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首页> 外文期刊>Journal of Sandwich Structures and Materials >Optimization of dynamic buckling for sandwich nanocomposite plates with sensor and actuator layer based on sinusoidal-visco-piezoelasticity theories using Grey Wolf algorithm
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Optimization of dynamic buckling for sandwich nanocomposite plates with sensor and actuator layer based on sinusoidal-visco-piezoelasticity theories using Grey Wolf algorithm

机译:基于灰狼 - 缺陷术理论的Sandwich纳米复合板与灰狼算法的致动件层夹层纳米复合板的动态屈曲优化

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摘要

Optimization of embedded piezoelectric sandwich nanocomposite plates for dynamic buckling analysis is presented in this work based on Grey Wolf algorithm. The Grey Wolf algorithm mimics the leadership hierarchy and hunting mechanism of grey wolves in nature. In addition, the main steps of hunting, searching for prey, encircling prey, and attacking prey are employed. The structure is composed of a laminated functionally graded-carbon nanotubes reinforced layers as core integrated with sensor and actuator layers considering structural damping effects. Two-dimensional magnetic and 3D electric fields are applied to core and piezoelectric layers, respectively. Sinusoidal shear deformation theory is utilized for obtaining the motion equations and differential quadrature method is applied for solution. Also, a proportional-derivative controller is employed to control the dynamic behavior of the structure. Finally, the optimum designs for the structure are evaluated using proposed Grey Wolf algorithm based on the geometrical parameters of plate, applied voltage, controller parameters, volume fraction of carbon nanotubes, spring, and shear constants of foundation. Numerical results indicate that by applying the positive voltage and transverse magnetic field the optimum dimensionless frequency of the system decreases.
机译:基于灰狼算法的本作作品,介绍了动态屈曲分析嵌入式压电夹层纳米复合板的优化。灰狼算法在自然界中模仿了灰狼的领导层级和狩猎机制。此外,采用了狩猎,寻找猎物,环绕猎物和攻击猎物的主要步骤。该结构由层压的功能渐进式 - 碳纳米管增强层组成,其作为考虑结构阻尼效应的传感器和致动器层集成的芯。二维磁性和3D电场分别应用于核心和压电层。正弦剪切变形理论用于获得运动方程和差分正交方法应用溶液。而且,采用比例衍生控制器来控制结构的动态行为。最后,使用基于板,施加的电压,控制器参数,碳纳米管,弹簧和剪切常数的板块,施加的电压,控制器参数,体积分数,使用所提出的灰狼算法评估结构的最佳设计。数值结果表明,通过施加正电压和横向磁场,系统的最佳无量纲频率降低。

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