Behaviour and Design of Composite Steel and Precast Concrete Transom for Railway Bridges Application

O. Mirza, A. Talos, M. Hennessy, B. Kirkland
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Abstract

Currently most railway bridges in Australia require the replacement of the timber transoms that reside in the railway system. Composite steel and precast reinforced concrete transoms have been proposed as the replacement for the current timber counterparts. This paper outlines the structural benefits of composite steel-concrete transoms for ballastless tracks when retrofitted to existing railway steel bridges. However, in existing studies, it is found that there is little investigation into the effect of derailment loading on reinforced concrete transoms. Therefore, this paper provides an investigation of derailment impact loading on precast reinforced concrete transoms. The paper herein investigates the derailment impact loading of a train through experimental testing and numerical analysis of conventional reinforced concrete transoms. The paper also evaluates the potential use of 3 different shear connectors; welded shear studs, Lindapter bolts and Ajax bolts. The results of the experimental tests and finite element models are used to determine whether each transom is a viable option for the replacement of the current timber transoms on the existing bridges in Australia and whether they provide a stronger and longer lasting solution to the current transom problem.
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铁路桥梁用钢与预制混凝土组合横梁的性能与设计
目前,澳大利亚大多数铁路桥都需要更换铁路系统中的木材横梁。组合钢和预制钢筋混凝土横梁已被提议作为目前木材横梁的替代品。本文概述了钢-混凝土组合横梁在现有铁路钢桥改造无砟轨道时的结构效益。然而,在现有的研究中,很少研究脱轨荷载对钢筋混凝土横梁的影响。因此,本文对钢筋混凝土预制横梁的脱轨冲击荷载进行了研究。本文通过对常规钢筋混凝土横梁的试验试验和数值分析,对列车脱轨冲击载荷进行了研究。本文还评估了3种不同剪切连接件的潜在用途;焊接剪切螺柱,林达普特螺栓和阿贾克斯螺栓。试验测试和有限元模型的结果用于确定每个横梁是否是替代澳大利亚现有桥梁上现有木材横梁的可行选择,以及它们是否为当前的横梁问题提供了更坚固和更持久的解决方案。
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