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首页> 外文期刊>Construction and Building Materials >Latin Hypercube Sensitivity Analysis and Non-destructive Test to Evaluate the Pull-out Strength of Steel Anchor Bolts Embedded in Concrete
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Latin Hypercube Sensitivity Analysis and Non-destructive Test to Evaluate the Pull-out Strength of Steel Anchor Bolts Embedded in Concrete

机译:拉丁超立体敏感性分析和非破坏性测试,评价混凝土中钢锚螺栓的拉出强度

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摘要

Anchor bolts are extensively employed in the various industries such as construction, mechanical and mining. Their applications range from installing permanent objects such as hybrid structures, lighting piles, direction signs to structures installed for serving temporary purpose. Several destructive testing methods have been proposed to investigate the pull-out strength of anchor bolts. However, the first real non-destructive testing method that used Schmidt hammer rebound number to estimate the load carrying capacity of anchor bolts was successfully proposed by the authors. In this method the authors successfully relate the pull-out strength of the steel anchors, N, embedded in the concrete with the Schmidt hammer rebound number, R. The research team was successful in identifying anchor bolts with improper installation resulting in lower pull-out strength. It was observed during experimentation that strength of steel anchor bolts depends upon several factors such as concrete strength, embedment length, bolt diameter, its alignment and rebound number. The cut-off value, R, of 56, 61 was identified for steel anchors of 8 mm, 10 mm diameters with embedment lengths of 50 mm and the R value of 55, 53 and 51 was identified as cut-off for 12 mm, 16 mm and 20 mm diameters with embedment lengths of 50 mm and 70 mm, respectively. Anchors depicting higher rebound values can be considered as properly installed while anchors with lower rebound value indicate defects in installation and quality of surrounding concrete. Furthermore, a detailed random parametric analysis employing Latin Hypercube Sampling method to conduct sensitivity analysis of 144 anchor bolts test data. Five diameter anchor bolts with two embedment depths were tested and analyzed. Through the analysis of experimental data, the influence of each parameter was investigated in order to ascertain its impact on the load carrying capacity of the anchor bolts. It is confirmed that the alignment of the anchor bolt is most dominant factor among all random factors considered in the analysis. Furthermore, the embedment length holds a larger influence on the pull-out strength as compared to the bolt diameter.(c) 2021 Elsevier Ltd. All rights reserved.
机译:锚螺栓在施工,机械和采矿等各种行业中广泛使用。它们的应用范围从安装混合结构,照明桩,方向迹象的应用范围从安装的用于服务临时目的的结构。已经提出了几种破坏性测试方法来研究锚螺栓的拉出强度。然而,作者成功提出了使用施密特锤篮板号估计锚螺栓的负荷承载能力的第一种真正的非破坏性测试方法。在这种方法中,作者成功地将钢锚的拉出强度与施密特锤子回弹号码嵌入混凝土中,R.该研究团队成功地识别具有不当安装的锚固螺栓,导致下拉较低的安装力量。在实验过程中观察到,钢锚螺栓的强度取决于诸如混凝土强度,嵌入长度,螺栓直径,其对准和回弹数的几个因素。为8mm,10mm直径为50mm的钢锚的截止值R,R值为50mm,r值为55,53和51的钢锚,为12 mm, 16毫米和20毫米直径,分别为50毫米和70毫米的嵌入长度。描绘更高的回弹值的锚可以被认为是正确安装的,而具有较低回弹值的锚点表示周围混凝土的安装和质量的缺陷。此外,采用拉丁超立体采样方法的详细随机参数分析,对144个锚螺栓测试数据进行灵敏度分析。测试并分析了具有两个嵌入深度的5直径锚固螺栓。通过对实验数据的分析,研究了每个参数的影响,以确定其对锚螺栓承载能力的影响。确认锚螺栓的对准是分析中考虑的所有随机因子中的最主因素。此外,与螺栓直径相比,嵌入长度对拉伸强度具有更大的影响。(c)2021 elestvier有限公司保留所有权利。

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