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Effect of variations in thermal-curing cycle on the cracking risk of precast segmental tunnel lining

机译:热固化周期变化对预制分段式隧道衬砌开裂风险的影响

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This paper analyzes, both experimentally and numerically, the effect of thermal curing on the evolution of temperatures, rate of temperature rise and cooling, stresses and strengths in reinforced concrete elements. It also describes the experimental program carried out to characterize thermally and mechanically the high strength concrete used in the precast segments of the Pajares Tunnel lining. The thermo numerical analysis allows verifying whether a given cycle complies with rules of good practice with regard to maximum temperatures reached within the segment and maximum rates of heating and cooling. The mechanical analysis allows evaluating the cracking risk by comparing the evolution of stress and effective strength at the points of the segments that have higher risk of cracking. The developed computational tool can be used as a virtual laboratory to determine the curing cycle that is most appropriate for each type of segment.
机译:本文通过实验和数值分析,分析了热固化对温度变化,温度升高和冷却速率,钢筋混凝土构件中的应力和强度的影响。它还描述了为表征Pajares隧道衬砌预制段中所使用的高强度混凝土的热力学和机械特性而进行的实验程序。通过热数值分析,可以验证给定的循环是否符合段内达到的最高温度以及最大加热和冷却速率的良好实践规则。力学分析可以通过比较应力和有效强度在具有较高破裂风险的各段点处的演化来评估破裂风险。可以将开发的计算工具用作虚拟实验室,以确定最适合每种类型片段的固化周期。

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