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Study on mechanical properties and influencing factors of confined concrete arch in underground engineering with complex conditions

机译:复杂条件下限孔脉混凝土拱机械性能及影响因素研究

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Confined concrete (CC) is a new form of high-strength support. To verify it, the authors have developed a large-scale mechanical test system. With the test system, a full-scale laboratory experiment is conducted in this paper to compare the mechanical properties of CC and traditional U-shaped steel arches in a straight-wall semicircle. Both of the CC and the U-shaped steel contain the same amount of steel. The experiment is also developed to study the deformation characteristics and the bearing mechanism of various arch types. Based on the numerical calculation, the variation law of bearing capacity of the CC arch is studied under different influencing factors. The factors include wall thickness of steel tube, concrete strength, lateral pressure coefficient, and others. The results show that (1) The U-shaped steel arch is prone to local buckling instability, resulting in failure of the entire arch. In contrast, the CC arch has an ultimate bearing capacity of 1072.4 kN, which is more than 2 times that of the U-shaped steel arch; and it also has high later bearing capacity. (2) Under the action of compression and bending, the arch is damaged with the key failure position on its legs. The bending moment is the main factor for the arch failure, and its action effect is enhanced with the increase in the lateral pressure coefficient. In field application, arch legs should be reinforced to reduce the peak of the bending moment and increase the overall strength of the arch. (3) Compared with the strength of core concrete, the wall thickness of the steel tube has a more significant effect on the mechanical properties and economy of CC arches. In the arch design, the field geological conditions and construction convenience should be considered. So, the steel tube should be used with the minimum wall thickness which meets the requirements of the bearing capacity of arches; and the common brand concrete should be used. Based on the above research, CC arches are designed for support in underground engineering with complex geological conditions. The control effect is remarkable with an average deformation of the surrounding rock controlled within only 72.2 mm.
机译:密闭混凝土(CC)是一种新的高强度支持形式。为了验证它,作者开发了大规模的机械测试系统。利用测试系统,本文进行了全规模的实验室实验,比较了CC和传统U形钢拱在直壁半圆中的机械性能。 CC和U形钢都含有相同量的钢。还开发了实验,以研究各种拱形类型的变形特性和轴承机构。基于数值计算,在不同影响因素下研究了CC拱的承载力的变化规律。因素包括钢管,混凝土强度,横向压力系数等壁厚。结果表明,(1)U形钢拱容易出现局部屈曲不稳定性,导致整个拱门失效。相比之下,CC拱的终极承载力为1072.4 kN,这是U形钢拱的2倍以上;它还具有高于后的承载力。 (2)在压缩和弯曲的作用下,拱门损坏腿部的关键故障位置。弯曲力矩是弓形失效的主要因素,随着横向压力系数的增加,其动作效果增强。在现场应用中,应加强拱形腿以减少弯曲力矩的峰值并提高拱的总体强度。 (3)与芯混凝土强度相比,钢管的壁厚对CC拱的力学性能和经济性具有更大的影响。在拱门设计中,应考虑现场地质条件和施工方便。因此,钢管应与符合拱形承载力要求的最小壁厚使用;并且应该使用普通品牌混凝土。基于上述研究,CC拱门设计用于支撑地下工程,具有复杂的地质条件。控制效果显着,周围岩石的平均变形仅在72.2毫米内控制。

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