Legacy authentication method 'form body' is no longer supported. Please update to header-based authentication. Find more details in our docs: https://developers.deepl.com/docs/resources/breaking-changes-change-notices/november-2025-deprecation-of-legacy-auth-methods. You can find more info in our docs: https://developers.deepl.com/docs/getting-started/auth
Legacy authentication method 'form body' is no longer supported. Please update to header-based authentication. Find more details in our docs: https://developers.deepl.com/docs/resources/breaking-changes-change-notices/november-2025-deprecation-of-legacy-auth-methods. You can find more info in our docs: https://developers.deepl.com/docs/getting-started/auth
ForPeat researches the sustainable management of peatland forests through rewetting, AI-supported monitoring and climate protection. The project develops practical solutions for biodiversity, CO₂ storage and EU certification.
Development of a fiber-friendly recycling route for natural fiber-reinforced plastics (NFRP) in order to use long fibers for the production of NFRP mats and short fibers for the production of injection molding granulate in a closed loop.
The aim of the project is to reduce the energy consumption in the thermoplastic foam injection molding by replacing energy-intensive variothermy with the use of novel coating strategies.
The aim of the project is to investigate the powder-bed-based melting of injection mold inserts with a focus on innovative cooling channel geometries, simulation approaches and post-processing methods for adjusting molded part properties.
Rosenheim University of Applied Sciences is planning a process technology for the CO2-neutral production of semi-finished fiber products from renewable raw materials. The aim is to optimize the production chain for sustainable lightweight construction, whereby gaps to conventional reinforcing fibres are to be closed.