The effect of an auxetic core layer and symmetric FGM face layers on the 3D wave propagation response of sandwich nanoplates
- 1. Sakarya Univ, Engn Fac, Mech Engn Dept, TR-54187 Sakarya, Turkiye
- 2. Karabuk Univ, Engn Fac, Mech Engn Dept, TR-78050 Karabuk, Turkiye
- 3. Sakarya Appl Sci Univ, Technol Fac, Mechatron Engn Dept, TR-54187 Sakarya, Turkiye
Description
This study explores the thermomechanical 3D wave propagation behavior of a sandwich nanosensor plate with an auxetic core, leveraging nonlocal strain gradient elasticity and sinusoidal higher-order shear deformation theories. The plate comprises functionally graded ceramic (Si3N4) and metal (Ti6Al4V) face layers, with an auxetic Ti6Al4V core having a negative Poisson's ratio. Governing equations are derived using Hamilton's principle, leading to the Navier solution for 3D wave propagation. The results indicate that increasing the beta(1) parameter enhances phase velocities and wave frequencies, while smaller beta(3) values significantly impact stiffness and frequency. These findings provide a framework for optimizing the design of nanosensors, ensuring improved performance and reliability in high-temperature applications across various industries.
Files
bib-8f977e2a-ef0b-4e1d-a447-6ab4f9949497.txt
Files
(211 Bytes)
| Name | Size | Download all |
|---|---|---|
|
md5:32d8e59dd0bfd86973bd38b8ff15348d
|
211 Bytes | Preview Download |