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September 28, 2025Tạp chí Khoa học Công nghệ Xây dựng (KHCNXD) - ĐHXDHNOpen Access

A CS-MITC3+ plate element for static analysis of HSDT-type functionally graded plates under thermo-mechanical loading

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Authors

TDTrong Nguyen DinhMLMinh La-TuanBLBinh Le-Phuong

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Overview

This analysis introduces a new plate element for static assessment of FG plates, suggesting improved handling of shear effects.

Key Points

  • The CS-MITC3+ element enables improved static analysis of functionally graded plates under thermo-mechanical loading, addressing shear-locking issues.
  • In benchmarks, the proposed element performs effectively, leveraging C0-type shape functions and a unique averaging technique for strain computation.
  • This study applies a cell-based smoothed technique for easier integration of stiffness matrices, demonstrating enhanced accuracy in modeling FG plates.
  • Robustness evaluations against references highlight the advantages of using mixed interpolation tensorial components for shear strain interpolation.

Cite This Study

Dinh et al. (2025) studied this question.

synapsesocial.com/papers/68d909fc41e1c178a14f5aa9https://doi.org/10.31814/stce.huce2025-19(3)-05
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A MITC3+ element improved by edge-based smoothed strains for free vibration and buckling analyses of porous plates based on the first-order shear deformation theory2024
  2. 2Static bending analysis of functionally graded sandwich spherical shells using an edge-based smoothed finite element method2025
  3. 3A full numerical study of the strain based functionally graded rectangular plate finite element using the FSDT2024
  4. 4Static and dynamic analysis of functionally graded sandwich plates using a finite volume method based on Mindlin theory2026
  5. 5FSDT-Based Numerical Analysis of Functionally Graded Plate under Uniform and Sinusoidally Distributed Loading2025