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Surface damping effect of anchored constrained viscoelastic layers on the flexural response of simply supported structures

机译:锚固约束粘弹性层对简单支撑结构的挠曲响应的表面阻尼作用

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Viscoelastic (VE) materials are commonly used to control vibration-induced fatigue in airframes and to suppress general vibration in various structures. This study investi gates the effects of anchored constrained VE layers on the flexural response of simply supported Euler beams or plate strips under base excitations. Emphasis is placed on the development of two surface damping treatments: one VE layer anchored at one end, and two VE layers anchored at their different ends. Each anchorage is realized with a thin stiff layer in tension, such as a fiber reinforced polymer sheet, bonded to the surface of a VE layer and anchored to one end of the beam for maximum shear deformation in the constrained VE layer. Non-uniform shear deformation in VE layers is taken into account in the new solution formulation. Sensitivity analyses are performed to understand and quantify the effects of various parameters on flexural responses of the structures. The minimum thickness of VE layers is mainly bounded by the relative stiffness between the VE layers and the constraining face layer. The performances of various configurations are compared and the two-end anchored configuration is found most effective in vibration suppression.
机译:粘弹性(VE)材料通常用于控制机身中的振动引起的疲劳并抑制各种结构中的一般振动。这项研究探讨了在基本激励下,锚固约束VE层对简单支撑的Euler梁或板条的挠曲响应的影响。重点放在两种表面阻尼处理的发展上:一层锚固在一端的VE层,以及两层锚固在它们不同端的VE层。每种锚固均采用薄的刚性刚性层(例如纤维增强的聚合物片材)实现,该刚性层粘结到VE层的表面并锚定到梁的一端,以在受约束的VE层中实现最大的剪切变形。在新的溶液配方中,考虑了VE层中的非均匀剪切变形。进行敏感性分析以了解和量化各种参数对结构弯曲响应的影响。 VE层的最小厚度主要由VE层和约束面层之间的相对刚度限制。比较了各种配置的性能,发现两端锚固配置在抑制振动方面最有效。

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