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作 者:Pham Hoang Tu Tran Van Ke Vu Khac Trai Le Hoai
机构地区:[1]Faculty of Automotive Engineering,School of Technology,Van Lang University,Ho Chi Minh City 700000,Viet Nam [2]Faculty of Mechanical Engineering,Le Quy Don Technical University,Hanoi 100000,Viet Nam [3]Faculty of Engineering and Technology,Nguyen Tat Thanh University,Ho Chi Minh City 700000,Viet Nam [4]HUTECH Institute of Engineering,HUTECH University,Ho Chi Minh City 700000,Viet Nam
出 处:《Defence Technology(防务技术)》2024年第11期159-180,共22页Defence Technology
摘 要:For the first time, the isogeometric analysis(IGA) approach is used to model and analyze free and forced vibrations of doubly-curved magneto-electro-elastic(MEE) composite shallow shell resting on the visco-Pasternak foundation in a hygro-temperature environment. The doubly-curved MEE shallow shell types include spherical shallow shell, cylindrical shallow shell, saddle shallow shell, and elliptical shallow shell subjected to blast load are investigated. The Maxwell equation and electromagnetic boundary conditions are used to determine the vary of the electric and magnetic potentials. The MEE shallow shell's equations of motion are derived from Hamilton's principle and refined higher-order shear theory. Then, the IGA method is used to derive the laws of natural frequencies and dynamic responses of the shell under various boundary conditions. The accuracy of the model and method is verified through reliable numerical comparisons. Aside from this, the impact of the input parameters on the free and forced vibration of the doubly-curved MEE shallow shell is examined in detail. These results may be useful in the design and manufacture of military structures such as warships, fighter aircraft, drones and missiles.
关 键 词:IGA approach Free and forced vibration Doubly-curved MEE shallow shell Blast load
分 类 号:TB33[一般工业技术—材料科学与工程]
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