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Mesoscale simulation of fatigue behavior of concrete materials damaged by freeze-thaw cycles

机译:冻融循环破坏混凝土材料疲劳性能的中尺度模拟

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Frost damage is a common durability problem for concrete structures in cold and wet regions, and in many cases, the frost damage is coupled with fatigue loadings such as the traffic loads on bridge decks or pavements. In this paper, to investigate the basic fatigue behavior of concrete materials affected by frost damage, a mesoscale approach based on Rigid Body Spring Method (RBSM) has been developed, of which the concrete material can be divided into three parts: mortar, coarse aggregate and interfacial transition zone (ITZ) between them. First, the cyclic constitutive laws are developed at normal and shear directions for mortar and ITZ, and verified with the existing experimental data in compression and tension fatigue. Then, several levels of frost damage are introduced by different numbers of freeze-thaw cycles (FTCs), and finally, the static tests and fatigue tests are conducted using the frost damaged concrete. The simulation results on the static strength and fatigue life show a good agreement with experimental data, and found that as the frost damage level (irreversible plastic deformation) increases, not only the static strength, but also the fatigue life at each stress level will decrease. The S-N curves of frost damaged concrete still follow a linear relationship but with bigger slopes, and the frost damaged concrete will become more ductile under fatigue loadings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:霜冻损坏是寒冷和潮湿地区混凝土结构的常见耐久性问题,在许多情况下,霜冻损坏与疲劳载荷(例如桥面或人行道上的交通载荷)结合在一起。为了研究受霜冻破坏的混凝土材料的基本疲劳性能,开发了一种基于刚体弹簧法(RBSM)的中尺度方法,其中混凝土材料可分为三部分:砂浆,粗骨料。它们之间的界面过渡区(ITZ)。首先,在砂浆和ITZ的法向和剪切方向上建立循环本构律,并用压缩和拉伸疲劳中的现有实验数据进行验证。然后,通过不同数量的冻融循环(FTC)引入了几种水平的霜冻破坏,最后,使用霜冻破坏的混凝土进行了静态测试和疲劳测试。静态强度和疲劳寿命的仿真结果与实验数据吻合良好,发现随着霜冻破坏水平(不可逆塑性变形)的增加,不仅静态强度会降低,而且每个应力水平下的疲劳寿命也会降低。霜冻混凝土的S-N曲线仍遵循线性关系,但斜率更大,在疲劳载荷下,霜冻混凝土的延展性更高。 (C)2017 Elsevier Ltd.保留所有权利。

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