Flexural Wave Band Gaps in Phononic Crystal Euler-Bernoulli Beams Using Wave Finite Element and Plane Wave Expansion Methods

被引:0
|
作者
Pedrosa de Miranda, Edson Jansen, Jr. [1 ,2 ]
Campos dos Santos, Jose Maria [1 ]
机构
[1] Univ Estadual Campinas, UNICAMP, DMC, Rua Mendeleyev 200, BR-13083970 Campinas, Brazil
[2] Inst Fed Educ Ciencia & Tecnol Maranhao IFMA, DEP, Rua Afonso Pena 174, BR-65010030 Sao Luis, MA, Brazil
关键词
1D phononic crystal; Euler-Bernoulli beam; flexural vibration; band gaps; vibration control; PERIODIC STRUCTURES; STOP-BANDS; VIBRATIONS; PLATES; PROPAGATION; ARRAYS; CONVERGENCE; MATRIX;
D O I
10.1590/1980-5373-MR-2016-0877
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We investigate theoretically and experimentally the forced response of flexural waves propagating in a 1D phononic crystal (PC) Euler-Bernoulli beam, composed by steel and polyethylene, and its band structure. The finite element, spectral element, wave finite element, wave spectral element, conventional and improved plane wave expansion methods are applied. We demonstrate that the vibration attenuation of the unit cell can be improved choosing correctly the polyethylene and steel quantities and we suggest the best percentages of these materials, considering different unit cell lengths. An experiment with a 1D PC beam is proposed and the numerical results can localize the band gap position and width close to the experimental results. A small Bragg-type band gap with low attenuation is observed between 405 Hz - 720 Hz. The 1D PC beam with unit cells of steel and polyethylene presents potential application for vibration control.
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页码:729 / 742
页数:14
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