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Rudolf Kawalla

Researcher at Freiberg University of Mining and Technology

Publications -  263
Citations -  2457

Rudolf Kawalla is an academic researcher from Freiberg University of Mining and Technology. The author has contributed to research in topics: Microstructure & Magnesium alloy. The author has an hindex of 18, co-authored 260 publications receiving 2053 citations. Previous affiliations of Rudolf Kawalla include National University of Science and Technology & Alcoa.

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Advanced high strength steels for automotive industry

TL;DR: In this article, the basic concepts of advanced high strength steels (AHSS) for use in the automobile industry, including chemical composition design, microstructure and mechanical properties development during thermomechanical processing, production technology characterisation, potential applications and performance in service, are presented.
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Dynamic recrystallisation and precipitation behaviour of high strength and highly conducting Cu–Ag–Zr-alloys

TL;DR: In this article, the authors investigated the dynamic recrystallisation of CuAgZr alloys within a composition range of (3-7) and (0.05-0.3) Zr as a function of alloy composition, temperature and strain.
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Rheological model for simulation of hot rolling of new generation steel strips for automotive applications

TL;DR: In this article, the authors developed a rheological model for automotive steels for the conditions of hot strip rolling and implemented this model in a finite element program and validated the model by comparison of measured and calculated loads in the compression tests and by strip rolling experiments conducted in the laboratory mill.
Journal Article

New technology for the production of magnesium strips and sheets

TL;DR: In this paper, the twin-roll casting process for the production of wide strips has been developed in the aluminium industry; however, the transfer from the aluminium materials to the magnesium materials is difficult and there are open problems regarding the systems engineering such as the tundish and tip construction as well as the material itself.