Mengmeng Cheng
Papers
1
Total Citations
118
H-Index
1
About
Mengmeng Cheng is a leading researcher in the mechanics of advanced nanostructures, with a particular focus on the dynamic behavior and stability of piezoelectric and viscoelastic nanoplates. Her work bridges theoretical mechanics and applied physics, addressing how these tiny structures respond to complex, multi-physical forces. Her most-cited paper, "Nonlocal vibrations and stabilities in parametric resonance of axially moving viscoelastic piezoelectric nanoplate subjected to thermo-electro-mechanical forces" (2017, 118 citations), is a cornerstone contribution. In this study, Cheng developed a sophisticated nonlocal elasticity model to analyze the parametric resonance and stability of axially moving nanoplates under simultaneous thermal, electrical, and mechanical loads. This work is critical for designing next-generation nano-electromechanical systems (NEMS) and sensors, where precise control of vibration and stability is essential. By integrating viscoelastic damping and piezoelectric effects, Cheng’s research provides a robust framework for predicting failure modes and optimizing performance in extreme environments. Her achievements have established her as a key figure in the field of nanomechanics, offering foundational insights that guide both experimentalists and engineers working on advanced nanomaterials and smart structures.
Research Focus
Key Achievements
Top Papers
- 1