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Processing of these steels consisted of a simulated roughing schedule, with the final roughing pass taking place at 850 °C.
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In further investigations, the composition and the processing methods of these steels are adjusted to: (1) Optimize their technological properties with regard to mechanical behavior, weldability and formability.
The effect of alloy composition and processing parameters on the deformation mechanisms of these steels is discussed.
This phenomenon plays a significant role in the microstructure evolution of these steels during thermomechanical processing.
Thermal fatigue performance of plasma nitrided hot work tool steel was investigated under conditions encountered by thixoforging dies in semi-solid processing of steels.
The implications of the findings for alloy design and processing of advanced linepipe steels are discussed.
TiN-NbC composite precipitates offer an alternative approach to strain-induced precipitation of NbC for high temperature processing of Nb microalloyed steels with high toughness.
The Steel segment focuses on the production and processing of flat steel products for the automotive, white goods, and construction industries.
For this purpose, an alternative and much simpler system was developed, strictly aimed at the measurement and further processing of flat steel parts.
Several results in this direction are presented in this work which have been obtained from the PIII processing of stainless steel plates in a nitrogen plasma within a toroidal chamber.
Understanding these phenomena will improve processing of (high) alloyed steel concepts as well as industrial Zn bath management.
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