Suppr超能文献

填充轻质再生混凝土混合料的冷弯C型钢梁的加劲性能

Stiffening Performance of Cold-Formed C-Section Beam Filled with Lightweight-Recycled Concrete Mixture.

作者信息

Al Zand Ahmed W, Alghaaeb Mustafa Farooq, Liejy Mohammed Chyad, Mutalib Azrul A, Al-Ameri Riyadh

机构信息

Department of Civil Engineering, Universiti Kebangsaan Malaysia (UKM), Bangi 43600, Malaysia.

Engineering Affairs, Ministry of Culture, Baghdad 13032, Iraq.

出版信息

Materials (Basel). 2022 Apr 20;15(9):2982. doi: 10.3390/ma15092982.

Abstract

The aim of this paper is to investigate the flexural performance of a new steel-concrete composite beam system, which is required to carry higher loads when applied in flooring systems with less self-weight and cost compared with conventional composite beams. This new composite member is prepared by filling a single cold-formed steel C-section with concrete material that has varied lightweight-recycled aggregates. In addition, varied stiffening scenarios are suggested to improve the composite behavior of this member, since these cold-formed C-sections are of a slender cross-section and more likely to buckle and twist under high bending loads than those of hot-rolled C-sections. The influence of using four different lightweight-recycled aggregates that combine together in the infill concrete material was investigated. These recycled aggregates are recycled concrete aggregate (RCA), expanded polystyrene (EPS) beads, crumb rubber aggregates (CRA) and fine glass aggregates (FGA). For this purpose, 14 samples of cold-formed galvanized steel C-purlin were filled with concrete material (containing 0 to 100% recycled aggregates) which are experimentally tested under pure bending load, and 1 additional sample was tested without the filling material. Further numerical models were prepared and analyzed using finite element analysis software to investigate the effects of additional parameters that were not experimentally examined. Generally, the results confirm that filling the C-sections with concrete material that contains varied percentages of recycled aggregates offer significantly improved the flexural stiffness, bending capacity, and ductility performances. For example, using infill concrete materials with 0% and 100% recycled aggregate replacement increased the bending capacity of hollow C-section by about 11.4 and 8.6 times, respectively. Furthermore, stiffening of the concrete-filled C-sections with steel strips or screw connectors eventually improved the composite behavior of the specimens which led to an increase in their bending capacities accordingly, and this improvement enhanced more with an increased number of these strips and connectors.

摘要

本文的目的是研究一种新型钢 - 混凝土组合梁体系的抗弯性能,该体系应用于楼面系统时,与传统组合梁相比,需要在自重和成本更低的情况下承受更高的荷载。这种新型组合构件是通过在单个冷弯薄壁C型钢截面中填充含有不同轻质再生骨料的混凝土材料制备而成。此外,由于这些冷弯C型钢截面较为细长,在高弯曲荷载作用下比热轧C型钢更容易发生屈曲和扭转,因此提出了多种加劲方案来改善该构件的组合性能。研究了在填充混凝土材料中使用四种不同轻质再生骨料组合的影响。这些再生骨料分别是再生混凝土骨料(RCA)、聚苯乙烯泡沫(EPS)颗粒、橡胶碎骨料(CRA)和细玻璃骨料(FGA)。为此,对14个填充混凝土材料(含0%至100%再生骨料)的冷弯镀锌钢C形檩条样本进行了纯弯曲荷载试验,另外还对1个未填充材料的样本进行了试验。使用有限元分析软件建立并分析了进一步的数值模型,以研究未进行试验研究的其他参数的影响。总体而言,结果证实,用含有不同百分比再生骨料的混凝土材料填充C型钢截面可显著提高抗弯刚度、抗弯能力和延性性能。例如,使用0%和100%再生骨料替代率的填充混凝土材料时,空心C型钢截面的抗弯能力分别提高了约11.4倍和8.6倍。此外,用钢带或螺丝连接件对填充混凝土的C型钢截面进行加劲最终改善了试件的组合性能,从而相应提高了它们的抗弯能力,并且随着这些钢带和连接件数量的增加,这种改善更为明显。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a9b/9100351/e0697b26bdb0/materials-15-02982-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验