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Project duration: 2024-09-01 - 2026-08-31

kAeMu - Qualification of employees in Bavarian small and medium-sized enterprises with regard to additive manufacturing

By establishing and consolidating a network for additive manufacturing, employees in Bavaria are to receive further training.
Project lead THRO: Prof. Dr.-Ing. Fabian Riß

Werkstofftechnik und Materialwissenschaft 3D Druck Additive Fertigung digitale Technologien Digitale Transformation Produkte und Produktion Prozesstechnik Prozess- und Verfahrenstechnik Werkstofftechnik


Project duration: 2024-04-01 - 2026-06-30

Investigation of powder-bed-based melting of injection mold inserts with a focus on innovative cooling geometries, new simulation approaches and novel post-processing methods for the targeted adjustment of molded part properties in optical injection molding

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.

Werkstofftechnik und Materialwissenschaft Produkte und Produktion Prozesstechnik Prozess- und Verfahrenstechnik Werkstofftechnik


Project duration: 2024-03-01 - 2029-02-28

Process and system technology for the multifunctional impregnation of flat semi-finished fiber products made from renewable raw materials

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.

Werkstofftechnik und Materialwissenschaft Bioökonomie und Holztechnologie Produkte und Produktion Prozess- und Verfahrenstechnik


Project duration: 2021-11-15 - 2022-04-30

Stoffliche Nutzung von Altholz

Project lead THRO: Prof. Dr. Dominik Pentlehner

Werkstofftechnik und Materialwissenschaft Altholz Bioökonomie Holztechnologie Kreislaufwirtschaft


Project duration: 2014-10-01 - 2016-09-30

Furnierschichtholzrohre aus Buche sowie Bambus als Ankerstab im Grundbau und ressourcenschonende Alternative zu Stahl

Project lead THRO: Prof. Dr. Johann Pravida

Werkstofftechnik und Materialwissenschaft Baugrubensicherung Betonanker Bioökonomie Furnier Holztechnologie LVL aus Buche Ressourceneffizienz temporäre Bodenvernagelung


Centre for Research, Development and Transfer

Technische Hochschule Rosenheim

Hochschulstraße 1
83024 Rosenheim


FundE[at]th-rosenheim.de

Support of publications

M.A. Laura Scholz

T +49 (0) 8031 / 805 - 2689
laura.scholz[at]th-rosenheim.de