A numerical approach which involves discretization of the duct into a series of large number of short ducts called segments has been in vogue for analyzing wave propagation in non-uniform ducts of general shapes. In this paper, an improved segmentation approach for analyzing one-dimensional wave pro
A wave propagation problem for non-uniform screw dislocation motion in a viscoelastic half-plane
โ Scribed by L. M. Brock
- Publisher
- Springer Netherlands
- Year
- 1981
- Tongue
- English
- Weight
- 416 KB
- Volume
- 11
- Category
- Article
- ISSN
- 0374-3535
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โฆ Synopsis
The wave propagation problem for a largely arbitrary anti-plane displacement discontinuity imposed along a line perpendicular to the surface of a stress-free linearly viscoelastic half-plane is considered. The general Laplace transform solution is obtained and then inverted for the case of a screw dislocation moving at an arbitrary speed in a Maxwell material. It is shown that the material viscoelasticity alters the coefficient of the dislocation edge stress singularity and damps the surface displacements from the elastic values. The surface damping increases with time, distance from the dislocation path and dislocation speed, whether sub-or supersonic.
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