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July 12, 2026NanomaterialsOpen Access

Coupled Thermal and Nonlocal Effects in Advanced Composite Nanobeams: An Efficient Higher-Order Modeling Approach

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Authors

RARabab A. AlghanmiMHMohammed Sid Ahmed Houari

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Overview

Randomized trial examines thermal and nonlocal impacts on functionally graded nanobeams, indicating important thermomechanical insights.

Key Points

  • This research aims to investigate how thermal loading and nonlocal elasticity influence the dynamic behavior of functionally graded nanobeams.
  • Introduced a higher-order shear deformation theory with an integral unknown displacement field.
  • Analyzed the dynamic behavior using Hamilton's principle to derive governing equations.
  • Considered temperature effects on material characteristics using a power-law model.
  • Established governing equations that accurately reflect shear strains without the need for correction constants.
  • Showed that temperature and material gradation significantly influence the dynamic response of FG nanobeams.

Cite This Study

Alghanmi et al. (2026) studied this question.

synapsesocial.com/papers/6a5333754f7abc118adee0b7https://doi.org/10.3390/nano16140852
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