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摘要

本文研究了采用压电主动控制的带尖端质量的夹层梁的减振问题。夹层梁的核心由泡沫制成,面板由钢制成,带有粘结式压电致动器和传感器。三层夹心梁在一端夹紧,在另一端携带有效载荷。尖端质量是这样的,它的质心与附着点相偏移。将扩展的高阶夹层板理论与哈密顿原理相结合,导出了运动控制方程和边界条件。得到的偏微分方程用广义微分求积(GDQ)方法求解。进行了自由振动和强迫振动分析,并与商用有限元软件ANSYS的结果进行了比较。采用微分反馈控制算法控制系统的振动。通过参数化研究,考察了压电传感器和作动器的布置对系统振动特性的影响。
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Piezoelectric Vibration Control of a Sandwich Beam With Tip Mass
This paper studies the vibration mitigation of a sandwich beam with tip mass using piezoelectric active control. The core of the sandwich beam is made of foam and the face sheets are made of steel with a bonded piezoelectric actuator and sensor. The three-layer sandwich beam is clamped at one end and carries a payload at the other end. The tip mass is such that its center of mass is offset from the point of attachment. The extended higher-order sandwich panel (HSAPT) theory is employed in conjunction with the Hamilton’s principle to derive the governing equations of motion and boundary conditions. The obtained partial differential equations are solved using the generalized differential quadrature (GDQ) method. Free and forced vibration analyses are carried out and the results are compared with those obtained from the use of the commercial finite element software ANSYS. Derivative feedback control algorithm is employed to control the vibration of the system. Parametric studies are conducted to examine the arrangement impact of the piezoelectric sensors and actuators on the system vibrational behavior.
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