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Seismic behaviors of thin slender structural walls reinforced with amorphous metallic fibers

机译:非晶态金属纤维增强的细长细长结构墙的抗震性能

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摘要

In the present study, steel reinforcement details for slender structural walls were developed, which were lighter than those required by current design codes. In the developed details, transverse re-bars at wall boundaries with a relatively wide spacing and amorphous metallic fibers (AMFs) were used. Five slender wall specimens with an aspect ratio of 2.7 were constructed and tested under cyclic lateral and constant axial loads: one of these specimens was a control specimen, which was designed in accordance with the Korean concrete design code (KCI 2012), and the other four specimens were reinforced with AMFs. Two primary parameters are the fiber volume fraction of AMFs and the spacing between the transverse re bars; three different fiber volume fractions of 0%, 0.3%, and 0.6% and three different spacing of transverse re-bars of 60 mm, 90 mm, and 120 mm were used. The test results showed that thin slender walls reinforced with AMFs exhibited inelastic behaviors and performances similar to those of the control specimen in terms of flexural strength, drift capacity, energy dissipation, equivalent damping ratio, and strain distribution along the wall height. In particular, the walls reinforced with AMFs satisfied the drift level required for collapse prevention performance specified in ASCE 41-13. In addition, a practical analysis method evaluating the drift capacity of slender structural walls reinforced with AMFs was developed and verified by comparing its prediction with the test results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本研究中,开发了细长结构墙的钢筋细节,比当前设计规范要求的要轻。在开发的细节中,使用了壁间距较宽的横向钢筋和非晶态金属纤维(AMF)。建造了五个纵横比为2.7的细长壁试样,并在周期性的横向和恒定轴向载荷下进行了测试:其中一个是对照试样,它是按照韩国混凝土设计规范(KCI 2012)设计的,另一个是用AMF加固了四个试样。两个主要参数是AMF的纤维体积分数和横向钢筋之间的间距。使用三种不同的纤维体积分数(分别为0%,0.3%和0.6%)和三种不同的横向钢筋间距,分别为60 mm,90 mm和120 mm。测试结果表明,在抗弯强度,漂移能力,能量耗散,等效阻尼比和沿壁高度的应变分布方面,用AMF加固的细长壁具有非弹性性能,其性能与对照样品相似。特别是,用AMF加固的墙满足ASCE 41-13中规定的防塌性能所需的漂移水平。此外,还开发了一种实用的分析方法,用于评估用AMF增强的细长结构墙的漂移能力,并将其预测结果与测试结果进行了比较。 (C)2017 Elsevier Ltd.保留所有权利。

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