>The influences of corrosion and the strain '/> Experimental study on mechanical properties of corroded steel fibers under static and dynamic loading xmlns='http://www.wiley.com/namespaces/wiley' href='#maco201709902-note-0003'/>
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Experimental study on mechanical properties of corroded steel fibers under static and dynamic loading xmlns='http://www.wiley.com/namespaces/wiley' href='#maco201709902-note-0003'/>

机译:静态荷载作用下腐蚀钢纤维力学性能的试验研究 xmlns =“http://www.wiley.com/namespaces/wiley”href =“#maco201709902-note-0003”/>

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>The influences of corrosion and the strain rate on the mechanical performance of corroded steel fibers were assessed in this paper. The steel fibers were corroded to different corrosion degrees by drying‐wetting cycling in a 5% sodium chloride solution and a 50° centigrade oven. The static and dynamic tensile tests of corroded steel fibers were investigated by using a static and dynamic test system. The results showed that the mechanical properties of the corroded steel fibers were strain‐rate dependent. With an increase in strain rate, the ultimate load increased, whereas, the strain‐rate effect decreased with an increase in the corrosion degree. However, variations in Young's modulus with strain rate and corrosion degree were not obvious. With an increase in the corrosion degree, both the nominal tensile strength and elongation of the corroded steel fibers decreased. However, the ultimate strength based on the minimum cross‐sectional area did not decrease. The strength could be attributed to the uneven distribution of the cross‐sectional area along the bar. Based on the experimental results, a time‐dependent assessment method for the mechanical behavior of corroded steel fibers under the static and dynamic loading conditions was proposed.
机译: <第XML:ID =“Maco201709902-SEC-0001”编号=“否”> 本文评估了腐蚀的影响和应变率对腐蚀钢纤维的机械性能的影响。通过在5%氯化钠溶液和50°℃的烘箱中干燥润湿循环,将钢纤维腐蚀到不同的腐蚀程度。使用静态和动态测试系统研究了腐蚀钢纤维的静态和动态拉伸试验。结果表明,腐蚀钢纤维的力学性能依赖于应变率。随着应变率的增加,最终负荷增加,而且随着腐蚀程度的增加,应变率效应降低。然而,杨氏模量具有应变率和腐蚀度的变化并不明显。随着腐蚀程度的增加,腐蚀钢纤维的标称拉伸强度和伸长率均降低。然而,基于最小横截面积的极限强度没有减少。强度可以归因于沿着杆的横截面积的不均匀分布。基于实验结果,提出了静态和动态负载条件下腐蚀钢纤维的力学行为的时间依赖性评估方法。

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