Yanhui Liu, Al-Bukhaiti Khalil, Shichun Zhao, Abas Hussein, Nan Xu, Lang Yang, Yu Yan Xing, Daguang Han
School of Civil Engineering, Southwest Jiaotong University, Chengdu, Sichuan, China.
Department of Civil Engineering and Energy Technology, Faculty of Technology, Art and Design, Oslo Metropolitan University, Oslo, Norway.
Sci Rep. 2022 Aug 30;12(1):14793. doi: 10.1038/s41598-022-19144-1.
Traffic accidents and derailed train-related incidents have occurred more often than ever in recent years, resulting in some economic damage and casualties. Reinforced concrete (RC) constructions often involve derailed train and vehicle accidents. Rarely are such side collisions studied in previous studies. To do this, high-fidelity simulation-based finite-element (FE) models are created in this paper to accurately simulate the collision of circular RC members with a derailed train. The reinforced concrete member structure is common in high-speed railway stations. The impact energy of the impact body is significant, causing structural member failure. It analyses the dynamic behavior of reinforced concrete members under unequal span impact loads. Numerical implementations of impact issues are discussed from the perspective of geometric, contact, and material properties. The reliability and precision of the ABAQUS code to solve impact issues are verified by comparing failure modes, impact, and deflection time history experimental outputs. By analysing the impact response characteristics, used the control variables to study the failure process and mode (including the characteristics of impact and reaction forces, deflection time history curve, impact force-deflection curve, and bearing reaction force-deflection curve). The reinforcement ratio, impact velocity, concrete strength, and slenderness ratio significantly affect shear crack pattern and development. Changes in impact velocity and slenderness ratio also affect member failure modes.
近年来,交通事故和与列车脱轨相关的事故比以往任何时候都更加频繁地发生,造成了一些经济损失和人员伤亡。钢筋混凝土(RC)建筑经常涉及列车脱轨和车辆事故。以往的研究很少涉及此类侧面碰撞。为此,本文创建了基于高保真模拟的有限元(FE)模型,以准确模拟圆形RC构件与脱轨列车的碰撞。钢筋混凝土构件结构在高铁站很常见。撞击体的撞击能量很大,会导致结构构件失效。分析了钢筋混凝土构件在不等跨冲击荷载作用下的动力性能。从几何、接触和材料特性的角度讨论了冲击问题的数值实现。通过比较失效模式、冲击和挠度时间历程实验输出,验证了ABAQUS代码解决冲击问题的可靠性和精度。通过分析冲击响应特性,采用控制变量研究了破坏过程和模式(包括冲击和反力特性、挠度时间历程曲线、冲击力-挠度曲线和支座反力-挠度曲线)。配筋率、冲击速度、混凝土强度和长细比显著影响剪切裂缝形态和发展。冲击速度和长细比的变化也会影响构件的破坏模式。