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考虑开口方向效应和纤维-混凝土界面力学性能的深梁简化抗剪方程

Simplified shear equation of deep concrete beam considering orientation effect of opening and mechanical properties of fibre-concrete interface.

作者信息

Augustino Daudi Salezi, Kanali Christopher, Onchiri Richard Ocharo, Kabubo Charles

机构信息

Department of Structural and Construction Engineering, University of Dar es Salaam, Dar es Salaam, Tanzania.

Department of Agricultural and Biosystems Engineering, Jomo Kenyatta University of Agriculture and Technology, Nairobi, Kenya.

出版信息

Heliyon. 2023 Mar 11;9(3):e14441. doi: 10.1016/j.heliyon.2023.e14441. eCollection 2023 Mar.

Abstract

In the present era of technology, the design of structural deep concrete beams is highly modernized through the use of computer-aided tools. However, theories for such design are the paramount aspects to be understood particularly when the beam has openings. To improve the mechanical properties of the deep beam with openings, recycled tyre steel fibres are required. To estimate the bond strength of the fibre-concrete interface, the concrete shrinkage strains for fibre lengths 30, 50 and 60 mm with a content of 0.5% were considered. To mitigate the conservativeness of some available shear models and improve the design of deep beams, the simplified shear equation model was developed. The model was established using a simplified compressive stress block, forces in steel reinforcement and shear stress at the fibre-concrete interface. The combined effect of opening height and length was also considered in the model. The results show that incorporating fibres in concrete increase the shear performance of deep concrete beams with openings due to high strains in the shear zone indicating high loads being transferred. For instance, beam B had a strain of 0.0153 in the lower load path compared to 5.6 × 10 for beam B There was a good correlation between measured and proposed shear capacities with -test values of 0.46, 0.996 and 0.003 for beams without fibres, and with fibres and mesh respectively. Results also showed the model shear equation performed better compared to other equations with mean absolute error (MAE) and coefficient of variation (COV) of 9.3 and 18.9%, respectively for the control beams with openings. The model also showed a mean absolute error (MAE) and coefficient of variation (COV) of 11.6 and 7.4%, respectively for the beams with fibres. The COV and MAE for the proposed model were small than those in the database, therefore, the proposed model can provide the precise design of deep concrete beams with openings and fibres.

摘要

在当今技术时代,通过使用计算机辅助工具,结构深混凝土梁的设计实现了高度现代化。然而,此类设计的理论是需要特别理解的重要方面,尤其是当梁上有开口时。为了提高带开口深梁的力学性能,需要使用再生轮胎钢纤维。为了估计纤维 - 混凝土界面的粘结强度,考虑了纤维长度为30、50和60毫米且含量为0.5%时的混凝土收缩应变。为了减轻一些现有抗剪模型的保守性并改进深梁的设计,开发了简化抗剪方程模型。该模型使用简化的压应力块、钢筋中的力以及纤维 - 混凝土界面处的剪应力建立。模型中还考虑了开口高度和长度的综合影响。结果表明,在混凝土中掺入纤维可提高带开口深混凝土梁的抗剪性能,这是由于剪应力区的高应变表明有高荷载传递。例如,梁B在较低荷载路径下的应变为0.0153,而梁B为5.6×10。对于无纤维梁、有纤维梁和有纤维网梁,实测抗剪承载力与建议抗剪承载力之间具有良好的相关性,试验值分别为0.46、0.996和0.003。结果还表明,与其他方程相比,模型抗剪方程表现更好,对于带开口的控制梁,平均绝对误差(MAE)和变异系数(COV)分别为9.3%和18.9%。对于有纤维梁,该模型的平均绝对误差(MAE)和变异系数(COV)分别为11.6%和7.4%。所提模型的COV和MAE小于数据库中的值,因此,所提模型可为带开口和纤维的深混凝土梁提供精确设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d15e/10025916/c930c0683809/gr1.jpg

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