Structural parameter variation working on the performance of anti-uplift multibell underreamed anchors

Author:

Chen Chen,Xia Yuanyou,Lin Manqing,Ni Qing

Abstract

AbstractThe structural parameters of multibell underreamed anchors play a crucial role in anchoring performance. The parameters of multibell underreamed anchor investigations are helpful when exploring optimized anchor structures. Based on the results of small-scale physical modelling tests, two types of multibell underreamed anchors were adopted under vertical uplifting loads. Numerical investigations were employed to study the effect of bell spacing, underream structure and bell dimension on the ultimate uplift bearing capacity. After an analysis of the anchorage mechanism, the anchoring efficiency was evaluated by the anchoring force provided by the unit concrete usage of the anchor, and the structural parameter λ equal to the surface area ratios of the expanded bell cone to the straight shaft between bells was defined. Then, the anchoring efficiency optimized structural parameters were presented. An analysis of model tests and simulation results showed that compared to concave bell surfaces, the convex shape could enhance the ultimate bearing capacity of a multibell underreamed anchor. There is an optimal value for the spacing of neighbouring bells, and there are three models of mechanisms for multibell anchors pulling out. When λ ∈ [1, 1.8], the multibell anchors can perform most efficiently to achieve their structural advantages.

Funder

Innovation Project of Engineering Research Center of Phosphorus Resources Development and Utilization of Ministry of Education

Scientific Research Fund project of Wuhan Institute of Technology

Science and Technology Planning Project of Department of Housing and Urban Rural Development of Hubei Province, China

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference29 articles.

1. China Association for Engineering Construction Standardization. CECS 22:90. Code for Design and Construction of Soil Anchors (Central Research Institute of Building and Construction, 1990).

2. British Standard Code of Practice for Grouted Anchors. BS 8081; UDC 624.137.6 (British Standards Institution, 2015).

3. Wang, Q., Pan, R., Li, S. C., Wang, H. T. & Jiang, B. The control effect of surrounding rock with different combinations of the bolt anchoring lengths and pre-tightening forces in underground engineering. Environ. Earth Sci. 77, 1–14 (2018).

4. Lin, Y. L., Lu, L. & Yang, G. L. Seismic behavior of a single-form lattice anchoring structure and a combined retaining structure supporting soil slope: A comparison. Environ. Earth Sci. 79, 1–14 (2018).

5. Guo, G., Liu, Z., Tang, A. P. & Hu, H. C. Load-displacement relationship modeling with power function on cylindrical underreamed ground anchor. Environ. Earth Sci. 330, 0221249 (2019).

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