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Band gap control of phononic beam with negative capacitance piezoelectric shunt
  • 时间:0
  • 分类:O422[理学—声学;理学—物理] TQ127.11[化学工程—无机化工]
  • 作者机构:[1]Institute of Mechatronical Engineering, National University of Defense Technology, Changsha 410073, China, [2]Key Laboratory of Photonic and Phononic Crystal of Ministry of Education, National University of Defense Technology, Changsha 410073, China
  • 相关基金:Project supported by the National Natural Science Foundation of China (Grant Nos. 50875255 and 10902123).
  • 相关项目:基于声子晶体理论的周期结构带隙特性设计及减振降噪应用探索
中文摘要:

Periodic arrays of negative capacitance shunted piezoelectric patches are employed to control the band gaps of phononic beams.The location and the extent of induced band gap depend on the mismatch in impedance generated by each patch.The total impedance mismatch is determined by the added mass and stiffness of each patch as well as the shunting electrical impedance.Therefore,the band gap of the shunted phononic beam can be actively tuned by appropriately selecting the value of negative capacitance.The control of the band gap of phononic beam with negative capacitive shunt is demonstrated numerically by employing transfer matrix method.The result reveals that using negative capacitive shunt to tune the band gap is effective.

英文摘要:

Periodic arrays of negative capacitance shunted piezoelectric patches are employed to control the band gaps of phononic beams. The location and the extent of induced band gap depend on the mismatch in impedance generated by each patch. The total impedance mismatch is determined by the added mass and stiffness of each patch as well as the shunting electrical impedance. Therefore, the band gap of the shunted phononic beam can be actively tuned by appropriately selecting the value of negative capacitance. The control of the band gap of phononic beam with negative capacitive shunt is demonstrated numerically by employing transfer matrix method. The result reveals that using negative capacitive shunt to tune the band gap is effective.

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