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Project duration: 2025-01-01 - 2027-12-31

Simulation and validation of (surface) quality characteristics of large-area lightweight components in injection molding with gas-loaded plastic melts

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. Prozess- und Verfahrenstechnik Energieeffizienz Produkte und Produktion Produktionstechnik Prozesstechnik Spritzguss Spritzgussverfahren Werkstofftechnik Werkstofftechnik und Materialwissenschaft
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. Prozess- und Verfahrenstechnik Produkte und Produktion Prozesstechnik Werkstofftechnik Werkstofftechnik und Materialwissenschaft
Project duration: 2019-02-01 - 2020-12-31

ODIP FLIM: Automatische Erkennung von Kunststoffen durch Fluoreszenz

Sub-project lead THRO: Prof. Dr.-Ing. Martin Versen
Prozess- und Verfahrenstechnik Fluoreszenzmesstechnik Produkte und Produktion

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