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May 24, 2026Journal of the Brazilian Society of Mechanical Sciences and EngineeringOpen Access

Dynamic and vibration buckling of sandwich nanoplates under thermal, electromagnetic, and casimir effects

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Authors

MEMustafa EroğluİEİsmail EsenMKMehmet Akif Koç

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Overview

Randomized trial investigates dynamic and vibration buckling in sandwich nanoplates, highlighting key physical influences on stability.

Key Points

  • The aim is to explore the dynamic and vibration buckling behavior of sandwich nanoplates under various physical conditions.
  • Developed a multi-physical model using nonlocal strain gradient theory and magneto-electro-elastic coupling.
  • Examined the influences of temperature, plate gap, and boundary conditions on natural frequencies and buckling onset.
  • Considered surface and Casimir forces, as well as van der Waals interactions, in nanoscale performance.
  • Higher temperature differences and reduced plate gaps lead to decreased natural frequencies and earlier buckling.
  • Fundamental properties such as foam void ratio significantly impact nanoplate stability.
  • Enhanced buckling is observed with nonlocal parameters, while increased material size parameters inhibit buckling.

Cite This Study

Eroğlu et al. (2026) studied this question.

synapsesocial.com/papers/6a1295ae48a0ea1665671e51https://doi.org/10.1007/s40430-026-06441-3
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