Title of article :
Comparison of the intergranular segregation for
eight dilute binary metallic systems in the 11
{332} tilt grain boundary
Author/Authors :
O. HARDOUIN DUPARC?، نويسنده , , A. LARERE، نويسنده , , B. LEZZAR، نويسنده , , O. KHALFALLAH، نويسنده , , V. PAIDAR، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2005
Abstract :
Intergranular segregation is studied in the limit of infinitely diluted solution for eight dilute
metallic systems made of four face centred cubic metals, one transition metal, nickel, and
three noble metals, copper, silver and gold. The grain boundary (GB) chosen is the
symmetrical tilt = 11 {332} 110 GB with its characteristic “zigzag” structural pattern as
numerically calculated and experimentally observed by high resolution transmission
electronic microscopy in nickel. The metallic interactions are modelled with Finnis-Sinclair
like potentials. The atomic sites are characterised by a geometrical parameter defined with
their exact Vorono¨ı’ volumes and the tensor of the stresses locally exerted. The {332} GB
presents the most diversity of sites in these respects. The segregation energies are
computed and analysed versus the only two ’driving forces’ which can play a role in
metallic intergranular segregation, viz. the elastic size effect and the excess cohesion
energy effect. The elastic size effect calculated by the method of virtual impurity represents
the main segregation driving force in most cases of the considered systems. It is worth
noting however that the excess cohesion energy effect is important for non hydrostatic or
compressive sites. It can even be predominant, as in the case of Ni(Cu).
C 2005 Springer Science + Business Media, Inc.
Journal title :
Journal of Materials Science
Journal title :
Journal of Materials Science