Behavior analysis of span structures with cracks during vibrations

A. Loktev, A. Barakat
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Abstract

Introduction: An important engineering task is to assess the state of span structures during their operation in various conditions and develop a methodology not only for determining the current state of the structure and its individual elements but also for predicting life cycle stages. This work is dedicated to the study of the influence of the location and crack size located in the tension region of the beam cross-section on the value of the natural oscillations frequency of the main beam of the superstructure. The article proposes a method for determining the location and parameters of crack opening in the tension region of a pin-ended beam, which is the span structure base, by analyzing several vibration frequencies. Methods: The bridge crossing beam is modeled using the Euler-Bernoulli-type flexural theory. Crack modeling was carried out using the flexibility function, with the account of the location and length of the crack. A mathematical expression is formulated to determine the location and length of an open crack in the tension region of a pin-ended beam. The MATLAB program was used for numerical studies and simulation modeling of the problem of determining the crack parameters. Results: Values of the bridge girder’s natural resonance frequency with a crack in different places along the span and different lengths of the crack in the tension region of the cross-section were obtained. The relationship between the relative crack length and the relative fundamental beam frequency with a crack for different coordinates of its location and also the relationship between the relative location and the relative fundamental beam frequency with a crack for different crack length values are constructed. These given values are proposed to be used as criterion parameters for assessing the state and possible scenarios for the further operation of the beam span. Discussion: The results obtained show that with an increase in the relative length and relative coordinate of the crack initiation site, the natural frequency decreases. Based on the study results, the conclusion was formulated that cracks in the hinged beam tension region with a relative crack length and a relative location of less than 0.1 deserve the least attention. On the other hand, it is necessary to conduct a study to assess the state of a damaged bridge beam with a relative crack location of more than 0.1 and a relative crack length of less than 0.3, and after the analysis, a decision should be made on the possible modes of further operation of the engineering structures. For span structures whose beams have cracks with a relative crack location of more than 0.1 and a relative crack length of more than 0.3, a detailed study and examination of a structure are required, with the development of recommendations for the required repair work.
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含裂纹跨结构振动特性分析
一项重要的工程任务是评估跨结构在各种条件下的运行状态,并开发一种方法,不仅用于确定结构及其单个元件的当前状态,而且用于预测生命周期阶段。本工作致力于研究位于梁截面受拉区的位置和裂缝尺寸对上部结构主梁固有振动频率值的影响。本文提出了一种通过分析多个振动频率来确定跨结构基础端梁受拉区裂缝张开位置和参数的方法。方法:采用欧拉-伯努利型挠曲理论对桥梁跨梁进行建模。考虑裂纹的位置和长度,利用柔度函数对裂纹进行建模。本文提出了一种确定铰端梁受拉区张开裂纹位置和长度的数学表达式。利用MATLAB程序对裂纹参数确定问题进行了数值研究和仿真建模。结果:得到了沿跨不同位置存在裂缝和截面受拉区裂缝长度不同的桥梁主梁的自振频率值。构造了裂缝相对长度与含裂缝相对基梁频率在不同位置坐标下的关系,以及不同裂缝长度值下含裂缝相对位置与含裂缝相对基梁频率的关系。这些给定的值被建议用作评估梁跨状态和进一步运行的可能情况的准则参数。讨论:计算结果表明,随着裂缝起始位置相对长度和相对坐标的增加,固有频率减小。根据研究结果,得出了相对裂缝长度和相对位置小于0.1的铰接梁受拉区裂缝最不值得关注的结论。另一方面,有必要对相对裂缝位置大于0.1且相对裂缝长度小于0.3的桥梁损伤梁进行状态评估研究,并在分析后决定工程结构进一步可能的运行方式。对于梁的裂缝,其相对裂缝位置大于0.1,相对裂缝长度大于0.3的跨结构,需要对结构进行详细的研究和检查,并对所需的修复工作提出建议。
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