Implementation of variable cross-section curved beam in train-turnout dynamic interactions

IF 7.1 1区 工程技术 Q1 ENGINEERING, MECHANICAL
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引用次数: 0

Abstract

The abundance of variable cross-section curved rails in railway turnouts emphasizes the necessity of intricately modeling them, which facilitates a more accurate evaluation of train-turnout interactions. This study presents a general formulation for analyzing both free and forced vibrations of a variable cross-section curved Timoshenko beam and its implementation in train-turnout dynamic interactions. First, the natural frequencies and mode shapes for in-plane and out-of-plane free vibrations of the beam are determined through eigenvalue analysis, taking into careful consideration the characteristics of variable cross-section and curvature. Then, the forced vibration solution is derived using modal superposition and orthogonality. Furthermore, comparative analyses using finite element method (FEM) validate the natural frequencies and dynamic responses of a beam under various boundary conditions, confirming the reliability and accuracy of the proposed method. Finally, the developed beam model is then applied to simulate the switch rail and point rail under train-turnout interactions, revealing the differences from existing methods that modeled these components as uniform cross-section straight beams. Numerical analyses provide new insights by comparing wheel-rail forces and rail acceleration. Considering curve and variable cross section characteristics could contribute to a more accurate evaluation of train-turnout dynamic interactions.

变截面曲线梁在列车道岔动态互动中的应用
铁路道岔中存在大量可变截面曲线钢轨,因此有必要对其进行复杂建模,以便更准确地评估列车与道岔之间的相互作用。本研究提出了分析变截面曲线季莫申科梁自由振动和受迫振动的一般公式,并将其应用于列车与道岔的动态相互作用中。首先,通过特征值分析确定梁的平面内和平面外自由振动的固有频率和模态振型,并仔细考虑了变截面和曲率的特性。然后,利用模态叠加和正交性推导出受迫振动解。此外,使用有限元法(FEM)进行的对比分析验证了梁在各种边界条件下的固有频率和动态响应,证实了所提方法的可靠性和准确性。最后,将所开发的梁模型用于模拟列车与道岔相互作用下的道岔轨道和点轨,揭示了与将这些部件建模为均匀截面直梁的现有方法的不同之处。通过比较轮轨力和轨道加速度,数值分析提供了新的见解。考虑曲线和可变截面特性有助于更准确地评估列车与道岔的动态相互作用。
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来源期刊
International Journal of Mechanical Sciences
International Journal of Mechanical Sciences 工程技术-工程:机械
CiteScore
12.80
自引率
17.80%
发文量
769
审稿时长
19 days
期刊介绍: The International Journal of Mechanical Sciences (IJMS) serves as a global platform for the publication and dissemination of original research that contributes to a deeper scientific understanding of the fundamental disciplines within mechanical, civil, and material engineering. The primary focus of IJMS is to showcase innovative and ground-breaking work that utilizes analytical and computational modeling techniques, such as Finite Element Method (FEM), Boundary Element Method (BEM), and mesh-free methods, among others. These modeling methods are applied to diverse fields including rigid-body mechanics (e.g., dynamics, vibration, stability), structural mechanics, metal forming, advanced materials (e.g., metals, composites, cellular, smart) behavior and applications, impact mechanics, strain localization, and other nonlinear effects (e.g., large deflections, plasticity, fracture). Additionally, IJMS covers the realms of fluid mechanics (both external and internal flows), tribology, thermodynamics, and materials processing. These subjects collectively form the core of the journal's content. In summary, IJMS provides a prestigious platform for researchers to present their original contributions, shedding light on analytical and computational modeling methods in various areas of mechanical engineering, as well as exploring the behavior and application of advanced materials, fluid mechanics, thermodynamics, and materials processing.
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