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April 1, 2026Archive of Applied MechanicsOpen Access

Penta-graphene core sandwich nanoplates: thermal vibration and buckling characteristics

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Authors

MEMustafa EroğluMKMehmet Akif KoçİEİsmail Esen

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Overview

Research examines thermal vibration and buckling characteristics in sandwich nanoplate, suggesting insights for advanced engineering.

Key Points

  • This research aims to explore the thermal vibration and buckling characteristics of a three-layer sandwich nanoplate.
  • Examined a three-layer sandwich nanoplate composed of penta-graphene and magneto-electro-elastic materials.
  • Utilized higher-order shear deformation theory for modeling mechanical behaviors.
  • Applied nonlocal strain-gradient theory to address operational parameters.
  • Investigated the effects of geometric characteristics and material parameters on buckling temperatures.
  • Identified significant influences of geometric properties on buckling behavior under temperature fluctuations.
  • Revealed notable variations in thermal vibration responses based on material parameters.
  • Provided insights for enhancing the stability performance of the nanoplate at elevated temperatures.

Cite This Study

Eroğlu et al. (2026) studied this question.

synapsesocial.com/papers/69cd7b065652765b073a8b1bhttps://doi.org/10.1007/s00419-026-03057-w
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