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Corrosion Morphology and Mechanical Behavior of Corroded Prestressing Strands

机译:腐蚀的预应力股线的腐蚀形态与力学行为

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The corrosion morphology and the mechanical behavior of corroded prestressing strands are investigated in the present study. Nineteen corroded strands are obtained through controlling stress level, corrosion time and chloride ion concentration under artificial climate conditions. A total of 119 corrosion pits are counted to investigate the geometric morphology of corrosion pits. A depth-width ratio parameter is first defined to describe the distribution law of corrosion pits, which obeys the lognormal distribution. A tension test is conducted to investigate the mechanical behavior of corroded strands. The fracture morphology and micro-cracks of corroded steel wires are observed by the scanning electron microscopy. A constitutive model is proposed to predict the stress-strain curve of corroded prestressing strands and verified by the experimental results. Results show that the maximum corrosion loss of strand increases by 4.91% when the stress level changes from 45% to 75% of strand yield strength. The high stress level can promote the propagation of corrosion micro-cracks on strand surface. The propagation of corrosion micro-cracks has a significant effect on ultimate strength of strand, while has a little effect on elastic modulus. The proposed model can give an accurate prediction for the stress-strain of corroded prestressing strand.
机译:在本研究中研究了腐蚀形态和腐蚀预应力链的力学行为。通过控制人工气候条件下的应力水平,腐蚀时间和氯离子浓度来获得19个腐蚀的股线。总共算119个腐蚀凹坑来研究腐蚀坑的几何形态。首先定义深度宽度比参数以描述腐蚀凹坑的分布定律,从而遵守逻辑正式分布。进行张力试验以研究腐蚀股的力学行为。通过扫描电子显微镜观察腐蚀钢丝的断裂形态和微裂缝。提出了一个本构模型以预测腐蚀预应力链的应力 - 应变曲线并通过实验结果验证。结果表明,当应力水平从股线屈服强度的45%变化,股线的最大腐蚀损失增加了4.91%。高应力水平可以促进腐蚀微裂纹对股线表面的繁殖。腐蚀微裂纹的繁殖对股线的极限强度具有显着影响,同时对弹性模量有点影响。所提出的模型可以为腐蚀预应力股线的应力 - 应变提供精确的预测。

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