Dates/Defenses

Filter entries

Sep 02, 2026; Defence

Dissertation on the topic of "Mikromechanische Untersuchung der Schädigungsmechanis­men in faserverstärktem Epoxidharz" by Dipl.-Ing. (FH) Karl Ludwig Roetsch

Faculty of Mechanical Science and Engineering
Details
Speaker(s) Dipl.-Ing. (FH) Karl Ludwig Roetsch
Start and end time 10:45 AM
Location as a hybrid event

Sep 02, 2026; Defence

Dissertation on the topic of "Autonome Flächenrückführung von parametrischen Oberflächenmodellen im Reverse Engineering technischer Komponenten" by Dipl.-Ing. Arthur Hilbig

Faculty of Mechanical Science and Engineering
Details
Speaker(s) Dipl.-Ing. Arthur Hilbig
Start and end time 01:15 PM
Location as a hybrid event

Sep 03, 2026; Defence

Dissertation on the topic of "Development of coatings with long-term superhydrophilic surface for use in electrocaloric heat pumps" by M.Sc. Maria Isabel Barrera Marin

Faculty of Mechanical Science and Engineering
Details
Speaker(s) M.Sc. Maria Isabel Barrera Marin
Start and end time 08:00 AM
Location as a hybrid event

Sep 03, 2026; Defence

Dissertation on the topic of "The role of contact angle hysteresis in droplet dynamics on solid surfaces" by M.Eng. Pengfei Zhao

Faculty of Mechanical Science and Engineering
Details
Speaker(s) M.Eng. Pengfei Zhao
Start and end time 02:45 PM
Location as a hybrid event

Sep 04, 2026; Defence

Dissertation on the topic of "Dynamic Structure Tracking using Ultrafast X-Ray Computed Tomography and Image-based Control" by Dipl.-Ing. Dominic Windisch

Faculty of Mechanical Science and Engineering
Details
Speaker(s) Dipl.-Ing. Dominic Windisch
Start and end time 09:15 AM
Location as a hybrid event

Sep 08, 2026; Defence

Dissertation on the topic of "Elektrochemische Betrachtung von Natrium-Ionen-Batterien bei unterschiedlichen Temperaturen und deren Simulation" by M.Sc. Björn Pohle

Faculty of Mechanical Science and Engineering
Details
Speaker(s) M.Sc. Björn Pohle
Start and end time 10:45 AM
Location as a hybrid event

Sep 09, 2026; Defence

Dissertation on the topic of "Ermüdungsfestigkeit­snachweis geschweißter Kupferverbindungen - Werkstoffverhalten und Modellierungskonzept" by Dipl.-Ing. Matthias Lauf

Faculty of Mechanical Science and Engineering
Details
Speaker(s) Dipl.-Ing. Matthias Lauf
Start and end time 11:00 AM
Location as a hybrid event