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Theoretical Analysis of the Dynamic Properties of a 2-2 Cement-Based Piezoelectric Dual-Layer Stacked Sensor under Impact Load

机译:冲击载荷下2-2型水泥基压电双层传感器动态特性的理论分析

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摘要

Cement-based piezoelectric materials are widely used due to the fact that compared with common smart materials, they overcome the defects of structure-incompatibility and frequency inconsistency with a concrete structure. However, the present understanding of the mechanical behavior of cement-based piezoelectric smart materials under impact load is still limited. The dynamic characteristics under impact load are of importance, for example, for studying the anti-collision properties of engineering structures and aircraft takeoff-landing safety. Therefore, in this paper, an analytical model was proposed to investigate the dynamic properties of a 2-2 cement-based piezoelectric dual-layer stacked sensor under impact load based on the piezoelectric effect. Theoretical solutions are obtained by utilizing the variable separation and Duhamel integral method. To simulate the impact load and verify the theory, three types of loads, including atransient step load, isosceles triangle load and haversine wave load, are considered and the comparisons between the theoretical results, Li’s results and numerical results are presented by using the control variate method and good agreement is found. Furthermore, the influences of several parameters were discussed and other conclusions about this sensor are also given. This should prove very helpful for the design and optimization of the 2-2 cement-based piezoelectric dual-layer stacked sensor in engineering.
机译:由于水泥基压电材料与普通的智能材料相比,它们克服了混凝土结构的结构不兼容和频率不一致的缺陷,因此被广泛使用。但是,目前对水泥基压电智能材料在冲击载荷下的机械性能的了解仍然有限。冲击载荷下的动态特性对于研究工程结构的防撞性能和飞机起降安全性至关重要。因此,本文提出了一种基于压电效应的2-2水泥基压电双层堆叠传感器在冲击载荷下的动态特性分析模型。利用变量分离和Duhamel积分方法获得理论解。为了模拟冲击载荷并验证理论,考虑了瞬态阶跃载荷,等腰三角形载荷和正弦波载荷三种类型的载荷,并通过控制变量给出了理论结果,李氏结果和数值结果的比较。方法和良好的协议。此外,讨论了几个参数的影响,并给出了有关该传感器的其他结论。这将证明对工程中2-2水泥基压电双层堆叠传感器的设计和优化非常有帮助。

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