Multi-layer piezoelectric stack is a transducer stacked by numerous thin piezo layers which can convert an electrical energy into a mechanical energy in transmitter mode (actuators or vibrators) and can also convert a mechanical energy into an electrical energy in receiver mode (sensors and energy harvesters). Modelling vibrations of multi-layer piezoelectric stack plays a key role in design, fabrication and optimization of many multi-layer piezoelectric stack–based applications. In this article, a simplified transfer matrix of multi-layer piezoelectric stack, which considers the whole multi-layer piezoelectric stack to be an equivalent homogenous bulk, is proposed and formulated to model multi-layer piezoelectric stack–based vibration. When compared with a direct analytical method, the proposed transfer matrix greatly facilitates derivation of analytical solutions or direct calculations when multi-layer piezoelectric stack is stacked with other structures. Compared with using the transfer matrix proposed in the literature, which is subjected to individual piezo layer in multi-layer piezoelectric stack, the proposed simplified transfer matrix contributes to a much simpler form of analytical solution and greatly reduces the computational effort. Case studies have been carried out, which validate the effectiveness of the proposed simplified transfer matrix of multi-layer piezoelectric stack in both transmitter mode and receiver mode.
[1]
Daniel J. Inman,et al.
Piezoelectric energy harvesting from broadband random vibrations
,
2009
.
[2]
K. Mazaheri,et al.
Parametric study of
,
2019
.
[3]
Lei Chen,et al.
An enhanced physics-based model to estimate the displacement of piezoelectric actuators
,
2015
.
[4]
P. Bloomfield,et al.
Multilayer transducer transfer matrix formalism
,
2002,
IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[5]
Toshiki Niino,et al.
Fundamental Study of a Stacked Lithium Niobate Transducer
,
2001
.
[6]
Hiroshi Hosaka,et al.
Resonant-Type Smooth Impact Drive Mechanism Actuator Operating at Lower Input Voltages
,
2013
.
[7]
Said F. Al-Sarawi,et al.
Formulation of a simple distributed-parameter model of multilayer piezoelectric actuators
,
2016
.
[8]
Wei Gao,et al.
Construction and verification of a linear-rotary microstage with a millimeter-scale range
,
2013
.
[9]
서장후,et al.
Energy Harvesting
,
2013
.
[10]
Xiaoning Jiang,et al.
Energy harvesting using a PZT ceramic multilayer stack
,
2013
.