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Rate-dependent model of structural concrete incorporating kinematics of ambient water subjected to high-cycle loads

机译:考虑高周向载荷的环境水运动学的结构混凝土速率相关模型

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Purpose - The paper aims to propose a rate-dependent model of structural concrete in combination with the kinematics of condensed water. Design/methodology/approach -- First, the paper proposes the coupling model of water versus cracked concrete with a mathematical completeness of equilibrium and deformational compatibility. The proposed model deals with anisotropy of structural performance and of permeability, which is a particular issue of concrete caused by cracks. The governing equation for saturated concrete in this study is based on Biot's theory that deals with particle assembly as a two-phase composite. Second, the paper shows the possible reduction of the fatigue life of real-scale bridge RC decks owing to the water residing in structural cracks under moving wheel-type loading. Findings - The paper shows that the existence of water possibly has an influence on the rate-dependency of structural performance. The comparison of transition of pore pressure and principal strain indicates that damage to the concrete skeleton is accelerated by internal stress caused by high pore pressure. It suggests that the existence of water can reduce the fatigue life of bridge decks, especially when the upper layer is saturated. Originality/value - This paper clarifies the effect of pore water on structural concrete by using numerical model considering kinematics of water.
机译:目的-本文旨在结合凝结水的运动学,提出一种基于速率的结构混凝土模型。设计/方法/方法-首先,本文提出了水与开裂混凝土的耦合模型,该模型具有平衡和变形相容性的数学完整性。所提出的模型处理结构性能和渗透率的各向异性,这是由裂缝引起的混凝土的特殊问题。本研究中的饱和混凝土控制方程是基于Biot的理论,该理论将粒子组装视为两相复合材料。其次,本文表明,由于轮式荷载作用下结构裂缝中的水分,水可能会缩短实际桥梁RC甲板的疲劳寿命。研究结果-本文表明水的存在可能会影响结构性能的速率依赖性。孔隙压力和主应变转变的比较表明,高孔隙压力引起的内部应力会加速对混凝土骨架的破坏。这表明水的存在会降低桥面板的疲劳寿命,尤其是当上层饱和时。原创性/价值-本文通过考虑水运动学的数值模型,阐明了孔隙水对结构混凝土的影响。

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