Effect of grain boundary complexions on the deformation behavior of Ni bicrystal during bending creep. 2018

K Vijay Reddy, and Snehanshu Pal
Department of Metallurgical and Materials Engineering, National Institute of Technology Rourkela, Rourkela, 769008, India.

The dependence of creep deformation behavior of nickel bicrystal specimens on grain boundary (GB) complexion was investigated by performing a simulated bending creep test using molecular dynamics methods. Strain burst phenomena were observed during the low temperature [500 K, i.e., <0.3 * melting point of nickel (Tm)] bending creep process. Atomic strain and dislocation analyses showed that the time of occurrence of strain burst depends on how easily GB migration happens in bicrystal specimens. Specimens with kite monolayer segregation GB complexion were found to be stable at low temperature (500 K), whereas specimens with split-kite GB complexion were stable at a comparatively higher temperature (900 K). In case of further elevated creep temperatures, e.g., 1100 K and 1300 K, split-kite GB complexion becomes unstable and leads to early failure of the specimen at those temperatures. Additionally, it was observed that split-kite bilayer segregation and normal kite GB complexions exhibit localized increases in elastic modulus during bending creep process, occurring at temperatures of 1100 K and 1300 K, respectively, due to the formation of interpenetrating icosahedral clusters. Graphical abstract Representative creep curves during bending creep deformation of various grain boundary complexions at 900 K.

UI MeSH Term Description Entries

Related Publications

K Vijay Reddy, and Snehanshu Pal
January 2003, Journal of electron microscopy,
K Vijay Reddy, and Snehanshu Pal
November 2019, Scientific reports,
K Vijay Reddy, and Snehanshu Pal
November 2020, Nano letters,
K Vijay Reddy, and Snehanshu Pal
March 1995, Physical review. B, Condensed matter,
K Vijay Reddy, and Snehanshu Pal
February 1992, Physical review letters,
K Vijay Reddy, and Snehanshu Pal
April 2020, Nanomaterials (Basel, Switzerland),
K Vijay Reddy, and Snehanshu Pal
October 2015, Scientific reports,
Copied contents to your clipboard!