<b>A Comparative study of solidification of Al-Cu alloy under flow of cylindrical radial heat and the unidirectional vertically

Authors

  • Jean Robert P. Rodrigues Universidade Federal do Maranhão
  • Mí­rian de Lurdes N. M. Mello Universidade Federal de Itajubá
  • Marco Antonio Eid Centro Universitário de Araras Dr. Edmundo Wdson
  • Tiago do E. S. B. Nevez Instituto Federal de Educação, Ciência e Tecnologia do Maranhão
  • Antonio S Araujo Junior Instituto Federal de Educação, Ciência e Tecnologia do Maranhão
  • José R. P. Rodrigues Universidade Federal do Maranhão

DOI:

https://doi.org/10.4025/actascitechnol.v36i4.19823

Keywords:

unidirectional solidification, radial heat flow, heat transfer coefficient, aluminum alloy

Abstract

In spite of technological importance of solidification of metallic alloys under radial heat flow, relatively few studies have been carried out in this area. In this work the solidification of Al 4.5 wt% Cu cylinders against a steel massive mold is analyzed and compared with unidirectional solidification against a cooled mold. Initially temperature variations at different positions in the casting and in the mold were measured during solidification using a data acquisition system. These temperature variations were introduced in a numerical method in order to determine the variation of heat transfer coefficient at metal/mold interface by inverse method. The primary and secondary dendrite arm spacing variations were measured through optical microscopy. Comparisons carried out between experimental and numerical data showed that the numerical method describes well the solidification processes under radial heat flux.

 

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Published

2014-09-12

How to Cite

Rodrigues, J. R. P., Mello, M. de L. N. M., Eid, M. A., Nevez, T. do E. S. B., Araujo Junior, A. S., & Rodrigues, J. R. P. (2014). <b>A Comparative study of solidification of Al-Cu alloy under flow of cylindrical radial heat and the unidirectional vertically. Acta Scientiarum. Technology, 36(4), 623–628. https://doi.org/10.4025/actascitechnol.v36i4.19823

Issue

Section

Mechanical Engineering

 

0.8
2019CiteScore
 
 
36th percentile
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0.8
2019CiteScore
 
 
36th percentile
Powered by  Scopus