The asymptotic homogenization method (AHM) yields a two-scale procedure to obtain the effective properties of a composite material containing a periodic distribution of unidirectional circular cylindrical holes in a linear transversely isotropic piezoelectric matrix. The matrix material belongs to the symmetry crystal class 622. The holes are centered in a periodic array of cells of square cross sections and the periodicity is the same in two perpendicular directions. The composite state is antiplane shear piezoelectric, that is, a coupled state of out-of-plane shear deformation and in-plane electric field. Local problems that arise from the two-scale analysis using the AHM are solved by means of a complex variable method. For this, the solutions are expanded in power series of Weierstrass elliptic functions, which contain coefficients that are determined from the solutions of infinite systems of linear algebraic equations. Truncating the infinite systems up to a finite, but otherwise arbitrary, order of approximation, we obtain analytical formulas for effective elastic, piezoelectric, and dielectric properties, which depend on both the volume fraction of the holes and an electromechanical coupling factor of the matrix. Numerical results obtained from these formulas are compared with results obtained by the Mori–Tanaka approach. The results could be useful in bone mechanics.
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September 2013
Research-Article
Effective Electromechanical Properties of 622 Piezoelectric Medium With Unidirectional Cylindrical Holes
Adair Roberto Aguiar,
Adair Roberto Aguiar
1
PPG Interunidades Bioengenharia
- EESC/FMRP/IQSC
Universidade de São Paulo – USP
São Carlos,
e-mail: aguiarar@sc.usp.br
- EESC/FMRP/IQSC
Departamento de Engenharia de Estruturas, EESC
Universidade de São Paulo – USP
São Carlos,
Brasil
e-mail: aguiarar@sc.usp.br
1Corresponding author.
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Julián Bravo Castillero,
Reinaldo Rodríguez Ramos,
Reinaldo Rodríguez Ramos
e-mail: reinaldo@matcom.uh.cu
Universidad de La Habana
San Lázaro y L. Vedado
Habana 4, CP-10400,
Facultad de Matemática y Computación
Universidad de La Habana
San Lázaro y L. Vedado
Habana 4, CP-10400,
Cuba
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Uziel Paulo da Silva
Uziel Paulo da Silva
PPG Interunidades Bioengenharia
- EESC/FMRP/IQSC
Universidade de São Paulo – USP
São Carlos,
e-mail: uziel@sc.usp.br
- EESC/FMRP/IQSC
Universidade de São Paulo – USP
São Carlos,
Brasil
e-mail: uziel@sc.usp.br
Search for other works by this author on:
Adair Roberto Aguiar
PPG Interunidades Bioengenharia
- EESC/FMRP/IQSC
Universidade de São Paulo – USP
São Carlos,
e-mail: aguiarar@sc.usp.br
- EESC/FMRP/IQSC
Departamento de Engenharia de Estruturas, EESC
Universidade de São Paulo – USP
São Carlos,
Brasil
e-mail: aguiarar@sc.usp.br
Julián Bravo Castillero
e-mail: jbravo@matcom.uh.cu
Reinaldo Rodríguez Ramos
e-mail: reinaldo@matcom.uh.cu
Universidad de La Habana
San Lázaro y L. Vedado
Habana 4, CP-10400,
Facultad de Matemática y Computación
Universidad de La Habana
San Lázaro y L. Vedado
Habana 4, CP-10400,
Cuba
Uziel Paulo da Silva
PPG Interunidades Bioengenharia
- EESC/FMRP/IQSC
Universidade de São Paulo – USP
São Carlos,
e-mail: uziel@sc.usp.br
- EESC/FMRP/IQSC
Universidade de São Paulo – USP
São Carlos,
Brasil
e-mail: uziel@sc.usp.br
1Corresponding author.
2See, for instance, [2] for the classification of crystal classes.
Manuscript received July 10, 2012; final manuscript received December 6, 2012; accepted manuscript posted January 22, 2013; published online July 19, 2013. Assoc. Editor: Martin Ostoja-Starzewski.
J. Appl. Mech. Sep 2013, 80(5): 050905 (11 pages)
Published Online: July 19, 2013
Article history
Received:
July 10, 2012
Revision Received:
December 6, 2012
Accepted:
January 22, 2013
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Citation
Roberto Aguiar, A., Bravo Castillero, J., Rodríguez Ramos, R., and Paulo da Silva, U. (July 19, 2013). "Effective Electromechanical Properties of 622 Piezoelectric Medium With Unidirectional Cylindrical Holes." ASME. J. Appl. Mech. September 2013; 80(5): 050905. https://doi.org/10.1115/1.4023475
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