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Project duration: 2024-10-01 - 2027-12-31

In-line control of the extrusion process using a new measurement system for pellet moisture content of < 0.05%

In-line control of the injection molding process using a new measurement system for pellet moisture content of &lt; 0.05% Produkte und Produktion Produkte und Produktion Prozesstechnik Spritzguss Spritzgussverfahren Werkstofftechnik
Project duration: 2024-10-01 - 2027-09-30

Development of a technology for processing paper pulp into complex three-dimensional, eco-friendly, and recyclable components using injection molding

Development of sustainable, innovative paper components made from renewable raw materials, recyclable, and designed to replace plastic Produkte und Produktion Produkte und Produktion Bioökonomie Nachhaltigkeit Papier Recycling Spritzgussverfahren
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 coordinator THRO: Prof. Dr.-Ing. Fabian Riß
Digitale Transformation Produkte und Produktion 3D Druck Additive Fertigung digitale Technologien Digitale Transformation Prozesstechnik Prozess- und Verfahrenstechnik Werkstofftechnik Werkstofftechnik und Materialwissenschaft
Project duration: 2024-04-01 - 2026-09-30

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. Produkte und Produktion Produkte und Produktion Prozesstechnik Prozess- und Verfahrenstechnik Werkstofftechnik Werkstofftechnik und Materialwissenschaft
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. Bioökonomie und Holztechnologie Produkte und Produktion Bioökonomie und Holztechnologie Prozess- und Verfahrenstechnik Werkstofftechnik und Materialwissenschaft
Project duration: 2024-03-01 - 2026-06-30

Development of a Novel Bimetallic Band Saw Tool for Woodworking

The “BiMeBa” project is developing a band saw blade that enables cost-effective, energy- and resource-efficient wood cutting while delivering high-quality results on various types of wood.
Overall lead - project manager THRO: Prof. Dr. Matthias Zscheile
Bioökonomie und Holztechnologie Produkte und Produktion Bandsäge Bioökonomie und Holztechnologie Holztechnik Holzverarbeitung Sägewerk
Project duration: 2024-01-01 - 2028-12-31

Spitzenprofessuren

Project lead THRO: Prof. Dr. Amber Schneeweis
Produkte und Produktion Produkte und Produktion 3D Druck Additive Fertigung Materialwissenschaft ROCkET
Project duration: 2024-01-01 - 2026-12-31

Opti-Zent: Investigation of pomace digestion in centrifugation via experiment and simulation with innovative screw geometry to increase the yield

When producing vegetable oils or fruit juices with 2-phase decanters, approx. 80-90% of the oil or juice can be extracted in high quality. To significantly reduce the loss, the processes involved in dehydrating the marc, the rheological behavior of the liquid and the powder flow of the pile will be investigated. Simulations of the discrete element method coupled with flow simulation and thus a new screw geometry for improved extraction of the marc.
Project lead THRO: Prof. Dr. Johannes Lindner
Produkte und Produktion Produkte und Produktion Prozesstechnik
Project duration: 2024-01-01 - 2026-03-31

Robot-based wall cladding supported by artificial intelligence

The aim of the research project "RoWaPla - Robot-based wall cladding supported by artificial intelligence" is to develop an intelligent, robot-assisted production unit for the cladding of timber frame walls.
Project lead THRO: Prof. Dr.-Ing. Fabian Riß
Übergreifend Produkte und Produktion Automatisierung digitale Transformation Digitale Transformation KI neue Technologien Roboter Übergreifend
Project duration: 2023-10-01 - 2027-02-28

Electromagnetic susceptibility of MEMS microphones

The project aims to understand the effect of interfering, high-frequency coupling in a microphone installed in a mobile device (e.g. smartphone, tablet) and to reduce it by means of suitable measures.
Overall lead - project manager THRO: Prof. Dr.-Ing. Matthias Winter
Produkte und Produktion Produkte und Produktion Automatisierung Digitale Transformation Mechatronik

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