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首页> 外文期刊>Journal of intelligent material systems and structures >Least-squares method for laminated beams with distributed braided piezoelectric composite actuators
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Least-squares method for laminated beams with distributed braided piezoelectric composite actuators

机译:具有分布式编织压电复合致动器的层压光束的最小二乘法

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摘要

Piezoelectric ceramics are a very popular material in the field of actuator technology due to their unique piezoelectric properties. However, the brittle behavior of ceramics endangers the reliability of piezoelectric actuators. In this article, the three-dimensional braided piezoelectric composite is utilized to ameliorate the reliability and driving capability of piezoelectric actuators. The static analysis of laminated beam with the distributed braided piezoelectric composite actuator is presented to study its driving capability. Based on the piezoelectric constitutive equations and Euler-Bernoulli beam theory, the governing equation of the piezoelectric laminated beam is derived. The least-squares method for the piezoelectric laminated beam is established to solve the derived governing equation. The current approach is validated by comparison with published results and finite element results. In the numerical examples, the effects of the number and spacing of the three-dimensional braided piezoelectric composite patches, actuator central location, actuator length, actuator thickness ratio, cantilever beam thickness, applied voltage and fiber volume fraction on the driving capability of the distributed braided piezoelectric composite actuator are investigated. This study suggests the potential use of the distributed braided piezoelectric composite actuator in intelligent structures and provides useful guidance for the design and optimization of piezoelectric actuators.
机译:压电陶瓷是致动器技术领域的一种非常流行的材料,因为它们独特的压电性能。然而,陶瓷的脆性行为危及压电致动器的可靠性。在本文中,利用三维编织压电复合材料改善压电致动器的可靠性和驱动能力。提出了利用分布式编织压电复合致动器的层压光束的静态分析,以研究其驱动能力。基于压电本构方程和欧拉 - 伯努利光束理论,推导了压电层压光束的控制方程。建立压电层压光束的最小二乘法以解决导出的控制方程。通过与已发布结果和有限元结果进行比较验证了当前方法。在数值示例中,三维编织压电复合贴片的数量和间隔的效果,致动器中心位置,致动器长度,致动器厚度比,悬臂梁厚度,施加的电压和纤维体积分数上的分布式的驱动能力研究了编织压电复合致动器。该研究表明,分布式编织压电复合致动器在智能结构中的潜在用途,为压电致动器的设计和优化提供了有用的指导。

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