钢筋混凝土裂缝梁弯曲过程中的回归依赖性

IF 1.1 Q4 MECHANICS Curved and Layered Structures Pub Date : 2022-01-01 DOI:10.1515/cls-2022-0182
Z. Nuguzhinov, O. Khabidolda, Zh. T. Bakirov, S. Zholmagambetov, Alexey Kurokhtin, D. Tokanov
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引用次数: 0

摘要

摘要本文研究了含裂缝钢筋混凝土柔性梁的应力参数确定问题。在考虑混凝土变形与应力非线性关系的前提下,采用梁有限元法求解该问题。在求解过程中,采用逐步加载的方法,每一步都采用迭代过程。为了得到应力参数随各因素的依赖关系,编制了多因素计算机模拟的合理规划矩阵,确定了含裂缝矩形钢筋混凝土弯曲梁的应力参数。根据该方案,对C20/25级和B32/40级混凝土梁进行了计算机模拟。所获得的依赖关系能够评估所考虑的结构元件对两组极限状态的可操作性。它们可用于确定断裂力学参数和评价梁的抗裂性。
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Regression dependences in bending reinforced concrete beam with cracks
Abstract The work is devoted to determining the stress parameters of flexible reinforced concrete beams with cracks. The problem is solved using LIRA-SAPR using beam finite elements, taking into account the nonlinear relationship between deformation and stress in concrete. In the course of solution, a step-by-step loading method is used with the use of an iterative process at each step. To obtain the dependence of the stress parameters on varied factors, a rational planning matrix for a multifactor computer simulation was compiled to determine the stress parameters in bent rectangular reinforced concrete beams with a crack. According to this plan, computer simulations were conducted for concrete beams of C20/25 and B32/40 class. The obtained dependences enable to evaluate the operability of the considered structural elements for both groups of limiting states. They can be used to determine the parameters of fracture mechanics and evaluate the crack resistance of a beam.
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来源期刊
CiteScore
2.60
自引率
13.30%
发文量
25
审稿时长
14 weeks
期刊介绍: The aim of Curved and Layered Structures is to become a premier source of knowledge and a worldwide-recognized platform of research and knowledge exchange for scientists of different disciplinary origins and backgrounds (e.g., civil, mechanical, marine, aerospace engineers and architects). The journal publishes research papers from a broad range of topics and approaches including structural mechanics, computational mechanics, engineering structures, architectural design, wind engineering, aerospace engineering, naval engineering, structural stability, structural dynamics, structural stability/reliability, experimental modeling and smart structures. Therefore, the Journal accepts both theoretical and applied contributions in all subfields of structural mechanics as long as they contribute in a broad sense to the core theme.
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