Wissen bedeutet, Informationen und Erfahrungen so zu verknüpfen, dass daraus Handlungen, Entscheidungen und Innovationen entstehen. Dort, wo Wissen entsteht, wo Ideen aufeinandertreffen und neue Perspektiven zugelassen werden, beginnt echte Innovation.
Durch kontinuierliches Lernen und offenen Austausch schaffen wir die Basis für nachhaltigen Fortschritt in unseren Lösungen und in der Zusammenarbeit mit unseren Partnern.
Effective steelmaking modeling requires both practical knowledge and scientific fundamentals. This article outlines key disciplines, evaluates holistic models, and proposes a structured approach to model development.
R. Pierer | S. Michelic
The Liquidus Temperatures of Steels
We checked the results of 32 empirical equations for calculating the liquidus temperature on typical low alloyed and stainless steels. In addition, the voestalpine slide rule was used to determine the liquidus temperature and compared with the results of the formulas from the relevant literature.
A. Karner | R. Pierer | S. Michelic
The Solidus Temperatures of Steels
Based on our software, quasi-binary Fe-C phase diagrams for steels are generated quickly and easily. Although the Fe-C diagram is crucial, additional elements and cooling rates alter phase areas, which is vital for preventing cracking during continuous casting.