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Five-port equivalent electric circuit of piezoelectric bimorph beam

机译:压电双压电晶片梁的五端口等效电路

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Electromechanical behavior of a three-layered piezoelectric bimorph beam is represented by an electrically equivalent circuit with impedance elements. Each impedance is determined from the components of the electrically equivalent 5 X 5 impedance matrix. The derivation of the impedance matrix is based on a bimorph beam theory where vertical and angular displacements at each end of the beam are considered. The impedance matrix thus consist of one electrical, four mechanical and one electromechanical coupling loops. Entire electromechanical flows and efforts accordingly have one electrical and four mechanical ports. For an electromechanical system where other mechanical or electrical components are attached to the bimorph, an equivalent electric circuit of the system can be thus generated by connecting the electrically equivalent impedances to the circuit according to the mechanical boundary conditions or external mechanical components. The characteristics of the electromechanical system, e.g., an electrical admittance, can be obtained from the equivalent circuit. As examples, three different types of mechanical boundary conditions - free, simply supported and cantilevered are considered, and the equivalent circuits are drawn with each port opened or closed according to the boundary conditions. Two examples of external mechanical systems attached to the bimorph are also shown, i.e., a cantilevered bimorph beam with, a mass-spring-damper system attached to its free end, and a segmented piezoelectric bimorph beam with an extended substrate arm, In each case, an equivalent circuit is also drawn and the electrical admittance is directly derived from the circuit. The resonance and antiresonance frequencies are accordingly calculated, and it is found that the five-pea equivalent electric circuit of the piezoelectric bimorph beam presented in this paper yields an exact expression for the Vibration of the piezoelectric bimorph. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 28]
机译:三层压电双压电晶片梁的机电性能由带有阻抗元件的等效电路表示。每个阻抗由等效的5 X 5阻抗矩阵的分量确定。阻抗矩阵的推导基于双压电晶片原理,其中考虑了梁两端的垂直位移和角位移。因此,阻抗矩阵由一个电,四个机械和一个机电耦合回路组成。因此,整个机电流程和工作量具有一个电气端口和四个机械端口。对于将其他机械或电气组件连接到双压电晶片的机电系统,可以通过根据机械边界条件或外部机械组件将电气等效阻抗连接到电路,从而生成系统的等效电路。机电系统的特性,例如电导率,可以从等效电路中获得。例如,考虑了三种不同类型的机械边界条件-自由,简单支撑和悬臂,并且根据边界条件在打开或关闭每个端口的情况下绘制了等效电路。还显示了连接到双压电晶片的外部机械系统的两个示例,即悬臂式双压电晶片梁,其自由端连接有质量弹簧-阻尼器系统,以及分段的压电双压电晶片梁,其具有延伸的基板臂,在每种情况下此外,还绘制了等效电路,并且直接从该电路得出电导率。据此计算出共振频率和反共振频率,发现本文提出的压电双压电晶片梁的五豌豆等效电路给出了压电双压电晶片振动的精确表达式。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:28]

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