Published June 1988 | Version v1
Journal article

Elastic-wave generation in the evolution of displacement peaks

Description

This paper investigated the character of elastic shock wave generation and damping in irradiated materials along with the possibility of their long-range influence on the structure of the irradiated materials. Dispersion at the elastoplastic stage of atomic displacement peak development was taken into account. The three-dimensional nonlinear wave was described by an equation in the approximation of weak nonlinearity and weak spatial dispersion. Numerical modeling of the propagation of a plane shock wave in a crystal lattice was conducted. The distribution of the density and mass velocity of the material at the instant of complete damping of the plastic shock-wave component was determined. The appearance of solitary waves (solitons) at large amplitudes, localized in space, which propagate without distortion to arbitrary distances and retain their amplitude and form in interacting with one another, was investigated. Some physical consequences of the influence of solitary waves on the irradiated materials were considered

Additional details

Publishing Information

Journal Title
Soviet Atomic Energy (English Translation)
Journal Volume
63
Journal Issue
6
Series
Sov. At. Energy (Engl. Transl.).
Journal Page Range
884-889
ISSN
0038-531X
CODEN
SATEA

Optional Information

Notes
Translated from Sov. At. Energy; 63: No. 6, 375-379(Dec 1987). Cover-to-cover translation of Atomnaya Ehnergiya (USSR).