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Out-of-Plane Bending and Shear Behaviors of Steel Plate-Concrete Walls for Nuclear Power Plants

机译:核电厂钢板混凝土墙壁外平面弯曲和剪切行为

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摘要

The steel plate-concrete structure, with its advantages of modular construction, good seismic capacity, and strong impact resistance, has been gradually replacing the reinforced concrete structure in the containment vessel and internal workshop structure of nuclear power plants in recent years. In this study, the out-of-plane single-point loading test and parametric finite element simulation analysis were conducted on five steel plate-concrete wall slab specimens with different stud spacings, shear span ratios, and steel contents. Results showed that the steel plate-concrete wall slab under the out-of-plane load had the same failure mode as that of an ordinary reinforced concrete wall. The out-of-plane shear capacity of the steel plate-concrete wall slab increased significantly in the case of numerous studs. With the increase in shear span ratio, steel plate-concrete members suffered a bending failure. When the steel content was low, they had diagonal tension failure, such as a rare-reinforced concrete wall. The out-of-plane bending and shear mechanism of the steel plate-concrete shear wall was studied theoretically, and the calculation formulas of the bending and shearing capacities were derived.
机译:钢板混凝土结构具有模块化结构的优点,良好的地震能力和强烈的抗冲击性,近年来一直逐渐取代钢铁厂的钢筋混凝土结构和核电厂内部车间结构。在该研究中,在具有不同螺柱间距,剪切跨度比和钢含量的五个钢板 - 混凝土墙板标本上进行了外平面单点负载试验和参数化有限元模拟分析。结果表明,在平面外负载下的钢板混凝土壁板具有与普通钢筋混凝土墙相同的故障模式。在众多螺柱的情况下,钢板混凝土墙板的外平面剪切容量显着增加。随着剪切跨度比的增加,钢板混凝土构件遭受弯曲衰竭。当钢含量低时,它们具有对角线张力故障,例如稀有钢筋混凝土墙。从理论上研究了钢板 - 混凝土剪力墙的平面外弯曲和剪切机构,衍生弯曲和剪切能力的计算公式。

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