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A Supersonic Aerodynamic Energy Harvester:A Functionally Graded Material Beam with a Giant Magnetostrictive Thin Film 被引量:2

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摘要 In this study,a simply supported functionally graded material beam with a giant magnetostrictive thin film(GMF)was selected as an energy harvester.Based on the theory of large deformation and the Villari effect of GMF,piston theory was used to simulate the dynamic equation of the whole structure under supersonic aerodynamic pressure and in a thermal environment by using Hamilton^principle,and the energy harvesting effect of GMF was simulated by using a Runge-Kutta algorithm.Below the critical flutter velocity,the maximum voltage output and energy harvesting results were discussed as they were affected by external factors such as the geometric model of structure parameters,slenderness ratio,gradient index,number of turns of an electromagnetic coil,airflow velocity,and temperature.The electromechanical coupling coefficient/C33 was 71%.The results show that this proposed harvester can achieve an optimal harvesting effect by adjusting the parameters appropriately,and collect energy in thermal and supersonic environments using the GMF,which provides power to sensors of the health monitoring system of the aircraft’s own structure.
出处 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2022年第1期161-173,共13页 固体力学学报(英文版)
基金 the National Natural Science Foundation of China(Grant Nos.12022213,11772205,11902203,and 12002217) Liaoning Revitalization Talents Program(XLYC1807172).
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  • 1HU Yuantai1,2,HU Hongping2 & YANG Jiashi3 1. Institute of Mechanics and Sensing Technology,Central South University,Changsha 410083,China,2. Department of Mechanics,Huazhong University of Science and Technology,Wuhan 430074,China,3. Department of Engineering Mechanics,University of Nebraska,Lincoln,NE 68588-0526,USA.A low frequency piezoelectric power harvester using a spiral-shaped bimorph[J].Science China(Physics,Mechanics & Astronomy),2006,49(6):649-659. 被引量:9
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