshooting, helping maximize system uptime.
- Quick screw removal for cleaning between runs and monitoring material behavior such as melting, dispersion, or degradation
- Faster troubleshooting through direct visibility and access to internal components
- Efficient material switching to support iterative workflows and minimize downtime between runs
- Accessible component design, including insulation sleeve, die head, and nozzle, for straightforward maintenance

Engineered for Maximum Uptime
The split housing design provides quick access for maintenance, material changes, and troubleshooting, helping maximize system uptime.
- Quick screw removal for cleaning between runs and monitoring material behavior such as melting, dispersion, or degradation
- Faster troubleshooting through direct visibility and access to internal components
- Efficient material switching to support iterative workflows and minimize downtime between runs
- Accessible component design, including insulation sleeve, die head, and nozzle, for straightforward maintenance
Real-Time Monitoring and Process Control
Monitor and control the extrusion process in real time to maintain stable performance and consistent filament production.
- High-speed 3-axis filament sensor (10μm resolution, > 25 measurements per second), measuring for filament ovality
- Real-time data logging + remote access, using the InfluxDB software
- Infrared thermal camera measuring the filament surface temp before it reaches the puller wheels, ensuring consistent filament quality, especially for high-temp materials
- Automatic spool fullness detection

Real-Time Monitoring and Process Control
Monitor and control the extrusion process in real time to maintain stable performance and consistent filament production.
- High-speed 3-axis filament sensor (10μm resolution, > 25 measurements per second), measuring for filament ovality
- Real-time data logging + remote access, using the InfluxDB software
- Infrared thermal camera measuring the filament surface temp before it reaches the puller wheels, ensuring consistent filament quality, especially for high-temp materials
- Automatic spool fullness detection
Complete Process Control
An integrated control system synchronizes sensing, heating, pulling, and winding to deliver stable, efficient production with minimal manual adjustment.
- Touchscreen interface with direct access to parameter controls and real-time system feedback
- Variable puller tension to accommodate different materials and maintain filament consistency
- Spool chuck design for faster loading and reduced setup time
- Up to 3 kg spool capacity to support longer, uninterrupted runs

Complete Process Control
An integrated control system synchronizes sensing, heating, pulling, and winding to deliver stable, efficient production with minimal manual adjustment.
- Touchscreen interface with direct access to parameter controls and real-time system feedback
- Variable puller tension to accommodate different materials and maintain filament consistency
- Spool chuck design for faster loading and reduced setup time
- Up to 3 kg spool capacity to support longer, uninterrupted runs
Flexible System Configuration
Designed for flexibility, the modular platform supports evolving workflows with configurable setups, broad material compatibility, and seamless system integration.
- Continuous firmware updates to improve performance and extend system capabilities over time
- Continuous firmware updates to improve performance and extend system capabilities over time
- Open integration capabilities for connecting with external systems and data environments
- Support for custom attachments, including feeders, mixers, and additional components
- Modular add-ons developed in collaboration with the 3devo R&D team

Flexible System Configuration
Designed for flexibility, the modular platform supports evolving workflows with configurable setups, broad material compatibility, and seamless system integration.
- Continuous firmware updates to improve performance and extend system capabilities over time
- Continuous firmware updates to improve performance and extend system capabilities over time
- Open integration capabilities for connecting with external systems and data environments
- Support for custom attachments, including feeders, mixers, and additional components
- Modular add-ons developed in collaboration with the 3devo R&D team
Precision Control for Consistent Results
Optimize material behavior and maintain consistent processing through precise control of key extrusion parameters.
- Near-zero RPM fluctuation enabled by a powerful extruder drive system, supporting steady material flow and uniform output
- Extended screw design for improved melt behavior, with options for mixing, precision, or custom configurations
- Temperature control across multiple heating zones for reliable processing across different materials
- Cooled hopper with temperature monitoring to preserve material integrity before extrusion
- Material and spooling presets to streamline setup and reduce variability between runs

Precision Control for Consistent Results
Optimize material behavior and maintain consistent processing through precise control of key extrusion parameters.
- Near-zero RPM fluctuation enabled by a powerful extruder drive system, supporting steady material flow and uniform output
- Extended screw design for improved melt behavior, with options for mixing, precision, or custom configurations
- Temperature control across multiple heating zones for reliable processing across different materials
- Cooled hopper with temperature monitoring to preserve material integrity before extrusion
- Material and spooling presets to streamline setup and reduce variability between runs
| TECHNICAL SPECIFICATIONS | ||
|---|---|---|
| SIZE AND WEIGHT | ||
| Dimensions | 606 × 258 × 526 mm (23.8 × 10.1 × 20 in) | |
| Weight | 42 kg (92 lb) | |
| EXTRUSION DRIVE | ||
| Max. torque | 40 Nm | |
| RPM | 0 – 15 RPM | |
| HOPPER SYSTEM | ||
| Volume | 2.6 L | |
| Active cooled | Yes | |
| BAND HEATERS | ||
| Max. Temperature | 450 °C | |
| Heating zones | 4 | |
| Heater power | 230W per zone | |
| COMPRESSION SCREW | ||
| Screw Material | High Chromium and Molybdenum steel alloy | |
| Hardening treatment | Nitrided | |
| Compression | 3 stages | |
| Screw Type | Interchangeable | |
| Compression Ratio | 2,25 | |
| L/D ratio | 17,75 | |
| FILAMENT SENSOR | ||
| Type | Optical | |
| Resolution | 10 µm | |
| Framerate | 5 fps | |
| Measurements | > 25 per second | |
| Measurements axis | 3 | |
| Thermal sensor | Yes | |
| PULLER | ||
| Low Temp High Grip Max. | 100 °C | |
| High Temp Nonstick Max. | 380 °C | |
| Puller Tensioner | Adjustable | |
| SPOOLING | ||
| Max. Spool diameter | 300 mm (11.81 in) | |
| Spool Inner diameter | 49 - 55 mm (1.92 - 2.16 in) | |
| Max. Spool width | 100 mm (3.93 in) | |
| Max. Spool weight | 3 kg (6.6 lb) | |
| Automatic tensioner | Yes | |
| Friction wheel | Yes | |
| Spooling system | Self tightening spool holder | |
| ENERGY | ||
| Consumption average | 300 – 400 W | |
| Consumption Max. | 1300 W | |
| Voltage | 230 V or 110 V | |
| Frequency | 50 – 60 Hz | |
| CONNECTIONS | ||
| CAN-bus | 2 ports | |
| Networking | Ethernet | |
| Power plug | Schuko male to C13 | |
| USB | USB - B | |
Start printing your own metal parts today
Talk to our experts via Online consultation and request for a demo

