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首页> 外文期刊>he IES Journal Part A: Civil & Structural Engineering >Composite slabs for railway construction and maintenance: a mechanistic review
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Composite slabs for railway construction and maintenance: a mechanistic review

机译:铁路建设和维修用复合板:机械审查

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摘要

Australian railway networks alone require timber components in excess of 280,000 m~3 per year for railway construction and maintenance. The relatively high turnover of timber sleepers (crossties in a plain track), bearers (skeleton ties in a turnout) and transoms (bridge cross beams) is responsible for producing greenhouse gas emissions six times greater than equivalent reinforced concrete counterparts. This study reviews the railway maintenance problems and solutions for the replacement of these high maintenance members. Alternative composite materials to replace timber components in railway infrastructure construction and maintenance have been developed extensively in recent years. This critical review outlined an innovative solution incorporating composite slab theory and combining with the capabilities of being precast and modular, in order to reduce the depth, weight and required installation time relative to conventional track slab systems. Systemic risks, compatibilities and compliances are highlighted to warrant real-world applicability of composite structures.
机译:仅澳大利亚的铁路网络每年就需要超过280,000 m〜3的木材成分来进行铁路建设和维护。木材枕木(平地上的十字路口),支撑架(岔道上的骨架)和横梁(桥梁横梁)的相对较高的周转量产生的温室气体排放量是等效钢筋混凝土同行的六倍。这项研究回顾了铁路维护方面的问题以及这些高维护成员的更换解决方案。近年来,替代性复合材料在铁路基础设施的建设和维护中已经替代木材,已经得到了广泛的发展。这篇重要的评论概述了一种创新的解决方案,该解决方案结合了复合板理论,并具有预制和模块化的功能,以相对于传统的轨道板系统减少深度,重量和所需的安装时间。系统风险,兼容性和合规性得到强调,以保证复合结构在现实世界中的适用性。

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