考虑结构耐久性优化结构动力特性的数值方法

IF 1.9 Q3 ENGINEERING, MECHANICAL
Vibration Pub Date : 2023-06-29 DOI:10.3390/vibration6030030
W. Kaal, J. Baumgartner, Maximilian Budnik, C. Tamm
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引用次数: 0

摘要

在轻量化结构的设计中,必须同时考虑结构的动力学和耐久性。本文提出了一种结构动力学、轻量化设计和寿命与离散振动工程措施相结合的优化方法,并通过一个示范结构进行了讨论。以双面焊接弯曲梁为研究对象,在满足动态特性、整体质量和寿命要求的前提下,研究了调谐质量阻尼器的优化参数。结果表明,将降阶模型与在关键焊缝处实施结构应力方法相结合,可以在时域内有效地评估某些设计概念。利用该方法,采用多准则优化方法,确定了TMD的最佳参数集,以减少结构振动,提高结构耐久性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Approach to Optimize the Dynamic Behaviour of Structures Considering Structural Durability
In the design of lightweight structures, both the dynamics and durability must be taken into account. In this paper, a methodology for the combined optimization of structural dynamics, lightweight design, and lifetime with discrete vibration engineering measures is developed and discussed using a demonstration structure. A two-sided welded bending beam is excited at the centre and optimal parameters for tuned mass dampers (TMD) are searched, satisfying the requirements for the dynamic behaviour, the overall mass, and the lifetime of the weldings. It is shown that the combination of a reduced order model with the implementation of the structural stress approach at critical welds enables an efficient evaluation of certain design concepts in the time domain. Using this approach, multi-criterial optimization methods are used to identify the best set of parameters of the TMD to reduce the structural vibrations and enhance the durability.
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CiteScore
3.20
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