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Damage evaluation of fiber reinforced plastic-confined circular concrete-filled steel tubular columns under cyclic loading using the acoustic emission technique

机译:用声发射技术循环载荷下纤维增强塑料紧密圆形混凝土填充钢管柱的损伤评价

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摘要

Glass-fiber reinforced plastic (GFRP)-confined circular concrete-filled steel tubular (CCFT) columns comprise of concrete, steel, and GFRP and show complex failure mechanics under cyclic loading. This paper investigated the failure mechanism and damage evolution of GFRP-CCFT columns by performing uniaxial cyclic loading tests that were monitored using the acoustic emission (AE) technique. Characteristic AE parameters were obtained during the damage evolution of GFRP-CCFT columns. Based on the relationship between the loading curve and these parameters, the damage evolution of GFRP-CCFT columns was classified into three stages that represented different damage degrees. Damage evolution and failure mode were investigated by analyzing the b-value and the ratio of rise time to waveform amplitude and average frequency. The damage severity of GFRP-CCFT columns were quantitatively estimated according to the modified index of damage and NDIS-2421 damage assessment criteria corresponding to each loading step. The proposed method can explain the damage evolution and failure mechanism for GFRP-CCFT columns and provide critical warning information for composite structures.
机译:玻璃纤维增​​强塑料(GFRP) - 整合的圆形混凝土填充钢管(CCFT)柱包括混凝土,钢和GFRP,并在循环载荷下显示复杂的失效力学。本文通过使用声发射(AE)技术进行了单轴循环加载试验来研究GFRP-CCFT柱的破坏机制和损伤演化。在GFRP-CCFT柱的损伤演变期间获得了特征AE参数。基于装载曲线与这些参数之间的关系,GFRP-CCFT柱的损伤演化被分为三个阶段,表示不同的损伤度。通过分析B值和上升时间与波形幅度和平均频率的比率来研究损伤进化和故障模式。根据对应于每个装载步骤的损伤指数和NDIS-2421损伤评估标准,定量估计GFRP-CCFT柱的伤害严重程度。该方法可以解释GFRP-CCFT列的损伤演化和故障机制,并为复合结构提供关键警告信息。

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