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Experimental Study on Corrosion and Mechanical Behavior of Main Cable Wires Considering the Effect of Strain

机译:考虑应变影响的主电缆线腐蚀与力学行为的实验研究

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摘要

To study the corrosion degradation of cable wires in a bridge’s life, this research work created an accelerated corrosion test device, which sought to identify an optimal constant strain level. An accelerated corrosion test was carried out and the corroded specimens were scanned using super depth 3D microscopy technology. Mass loss and minimum cross-sectional diameter was measured to understand the degradation characteristics of cable wires at variable strains and corrosion time. The variation of elastic modulus, yield load, and ultimate load of corroded wires, subjected to a tensile test, were analyzed. The experimental results illustrate that the average mass loss ratio of the corroded cable wires increases nonlinearly as corrosion time increases. The higher the stress level, the more serious the corrosion level. The minimum cross-sectional diameter has good correlation with corrosion time and stress level. The elastic modulus of wires does not change significantly with the increase of corrosion time. Yield load and ultimate load decreases with the increase of strain level, and the rates of decline under different strains are nonlinear.
机译:为了研究电缆在桥梁使用寿命中的腐蚀退化,这项研究工作创建了一种加速腐蚀测试设备,旨在确定最佳的恒定应变水平。进行了加速腐蚀试验,并使用超深度3D显微镜技术扫描了腐蚀的样品。测量质量损失和最小横截面直径以了解电缆线在可变应变和腐蚀时间下的降解特性。分析了经受拉伸试验的腐蚀钢丝的弹性模量,屈服载荷和极限载荷的变化。实验结果表明,随着腐蚀时间的增加,腐蚀的电缆线的平均质量损失比呈非线性增加。应力水平越高,腐蚀水平越严重。最小横截面直径与腐蚀时间和应力水平具有良好的相关性。导线的弹性模量不会随腐蚀时间的增加而显着变化。屈服载荷和极限载荷随着应变水平的增加而减小,并且在不同应变下的下降速率是非线性的。

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