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Difference in the Evolution of Longitudinal and Transverse Bell-Shaped Plane Waves Propagating in Nonlinear Elastic Composites
The results on the evolution of nonlinear elastic longitudinal and transverse bell-shaped plane waves are theoretically described, analyzed, and compared. Eighteen options of initial parameters, two composite materials, three wave lengths, three maximum initial amplitudes are numerically analyzed. T...
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Published in: | International applied mechanics 2019-01, Vol.55 (1), p.55-57 |
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container_title | International applied mechanics |
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creator | Yurchuk, V. N. |
description | The results on the evolution of nonlinear elastic longitudinal and transverse bell-shaped plane waves are theoretically described, analyzed, and compared. Eighteen options of initial parameters, two composite materials, three wave lengths, three maximum initial amplitudes are numerically analyzed. Three-dimensional graphs of displacement versus traveled distance versus travel time for each option are plotted. The emphasis is on the differences in the evolution of longitudinal and transverse waves. |
doi_str_mv | 10.1007/s10778-019-00933-7 |
format | article |
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subjects | Aircraft Applications of Mathematics Classical Mechanics Composite materials Evolution Physics Physics and Astronomy Plane waves Three dimensional analysis Transverse waves Travel time Wave propagation |
title | Difference in the Evolution of Longitudinal and Transverse Bell-Shaped Plane Waves Propagating in Nonlinear Elastic Composites |
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