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Grzegorz Cios

Researcher at AGH University of Science and Technology

Publications -  85
Citations -  740

Grzegorz Cios is an academic researcher from AGH University of Science and Technology. The author has contributed to research in topics: Alloy & Microstructure. The author has an hindex of 12, co-authored 72 publications receiving 454 citations.

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The effect of temperature on the evolution of eutectic carbides and M7C3 → M23C6 carbides reaction in the rapidly solidified Fe-Cr-C alloy

TL;DR: In this article, the effect of high temperature heat treatment on the evolution of eutectic carbides and on the M7C3→M23C6 carbides reaction in the rapidly solidified hypoeutective Fe-Cr-C alloy was presented.
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Formation of eutectic carbides in Fe–Cr–Mo–C alloy during non-equilibrium crystallization

TL;DR: In this article, the eutectic M7C3 and M23C6 carbides formed in the interdendritic zones exhibit continuous and complex shapes, and the experimental results were compared with the Thermo-Calc based thermodynamic calculations.
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The Investigation of Strain-Induced Martensite Reverse Transformation in AISI 304 Austenitic Stainless Steel

TL;DR: In this paper, the authors present a comprehensive study on the strain-induced martensitic transformation and reversion transformation in AISI 304 stainless steel using a number of complementary techniques such as dilatometry, calorimetry, magnetometry, and in-situ X-ray diffraction, coupled with high-resolution microstructural transmission Kikuchi diffraction analysis.
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Glass forming ability of the Zr 50 Cu 40 Al 10 alloy with two oxygen levels

TL;DR: In this article, the effect of oxygen content on the glass forming ability of the Zr50Cu40Al10 alloy is presented, and critical diameters for glass formation are determined by microstructural observations of cast conical and rod-shaped samples.
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Microstructure and properties of the interfacial region in explosively welded and post-annealed titanium-copper sheets

TL;DR: In this paper, the competition between various hardening and softening processes in explosively welded (EXW) and post-annealed Ti/Cu composites was studied using scanning and transmission electron microscopy, mechanical testing and numerical modelling.