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An 'T' Type Reinforcement Scheme of Portal Steel to Restrain the Gap between CRTSIII Slab and Self-compacting Concrete

机译:门钢的“T”型加固方案,以抑制CrTSIII板坯与自压力混凝土之间的间隙

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The gap between slab and self-compacting concrete is one of the typical disease for CRTSIII slab ballastless track structure under service condition. This paper established finite element mechanical analysis model of track structure including rail, fastener, track slab, portal steel, self-compacting concrete, isolation layer and base according to the CRTSIII track slab structure characteristics, an "t" type reinforcement scheme of portal steel was proposed, and analyses the vertical stress characteristics of the interface between slab and self-compacting concrete under train and temperature gradient load before and after reinforce portal steel. The results show that when the interface appears gap and is non-gap, the vertical maximum tensile stress of interface is respectively reduced 80% and 87% after reinforce portal steel. It can also reduce the probability of the occurrence of gap between the slab and self compacting concrete, slow down the expansion rate of the isolated region, and improve the durability of rail structure in the course of service.
机译:板坯与自压式混凝土之间的间隙是服务条件下CRTSIII板坯碴轨道结构的典型疾病之一。本文建立了轨道结构的有限元机械分析模型,包括轨道,紧固件,轨道板,门钢,自压式混凝土,隔离层和基座,根据CRTSIII轨道结构特性,门钢“T”型加固方案提出,并分析了钢筋和温度梯度负荷下的板坯和自压力混凝土之间界面的垂直应力特性。结果表明,当界面出现间隙并且是非间隙时,互联界面的垂直最大拉伸应力分别降低了80%和87%后,加强了门钢。它还可以降低板坯和自压实混凝土之间发生间隙的可能性,减慢隔离区域的膨胀率,提高了服务过程中的轨道结构的耐久性。

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