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Explicit dynamic response of damaged beams with application to uncertain and identification problems

机译:损坏光束应用于不确定和识别问题的显式动态响应

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摘要

The influence of damage in beam-like structures is a problem widely analysed in the literature in view of its importance towards the assessment of the residual carrying capacity and the evaluation of the inevitable changes of the dynamic properties. Usually, the dynamic properties and the forced vibrations of structures, cannot be explicitly inferred, particularly in the presence of damage, since the computation of the roots of a highly nonlinear determinantal equation is preliminarily required. Rather, explicit formulations are usually preferred for their ease to use and the possibility to perform parametric analyses, very useful in the case of uncertain parameters, and also to address inverse problems. In this paper, aiming at proposing an explicit formulation of the dynamic response of cracked beams, a model which makes use of the distribution theory and does not require the enforcement of continuity conditions at the cracked sections is employed. Approximated explicit expressions of the main modal parameters related to crack severities are here provided and the reliability of the proposed formulas are verified with reference solutions. The approximated modal parameters can then be used to obtain explicitly the forced vibrations of cracked beams. The proposed methodology is here adopted to address both direct and inverse problems. First, the variability of the dynamic response of cracked beams due to the presence of cracks with uncertain, but bounded, depths is investigated; then, upper and lower bounds of the response are evaluated by making use of both time and frequency domain analyses. In addition, the possibility to adopt the same explicit approach for the identification of damage intensities considering frequency measurements is explored. (C) 2020 Elsevier Ltd. All rights reserved.
机译:梁状结构损伤的影响是文献中广泛分析的问题,鉴于对剩余携带能力的评估和对动态性质的不可避免的变化的评估来说重要的重要性。通常,不能明确推断出的动态性质和强制振动,特别是在存在损坏的情况下,因为预先需要高度非线性确定式方程的根源的计算。相反,通常优选显式配方,以便于使用和执行参数分析的可能性,在不确定参数的情况下非常有用,以及解决逆问题。在本文中,旨在提出裂纹梁的动态响应的明确配方,采用了利用分布理论的模型,并且不需要在裂纹部分处的连续性条件的实施。这里提供了与裂缝严重程度相关的主要模态参数的近似显式表达,并提供了所提出的公式的可靠性,通过参考解决方案验证。然后可以使用近似的模态参数来获得明确的裂纹梁的强制振动。此处采用了所提出的方法来解决直接和逆问题。首先,研究了裂纹梁动力响应的可变性,由于存在不确定,但有界,深度的裂缝的存在;然后,通过使用两种时间和频域分析来评估响应的上限和下限。此外,还探讨了考虑频率测量的识别损伤强度的相同明确方法的可能性。 (c)2020 elestvier有限公司保留所有权利。

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