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首页> 外文期刊>Journal of Sound and Vibration >Modelling and vibration control of beams with partially debonded active constrained layer damping patch
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Modelling and vibration control of beams with partially debonded active constrained layer damping patch

机译:具有部分剥离的主动约束层阻尼贴片的梁的建模和振动控制

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A detailed model for the beams with partially debonded active constraining damping (ACLD) treatment is presented. In this model, the transverse displacement of the constraining layer is considered to be non-identical to that of the host structure. In the perfect bonding region, the viscoelastic core is modelled to carry both peel and shear stresses, while in the debonding area, it is assumed that no peel and shear stresses be transferred between the host beam and the constraining layer. The adhesive layer between the piezoelectric sensor and the host beam is also considered in this model. In active control, the positive position feedback control is employed to control the first mode of the beam. Based on this model, the incompatibility of the transverse displacements of the active constraining layer and the host beam is investigated. The passive and active damping behaviors of the ACLD patch with different thicknesses, locations and lengths are examined. Moreover, the effects of debonding of the damping layer on both passive and active control are examined via a simulation example. The results show that the incompatibility of the transverse displacements is remarkable in the regions near the ends of the ACLD patch especially for the high order vibration modes. It is found that a thinner damping layer may lead to larger shear strain and consequently results in a larger passive and active damping. In addition to the thickness of the damping layer, its length and location are also key factors to the hybrid control. The numerical results unveil that edge debonding can lead to a reduction of both passive and active damping, and the hybrid damping may be more sensitive to the debonding of the damping layer than the passive damping. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 19]
机译:提出了具有部分脱胶主动约束阻尼(ACLD)处理的梁的详细模型。在此模型中,约束层的横向位移被认为与主体结构的横向位移不同。在理想的粘结区域中,对粘弹性芯进行建模以同时承受剥离应力和剪切应力,而在剥离区域中,假定没有剥离应力和剪应力在主梁和约束层之间传递。该模型中还考虑了压电传感器和主梁之间的粘合剂层。在主动控制中,采用正位置反馈控制来控制光束的第一模式。基于该模型,研究了主动约束层与主梁的横向位移的不相容性。研究了不同厚度,位置和长度的ACLD贴片的被动和主动阻尼行为。此外,通过仿真示例检查了阻尼层剥离对被动和主动控制的影响。结果表明,横向位移的不相容性在ACLD贴片的端部附近区域非常明显,特别是对于高阶振动模式。已经发现,较薄的阻尼层可能导致较大的剪切应变,并因此导致较大的被动和主动阻尼。除了阻尼层的厚度外,阻尼层的长度和位置也是混合控制的关键因素。数值结果表明,边缘剥离会导致被动和主动阻尼都降低,并且混合阻尼对阻尼层的剥离比被动阻尼更敏感。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:19]

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