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An experimental and numerical study of the pattern of cracking of concrete due to steel reinforcement corrosion

机译:钢筋锈蚀引起混凝土开裂形态的试验和数值研究

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摘要

In this work, cracking of concrete due to steel reinforcement corrosion is experimentally and numerically studied. The tests combined accelerated corrosion—to generate the cracks—with impregnation under vacuum with resin containing fluorescein—to enhance their visibility under ultraviolet light. In parallel, a model—called expansive joint element—was developed to simulate the expansion of the oxide and finite elements with an embedded adaptable cohesive crack were used to describe concrete cracking. The results show that a good agreement exists between the experimental and numerical crack patterns, which constitutes promising progress towards a comprehensive understanding of corrosion-induced cracking in reinforced concrete.
机译:在这项工作中,对由于钢筋腐蚀引起的混凝土开裂进行了实验和数值研究。这些测试结合了加速腐蚀(产生裂纹)以及在真空中用含荧光素的树脂浸渍的方法,以增强其在紫外光下的可见性。同时,开发了一种称为膨胀节单元的模型来模拟氧化物的膨胀,并使用具有嵌入式适应性内聚裂纹的有限元来描述混凝土的开裂。结果表明,实验和数值裂纹模式之间存在良好的一致性,这对全面理解钢筋混凝土腐蚀引起的裂纹构成了有希望的进展。

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