Research that moves material models into industry.

European and Swedish programmes where Aerobase connects material science, AI, simulation and manufacturing to solve practical engineering challenges.

Project archive

01GENMAT
GENMAT

Generative Foundation Model for Multi-Scale Materials Discovery, Design & Deployment

GENMAT will develop Europe’s first multi-scale materials foundation model, connecting atomic chemistry to manufacturing performance to dramatically shorten the lab-to-market cycle.

Open project
02CiSMA
CiSMA

Shaping the Future of Sustainable Mass Market Manufacturing

The CiSMA project promotes sustainable manufacturing by developing material models to predict trace-element effects in recycled steel, thereby improving the performance of welded components.

Open project
03GEAR-UP
GEAR-UP

Revolutionizing Sustainable Manufacturing using Advanced Modeling

The GEAR-UP project aims to advance manufacturing sustainability by using recycled materials in AM processes while ensuring they meet the same performance standards as virgin materials.

Open project
04UPBEAT
UPBEAT

Enhancing aviation safety using Uncertainty Quantification (UQ)

The UPBEAT project aims to eliminate biases and predict uncertainties in aviation technology to improve safety measures and reduce environmental impacts.

Open project
05ALABAMA
ALABAMA

Laser additive manufacturing process optimization using adaptive laser beams

The objective is to reduce defects and tailor the components’ microstructure by tailoring the laser beam temporally and spatially, utilizing multiscale physics-based models.

Open project
06RESTORE
RESTORE

Remanufacturing plays a crucial role in the pursuit of a circular economy

RESTORE is committed to transforming the remanufacturing landscape by developing sustainable processes, materials, and digital tools.

Open project
07Flexcrash
Flexcrash

Towards safer, lighter, and circular crash-structure production

The Flexcrash project focuses on developing a flexible, hybrid manufacturing technology to produce tailored, adaptive, crash-tolerant structures made of green aluminum alloys.

Open project
08Ti-TEX
Ti-TEX

Tailoring the heating/cooling strategies to achieve the desired texture in Titanium alloys

The Ti-TEX project developed a texture evolution model based on thermal gradient and solidification front velocity for the DED-AM simulation implemented in the MSC Marc.

Open project

Research network

Project partners

Research institutes, universities and industry partners in our European Commission and Swedish government-funded project consortia.

Project partner directory

  • AB Dalforsån
  • Endurance Technologies
  • EIT Manufacturing
  • Eurecat
  • Flowphys
  • Fraunhofer IWS
  • GKN Aerospace
  • IMC Krems University of Applied Sciences
  • IREPA LASER
  • IRIS
  • Fraunhofer SCAI
  • Gestamp
  • Gemmate Technologies
  • Welding Alloys
  • SINTEF
  • Virtual Vehicle
  • Cranfield University
  • MSC Scanning
  • Nordic Additive Manufacturing
  • NAVTEK Naval Technologies
  • Stellantis
  • Svetsdoktorerna (PHD Controlled Solutions)
  • Technovative Solutions
  • IRT Jules Verne
  • RISE Research Institutes of Sweden
  • Luleå University of Technology
  • CelluCircle
  • Colfeed4Print
  • Aker Solutions
  • 3D Production
  • Politecnico di Torino (POLITO)
  • Brunel University London
  • TWI
  • Stockholm University
  • Entelea
  • Talos Analytics
  • Cubic Snail
  • IRES
  • Bar-Ilan University
  • NVIDIA (Mellanox Technologies)
  • CINECA
  • Digital Security Lab Ukraine
  • ALBA Synchrotron
  • Blekinge Institute of Technology
  • CENIM–CSIC
  • Electrolux Professional
  • European Steel Technology Platform (ESTEP)
  • Matvision
  • Tata Steel Nederland
  • University of Liège
  • voestalpine
  • Volvo Cars
  • DigiProdPass
  • Phimeca Engineering
  • Manufacturing Technology Norwegian Catapult
  • European Federation for Welding, Joining and Cutting (EWF)
  • Parida Consulting
  • Intellegens
  • Lucchini Unipart Rail
  • UNE — Spanish Association for Standardization
  • Hidria