Mass Minimization of Axially Functionally Graded Euler-Bernoulli Beams with Coupled Bending and Axial Vibrations

被引:0
|
作者
Obradovic, Aleksandar [1 ]
Jeremic, Bojan [2 ]
Tomovic, Aleksandar [1 ]
Salinic, Slavisa [3 ]
Mitrovic, Zoran [1 ]
机构
[1] Univ Belgrade, Fac Mech Engn, Belgrade 11120, Serbia
[2] Univ Kragujevac, Fac Tech Sci Cacak, Cacak 32102, Serbia
[3] Univ Kragujevac, Fac Mech & Civil Engn Kraljevo, Kraljevo 36000, Serbia
关键词
coupled vibrations; axially functionally graded beam; Euler-Bernoulli beam; Pontryagin's maximum principle; mass minimization; cantilever beam; MULTIOBJECTIVE OPTIMIZATION; SHAPE OPTIMIZATION; BIMODAL OPTIMIZATION; NATURAL FREQUENCIES; DESIGN; WEIGHT; COLUMN; PLATES;
D O I
10.1134/S002565442460260X
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The paper considers shape optimization of Euler-Bernoulli beams with circular, square and rectangular cross-sections made of axially functionally graded materials at a prescribed fundamental frequency. Optimization is carried out by the beam mass minimization. Considerations involve the case of coupled bending and axial vibrations, where complex boundary conditions are the cause of coupling. Pontryagin's maximum principle is used to solve shape optimization, where a limited diameter or a beam cross-sectional width is used for control. Diameter limit is considered so that the optimized shape of a beam is within the limits of the validity of Euler-Bernoulli theory, and its strength does not decrease for smaller cross-sectional dimensions. The resulting system of differential equations is a two-point boundary value problem, and the shooting method is applied to solve it. The property of self-coupled systems is utilized, where all adjoint variables, except for one variable, are expressed through state variables, which facilitates solving the appropriate differential equations. Theoretical considerations are illustrated by an example. Also, the savings of beam mass in percent are determined, using the cantilever beam with optimal variable cross-section against the cantilever beam of a constant cross-section, where both beams have the same prescribed fundamental frequency.
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页码:1358 / 1375
页数:18
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