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Original Articles

Thermal behaviour during the inward solidification of cylinders and spheres and the correlation with structural effects

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Pages 187-195 | Received 11 Mar 1997, Accepted 17 Aug 1998, Published online: 29 Nov 2016

References

  • R. G. Santos and A. Garcia, “Analytical technique for the determination of solidification rates during the inward freezing of cylinders”, Journal of Materials Science, 1983, 18, 3578–3590.
  • M. Rappaz and D. M. Stefanescu, Metals Handbook-Casting (ASM, Metals Park, Ohio 1990) pp. 883–891.
  • C. Beckermann and C. Y. Wang, “Incorporating interfacial phenomena in solidification models”, Journal of Metals, 1994, 46, 42–47.
  • L. C. Tao, “Generalized numerical solutions of freezing a saturated liquid in cylinders and spheres”, A.I.Ch.E. Journal, 1967, 13, 165–169.
  • D. S. Riley, F. T. Smith and G. Poots, “The inward solidification of spheres and circular cylinders”, International Journal of Heat and Mass Transfer, 1974, 17, 1507–1516.
  • A. Garcia, T. W. Clyne and M. Prates, “Mathematical model for the unidirection solidification of metals: II. Massive Molds”, Metallurgical Transaction B, 1979, 10, 85–92.
  • T. W. Clyne and A. Garcia, “Assessment of a new model for heat flow during unidirectional solidification of metals”, International Journal of Heat and Mass Transfer, 1980, 23, 773–782.
  • R. G. Santos, Inward Solidification of Cylinders and Spheres, Thesis (State University of Campinas, UNICAMP, Brazil, 1982).
  • W. Kurz and D. J. Fisher, Fundamentals of Solidification (Trans-Tech Publications, Switzerland, 1989).
  • A. Garcia and T. W. Clyne, “A versatile technique for characterization of metal/mold heat transfer and correlation with thermal and structural effects”, in Solidification Technology in the Foundry and Casthouse (The Metals Society, London, 1983), pp. 33–39.

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