Chen Chen, Xia Yuanyou, Lin Manqing, Ni Qing
School of Civil Engineering and Architecture, Wuhan Institute of Technology, Wuhan, 430073, China.
School of Resources and Safety Engineering, Wuhan Institute of Technology, Wuhan, 430073, China.
Sci Rep. 2022 Sep 2;12(1):15015. doi: 10.1038/s41598-022-19353-8.
The 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.
多铃铛扩孔锚的结构参数对锚固性能起着至关重要的作用。在探索优化的锚杆结构时,多铃铛扩孔锚的参数研究很有帮助。基于小规模物理模拟试验的结果,在竖向抗拔荷载作用下采用了两种类型的多铃铛扩孔锚。采用数值研究方法来研究铃铛间距、扩孔结构和铃铛尺寸对极限抗拔承载力的影响。在分析锚固机理后,通过锚杆单位混凝土用量所提供的锚固力来评估锚固效率,并定义了结构参数λ,其等于扩孔铃铛锥体与铃铛之间直杆的表面积比。然后,给出了锚固效率优化的结构参数。模型试验和模拟结果分析表明,与凹形铃铛表面相比,凸形可以提高多铃铛扩孔锚的极限承载力。相邻铃铛的间距存在一个最优值,多铃铛锚杆拔出有三种机理模型。当λ∈[1, 1.8]时,多铃铛锚杆能最有效地发挥其结构优势。