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Seismic Retrofitting of Bridge Columns using Shape Memory Alloys

机译:使用形状记忆合金的桥梁抗震加固

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This analytical work focuses on enhancing the ductility capacity and damage mitigation of reinforced concrete bridge columns during earthquakes by using innovative active confinement technique. The high recovery stress associated with the shape recovery of shape memory alloys (SMAs) is exploited to apply the confining pressure. A 2-D analytical model for a single column is developed and analyzed. The model is used to evaluate the seismic behavior of the column retrofitted with SMA rings and compare it with the behavior of the column retrofitted with the more conventional approach using carbon fiber reinforced polymer (CFRP) sheets. The stress-strain behavior of the concrete confined with internal ties only, internal ties and external SMA rings, and internal ties and external CFRP sheets is described based on two different constitutive models. The column model is subjected to cyclic loading with increasing amplitude and a ground motion excitation. The analysis shows that the SMA rings provide the column with more damage protection represented by a reduction in the maximum strain by up to 273% compared to CFRP sheets. In addition, the column retrofitted with SMA rings shows smaller lateral drifts compared to the column retrofitted with the CFRP sheets when subjected to the same ground motion excitation. The superior performance of the SMA rings is primarily attributed to the increase in the compressive strength at early stages of loading associated with applying the active confinement pressure.
机译:这项分析工作的重点是通过使用创新的主动约束技术来增强钢筋混凝土桥柱在地震过程中的延展能力和减震能力。利用与形状记忆合金(SMA)的形状恢复相关的高恢复应力来施加约束压力。开发并分析了单列的二维分析模型。该模型用于评估装有SMA环的柱的抗震性能,并将其与采用更常规的碳纤维增强聚合物(CFRP)板的柱的抗震性能进行比较。基于两种不同的本构模型描述了仅受内部连接,内部连接和外部SMA环以及内部连接和外部CFRP约束的混凝土的应力-应变行为。圆柱模型受到振幅增加和地震动激励的循环载荷。分析表明,与CFRP板相比,SMA环为色谱柱提供了更多的损伤保护,其最大应变降低了273%。此外,在相同的地面运动激励下,与加有CFRP薄板的色谱柱相比,加有SMA环的色谱柱显示出较小的横向偏移。 SMA环的优越性能主要归因于与施加主动约束压力相关的载荷在早期阶段的抗压强度增加。

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