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Nonlinear multiple breathing cracks detection using direct zeros estimation of higher-order frequency response function

机译:非线性多次呼吸裂缝检测使用直接零估计高级频率响应函数

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On-board structures are currently submitted to high-level vibrations which may affect their integrity and operational lifetime. Structural health monitoring is then of great interest to avoid mechanical failures and to increase operational safety of mechanical systems. Indeed, in the case of cracked structures, the presence of cracks may affect the dynamic behavior. Thus, this paper focusses particularly on the detection and location of small cracks using the nonlinear response of cracked structures and more specifically using the zeros of the Higher-Order Frequency Response Function. The proposed method is based on the Direct Zeros Estimation algorithm to identify the antiresonances of the system. The locus of the identified antiresonances according to the crack location are discussed through numerical examples applied to the simplified nonlinear finite element model of a rectangular beam with multiple breathing cracks. (C) 2020 Elsevier B.V. All rights reserved.
机译:载在板上的结构目前提交给高水平的振动,这可能会影响其完整性和操作寿命。避免机械故障并提高机械系统的运行安全性,结构健康监测是非常兴趣的。实际上,在裂纹结构的情况下,裂缝的存在可能会影响动态行为。因此,本文特别关注使用裂纹结构的非线性响应的小裂缝的检测和位置,更具体地使用高阶频率响应函数的零。所提出的方法基于直接零估计算法来识别系统的防谐力。通过应用于具有多个呼吸裂缝的矩形梁的简化非线性有限元模型的数值示例讨论了根据裂缝位置的识别的防弓的轨迹。 (c)2020 Elsevier B.v.保留所有权利。

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