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Three-dimensional Finite Element Modelling of Composite Slabs for High Speed Rails

机译:高速轨道复合板坯三维有限元建模

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Currently precast steel-concrete composite slabs are being considered on railway bridges as a viable alternative replacement for timber sleepers. However, due to their nature and the loading conditions, their behaviour is often complex. Present knowledge of the behaviour of precast steel-concrete composite slabs subjected to rail loading is limited. FEA is an important tool used to simulate real life behaviour and is widely accepted in many disciples of engineering as an alternative to experimental test methods, which are often costly and time consuming. This paper seeks to detail FEM of precast steel-concrete slabs subjected to standard in-service loading in high-speed rail with focus on the importance of accurately defining material properties, element type, mesh size, contacts, interactions and boundary conditions that will give results representative of real life behaviour. Initial finite element model show very good results, confirming the accuracy of the modelling procedure.
机译:目前预制钢混凝土复合板在铁路桥上被认为是木材轨枕的可行替代品。然而,由于他们的性质和装载条件,他们的行为通常很复杂。本发明了对经受轨道装载的预制钢混凝土复合板坯的行为受到限制。 FEA是用于模拟现实生活行为的重要工具,并且在许多工程门徒中被广泛接受作为实验测试方法的替代,这通常是昂贵且耗时的。本文探讨了在高速轨道上进行了标准使用标准装载的预制钢混凝土板的FEM,重点是准确地定义材料特性,元素类型,网格尺寸,触点,相互作用和边界条件的重要性结果代表现实生活行为。初始有限元模型显示出非常好的结果,确认建模程序的准确性。

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