Ehsaan-Reza Bagherian, Yongchang Fan
Most parameters that control the solidification of castings, and consequently, microstructure and mechanical properties, are: chemical composition, liquid metal treatment, cooling rate and temperature gradient. In this work, characterization of the influence of water flow rate, casting speed, alloying element and pull distance on tensile strength, elongation percentage and microstructure of continuous cast copper alloys has been carried out. A significant different in tensile strength, elongation percentage and grain structure has been investigated and it was also found that these parameters could improve the physical and mechanical properties of samples. As a particular example, water flow rate could improve the elongation of samples from 10% to 25%. Copper alloys have been used for at least 7000 years, mostly due to their beneficial characteristics such as excellent electrical and thermal conductivity, high corrosion resistance and easy processing. The major applications of copper alloys are for wires, electronic devices, industrial machinery and pipes for heating systems. Various copper components in the form of rod, tube, strip and sections are produced by continuous casting process.
@article{4c7b3adb-dd86-4157-834b-396c3cf26a73,
title={Effect of water flow rate casting speed},
author={Ehsaan-Reza Bagherian and Yongchang Fan},
year={2026},
language={en}
}TY - JOUR TI - Effect of water flow rate casting speed AU - Ehsaan-Reza Bagherian AU - Yongchang Fan PY - 2026 LA - en ER -
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