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April 30, 2026PAMM0 citations

Steady Vibration Problems in the Theory of Moore–Gibson–Thompson Thermoelasticity for Materials With Voids

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MSMerab SvanadzeIlia State University

Key Points

  • This paper aims to explore the behavior of materials with voids under steady vibrations using Moore–Gibson–Thompson thermoelasticity theory.
  • Investigated boundary value problems related to steady vibrations in thermoelastic materials with voids.
  • Constructed surface and volume potentials according to the principles of MGT thermoelasticity.
  • Reduced the boundary value problems to solvable singular integral equations.
  • Proved the existence theorems for classical solutions to internal and external boundary value problems using potential methods.
  • Established essential properties of constructed potentials and their integral representations.

Abstract

ABSTRACT In this paper, the linear theory of Moore–Gibson–Thompson (MGT) thermoelasticity for materials with voids is examined, taking into account the coupled effect of material deformation, the concept of pore volume fraction, and the MGT law of heat conduction. The basic boundary value problems (BVPs) associated with steady vibrations within this framework are investigated. Specifically, the integral representations of regular vector functions are obtained, the surface (single‐layer and double‐layer) and volume potentials are constructed, and their essential properties are established. These BVPs are reduced to singular integral equations, which are always solvable and for which Noether's theorems hold. Finally, the existence theorems for classical solutions to the internal and external BVPs are proven using the potential method and the theory of singular integral equations.

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Cite This Study

Merab Svanadze (2026) studied this question.

synapsesocial.com/papers/69f2f1771e5f7920c63871bahttps://doi.org/10.1002/pamm.70137
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