T. Schneider, E. Stoll
Physical Review B
Computer simulation of fracture dynamics of solid materials was carried out by means of molecular dynamic computations. The work involved a study of crystal imperfections, strain, elastic deformation, transonic and supersonic crack motion and a dynamic brittle-to-ductile transition. A method which used quantum mechanical approach coupled with molecular dynamics was presented to simulate the tight-binding dynamics at the crack tip.
T. Schneider, E. Stoll
Physical Review B
Dipanjan Gope, Albert E. Ruehli, et al.
IEEE T-MTT
O.F. Schirmer, K.W. Blazey, et al.
Physical Review B
O.F. Schirmer, W. Berlinger, et al.
Solid State Communications