4.4 Article

Flux-driven cellular precipitation in open system to form porous Cu3Sn

Journal

PHILOSOPHICAL MAGAZINE
Volume 96, Issue 13, Pages 1318-1331

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/14786435.2016.1162913

Keywords

Diffusion; voids; precipitation; open system; eutectoid transformation; flux-driven transformation

Funding

  1. European Community [PIRSES-GA-2013-612552]
  2. Ministry of Education and Science of Ukraine [0115 U 000638]

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Recently, a new morphology of porous Cu3Sn with lamellar structure is observed. Several possible explanations of the formation are proposed and compared. The most reasonable one seems to be the one based on a theory of flux-driven cellular precipitation in open system. Outflux of Sn from Cu6Sn5 generates simultaneously supersaturation with vacancies and with copper leading to the eutectoid-like transformation + (where is void). The transformation is complete due to a complete outflux of Sn from the Cu6Sn5 phase. Simple formulae for prediction of the lamellar structure parameters and the propagation velocity are obtained and compared reasonably with experimental data. The suggested model can be interpreted as one more case of the flux-driven phase transformations in open systems.

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