Seismic Strengthening of Low Strength Concrete Columns using High Ductile Metal Strap Confinement: A Case Study of Kindergarten School in Northern Thailand

T. Imjai, M. Setkit, Reyes Garcia, P. Sukontasukkul, S. Limkatanyu
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引用次数: 4

Abstract

The 2014 Chaing Rai earthquake (Thailand) caused extensive damage in many reinforced concrete (RC) buildings built before the introduction of modern seismic design guidelines. Much of the damage on these buildings was attributed to the inadequate capacity and/or ductility of columns. As a result, suitable and cost-effective strengthening techniques for such substandard elements are necessary. This article presents a case study on the seismic strengthening of a one-story RC kindergarten school located in Ampor Pan, Chaing Rai province. The building was partially damaged during the afore-mentioned earthquake, which led to cracking in walls, columns, and beam-column joints. As part of the initial assessment, innovative repair solutions were sought to minimize construction time, labor, and material cost. Accordingly, an innovative strengthening technique that uses Post-tension Metal Strapping (PTMS) was proposed to strengthen the damaged RC elements. This article presents details of the structural assessment performed on the building, as well as details of the PTMS strengthening strategy, which was applied for the first time in a real full-scale structure. This article contributes towards the validation and application of the PTMS strengthening on real structures, which had not been possible until now.
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采用高韧性金属带约束的低强度混凝土柱抗震加固:以泰国北部幼儿园为例
2014年泰国昌莱地震对许多在引入现代抗震设计准则之前建造的钢筋混凝土(RC)建筑造成了广泛的破坏。这些建筑物的大部分损坏是由于柱子的承载力和/或延展性不足造成的。因此,有必要对此类不合格构件采用合适且经济有效的强化技术。本文介绍了一个位于昌莱省安布尔潘的一所单层混凝土幼儿园的抗震加固案例。在上述地震中,建筑物部分受损,导致墙壁,柱子和梁柱接缝开裂。作为初步评估的一部分,我们寻求创新的维修解决方案,以最大限度地减少施工时间、人工和材料成本。在此基础上,提出了一种采用后张力金属带(PTMS)加固损伤钢筋混凝土构件的新方法。本文介绍了对建筑物进行的结构评估的细节,以及PTMS加固策略的细节,这是第一次在真实的全尺寸结构中应用。本文为PTMS加固在实际结构上的验证和应用做出了贡献,这是迄今为止不可能实现的。
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