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首页> 外文期刊>Journal of structural engineering >Effect of Surface Roughness on Cyclic Ductility of Corroded Steel
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Effect of Surface Roughness on Cyclic Ductility of Corroded Steel

机译:表面粗糙度对腐蚀钢循环韧性的影响

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Stable cyclic hysteretic behavior is required from structural members to dissipate seismic energy. Limited knowledge exists on the hysteretic behavior of corroded steel, and a relationship that quantifies energy dissipation capacity as a function of section thickness and roughness does not exist. Monotonic and cyclic tests of corroded steel were conducted in this research in an attempt to provide such quantification. Results from coupons suggest that assessing the strength of rusted members by machining a smooth coupon from steel extracted from an existing corroded structure, and only using the resulting yield and ultimate strength values in otherwise standard multilinear monotonic models, may be an unconservative approach. Results from cycling tests show that: (1) rusted steel can exhibit a significant hysteretic energy capacity, (2) a linear relationship exists between the total dissipated energy normalized by mean thickness and the mean 10-point-height of irregularities, and (3) increases in roughness correspond to decreases in the magnitude of total normalized energy dissipated before complete failure. (C) 2016 American Society of Civil Engineers.
机译:要求结构构件具有稳定的循环滞后行为以耗散地震能量。关于腐蚀钢的磁滞行为的认识有限,并且不存在根据截面厚度和粗糙度来量化能量耗散能力的关系。为了提供这种量化,本研究进行了腐蚀钢的单调和循环测试。试样的结果表明,通过加工从现有腐蚀结构中提取的钢制成的光滑试样并仅在其他标准多线性单调模型中使用所得屈服强度和极限强度值来评估生锈构件的强度可能是不保守的方法。循环测试的结果表明:(1)生锈的钢可以表现出显着的滞后能量容量;(2)通过平均厚度归一化的总耗散能量与平均不规则点10点高度之间存在线性关系,并且(3 )粗糙度的增加对应于完全失效之前耗散的总归一化能量的大小降低。 (C)2016年美国土木工程师学会。

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