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HOLLOW CORE BAR MICROPILES - DESIGN PARAMETERS INTERPRETED FROM 260 LOAD TESTS

机译:空心芯栏微型钢丝 - 设计参数解释了260个负载测试

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A recent bridge underpinning project provided a unique opportunity to obtain information on the load-deflection response of 260 hollow-core bar micropiles. All production micropiles were proof-tested to a maximum load of 125 percent of the design load. In addition, four verification tests were performed on sacrificial micropiles to at least two and a half times the design loads. This paper presents the results of the verification and proof tests performed for this project, and provides recommended values for design of hollow core bar micropiles in soils similar to those encountered. This work shows that hollow core bar micropiles provide a significant unit bond capacity in both granular and fine,soils, which may be greater than that typically expected in pressure-grouted (Type B) micropiles. The hollow core bar system allows faster installation rates in the soil types encountered than other traditional micropile techniques, and can be installed with relatively simple quality control procedures.
机译:最近的桥梁支撑项目提供了一个独特的机会,可以获得有关260空心芯棒微型钢管的负载偏转响应的信息。所有生产微型产品均检测到最大负荷为125%的设计负荷。此外,对设计负荷的至少两个和半倍进行四次验证测试。本文介绍了对该项目执行的验证和证明测试的结果,并为类似于遇到的土壤中的空心核心条微型设计的推荐值提供了推荐的值。这项工作表明,中空芯棒微量自化在粒状和细土壤中提供了显着的单元粘合能力,这可能大于压力灌浆(B型)微量的预期。中空芯杆系统允许比其他传统微型技术遇到的土壤类型更快的安装速率,并且可以安装相对简单的质量控制程序。

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