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Dissertation
Effect of heat treatment and iron content on the microstructure and mechanical properties of a secondary Al-Si-Cu alloy
(2019-05)
In this work the effect of heat treatments on the microstructure and mechanical properties of a secondary Al-Si-Cu alloy is studied. A Design of Experiments (DoE) was developed in order to optimize the heat treatment parameters and analyze the dissolution and fragmentation of the iron-rich inclusions as well as the improvement of the mechanical properties by non-equilibrium heat treatments. The iron-rich intermetallic inclusions were characterized as-cast and after heat treatment both by two-dimensional metallography ...
Aufsatz
Influence of the degree of crystallinity and the surface free energy on the adhesion properties of different PLA/PBS blends in multicomponent injection molding
(2020-01-10)
Biocomposites made of biodegradable polymers have grown in interest due to their environmentally friendliness, considering that non-biodegradable polymers waste conduces to pollution, displaying high environmental impact in climatic changes. Therefore, in the presented study, biodegradable Poly (lactic acid) (PLA) and poly (butylene succinate) (PBS) were investigated as a series of PLA/PBS melt-blending compounds with the weight ratios of 50/50, 60/40, 70/30, 80/20 and 90/10. In a two-component injection molding ...
Aufsatz
Relaxation properties of polyoxymethylene and ethylene–octene copolymer blend in solid and melt states
(2012-08-30)
Rheological properties of polyoxymethylene (POM) and ethylene–octene copolymer (EOC) in solid and melt states were investigated. Blends were prepared with a twin screw extruder at broad component wt-to-wt ratios (10, 30, 50, 70, 90 wt% of EOC). The morphology as well as calorimetric, rheological, and elastic properties of the blends were studied. The investigation showed that POM/EOC blends were heterogeneous in nature and had a broad phase transition region between 30 and 70 wt% of POM. Because during processing ...
Buch
Optische Verformungsmessung an heterogenen Werkstoffsystemen
(kassel university press, 2020)
Im Rahmen der vorliegenden Arbeit wird die Anwendung der optischen Verformungsmessung auf heterogene Werkstoffsysteme untersucht, wobei dieses Verfahren auf unterschiedlichen Skalenebenen eingesetzt wird. Als erstes wird die digitale Bildkorrelation zur Temperaturüberwachung bei Hochtemperaturzugversuchen bis 350 °C an 0,6 mm dünnen lotplattierten Aluminiumprüfkörpern eingesetzt. Flächige Dehnungsauswertungen innerhalb des Prüfbereichs bestätigen die homogene Temperaturverteilung, wobei die Temperatur gleichzeitig ...