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Seismic assessment of non-engineered reinforced concrete columns in low to moderate seismic regions

机译:低于中等地震区的非工程钢筋混凝土柱的地震评估

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In under-developed rural areas of Asia, a larger portion of the housing facilities is constructed without any intervention of engineer(s). Such non-engineered reinforced concrete (NRC) structures constitute a major portion of the housing in rural areas. The lateral load resisting columns, in these structures, are constructed by locals using poor quality concrete having compressive strength as low as of 5 MPa and the amount of reinforcement may be lower than 1%. In the case of any earthquake activity, the higher population density and vulnerability of NRC structures would result in the loss of precious human life and economic turmoil. This paper investigates the reversed cyclic behavior of such an NRC column in low to moderate seismic regions of Thailand. Four columns, representative of existing NRC structures, were tested under reversed cyclic loading. Two axial load levels were used to study the effect of axial load on the ultimate lateral load and displacement capacity of the NRC column specimens. To investigate the influence of bar type, 9 mm round rebars and 12 mm deformed bars were used to fabricate the specimens. The maximum lateral drift was found to be extremely low (i.e.,1.75%) under a higher axial load level. The type of reinforcement found to influence the extent of damage in these columns. Finally, a newly developed numerical model; to incorporate the axial-flexure-shear phenomenon, is used to simulate the reversed cyclic behavior of the tested specimen and found to be successful in replicating the observed reversed cyclic behavior.
机译:在亚洲的未发达的农村地区,建造了一部分较大的住房设施,而没有工程师的任何干预。这种非工程化钢筋混凝土(NRC)结构构成农村地区壳体的主要部分。在这些结构中,横向载荷柱由使用较低的质量混凝土具有低至5MPa的压缩强度的当地构成,并且增强量可以低于1%。在任何地震活动的情况下,NRC结构的人口密度和脆弱性会导致珍贵的人类生命和经济动荡的丧失。本文研究了泰国低至中等地震区这种NRC柱的逆转循环行为。在反向循环载荷下测试了现有NRC结构的四列代表现有NRC结构。两个轴向载荷水平用于研究轴向载荷对NRC柱样本的最终横向载荷和位移容量的影响。为了研究杆式的影响,使用9mm圆形钢筋和12mm变形的棒来制造标本。发现最大横向漂移在较高的轴向载荷水平下非常低(即1.75%)。发现的钢筋的类型,以影响这些柱子中的损坏程度。最后,一个新开发的数字模型;为了掺入轴向挠性剪切现象,用于模拟测试样本的反向循环行为,并发现成功复制观察到的逆转的循环行为。

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