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Sensitivity-based finite element model updating with natural frequencies and zero frequencies for damped beam structures

机译:基于灵敏度的阻尼梁结构固有频率和零频率的有限元模型更新

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ABSTRACT The main objective of this paper is to propose a new Finite Element (FE) model updating technique for damped beam structures. The present method consists of a FE model updating, a Degree of Freedom (DOF) reduction method and a damping matrix identification method. In order to accomplish the goal of this study, first, a sensitivity-based FE model updating method using the natural frequencies and the zero frequencies is introduced. Second, an Iterated Improved Reduced System (IIRS) technique is employed to reduce the number of DOF of FE model. Third, a damping matrix is estimated using modal damping ratios identified by a curve-fitting method and modified matrices which are obtained through the model updating and the DOF reduction. The proposed FE model updating method is verified using a real cantilever beam attached damping material on one side. The updated result shows that the proposed method can lead to accurate model updating of damped structures.
机译:摘要本文的主要目的是为阻尼梁结构提出一种新的有限元(FE)模型更新技术。本方法包括有限元模型更新,自由度(DOF)降低方法和阻尼矩阵识别方法。为了实现本研究的目的,首先,介绍了一种使用固有频率和零频率的基于灵敏度的有限元模型更新方法。其次,采用迭代改进缩减系统(IIRS)技术来减少有限元模型的自由度。第三,使用通过曲线拟合方法确定的模态阻尼比和通过模型更新和自由度降低获得的改进矩阵来估算阻尼矩阵。所提出的有限元模型更新方法在一侧使用真实的悬臂梁阻尼材料进行了验证。更新结果表明,该方法可以对阻尼结构进行精确的模型更新。

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