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초록
A finite element for planar beams with active constrained layer damping treatments is presented. Features of this non-shear locking element include a time-domain viscoelastic material model, and the ability to readily accommodate segmented(i.e. non-continuous) constraining layers. These features are potentially important in active control applications : the frequency - dependent stiffness and damping of the viscoelastic material directly affects system modal frequencies and damping; the high local damping of the viscoelastic layer can result in complex vibration modes and differences in the relative phase of vibration between points; and segmentation, an affords multiple control inputs and improved performance in an active constrained layer application. The anelastic displacement fields (ADF) method is used to implement the viscoelastic material model, enabling the straightforward development of time-domain finite elements. The performance of the finite element is verified based on discrete strain sensing. Because of phasing associated with mode shapes, control using a single continuous ACL can be destabilizing. A segmented ACL is more robust than the continuous treatment, in that the damping of modes at least up to the number of independent patches is increased by control action.
- 제목
- A Finite Element for Beams Having Segmented Active Constrained Layers with Frequency-Dependent Viscoelastic Material Properties
- 제목 (타언어)
- 주파수특성을 갖는 점탄성재료를 이용하는 능동형구속층을 갖는 보의 유한요소
- 저자
- LEE USIK
- 학회명
- SPIE's 4th Annual Symposium on Smart Structures and Materials