Abstract
The paper proposes the governing equations for determining the stress-strain state in plane-layer constructions made of transversely isotropic materials. They are obtained on the base of applying tensor relations for displacements, stresses and deformations of the generalized method of scalarization of dynamic elastic fields in transverse isotropic media. They allow us to calculate the stress-strain state in certain areas of the constructions under consideration, both during the pulse loading and after its completion. The effect of the anisotropy of the materials of the layers on the stress-strain state in the structures under consideration is studied, taking into account the features of the propagation of elastic waves in transverse isotropic materials.
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Acknowledgements
The work was supported by the grant of Russian Foundation for Basic Research, No. 19-08-00365, Ministry of Education and Science of the Russian Federation: projects Nos. 3.5378.2017/VU (organization of the implementation of researches), 9.9770.2017/BCh (the basic part of the state task).
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Miroshnichenko, I.P., Parinov, I.A., Sizov, V.P. (2019). Stress-Strain State of Transversally Isotropic Plane-Layer Constructions Under Pulse Loading. In: Parinov, I., Chang, SH., Kim, YH. (eds) Advanced Materials. Springer Proceedings in Physics, vol 224. Springer, Cham. https://doi.org/10.1007/978-3-030-19894-7_36
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DOI: https://doi.org/10.1007/978-3-030-19894-7_36
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