Research on the flexural property of composite laminates with embedded PZT

Xining Li, Yaomao Zhang, Yuzhi Liu
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Abstract

The composite laminate embedded with piezoelectric lead zirconate titanate (PZT-5A) synthesizes the functional characteristics of a sensor such as damage monitoring and actuation. However, for composite laminates, PZT components belong to foreign impurities, which may destroy the integrity of the structure and damage the mechanical properties of the structure to some extent. In order to ensure the safety and reliability of the structure, this study revealed the influence of composite laminates embedded with PZT components on the flexural property through experiments and simulations. In the simulation, the shape of the resin enrichment zone was considered in combination with experimental observation. The results show that the error in the numerical prediction was less than 5%. Based on the particle swarm optimization (PSO) algorithm, the approximate symmetric layout of PZT in the laminate is obtained, which can reduce the influence of embedding on the bending performance of the structure. These results can provide reference and research ideas for the mechanical properties analysis of piezoelectric ceramic embedded structures.
嵌入 PZT 的复合材料层压板弯曲性能研究
嵌入压电锆钛酸铅(PZT-5A)的复合层压板可综合传感器的功能特性,如损伤监测和致动。然而,对于复合层压板而言,PZT 成分属于外来杂质,可能会破坏结构的完整性,并在一定程度上损害结构的机械性能。为了确保结构的安全性和可靠性,本研究通过实验和模拟揭示了嵌入 PZT 元件的复合材料层压板对弯曲性能的影响。在模拟中,结合实验观察,考虑了树脂富集区的形状。结果表明,数值预测误差小于 5%。基于粒子群优化(PSO)算法,得到了 PZT 在层压板中的近似对称布局,可以减少嵌入对结构弯曲性能的影响。这些结果可为压电陶瓷嵌入结构的力学性能分析提供参考和研究思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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