Vision Analysis of the Influence of Piezoelectric Energy Harvesting on Vibration Damping of a Cantilever Beam

A cantilever beam, manufactured from a steel-carrying substrate and two patches of Macro Fiber Composite of P2 type, was a subject of laboratory research. MFC patches were glued on both sides of the carrying substrate and were parallelly connected. An experimental determination of an optimal resista...

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Autores principales: Dariusz Grzybek, Andrzej Sioma
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Lenguaje:EN
Publicado: MDPI AG 2021
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spelling oai:doaj.org-article:f671753e95174421b11512bde78f17c22021-11-11T15:56:42ZVision Analysis of the Influence of Piezoelectric Energy Harvesting on Vibration Damping of a Cantilever Beam10.3390/en142171681996-1073https://doaj.org/article/f671753e95174421b11512bde78f17c22021-11-01T00:00:00Zhttps://www.mdpi.com/1996-1073/14/21/7168https://doaj.org/toc/1996-1073A cantilever beam, manufactured from a steel-carrying substrate and two patches of Macro Fiber Composite of P2 type, was a subject of laboratory research. MFC patches were glued on both sides of the carrying substrate and were parallelly connected. An experimental determination of an optimal resistance for both energy harvesting and vibration passive damping of the cantilever beam was the purpose of the conducted laboratory research. The research contained 10 experiments in which courses of the energy-harvesting process and resistive passive damping of vibration were estimated. Energy harvesting was estimated by measurements of the generated current for the given load-resistance values. Resistive passive damping of vibration was assessed by using a vision method that enabled the displacements’ measurements of 10 selected points in the beam structure for the given shunt-resistance values. Values of both load resistance and shunt resistance were chosen on the basis of analytically calculated optimal load resistance and optimal shunt resistance. On the basis of the conducted experiments, the resistance range for which both the energy-harvesting process and the vibration-damping process are most effective was determined.Dariusz GrzybekAndrzej SiomaMDPI AGarticlepiezoelectric energy harvestingresistive shunt dampingMacro Fiber Compositevision analysisoptimal load resistanceoptimal shunt resistanceTechnologyTENEnergies, Vol 14, Iss 7168, p 7168 (2021)
institution DOAJ
collection DOAJ
language EN
topic piezoelectric energy harvesting
resistive shunt damping
Macro Fiber Composite
vision analysis
optimal load resistance
optimal shunt resistance
Technology
T
spellingShingle piezoelectric energy harvesting
resistive shunt damping
Macro Fiber Composite
vision analysis
optimal load resistance
optimal shunt resistance
Technology
T
Dariusz Grzybek
Andrzej Sioma
Vision Analysis of the Influence of Piezoelectric Energy Harvesting on Vibration Damping of a Cantilever Beam
description A cantilever beam, manufactured from a steel-carrying substrate and two patches of Macro Fiber Composite of P2 type, was a subject of laboratory research. MFC patches were glued on both sides of the carrying substrate and were parallelly connected. An experimental determination of an optimal resistance for both energy harvesting and vibration passive damping of the cantilever beam was the purpose of the conducted laboratory research. The research contained 10 experiments in which courses of the energy-harvesting process and resistive passive damping of vibration were estimated. Energy harvesting was estimated by measurements of the generated current for the given load-resistance values. Resistive passive damping of vibration was assessed by using a vision method that enabled the displacements’ measurements of 10 selected points in the beam structure for the given shunt-resistance values. Values of both load resistance and shunt resistance were chosen on the basis of analytically calculated optimal load resistance and optimal shunt resistance. On the basis of the conducted experiments, the resistance range for which both the energy-harvesting process and the vibration-damping process are most effective was determined.
format article
author Dariusz Grzybek
Andrzej Sioma
author_facet Dariusz Grzybek
Andrzej Sioma
author_sort Dariusz Grzybek
title Vision Analysis of the Influence of Piezoelectric Energy Harvesting on Vibration Damping of a Cantilever Beam
title_short Vision Analysis of the Influence of Piezoelectric Energy Harvesting on Vibration Damping of a Cantilever Beam
title_full Vision Analysis of the Influence of Piezoelectric Energy Harvesting on Vibration Damping of a Cantilever Beam
title_fullStr Vision Analysis of the Influence of Piezoelectric Energy Harvesting on Vibration Damping of a Cantilever Beam
title_full_unstemmed Vision Analysis of the Influence of Piezoelectric Energy Harvesting on Vibration Damping of a Cantilever Beam
title_sort vision analysis of the influence of piezoelectric energy harvesting on vibration damping of a cantilever beam
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/f671753e95174421b11512bde78f17c2
work_keys_str_mv AT dariuszgrzybek visionanalysisoftheinfluenceofpiezoelectricenergyharvestingonvibrationdampingofacantileverbeam
AT andrzejsioma visionanalysisoftheinfluenceofpiezoelectricenergyharvestingonvibrationdampingofacantileverbeam
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