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Development of umbrella anchor approach in terms of the requirements of field application

机译:在现场应用要求方面开发伞锚近方法

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摘要

In this study, an innovative anchoring approach has been developed dealing with all relevant aspects in consideration of previous works. An ultimate pulling force calculation of anchor is presented from a geotechnical point of view. The proposed umbrella anchor focuses not only on the friction resistance capacity, but also on the axial capacity of the composite end structure and the friction capacity occurring around the wedge. Even though the theoretical background is proposed, in-situ application requires high-level mechanical design. Hence, the required parts have been carefully improved and are composed of anchor body, anchor cap, connection brackets, cutter vanes, open-close ring, support elements and grouting system. Besides, stretcher element made of aramid fabric, interior grouting system, guide tube and cable-locking apparatus are the unique parts of this design. The production and placement steps of real sized anchors are explained in detail. Experimental results of 52 pullout tests on the weak dry soils and 12 in-situ tests inside natural soil indicate that the proposed approach is conservative and its peak pullout value is directly limited by a maximum strength of anchored soil layer if other failure possibilities are eliminated. Umbrella anchor is an alternative to conventional anchor applications used in all types of soils. It not only provides time and workmanship benefits, but also a high level of economic gain and safe design.
机译:在这项研究中,在考虑到以前的作品时,已经制定了一种创新的锚定方法,以处理所有相关方面。从岩土角度提出了锚的终极拉力计算。所提出的伞锚不仅聚焦摩擦阻力,而且对复合端结构的轴向容量和周围发生的摩擦力。尽管提出了理论背景,但原位应用需要高级机械设计。因此,所需的部件已经精细地改进,并且由锚固体,锚固帽,连接支架,切割叶片,开闭环,支撑元件和灌浆系统组成。此外,由芳纶织物,内部灌浆系统,导管和缆绳锁定设备制成的担架元件是这种设计的独特部分。详细解释了真实尺寸锚的生产和放置步骤。在天然土壤中弱干燥土壤和12位原位试验的实验结果表明,如果消除其他故障可能性,所提出的方法是保守的,其峰值拉出值直接受到锚定土层的最大强度。伞锚是所有类型的土壤中使用的传统锚固应用的替代方案。它不仅提供时间和工艺福利,而且提供了高水平的经济利益和安全设计。

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