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Identification of cracks in thick beams with a cracked beam element model

机译:用梁裂纹梁模型识别厚梁裂缝

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摘要

The effect of a crack on the vibration of a beam is a classical problem, and various models have been proposed, ranging from the basic stiffness reduction method to the more sophisticated model involving formulation based on the additional flexibility due to a crack. However, in the damage identification or finite element model updating applications, it is still common practice to employ a simple stiffness reduction factor to represent a crack in the identification process, whereas the use of a more realistic crack model is rather limited. In this paper, the issues with the simple stiffness reduction method, particularly concerning thick beams, are highlighted along with a review of several other crack models. A robust finite element model updating procedure is then presented for the detection of cracks in beams. The description of the crack parameters is based on the cracked beam flexibility formulated by means of the fracture mechanics, and it takes into consideration of shear deformation and coupling between translational and longitudinal vibrations, and thus is particularly suitable for thick beams. The identification procedure employs a global searching technique using Genetic Algorithms, and there is no restriction on the location, severity and the number of cracks to be identified. The procedure is verified to yield satisfactory identification for practically any configurations of cracks in a beam.
机译:裂纹对梁振动的影响是一个经典的问题,已经提出了各种模型,从基本的刚度降低方法到更复杂的模型,该模型涉及基于裂纹产生的额外柔韧性的配方。但是,在损伤识别或有限元模型更新应用程序中,在识别过程中采用简单的刚度降低系数来表示裂纹仍然是普遍的做法,而使用更实际的裂纹模型却受到了限制。在本文中,简单的刚度降低方法,特别是与厚梁有关的问题,连同其他几个裂缝模型的综述,都得到了强调。然后提出了鲁棒的有限元模型更新程序,用于检测梁中的裂纹。裂纹参数的描述基于断裂力学通过断裂梁的柔韧性确定的,并且考虑了剪切变形以及平移和纵向振动之间的耦合,因此特别适用于厚梁。识别程序采用了使用遗传算法的全局搜索技术,并且对要识别的裂纹的位置,严重性和数量没有限制。对该程序进行了验证,可以对梁中几乎任何形式的裂纹产生令人满意的识别。

著录项

  • 作者

    Hou, Chuanchuan; Lu, Yong;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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