Alireza Mousavi
Papers
1
Total Citations
88
H-Index
1
About
Alireza Mousavi is a leading figure in the mechanics of advanced materials, with a primary focus on the vibration and stability analysis of functionally graded (FG) microbeams and microstructures. His most-cited work, "Vibration behavior of a rotating non-uniform FG microbeam based on the modified couple stress theory and GDQEM" (2016, 88 citations), exemplifies his core contribution: integrating higher-order continuum theories—specifically the modified couple stress theory—with powerful numerical methods like the generalized differential quadrature element method (GDQEM). This approach allows him to accurately capture size-dependent effects in micro-scale beams, a critical factor for designing next-generation micro-electromechanical systems (MEMS) and sensors. By modeling rotating, non-uniform geometries, Mousavi addresses realistic engineering conditions often overlooked in simpler analyses. His research has been widely cited by engineers and material scientists working on the dynamic behavior of small-scale structures, providing a robust theoretical and computational framework for predicting performance and failure. Through this work, Mousavi has established himself as a key contributor to the field of micro-mechanics, bridging theoretical mechanics with practical engineering design.
Research Focus
Key Achievements
Top Papers
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