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Nonlinearity analysis of piezoelectric micromachined ultrasonic transducers based on couple stress theory 被引量:4

Nonlinearity analysis of piezoelectric micromachined ultrasonic transducers based on couple stress theory
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摘要 This paper studies the static deformation behavior of a piezoelectric micromachined ultrasonic transducer (PMUT) actuated by a strong external electric field. The transducer membrane consists of a piezoelectric layer, a passive layer and two electrode layers. The nonlinearities of the piezoelectric layer caused by electrostriction under a strong electric field are analyzed. Because the thickness of the transducer membrane is on the microscale, the size dependence of the deformation behavior is evaluated using the couple stress theory. The results show that the optimal ratio of the top electrode diameter and the membrane diameter is around 0.674. It is also found that this optimal value does not depend on any other parameters if the thicknesses of the two electrodes are negligible compared with those of the piezo- electric and passive layers. In addition, the nonlinearities of the piezoelectric layer will become stronger along with the increase of the electric field, which means that softening of the membrane stiffness occurs when a strong external electric field is applied. Meanwhile, the optimal thickness ratio for the passive layer and the piezoelectric layer is not equal to 1.0 which is usually adopted by previous researchers. Because there exists size dependence of membrane deforma-tion, the optimal value of this thickness ratio needs to be greater than 1.0 on the microscale. This paper studies the static deformation behavior of a piezoelectric micromachined ultrasonic transducer (PMUT) actuated by a strong external electric field. The transducer membrane consists of a piezoelectric layer, a passive layer and two electrode layers. The nonlinearities of the piezoelectric layer caused by electrostriction under a strong electric field are analyzed. Because the thickness of the transducer membrane is on the microscale, the size dependence of the deformation behavior is evaluated using the couple stress theory. The results show that the optimal ratio of the top electrode diameter and the membrane diameter is around 0.674. It is also found that this optimal value does not depend on any other parameters if the thicknesses of the two electrodes are negligible compared with those of the piezo- electric and passive layers. In addition, the nonlinearities of the piezoelectric layer will become stronger along with the increase of the electric field, which means that softening of the membrane stiffness occurs when a strong external electric field is applied. Meanwhile, the optimal thickness ratio for the passive layer and the piezoelectric layer is not equal to 1.0 which is usually adopted by previous researchers. Because there exists size dependence of membrane deforma-tion, the optimal value of this thickness ratio needs to be greater than 1.0 on the microscale.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第1期104-111,共8页 力学学报(英文版)
基金 supported by the National Natural Science Foundation of China (11172138, 10727201)
关键词 Piezoelectric micromachined ultrasonic trans- ducer (PMUT) Couple stress theory Static deformation - Nonlinearity analysis Piezoelectric micromachined ultrasonic trans- ducer (PMUT) Couple stress theory Static deformation - Nonlinearity analysis
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  • 1王锋,唐国金,李道奎.含压电片复合材料层合板的高阶计算模型[J].复合材料学报,2005,22(1):164-170. 被引量:6
  • 2姚林泉,丁睿.非线性压电效应下压电层合板的弯曲[J].应用力学学报,2005,22(1):107-110. 被引量:6
  • 3Shu J Y,Int J Solids Struct,1998年,35卷,1363页
  • 4Chen J W,J Mech Phys Solids,1998年,46卷,5期,789页
  • 5Nix W D,J Mech Phys Solids,1998年,46卷,411页
  • 6Hwang K C,Mat Sci Res Int,1998年,4卷,4期,227页
  • 7Huang Y,Adv Fracture Research(Ninth Int Conf Fracture),1997年,5卷,2275页
  • 8Huang Y,J Mech Phys Solids,1997年,45卷,439页
  • 9Wei Y,J Mech Phys Solids,1997年,45卷,1253页
  • 10Smyshlyaev V P,J Mech Phys Solids,1996年,44卷,465页

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