Shang Zhiqiang, Gong Fengzong, Shao Zhufeng, Matos Jose, Xin Gongfeng, Xia Ye
Shandong Hi-Speed Group Innovation Research Institute, Jinan 250102, China.
Shandong Key Laboratory of Highway Technology and Safety Assessment, Jinan 250102, China.
Sensors (Basel). 2024 Jun 30;24(13):4255. doi: 10.3390/s24134255.
Presently, the prevailing approaches to assessing hinge joint damage predominantly rely on predefined damage indicators or updating finite element models (FEMs). However, these methods possess certain limitations. The damage indicator method requires high-quality monitoring data and demonstrates variable sensitivities of distinct indicators to damage. On the other hand, the FEM approach mandates a convoluted FEM update procedure. Hinge joint damage represents a major kind of defect in prefabricated assembled multi-girder bridges (AMGBs). Therefore, effective damage detection methods are imperative to identify the damage state of hinge joints. To this end, a stiffness-based method for the performance evaluation of hinge joints of AMGBs is proposed in this paper. The proposed method estimates hinge joint stiffness by solving the characteristic equations of the multi-beam system. In addition, this study introduces a method for determining baseline joint stiffness using design data and FEM. Subsequently, a comprehensive evaluation framework for hinge joints is formulated, coupling a finite element model with the baseline stiffness, thereby introducing a damage indicator rooted in stiffness ratios. To verify the effectiveness of the proposed method, strain and displacement correlations are analyzed using actual bridge monitoring data, and articulation joint stiffness is identified. The results underscore the capability of the proposed method to accurately pinpoint the location and extent of hinge joint damage.
目前,评估铰关节损伤的主流方法主要依赖于预定义的损伤指标或更新有限元模型(FEM)。然而,这些方法存在一定的局限性。损伤指标法需要高质量的监测数据,并且不同指标对损伤的敏感性各不相同。另一方面,有限元方法需要复杂的有限元更新过程。铰关节损伤是装配式多梁桥(AMGB)中的一种主要缺陷类型。因此,有效的损伤检测方法对于识别铰关节的损伤状态至关重要。为此,本文提出了一种基于刚度的装配式多梁桥铰关节性能评估方法。该方法通过求解多梁系统的特征方程来估计铰关节刚度。此外,本研究还介绍了一种利用设计数据和有限元确定基准关节刚度的方法。随后,制定了一个铰关节综合评估框架,将有限元模型与基准刚度相结合,从而引入了一个基于刚度比的损伤指标。为验证所提方法的有效性,利用实际桥梁监测数据分析应变与位移的相关性,并识别铰支节点刚度。结果表明,所提方法能够准确地确定铰关节损伤的位置和程度。