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Static and Dynamic Load Tests of Shaft and Base Grouted Concrete Piles

机译:竖井和基础灌浆混凝土桩的静,动态载荷试验

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摘要

This paper examines shaft and base grouted concrete piles by conducting vertical static load tests (SLTs) and dynamic load tests. Three concrete piles with shaft and base grouting, with base grouting only, and without grouting techniques were selected, and compressive SLTs were conducted. Two piles with grouting were also assessed with dynamic load tests. Another two uplift SLTs were conducted to one shaft and base grouted pile and one pile without grouting. Traditional presentations were provided to check whether the bored piles reached the design requirement. Interpretations of test results were also provided to determine the ultimate pile capacity. Results from these 5 SLT programs indicated that double-tangent and DeBeer's methods are close to each other, and Chin's method overestimates the pile capacity. Comparison of the results from the SLTs and dynamic load tests shows that the results from Chin's method are close to dynamic results, and Mazurkiewicz's method overestimates for friction resistance. The results also demonstrate that base and shaft grouted pile and base grouted pile increase by 9.82% and 2.89% in compressive capacity, respectively, and compared to the uplift SLTs; there is a 15.7% increment in pile capacity after using base and shaft grouting technology.
机译:本文通过进行垂直静态载荷测试(SLT)和动态载荷测试来检查竖井和基础灌浆混凝土桩。选择了三根带有竖井和基础灌浆的混凝土桩,仅采用基础灌浆,而无灌浆技术,并进行了压缩SLT。还通过动态载荷测试评估了两根灌浆桩。将另外两个隆起SLT引导至一个井筒和基础灌浆桩,以及一个未灌浆的桩。提供了传统的介绍来检查钻孔桩是否达到设计要求。还提供了测试结果的解释,以确定最终的桩容量。这5个SLT程序的结果表明,双切线法和DeBeer方法相互接近,而Chin方法高估了桩的承载能力。 SLT和动态载荷测试结果的比较表明,Chin方法的结果接近动态结果,Mazurkiewicz的方法高估了摩擦阻力。结果还表明,与隆起SLT相比,基础和竖井灌浆桩和基础灌浆桩的抗压能力分别提高了9.82%和2.89%。使用基础和竖井灌浆技术后,桩容量增加了15.7%。

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  • 来源
    《Advances in civil engineering》 |2017年第2017期|2548020.1-2548020.11|共11页
  • 作者单位

    Griffith School of Engineering, Griffith University, Gold Coast, QLD, Australia;

    School of the Civil Engineering, Shandong Jianzhu University, Jinan, Shandong, China;

    School of the Civil Engineering, Shandong Jianzhu University, Jinan, Shandong, China;

    Griffith School of Engineering, Griffith University, Gold Coast, QLD, Australia;

    Griffith School of Engineering, Griffith University, Gold Coast, QLD, Australia;

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