4.7 Article

Cellular/dendritic transition, dendritic growth and microhardness in directionally solidified monophasic Sn-2%Sb alloy

期刊

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/S1003-6326(18)64811-3

关键词

Sn-Sb monophasic alloy; directional solidification; thermal parameters; microstructure; reverse cellular/dendritic transition

资金

  1. FAPESP-Sao Paulo Research Foundation, Brazil [2016/18186-1, 2017/15158-0]
  2. CNPq, The Brazilian Research Council [301600/2015-5, 472745/2013-1, 08784/2014-6]
  3. IFPA, Federal Institute of Education, Science and Technology of Para

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Horizontal directional solidification experiments were carried out with a monophasic Sn-2%Sb (mass fraction) alloy to analyze the influence of solidification thermal parameters on the morphology and length scale of the microstructure. Continuous temperature measurements were made during solidification at different positions along the length of the casting and these temperature data were used to determine solidification thermal parameters, including the growth rate (V-L) and the cooling rate (T-R). High cooling rate cells and dendrites are shown to characterize the microstructure in different regions of the casting, with a reverse dendrite-to-cell transition occurring for T-R>5.0 K/s. Cellular (lambda(c)) and primary dendrite arm spacings (lambda(1)) are determined along the length of the directionally-solidified casting. Experimental growth laws relating lambda(c) and lambda(2) to V-L and T-R are proposed, and a comparative analysis with results from a vertical upward directional solidification experiment is carried out. The influence of morphology and length scale of the microstructure on microhardness is also analyzed.

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