S. Rzadkosz, M. Kranc
This paper presents a detailed analysis of the technology used in the casting of copper and alloyed copper materials specifically destined for power engineering applications. The objective is to assess the quality of casts through a rigorous evaluation of their microstructure, chemical composition, and mechanical properties. Employing characteristic deoxidizing and modifying formulations, the study investigates copper grades that require high electrical conductivity. The authors examined alloyed copper samples with varied chromium and zirconium content, determining optimal heat treatment parameters that enhance hardness and conductivity. Furthermore, the research explores the influence of different silicone content levels on the wear resistance of the CuNiSi alloy. Results highlight the need for continued innovation in refining processes to meet the demanding material standards of modern industries, emphasizing the balance between mechanical durability and the functional properties of copper alloys.
@article{c10a60e7-1c51-45df-9061-c1865ce81c68,
title={REFINING PROCESSES IN THE COPPER CASTING},
author={S. Rzadkosz and M. Kranc},
year={2026},
language={en}
}TY - JOUR TI - REFINING PROCESSES IN THE COPPER CASTING AU - S. Rzadkosz AU - M. Kranc PY - 2026 LA - en ER -
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