Yan Zhi, Jiang Liying
Department of Mechanics, Huazhong University of Science and Technology, Wuhan 430074, China.
Hubei Key Laboratory of Engineering Structural Analysis and Safety Assessment, Luoyu Road 1037, Wuhan 430074, China.
Nanomaterials (Basel). 2017 Jan 26;7(2):27. doi: 10.3390/nano7020027.
Piezoelectric nanomaterials (PNs) are attractive for applications including sensing, actuating, energy harvesting, among others in nano-electro-mechanical-systems (NEMS) because of their excellent electromechanical coupling, mechanical and physical properties. However, the properties of PNs do not coincide with their bulk counterparts and depend on the particular size. A large amount of efforts have been devoted to studying the size-dependent properties of PNs by using experimental characterization, atomistic simulation and continuum mechanics modeling with the consideration of the scale features of the nanomaterials. This paper reviews the recent progresses and achievements in the research on the continuum mechanics modeling of the size-dependent mechanical and physical properties of PNs. We start from the fundamentals of the modified continuum mechanics models for PNs, including the theories of surface piezoelectricity, flexoelectricity and non-local piezoelectricity, with the introduction of the modified piezoelectric beam and plate models particularly for nanostructured piezoelectric materials with certain configurations. Then, we give a review on the investigation of the size-dependent properties of PNs by using the modified continuum mechanics models, such as the electromechanical coupling, bending, vibration, buckling, wave propagation and dynamic characteristics. Finally, analytical modeling and analysis of nanoscale actuators and energy harvesters based on piezoelectric nanostructures are presented.
压电纳米材料(PNs)因其优异的机电耦合、机械和物理性能,在纳米机电系统(NEMS)的传感、驱动、能量收集等应用中具有吸引力。然而,PNs的性能与其块体材料不同,且取决于特定的尺寸。通过使用实验表征、原子模拟和连续介质力学建模,并考虑纳米材料的尺度特征,人们已投入大量精力来研究PNs的尺寸依赖性特性。本文综述了PNs尺寸依赖性力学和物理性能连续介质力学建模研究的最新进展和成果。我们从PNs修正连续介质力学模型的基本原理开始,包括表面压电性、挠曲电和非局部压电性理论,并特别介绍了适用于具有特定构型的纳米结构压电材料的修正压电梁和板模型。然后,我们综述了利用修正连续介质力学模型对PNs尺寸依赖性特性的研究,如机电耦合、弯曲、振动、屈曲、波传播和动态特性。最后,给出了基于压电纳米结构的纳米级致动器和能量收集器的解析建模与分析。