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Reduction mechanisms of fatigue strength of concrete under compression due to permeation of liquids

机译:液体渗透引起的压缩下混凝土疲劳强度的降低机理

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摘要

Reduction mechanisms due to liquid permeation are studied on the fatigue strength of concrete under compression. Referring to the nucleation of micro-cracks, deformation and energy consumption characteristics of specimens are investigated. Reduction of the interfacial energy between solid and liquid plays a major role for the decrease in the strength of fatigued concrete under compression permeated by liquids. By suitable setting of the K value in the S-N curve equation considering the lower-limit stress ratio, it is possible to predict the fatigue life of concrete permeated by liquids with the reasonable accuracy.
机译:研究了液体渗透引起的还原机理,研究了压缩状态下混凝土的疲劳强度。参照微裂纹的形核,研究了样品的形变和能耗特征。固体和液体之间的界面能的降低对于在液体渗透下受压的疲劳混凝土强度下降起着重要作用。通过考虑下限应力比,在S-N曲线方程式中适当设定K值,可以以合理的精度预测浸入液体的混凝土的疲劳寿命。

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