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Experimental Investigation into Corrosion Effect on Mechanical Properties of High Strength Steel Bars under Dynamic Loadings

机译:动态载荷下腐蚀对高强度钢筋力学性能影响的实验研究

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The tensile behaviors of corroded steel bars are important in the capacity evaluation of corroded reinforced concrete structures. The present paper studies the mechanical behavior of the corroded high strength reinforcing steel bars under static and dynamic loading. High strength reinforcing steel bars were corroded by using accelerated corrosion methods and the tensile tests were carried out under different strain rates. The results showed that the mechanical properties of corroded high strength steel bars were strain rate dependent, and the strain rate effect decreased with the increase of corrosion degree. The decreased nominal yield and ultimate strengths were mainly caused by the reduction of cross-sectional areas, and the decreased ultimate deformation and the shortened yield plateau resulted from the intensified stress concentration at the nonuniform reduction. Based on the test results, reduction factors were proposed to relate the tensile behaviors with the corrosion degree and strain rate for corroded bars. A modified Johnson-Cook strength model of corroded high strength steel bars under dynamic loading was proposed by taking into account the influence of corrosion degree. Comparison between the model and test results showed that proposed model properly describes the dynamic response of the corroded high strength rebars.
机译:锈蚀钢筋的拉伸性能在锈蚀钢筋混凝土结构的承载力评估中很重要。本文研究了腐蚀的高强度钢筋在静态和动态载荷下的力学行为。通过使用加速腐蚀方法腐蚀高强度钢筋,并在不同应变率下进行拉伸试验。结果表明,腐蚀后的高强度钢筋的力学性能与应变率有关,并且随着腐蚀程度的增加,应变率效应降低。名义屈服强度和极限强度的下降主要是由于横截面积的减小引起的,而极限变形的减小和屈服平稳期的缩短是由于应力集中在不均匀减小时的增强所致。根据试验结果,提出了降低因子,以将锈蚀钢筋的拉伸性能与腐蚀程度和应变率联系起来。考虑到腐蚀程度的影响,提出了一种修正的强腐蚀下的高强度钢筋在动态载荷下的Johnson-Cook强度模型。模型与测试结果的比较表明,所提出的模型正确地描述了腐蚀的高强度钢筋的动力响应。

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