Major Upgrade: New Dual-Extrusion Capabilities at TUM Venture Lab Additive Manufacturing


TUM Venture Lab Additive Manufacturing expands its support for deep-tech ventures with the Bambu Lab H2D, a state-of-the-art dual-nozzle 3D printer. This acquisition enables precise multi-material fabrication and high-temperature processing of demanding engineering-grade materials for advanced applications.
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Unlocking Advanced Material Fabrication: New Dual-Extrusion Capabilities at TUM Venture Lab Additive Manufacturing

We are pleased to announce a significant expansion of our additive manufacturing capabilities for deep-tech ventures. As a great addition to our X1E family, we now also offer the Bambu Lab H2D, a state-of-the-art dual-nozzle system specifically selected for high-performance engineering applications.

This acquisition directly addresses the needs of startups requiring precise multi-material fabrication and high-temperature resistance.

Technical Specifications & Capabilities:

  • Advanced Dual-Extrusion: Achieves high dimensional accuracy with low material waste, enabling multi-material prints essential for complex assemblies. For instance, this enables applications like stiff and soft combinations for compliant structures.
  • High-Temperature Processing: Features a 350°C hotend and actively heated chamber, ensuring reliable layer adhesion for engineering-grade thermoplastics and fiber-reinforced composites.
  • Large-Format Build Volume: Accommodate larger functional prototypes with a build area of 325 × 320 × 325 mm (single-nozzle) or 300 × 320 × 325 mm (dual-nozzle).
  • Automated QA: Integrated monitoring cameras and automated calibration routines ensure repeatability—critical for producing consistent batches of test components.

Prototyping in Action: The H2D is currently supporting advanced research and venture projects, such as:

  • Energy Storage: Manufacturing electrolyte separator plates for Li-ion battery research.
  • Conductivity: Processing highly filled copper filaments for functional electrical parts.
  • Complex Internal Structures: Utilizing soluble supports to create geometries impossible with single-extrusion.

Get Access & Test Your Application: Are you looking to push your start-up and have a valuable application or a challenging material in mind you want to test on the H2D? We are happy to support your in your idea so you don't leave it as a digital file.

Book a slot for our Open House to discuss your project with our team or send us a request via am@tum-venture-labs.de.

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