Lorenzo Violi
Dynamic analysis of Carbon Nanotube-Reinforced Piezoelectric Composite for Active Control of Smart Structures.
Rel. Erasmo Carrera, Fiorenzo Fazzolari. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Aerospaziale, 2018
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Abstract
Smart structures have a wide range of potential applications in aerospace engineering, such as vibration and noise suppression, shape adaption and aeroelastic control of lifting surfaces. Piezoelectric materials are largely used as smart materials due to the their capability to perform both as sensors and actuators. Composite structures embedded with piezoelectric materials confer the low density, superior mechanical and thermal properties of composite materials along with sensing and vibration control. The aim of this thesis is the study of the dynamic behaviour and vibration attenuation of carbon nanotube reinforced composite plates, integrated with piezoelectric layers at the bottom and top surfaces.
Distribution of CNTs reinforcement may be uniformly distributed (UD) or functionally graded (FG) according to linear functions of the thickness direction
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