INFLUENCE OF CASTING SPEED ON THE STRUCTURE AND MECHANICAL PROPERTIES OF CONTINUOUS CAST DHP COPPER TUBE

1 BAGHERIAN Ehsaan-Reza
Co-authors:
2 BELL Colin 2 COOPER Mervyn 1 FAN Yongchang 2 FRAME Brian 1 ABDOLVAND Amin
Institutions:
1 University of Dundee, Dundee, Scotland, United Kingdom, EU e.bagherian@dundee.ac.uk, y.fan@dundee.ac.uk, A.Abdolvand@dundee.ac.uk
2 Rautomead Ltd, Dundee, Scotland, United Kingdom, EU, Colin.Bell@rautomead.com ,Mervyn.Cooper@rautomead.com, Brian.Frame@rautomead.com
Conference:
23rd International Conference on Metallurgy and Materials, Hotel Voronez I, Brno, Czech Republic, EU, May 21 - 23, 2014
Proceedings:
Proceedings 23rd International Conference on Metallurgy and Materials
Pages:
1163-1168
ISBN:
978-80-87294-52-9
ISSN:
2694-9296
Published:
18th June 2014
Proceedings of the conference were published in Web of Science and Scopus.
Metrics:
236 views / 99 downloads
Abstract

DHP Copper tubes are frequently used in industrial applications with their unique characteristics such as high corrosion or excellent erosion resistance. Due to the requirement of good quality production, an excellent global factor is needed for the purpose of obtaining high mechanical properties. A mechanical properties has correlation with grain size and a high mechanical properties is achieved by small grain structure. There are three ways in which grain size can be altered: by thermal means, chemical means and by mechanical means. This paper looks at the first case, thermal means, which has very substantial cost benefits over the other two types of grain refinement in that it does not require large pieces of equipment that vibrate or mix and does not use any exotic metals as feed stock. Instead what thermal methods require is a change in parameters like: casting speed, liquid metal temperature or cooling water temperature. In this work, characterization of the influence of casting speed on the structure and mechanical properties of continuous cast DHP copper tube has been carried out by drift expanding test and grain size reading. A significant different based on grain structure has been investigated and it was also found that the casting speed could improve the elongation of samples from 29 % expanding to 36 % expanding.

Keywords: DHP Copper Tubes, Casting Speed, Drift Expanding Test and Grain Structure

© This is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

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