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首页> 外文期刊>Journal of Sandwich Structures and Materials >Active control of thermal buckling and vibration for a sandwich composite laminated plate with piezoelectric fiber-reinforced composite actuator facesheets
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Active control of thermal buckling and vibration for a sandwich composite laminated plate with piezoelectric fiber-reinforced composite actuator facesheets

机译:带压电纤维增强复合型致动器面板的夹层复合层压板热屈曲和振动的主动控制

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摘要

The present paper is concerned with the active control of thermal buckling and vibration of a sandwich composite laminated plate with piezoelectric fiber-reinforced composite actuator facesheets in a thermal environment. An active temperature feedback control strategy is proposed for the thermal buckling of the composite sandwich plate. The results of numerical simulations show that the piezoelectric actuator can significantly improve the thermal buckling characteristics of the composite plates. The influence of the active thermal buckling control gain on the damping ratio and natural frequency of the structure is also investigated. From the numerical results it is observed that the active thermal buckling control with temperature feedback gain can not only enlarge the critical buckling temperature but can also reduce the resonant amplitude of the structure. Furthermore, the optimization problem is studied and it is found that the critical buckling temperature can be optimized by varying the fiber orientation in the piezoelectric fiber-reinforced composite layer. The active thermal buckling control method presented in this paper working in combination with the vibration control strategy can significantly improve the stability of the laminated composite plates. The present study will be useful for designing laminated composite structures used in the thermal environment.
机译:本文涉及在热环境中具有压电纤维增强复合致动器面板的夹层复合层压板的热屈曲和振动的热屈曲和振动。提出了一种用于复合夹层板的热屈曲的有效温度反馈控制策略。数值模拟的结果表明,压电致动器可以显着提高复合板的热屈曲特性。还研究了有源热屈曲控制增益对结构的阻尼比和固有频率的影响。根据数值结果,观察到具有温度反馈增益的有源热屈曲控制不仅可以扩大关键屈曲温度,而且还可以降低结构的谐振幅度。此外,研究了优化问题,并且发现可以通过改变压电纤维增强复合材料层中的纤维取向来优化关键屈曲温度。本文中提出的有源热屈曲控制方法与振动控制策略组合工作,可以显着提高层压复合板的稳定性。本研究将用于设计热环境中使用的层压复合结构。

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