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Identification of Cracks in Box-Section Beams with a Cracked-Beam Element Model

机译:箱形梁裂纹的裂梁单元模型识别

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Box-section steel members are widely used in different types of engineering structures. Identification of cracks in box-section members poses a particular challenge because of the section geometry. This paper presents a crack identification approach for box-section beam-column members based on a cracked-beam element model and using a finite-element (FE) model updating procedure. The cracked-beam element model is established by involving an additional local flexibility due to the crack, which is formulated using the fracture mechanics principles. To calculate the additional local flexibility, the stress intensity factors for cracks in box sections need to be established and this is achieved using an empirical approach combining FE simulation, parametric analysis, and regression. The cracked-beam element model is verified in terms of its predictions of the dynamic properties of cracked box-section beams against both FE simulated and experimentally measured modal data. Both thick-walled and thin-walled box-section beams have been considered in the FE simulated examples, while several box-section beams with different numbers of cracks have been tested in the experiment. Subsequently, the model is incorporated in the crack damage identification procedure. Results indicate that cracks can be identified correctly for beams with both single crack and multiple cracks and the identified crack parameters are of good accuracy. (C) 2017 American Society of Civil Engineers.
机译:箱形截面钢构件广泛用于不同类型的工程结构中。由于截面的几何形状,确定箱形截面构件中的裂纹提出了特殊的挑战。本文提出了一种基于裂纹梁单元模型并使用有限元模型更新程序的箱形截面梁柱构件裂纹识别方法。通过包含由于裂缝引起的附加局部挠性来建立裂缝梁单元模型,该模型是使用断裂力学原理制定的。为了计算附加的局部挠性,需要建立箱形截面中的裂纹应力强度因子,这是通过将有限元模拟,参数分析和回归相结合的经验方法来实现的。根据对有限元模拟和实验测得的模态数据对箱形截面横梁动力特性的预测,验证了裂纹梁单元模型。有限元模拟示例中考虑了厚壁和薄壁箱形截面梁,而在实验中已经测试了几种具有不同裂纹数量的箱形截面梁。随后,将模型纳入裂纹损伤识别程序。结果表明,对于具有单裂纹和多裂纹的梁,可以正确识别裂纹,并且所识别的裂纹参数具有良好的准确性。 (C)2017年美国土木工程师学会。

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