On the 3D wave propagation response of sandwich nanoplates with symmetric FGM face layers and GPRL-reinforced foam core layer

Küçük Resim Yok

Tarih

2024-12-10

Dergi Başlığı

Dergi ISSN

Cilt Başlığı

Yayıncı

Springer Science and Business Media LLC

Erişim Hakkı

info:eu-repo/semantics/closedAccess

Özet

This study investigates 3D wave propagation in a sandwich nanosensor plate, emphasizing thermo-mechanical characteristics. The research employs sinusoidal higher-order shear deformation and nonlocal strain gradient elasticity theories on sandwich construction, including functionally graded ceramic (Si3N4) and metal (Ti6Al4V) face layers and a graphene-reinforced metal foam core. The governing equations are formulated using Hamilton's principle and resolved by the Navier method, integrating temperature, Lorentz, and viscoelastic effects. The primary characteristics examined encompass graphene volume fraction, temperature fluctuations, nonlocal effects, foam porosity, and magnetic potential. The results demonstrate a phase velocity of almost 4.2 km/s at wave numbers above 100 1/nm at Delta T = 0, diminishing to approximately 3.0 km/s as Delta T approaches 1200. The findings enhance the optimization of nanosensor design for dependability under elevated temperature conditions.

Açıklama

Anahtar Kelimeler

Boundary condition, Free vibration, Continuum mechanics, Comprehensive Analysis, Carbon Nanotubes, Graphene, Plates, Surface, Arrays, Beams

Kaynak

The European Physical Journal Plus

WoS Q Değeri

Q2

Scopus Q Değeri

Q1

Cilt

139

Sayı

12

Künye

Eroğlu, M., Esen, İ. & Koç, M.A. On the 3D wave propagation response of sandwich nanoplates with symmetric FGM face layers and GPRL-reinforced foam core layer. Eur. Phys. J. Plus 139, 1082 (2024). https://doi.org/10.1140/epjp/s13360-024-05875-9