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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Analysis of the shape effect on the axial performance of a waveform micropile by centrifuge model tests
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Analysis of the shape effect on the axial performance of a waveform micropile by centrifuge model tests

机译:离心机模型试验对波形微潜能轴向性能的形状效应分析

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摘要

A new type of micropile, the waveform micropile, has been developed to provide improved load-bearing capacity compared with that of a conventional micropile. The waveform micropile has a wave-shaped grout with a partially enlarged shear key formed by the jet grouting method on the cylindrical shaft of the micropile. Previous research has determined that the waveform micropile can be installed faster than the conventional micropile and that the bearing capacity increases as the wave-shaped grout provides additional shaft resistance between the ground and the grout. In this study, a series of centrifuge model tests were conducted on the waveform micropile model with various wave-shaped grouts to analyze the relationship between the arrangement of the shear key and the load-bearing mechanism of the waveform micropile. The load-settlement relationship and the load-transfer mechanism were analyzed based on the test results of six test micropiles, including three waveform micropiles with a single shear key at various depths, one waveform micropile with a multiple shear key along the pile depth, and two micropiles with only a cylindrical shape. The test results showed that the ultimate bearing capacity of the waveform micropile was over two times greater than that of the conventional micropile. The rate of increase in the bearing capacities of each waveform micropile differed with the shape of the shear key. Furthermore, the characteristics of the load-sharing ratio due to the shaft resistance and end bearing varied depending on the shape of the waveform micropiles.
机译:已经开发出一种新型的微疏水,波形微疏水,与传统微疏水相比提供改善的承载能力。波形微疏水具有波形灌浆,其具有由微疏水圆柱形轴上的喷射灌浆方法形成的部分放大的剪切键。以前的研究已经确定,波形微疏水可以比传统的微疏水更快地安装,并且随着波形灌浆在地面和灌浆之间提供额外的轴电阻,承载能力增加。在该研究中,在具有各种波形灌浆的波形微潜水模型上进行一系列离心模型测试,以分析剪切钥匙的布置与波形微疏水的承载机构之间的关系。根据六个测试微量的测试结果分析负载沉降关系和负载转移机制,包括三个波形微量厚度,各种深度,一个波形微量沿着绒毛深度,具有多个剪切键,和两个微型微型圆柱形。测试结果表明,波形微疏水的最终承载能力超过传统微疏水的两倍。每个波形微量厚度的轴承容量的增加速率与剪切钥匙的形状不同。此外,由于轴电阻和端轴承引起的负载共用比的特性根据波形微量的形状而变化。

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