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首页> 外文期刊>Journal of advanced concrete technology >Shear Fatigue Simulation Of Rc Beams Subjected To Fixed Pulsating And Moving Loads
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Shear Fatigue Simulation Of Rc Beams Subjected To Fixed Pulsating And Moving Loads

机译:固定脉动和运动载荷作用下钢筋混凝土梁的剪切疲劳模拟

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摘要

The fatigue behavior of RC beams subjected to moving loads is experimentally investigated.Analytical scrutiny is made on the shear fatigue behavior of RC beams subjected to moving loads based on strain path and time dependent fatigue constitutive models rooted in the multi-scale fixed four-way crack modeling of concrete.Moving load is found to cause dramatic reduction in fatigue life of RC beams as compared to that of the fixed pulsating load both in the experiment and analysis.The mechanism for the reduced fatigue life under moving loads in RC beams is discussed in contrast to that of RC slabs.A simplified relation for the prediction of fatigue life under moving load is proposed for practical use on the basis of standard shear fatigue design equation of JSCE code,used for fixed fatigue loading.The effect of ran-domness in the position of loading is examined and its implication for the reliability of current fatigue life assessment method of RC members is put forward.The applicability of the multi-scale computational platform is verified for the fatigue investigation of RC beams subjected to moving loads.
机译:实验研究了移动荷载作用下钢筋混凝土梁的疲劳行为。基于多尺度固定四向的应变路径和时变疲劳本构模型,对移动荷载作用下钢筋混凝土梁的剪切疲劳行为进行了分析研究。在实验和分析中均发现,运动荷载与固定脉动荷载相比会导致RC梁的疲劳寿命急剧下降。探讨了在RC梁运动荷载下降低疲劳寿命的机理。根据JSCE规范的标准剪力疲劳设计方程,提出了一种用于固定载荷下疲劳运动寿命预测的简化关系。研究了加载位置的疲劳强度,并提出了其对当前钢筋混凝土构件疲劳寿命评估方法的可靠性的意义。验证了多尺度计算平台的稳定性,可用于承受移动载荷的RC梁的疲劳研究。

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