Dynamics of Pre-Strained Bi-Material Elastic Systems, 2015
Linearized Three-Dimensional Approach

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Language: English

210.99 €

In Print (Delivery period: 15 days).

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Dynamics of Pre-Strained Bi-Material Elastic Systems
Publication date:
Support: Print on demand

210.99 €

In Print (Delivery period: 15 days).

Add to cartAdd to cart
Dynamics of Pre-Strained Bi-Material Elastic Systems. Linearized Three-Dimensional Approach
Publication date:
1004 p. · 15.5x23.5 cm · Hardback
This book deals with dynamics of pre-stressed or pre-strained bi-material elastic systems consisting of stack of pre-stressed layers, stack of pre-stressed layers and pre-stressed half space (or half plane), stack of pre-stressed layers as well as absolute rigid foundation, pre-stressed compound solid and hollow cylinders and pre-stressed sandwich hollow cylinders. The problems considered in the book relate to the dynamics of a moving and oscillating moving load, forced vibration caused by linearly located or point located time-harmonic forces acting to the foregoing systems. Moreover, a considerable part of the book relate to the problems regarding the near surface, torsional and axisymmetric longitudinal waves propagation and dispersion in the noted above bi-material elastic systems.
The book carries out the investigations within the framework of the piecewise homogeneous body model with the use of the Three-Dimensional Linearized Theory of Elastic Waves in Initially Stressed Bodies.
Dynamics of a moving and oscillating moving load acting on a pre-strained bi-material layered systems.- Forced vibration of a pre-stressed layered bodies.- Wave propagation in pre-strained layered bodies.- Torsional wave dispersion in a prestrained layered circular cylinders.- Axisymmetric longitudinal wave propagation in pre-strained compound cylinders.

Presents the dynamics of pre-stressed or pre-strained bi-material elastic systems

Includes considerable parts describing near surface, torsional and axisymmetric longitudinal waves

Deals with the dynamics of a moving and oscillating moving load, forced vibration

Includes supplementary material: sn.pub/extras