非线性系统
材料科学
钙钛矿(结构)
电致伸缩
智能材料
压力(语言学)
参数统计
机械能
光学
压电
复合材料
物理
热力学
工程类
数学
统计
量子力学
哲学
化学工程
语言学
功率(物理)
作者
Shaoyu Zhao,Helong Wu,Yingyan Zhang,S. Kitipornchai,Jie Yang
出处
期刊:Nonlinear Dynamics
[Springer Science+Business Media]
日期:2024-03-05
卷期号:112 (8): 6159-6180
被引量:14
标识
DOI:10.1007/s11071-024-09372-7
摘要
Abstract Photostrictive materials have attracted tremendous interest as the new generation of smart materials that can achieve a direct conversion from optical energy to mechanical energy. Understanding their nonlinear mechanical properties under light illumination is of paramount significance for their realistic optomechanical applications. This article proposes a novel opto-electro-thermo-elastic constitutive model that can consider the effects of photostriction, photothermal temperature, and electrostriction for metal halide perovskite crystals and investigates the nonlinear static and dynamic responses of the perovskite plates. The nonlinear governing equations are established based on the first-order shear deformation theory and von Kármán nonlinearity and are numerically solved by the differential quadrature method. A detailed parametric investigation is performed to analyze the effects of light and electricity on the nonlinear mechanical behaviors of perovskite plates. It is concluded that light illumination leads to the presence of optical stress and thermal stress in the perovskite plates, giving rise to increased static and dynamic deformations and stresses, as well as reduced postbuckling and free vibration characteristics. The research findings pave the way for the optomechanical applications of perovskite-based smart materials and structures.
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