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首页> 外文期刊>International Journal of Advanced Structural Engineering >Experimental and numerical investigation on flexural bond strength behavior of corroded NBS RC beam
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Experimental and numerical investigation on flexural bond strength behavior of corroded NBS RC beam

机译:NBS锈蚀RC梁抗弯强度性能的试验与数值研究。

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Corrosion of reinforcing steel is the most detrimental effect endangering the structural performance. Present investigation has been taken up to study the detrimental effect of corrosion on bond behavior. Experimental and numerical investigation has been carried out for four different levels of corrosion—2.5, 5, 7.5 and 10?%. Loss in mass of reinforcement bar has been taken as the basis to fix corrosion levels. Accelerated corrosion technique has been adopted to control corrosion rate by regulating current over predetermined durations. NBS beams have been investigated for performance. Concrete grade M30 and steel Fe-415 have been used. From the experimental investigation, it has been observed that bond strength degradation of 2.6?% at slip initiation and 2.1?% at end of slip have been observed for every percentage increases in corrosion level. Numerical investigation with concrete is modeled as solid 65 element and reinforcement modeled as Link 8 elements. ANSYS has yielded 3 and 2.4?% bond strength degradation values at initiation and end of slip per percentage increase in corrosion levels.
机译:钢筋腐蚀是危害结构性能的最有害的影响。目前已经进行了研究以研究腐蚀对键合行为的有害影响。已经针对四个不同的腐蚀水平(2.5%,5%,7.5%和10%)进行了实验和数值研究。钢筋的质量损失已作为固定腐蚀水平的基础。已经采用加速腐蚀技术通过在预定持续时间内调节电流来控制腐蚀速率。已经对NBS光束的性能进行了研究。使用了M30级混凝土和Fe-415钢。从实验研究中可以看出,腐蚀水平每增加一个百分比,在滑移开始时粘结强度下降2.6%,滑移结束时粘结强度下降2.1%。用混凝土进行的数值研究建模为实心65元,将钢筋建模为Link 8元。在腐蚀开始和结束时,每增加一个腐蚀水平百分数,ANSYS就会得到3%和2.4%的粘结强度降低值。

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