Four-point bending piezoelectric energy harvester with uniform surface strain toward better energy conversion performance and material usage
Majid Khazaee, John E. Huber, Lasse Rosendahl, Alireza Rezania

TL;DR
This paper introduces a four-point bending piezoelectric energy harvester that achieves over three times higher energy conversion efficiency than traditional cantilever harvesters by ensuring uniform surface strain and optimizing parameters.
Contribution
The study develops and validates an analytical model for four-point bending harvesters, demonstrating improved efficiency and fatigue performance over standard cantilever designs.
Findings
Energy conversion coefficient is over three times higher.
Axial strain is significantly lower, enhancing fatigue life.
Optimal conditions maximize power generation and efficiency.
Abstract
Improving the energy conversion efficiency of piezoelectric energy harvesters is of great importance, and one approach is to make more uniform use of the working material by ensuring a uniform strain state. To achieve better performance, this paper presents a four-point bending piezoelectric energy harvester with extensive investigation and modeling to identify the influential parameters. An electromechanical analytical model is presented and verified by experimental data. The frequency-domain method extracts the solutions for a general time-variable force and impact. Four-point bending is compared with the standard cantilever harvesters regarding voltage generation, mechanical strain, and figure of merit. Strain contours are analyzed and interpreted for this innovative approach, and the power generation by the optimal resistance load is studied. Dimensionless parameters are introduced…
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Taxonomy
TopicsInnovative Energy Harvesting Technologies · Advanced Sensor and Energy Harvesting Materials · Vibration and Dynamic Analysis
