首页> 外文期刊>International journal of structural stability and dynamics >PARTIAL CONSTRAINED VISCOELASTIC DAMPING TREATMENT OF STRUCTURES: A MODAL STRAIN ENERGY APPROACH
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PARTIAL CONSTRAINED VISCOELASTIC DAMPING TREATMENT OF STRUCTURES: A MODAL STRAIN ENERGY APPROACH

机译:结构的部分约束粘弹性阻尼处理:模态应变能方法

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摘要

The constrained viscoelastic layer damping treatment is an effective means for the passive vibration control of plate and beam-kind structures. In order to reduce the treatment cost, while minimizing structural modifications, particularly the increase in mass, constrained viscoelastic treatments can be successfully applied in a partial and localized manner. The effectiveness of these treatments depends on their extension and relative location with respect to the target mode shape, which is not usually expeditiously established. In order to minimize the cost of the numerical optimization of the partial treatments, an efficient numerical methodology based on the ratio between the modal strain energy of the treated area and that of the structure is hereby proposed. This method is used in the analysis of the location and extension effects of partial constrained viscoelastic treatments on the modal damping of thin plates. The numerical results are verified through an experimental study on specimens with partial constrained viscoelastic layer damping treatments.
机译:约束粘弹性层阻尼处理是一种被动控制板梁式结构振动的有效手段。为了降低处理成本,同时最小化结构改变,特别是质量的增加,可以以局部和局部的方式成功地进行约束粘弹性处理。这些治疗方法的有效性取决于它们相对于目标模式形状的扩展和相对位置,通常无法迅速确定目标模式形状。为了使局部处理的数值优化的成本最小化,据此提出了一种基于处理区域的模态应变能与结构的模态应变能之比的有效数值方法。该方法用于分析局部约束粘弹性处理对薄板模态阻尼的位置和延伸效应。通过对具有部分约束粘弹性层阻尼处理的样本进行的实验研究,验证了数值结果。

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