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“Wetting” Phase Transitions by the Second Solid Phase for Linear Defects (Grain Boundary Triple Junctions)

A. B. StraumalInstitute of Solid State Physics, Russian Academy of Sciences, Chernogolovka, Moscow region, 142432, RussiaI. A. MazilkinInstitute of Solid State Physics, Russian Academy of Sciences, Chernogolovka, Moscow region, 142432, RussiaK. V. TsoiInstitute of Solid State Physics, Russian Academy of Sciences, Chernogolovka, Moscow region, 142432, RussiaB. BaretzkyInstitute of Nanotechnology, Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen, 76344, GermanyBoris B. StraumalInstitute of Nanotechnology, Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen, 76344, Germany
2020en
ABI

Annotatsiya

In this work, the wetting phase transition of grain boundaries (GBs) and their triple junctions (GB TJs) by the second solid phase in the magnesium-based alloy EZ33A is studied. The condition for complete wetting for the GB TJ $$({\sigma _{{\rm{GB}}}} > \sqrt 3 {\sigma _{{\rm{SS}}}})$$ is weaker than that for GBs (σGB > 2σSS). Therefore, if the transition from partial to complete wetting occurs with increasing temperature, then all GB TJs should become completely wetted at a temperature TwTJ, which is lower than the temperature TwGB, at which all GBs become completely wetted. For the first time, it has been found experimentally that GB TJs are completely wetted at TwTJ = (380 ± 10)°C, which is approximately 70°C lower than TwGB = (450 ± 10)°C. The wetting phase at the GBs is the intermetallic compound (Mg, Zn)12RE. A similar phenomenon was previously observed for GB TJ wetting with a liquid phase [B.B. Straumal, O. Kogtenkova, and P. Zieba, Acta Mater. 56, 925 (2008)].

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