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首页> 外文期刊>Canadian Geotechnical Journal >Axial monotonic and cyclic compression behaviour of hollow-bar micropiles
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Axial monotonic and cyclic compression behaviour of hollow-bar micropiles

机译:空心棒桩的轴向单调和循环压缩行为

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Micropiles are used in various applications, including low-capacity micropile networks, underpinning, and seismic retrofitting of existing foundations and high-capacity foundations for new structures. Hollow-bar micropiles have an added advantage, as they provide fast installation with a high degree of ground improvement. The current Federal Highway Administration (FHWA) design guidelines designate hollow-bar micropiles as type B, even though the FHWA construction technique is different than the technique used for typical type B, which results in an overly conservative design. In addition, the current practice for construction of hollow-bar micropiles is limited to a drilling bit / hollow-bar diameter ratio of 2.5 or less. In this paper, full-scale load tests were conducted to evaluate the suitability of FHWA design guidelines to hollow-bar micropiles installed in cohesive soil and to evaluate the performance of hollow-bar micropiles constructed with a drilling bit / hollow-bar diameter ratio of 3. Eight micropiles were constructed using 76 mm (3 in.) hollow bars (76 mm outside diameter and 48 mm inside diameter) with the air-water flushing technique and advanced to a depth of 5.75 m: six micropiles were installed using a 228 mm (9 in.) drill bit and two micropiles were installed using a 178 mm (7 in.) drill bit. All micropiles were instrumented with vibrating wire strain gauges to measure the axial strain at three stations along the micropile shaft. The load tests included four axial monotonic and four cyclic axial loading tests. The results are presented and discussed in terms of load-displacement curves and load transfer mechanism. The load test results showed that the grout-ground bond strength values proposed by the FHWA (in 2005) for type B micropiles grossly underestimate the bond strength for calculating the ultimate capacity. In addition, the toe resistance can be significant for micropiles resting on sand due to the increased toe diameter. No tangent stiffness degradation was observed in the micropile capacity after applying 15 load cycles.
机译:微型桩可用于各种应用,包括低容量微型桩网络,基础加固和对现有基础以及新结构的大容量基础进行地震加固。空心杆微型桩还有一个额外的优势,因为它们可提供快速安装并大大改善了地面。当前的联邦公路管理局(FHWA)设计指南将空心杆微型桩指定为B型,即使FHWA的建造技术不同于典型B型所使用的技术,这也会导致设计过于保守。另外,当前用于建造空心杆微型桩的实践限于钻头/空心杆直径比为2.5或更小。在本文中,进行了全面的载荷测试,以评估FHWA设计准则对安装在粘性土壤中的空心杆微型桩的适用性,并评估钻头/空心杆直径比为的空心杆微型桩的性能。 3.使用气水冲洗技术,使用76毫米(3英寸)空心棒(外径76毫米,内径48毫米)构建八个微型桩,并前进至5.75 m的深度:使用228安装六个微型桩毫米(9英寸)钻头,并使用178毫米(7英寸)钻头安装了两个微型桩。所有微型桩都装有振动线应变仪,以测量沿着微型桩轴的三个位置的轴向应变。负载测试包括四个轴向单调和四个循环轴向负载测试。根据载荷-位移曲线和载荷传递机理对结果进行了介绍和讨论。载荷测试结果表明,FHWA(在2005年)提出的B型微型桩的灌浆-地面粘结强度值严重低估了计算极限承载力的粘结强度。另外,由于脚趾直径增加,因此脚趾阻力对于放在沙滩上的微型桩可能很重要。施加15个载荷循环后,在微堆容量中未观察到切线刚度降低。

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