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多腔式型钢混凝土地下连续墙受弯承载力研究
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Research on Flexural Bearing Capacity of Multi-cavity Steel Reinforced Concrete Underground Continuous Walls
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    摘要:

    总结了钢筋混凝土地下连续墙在工程应用中的局限性,在此基础上提出多腔式型钢混凝土(multi-cavity steel reinforced concrete,MSRC)组合结构作为深基坑支护结构的研究设想并对其抗弯性能开展研究. 对采用不同制作工艺的两类MSRC结构开展纯弯试验. 试验结果显示,两类构件在承载力等性能上差异较小,均表现为受弯破坏且具有较好的延性与后期承载力. 对构件受弯全过程中钢材与混凝土相互作用进行有限元分析,发现钢材在中后期承担了80%以上的弯矩,而混凝土的主要作用是延缓钢材的局部屈曲. 分析混凝土强度、钢材屈服强度、含钢率对构件受弯承载力与抗弯刚度的影响,结果显示:三类参数均与构件受弯承载力呈正相关,含钢率影响最显著,混凝土强度影响最小;混凝土强度和含钢率与构件初始抗弯刚度和使用阶段抗弯刚度呈正相关,混凝土强度影响较小,含钢率影响显著; 钢材屈服强度与抗弯刚度呈负相关,但影响在10%以内. 在平截面假定基础上给出适用于MSRC结构受弯承载力计算式,计算结果与试验和有限元模拟值吻合较好.

    Abstract:

    The paper elucidates the inherent limitations encountered by reinforced concrete continuous walls within engineering applications. It introduces the novel research concept of multi-cavity steel reinforced concrete (MSRC) as a potential solution for structural support in deep foundation pits, followed by a meticulous investigation into its bending performance. Experimental scrutiny was conducted through pure bending tests on two distinct variants of MSRC structures, each subjected to unique manufacturing processes. Results from these tests unveil subtle discrepancies in bearing capacity and other pertinent properties between the two structures. Moreover, both variants demonstrate susceptibility to bending failure in the pure bending tests, yet exhibit commendable ductility and late-stage load-bearing capacity. A comprehensive finite element analysis delves into the intricate interaction between steel and concrete throughout the entire bending process, revealing steel’s predominant role in accounting for over 80% of the bending capacity during the mid to late stages. Conversely, concrete primarily serves to mitigate local buckling of the steel. Analyzing the influences of concrete strength, steel yield strength, and steel content on member bending load capacity and stiffness reveals a positive correlation with all three parameters, with steel content exerting the greatest impact and concrete content the least. Additionally, concrete strength and steel content positively correlate with initial bending stiffness and stiffness during operational phases, albeit with concrete strength exerting a relatively minor effect. Steel content emerges as a significant determinant of stiffness. Conversely, the yield strength of steel exhibits a negative correlation with bending stiffness, albeit within a deviation threshold of 10%. Based on the assumption of a flat cross-section, the paper proposes a calculation formula for the bending capacity of MSRC structures, which demonstrates good agreement with experimental and finite element simulation results.

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秦鹏 ?,幸永康 ,宁继鸿 ,易伟建 ,陈仁朋.多腔式型钢混凝土地下连续墙受弯承载力研究[J].湖南大学学报:自然科学版,2025,52(3):1~14

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  • 在线发布日期: 2025-03-31
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