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Experimental analyses of an optimized shear load transfer in the circumferential joints of concrete segmental linings

机译:混凝土节段衬砌周向接缝最佳剪力传递的试验分析

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The coupling of subsequent rings in the circumferential joints of tunnel lining systems is of particular interest in mechanized tunnelling and a controversial issue in discussions. On the one hand, interlocking systems such as "cam & pot" can be of use in limiting the lining's deformation. But on the other hand, unfavourable conditions often lead to repetitive and significant damage that decreases the tunnel's lifetime. This paper describes the experimental results of a three-part optimization concept (structural analysis, topological optimization and experimental verification) that was tested for concrete linings using the example of the shear coupling mechanism. First, geometrical dependencies are analysed which reveal predominantly stronger cams than corresponding pots. Hence, pot bearing capacities are increased, transferring topological optimization results to reinforcement concepts featuring micro-mesh reinforcement, steel fibre cocktails and rebars welded to anchor plates. The latter especially resulted in comparatively stronger pots along with considerably better ductility. Nevertheless, pots still represent the weaker part and are crucial for the design. Therefore, a concept with steel dowels and predefined static boundary conditions was tested. The results are characterized by a significantly lower scatter of bearing capacities accompanied by much better ductility.
机译:隧道衬砌系统周向接缝中后续环的耦合在机械化隧道施工中尤为重要,并且在讨论中还存在争议。一方面,诸如“凸轮和锅”之类的互锁系统可用于限制衬里的变形。但另一方面,不利的条件通常会导致重复性的重大破坏,从而缩短隧道的使用寿命。本文介绍了一个由三部分组成的优化概念(结构分析,拓扑优化和实验验证)的实验结果,并以剪切耦合机理为例对混凝土衬砌进行了测试。首先,分析几何相关性,发现它们比相应的罐主要具有更强的凸轮。因此,增加了锅的承载能力,将拓扑优化结果转移到以微孔网加固,钢纤维混合物和焊接到锚固板上的钢筋为特色的加固概念。后者尤其导致了相对更坚固的锅具以及更好的延展性。尽管如此,花盆仍然是较弱的部分,对设计至关重要。因此,测试了带有钢销和预定义静态边界条件的概念。结果的特点是轴承承载力的分散性显着降低,并具有更好的延展性。

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