NUMERICAL ANALYSIS OF THE THERMO-MAGNETO-ELASTIC BENDING OF A T-SHAPED COMPOSITE PLATE BY THE R-FUNCTION METHOD

This paper reports a numerical study, carried out by the R-function method (RFM), of the coupled thermo-magneto-elastic bending of a thin transversely isotropic composite plate whose mid-plane has a T-shaped (tee) cross-section. The T-shaped domain, which contains re-entrant corners, is represented as a single continuous analytic function ω(x, y) obtained through the R-disjunction of two elementary rectangles. The three-dimensional topology of the deflection field reveals pronounced displacement gradients at the flange-to-web junction. A harmonic magnetic excitation was also examined; after a short impulsive transient the system settles into a stable stationary regime. The results demonstrate that magnetic and thermal actions on an asymmetric T-profile are strongly non-additive and must be evaluated jointly at the design stage.

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Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-16
DOI
https://doi.org/10.5281/zenodo.22797251
Primary Topic
Composite Structure Analysis and Optimization
Type
article
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article

NUMERICAL ANALYSIS OF THE THERMO-MAGNETO-ELASTIC BENDING OF A T-SHAPED COMPOSITE PLATE BY THE R-FUNCTION METHOD

Nuriddin Shukur o'g'li Tojiyev
Zenodo (CERN European Organization for Nuclear Research)
Composite Structure Analysis and Optimization
article

NUMERICAL ANALYSIS OF THE THERMO-MAGNETO-ELASTIC BENDING OF A T-SHAPED COMPOSITE PLATE BY THE R-FUNCTION METHOD

Nuriddin Shukur o'g'li Tojiyev
article en

Abstract

This paper reports a numerical study, carried out by the R-function method (RFM), of the coupled thermo-magneto-elastic bending of a thin transversely isotropic composite plate whose mid-plane has a T-shaped (tee) cross-section. The T-shaped domain, which contains re-entrant corners, is represented as a single continuous analytic function ω(x, y) obtained through the R-disjunction of two elementary rectangles. The three-dimensional topology of the deflection field reveals pronounced displacement gradients at the flange-to-web junction. A harmonic magnetic excitation was also examined; after a short impulsive transient the system settles into a stable stationary regime. The results demonstrate that magnetic and thermal actions on an asymmetric T-profile are strongly non-additive and must be evaluated jointly at the design stage.

Zenodo (CERN European Organization for Nuclear Research)
Tashkent University of Information Technology (UZ)
Sustainable cities and communities
Openalex Percentile: Top 19%
Composite Structure Analysis and Optimization
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