3D impregnation that changes everything.
Why Legacy Solutions Are No Longer Enough.
Three game-changing innovations for unmatched precision.
Our on-board impregnation system ensures optimal cohesion between fibers and thermoplastic matrix.
Precise orientation of continuous fibers in 3D according to load lines calculated by numerical simulation.
Continuous fiber deposition without interruption, guaranteeing structural continuity and reproducibility.
Our process architecture defines how our system seamlessly operates from design to production. It integrates advanced 3D printing with controlled fiber impregnation in a structured workflow, ensuring precision, consistency, and high-performance output at every stage.
STEP
Continuous Supply
Continuous fiber feeding is combined with a thermoplastic matrix supplied directly from the coils, ensuring an uninterrupted and stable material flow throughout the process for consistent structural performance.
STEP
Multi-Axis Precision
Continuous fiber feeding and thermopA multi-axis deposition module designed for high-precision control of position and orientation, enabling accurate material placement even in complex geometries.lastic matrix from the coils.
STEP
Angular Accuracy
An advanced fiber guidance system that precisely controls fiber orientation with an angular accuracy of ±5°, optimizing strength, load distribution, and mechanical behavior.
STEP
Controlled Fusion
A controlled melting and impregnation process that regulates temperature and pressure in real time, ensuring complete fiber saturation and strong bonding within the thermoplastic matrix.
STEP
Real-Time Control
Integrated real-time sensors provide full traceability and continuous quality control, monitoring critical parameters to maintain consistency, reliability, and production integrity.
Extensive Selection of Thermoplastic Fibers & Matrices.
Standard modulus (240-270 GPa), High strength (>4000 MPa), Excellent stiffness-to-weight.
E-Glass and S-Glass variants, Good impact resistance, Cost-effective option.
Exceptional impact resistance, High tensile strength, Low density.
340-380°C
High temperature resistance, Excellent chemical resistance, Superior mechanical properties
300-360°C
High temperature performance, Good processability, Aerospace grade
280-320°C
Chemical resistance, Dimensional stability, Cost-effective high-temp option
Performance of our manufacturing system.
Maximum Size
Build volume (L × W × h)
1200 × 800 × 600 mm
Expandable as needed
Dimensional accuracy
Repeatability and accuracy
Repeatability: ±0.1mm
Built-in quality control
Production Speed
mm/s depending on complexity
Medium room: 4-12h vs. 24-72h conventional methods
Possibilities impossible with existing technologies.
True 3D printing of continuous fibers allowing complex structures that were previously impossible to manufacture.
Unique combination of lightness and rigidity. Achieve optimal strength-to-weight ratio for demanding applications.
Design and produce complex
geometry without the limitations of conventional composite manufacturing.
5x faster production cycle times. Direct toolless manufacturing with minimal post-processing required.
Before
After
Let’s discuss your project and find out how our expertise can help you achieve your goals.
Visit to our laboratory • Live demonstration • Complete technical documentation