Piezoelectric Energy Characterization: Materials and Utilization
DOI:
https://doi.org/10.31686/ijier.vol7.iss11.1982Keywords:
Piezoelectric effect, Alternative source, Renewable energyAbstract
This article exposes a new form of alternative and clean power generation. Being its objective to characterize, the models and use of the existing materials that comes to be more useful to generate energy. Bibliographic research was used as a method for data collection, through the study of existing articles that open the piezoelectric system. From the evaluation of the existing data, it was observed that to quantify the energy generation of these materials, besides simulating in software the amount generated is made the prototype for accurate measurement of the generated energy values. However, this is a task that requires a lot of study, so that, finally, it can reach usable values to supply the desired electrical systems. The results show that the amount of energy generated is different for each method used, which depends on the type of material and the harvesting procedures performed, among the most used materials is the "cantilever" being the best in relation to the generation of Therefore, it is evident that the present article seeks to demonstrate the existing modes of generation through the use of this piezoelectric effect. Thus, it is expected to draw attention to this type of electricity production.
Downloads
References
[2] FERREIRA LFSS. Sistema de geração de energia via sensores piezoelétricos. Monografia (Graduação) - Faculdade de Tecnologia e Ciências Sociais Aplicadas, Centro Universitário de Brasília. 2017.
[3] ARMENDANI WA, VIEIRA RF, SOUZA RVd, VICTOR A, FÁBIO AS. Conhecendo a Piezoeletricidade Uma Nova Forma de Geração de. Revista Científica Multidisciplinar Núcleo do Conhecimento. 2016; 9.
[4] RANGEL Rf. Cracterização de uma célula tubular piezoelétrica para geração de energia elétrica. Dissertação (Mestrado)- UFP/CEAR. 2014.
[5] HEHN T, MANOLI Y. CMOS Circuits for Piezoelectric Energy Harvesters: Efficient Power Extraction, Interface Modeling and Loss Analysis. In.: Springer; 2014. p. 21.
[6] PEREIRA AHA. ATCP Engenharia Física. [Online].; 2010 [cited 2019 04 28. Available from: www.atcp.com.br.
[7] CAVALCANTI CCT. O DIREITO DA ENERGIA NO CONTEXTO IBERO-BRASILEIRO Rio de Janeiro: SYNERGIA; 2017.
[8] GOMES DS, LANDIM GJGC, ALVARENGA SdDd. CONSTRUÇÃO DE TAPETE PIEZOELÉTRICO; 2016.
[9] PRODANOV CC, FREITAS ECd. Metodologia do Trabalho Científico: Métodos e Técnicas da Pesquisa e do Trabalho Acadêmico. 2nd ed. Novo Hamburgo: Feevale; 2013.
[10] FANTINATO M. Métodos de Pesquisa. Apresentação de aula, USP. 2015.
[11] Wu J. Advances in Lead-Free Piezoelectric Materials Chengdu: Springer; 2018.
[12] SANCHES FM. Sistema de geração e armazenamento de energia elétrica utilizando transdutor piezelétrico na forma pulsada. 2015.
[13] PERLINGEIRO AR, PIMENTA GM, SILVA SEd. GERAÇÃO DE ENERGIA ATRAVÉS DE MATERIAIS PIEZOELÉTRICOS. 2016.
[14] MAKKI N, POP-LLIEZ R. Piezoceramic benders attached to pneumatic tires use the cyclic deformation of the contact patch to generate energy for onboard electronics. SPIE. 2011; Published online.
[15] Atelier DNA laboratório de design. [Online]. [cited 2019 10 30. Available from: https://atelierdna.com/2017/07/31/windstalk/.
[16] SILVA RPD. PIEZOELETRICIDADE COMO FONTE DE ENERGIA ALTERNATIVA. Revista Científica Semana Acadêmica. 2018; 01(000121).
[17] Julião A. Tecnologia e meio Ambiente. Reportagem Revista ISTO É. Brasil. Disponível em: https://istoe.com.br › 120955_CONEXAO+SEM+FIO. 21 de jan. de 2016. Acessado em 10/11/2019.
[18] Biblioteca Kurzweil • acelerando a inteligência. [Online].; 2011 [cited 2019 Outubro 10 [Innowattech | Coleta de energia mecânica de estradas para produzir eletricidade]. Available from: https://www.kurzweilai.net/innowattech-harvests-mechanical-energy-from-roadways.
[19] PAVEGEN. [Online].; 2019 [cited 2019 Outubro 14. Available from: https://pavegen.com/.
[20] CALHEIROS DM. MICROGERAÇÃO DE ENERGIA ELÉTRICA ATRAVÉS DO EXERCÍCIO FÍSICO. 2016.
[21] MOREIRA FILHO RP. Análise e caracterização da potência elétrica gerada com elemento piezoelétrico. Dissertação (Mestrado em Engenharia Elétrica) - Universidade Federal da Paraí¬ba, João Pessoa. 2014: p. 142.
[22] MORAES RdM. Desenvolvimento de sistema para coleta. 1 recurso online (110 p.). Dissertação (mestrado) - Universidade Estadual de Campinas, Faculdade de Engenharia Mecânica. 2018.
[23] FERREIRA ALG. PLATAFORMA ENERGÉTICA A PARTIR DE DISCOS PIEZOELÉTRICOS. Monografia. 2015.
[24] RODRIGUES SR. ANÁLISE EXPERIMENTAL DO EFEITO PIEZOELÉTRICO PARA A GERAÇÃO DE ENERGIA ELÉTRICA. REDE DOCTUM DE ENSINO,INSTITUTO TECNOLÓGICO DE CARATINGA. 2016.
[25] SCHONARTH AdO. Geração de energia limpa através de materiais piezoelétricos poliméricos e do vento. Universidade Federal da Fronteira Sul, Campus Cerro Largo. 2017: p. 94.
[26] SANTOS JCD. AVALIAÇÃO DO EFEITO DIRETO DE DISCOS. 2017. UNIVERSIDADE FEDERAL DO RECÔNCAVO DA BAHIA- CENTRO DE CIÊNCIAS EXATAS E TECNOLÓGICAS- BACHARELADO EM CIÊNCIAS EXATAS E TECNOLÓGICAS.
[27] JESUS FD, ALMEIDA JED, SILVA JAPD, CARRARA J. TAPETE PIEZOELÉTRICO GERADOR DE ENERGIA ELÉTRICA. 2014: p. 42 f.
[28] SOUSA LCd, COSTA MF, ANDRADE GAd, PAURA ENC. Estudo sobre o potencial de geração de energia elétrica para semáforos a partir de placas piezoelétricas na MA 006. Revista Brasileira de Iniciação Científica. 2016; 3: p. 46.
[29] KIEPPER HP. Análise de um sistema piezoelétrico de colheita energética. 2018.
Downloads
Published
Issue
Section
License
Copyright (c) 2019 Oneida Ribeiro Tavares, Fabiana Rocha Pinto, David Barbosa de Alencar, Manoel Henrique Reis Nascimento

This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License.
Copyrights for articles published in IJIER journals are retained by the authors, with first publication rights granted to the journal. The journal/publisher is not responsible for subsequent uses of the work. It is the author's responsibility to bring an infringement action if so desired by the author for more visit Copyright & License.
How to Cite
Most read articles by the same author(s)
- Samuel Guimaraes Ferreira, Livia da Silva Oliveira, David Barbosa de Alencar, Application of Energy Efficiency in A Company Through A Photovoltaic Energy System on Grid , International Journal for Innovation Education and Research: Vol. 8 No. 11 (2020): International Journal for Innovation Education and Research
- Brunno Vasconcelos Costa, Fabiana Rocha Pinto, David Barbosa de Alencar, Alexandra Priscilla Tregue Costa, Francisco Carlos Tavares Amorim, ABC Curve Application in Materials Stock Optimization in a Restaurant in Manaus - Amazonas , International Journal for Innovation Education and Research: Vol. 7 No. 10 (2019): International Journal for Innovation Education and Research
- Antônio Jackson Sabino da Silva, Livia da Silva Oliveira, David Barbosa de Alencar, Antônio Estanislau Sanches, Water Pump Management Using Photovoltaic Plates in Santa Fe - Amazonas Community , International Journal for Innovation Education and Research: Vol. 7 No. 10 (2019): International Journal for Innovation Education and Research
- Paulo Moisés Godinho Feitosa, David Barbosa de Alencar, Alexandra Priscilla Tregue Costa, Manoel Henrique Reis Nascimento, Scrap Cost Reduction Process Improvement Actions in a Microwave Assembly Plant , International Journal for Innovation Education and Research: Vol. 7 No. 11 (2019): International Journal for Innovation Education and Research
- Yasmin Souza de Carvalho, Elizeu Moraes da Silva, Fabiana Rocha Pinto, David Barbosa de Alencar, Igor Felipe Oliveira Bezerra, Piezoeletricity as an Alternative Source of Electric Power Generation in an Education Institution in the Amazon , International Journal for Innovation Education and Research: Vol. 7 No. 11 (2019): International Journal for Innovation Education and Research
- Nayane Nogueira da Silva, Fabiana Rocha Pinto , David Barbosa de Alencar, Ricardo Silva Parente, Transformation of Plastic Waste into Fuel by Pyrolysis , International Journal for Innovation Education and Research: Vol. 7 No. 11 (2019): International Journal for Innovation Education and Research
- Luã Platão Seabra Paiva, Livia da Silva Oliveira, David Barbosa de Alencar, Paulo Oliveira Siqueira Júnior, Predictive Maintenance Through Thermographic Analysis: Case Study in a Manaus Industrial Pole Company , International Journal for Innovation Education and Research: Vol. 7 No. 11 (2019): International Journal for Innovation Education and Research
- Geovani da Silva Monteiro, Luiz André Martins Pereira, David Barbosa de Alencar, Antônio Estanislau Sanches, Carlos Eduardo de Oliveira, Igor Felipe Oliveira Bezerra, Reverse Aftermarket Logistics in E-Commerce a Case Study in a Manaus Microenterprise , International Journal for Innovation Education and Research: Vol. 7 No. 9 (2019): International Journal for Innovation Education and Research
- João Bosco Rodrigues Pereira, David Barbosa de Alencar, Alexandra Priscilla Tregue Costa, Antônio Estanislau Sanches, Methodology for Indirect Material Control in a White Line Company , International Journal for Innovation Education and Research: Vol. 7 No. 11 (2019): International Journal for Innovation Education and Research
- Marcos Raiker Printes Ferreira, David Barbosa de Alencar, Felipe Wilson Leão da Silva, Fábio Martins da Silva, Consuelo Alves da Frota, Influence of Milled Material and Construction Waste on the Properties of a Typical Soil of Iranduba City - AM / BR , International Journal for Innovation Education and Research: Vol. 7 No. 12 (2019): International Journal for Innovation Education and Research