Numerical Study of the Shear Behavior of Ultra-High-Performance Concrete Beams

IF 0.1 Q4 ENGINEERING, CIVIL Hormigon y Acero Pub Date : 2023-05-18 DOI:10.33586/hya.2023.3119
Antonio Martínez-de-la-Concha, José D. Ríos, H. Cifuentes
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Abstract

In the last decades, experimental and numerical studies on steel fiber-reinforced concrete have shown that providing suitable fiber content and distribution in the matrix can improve the post-cracking strength of concrete. Although there is a large database of experimental and numerical shear tests of steel fiber-reinforced concrete beams, there are not profuse test data and numerical models available for steel fiber-reinforced concrete beams with traditional transverse shear reinforcement (stirrups). In this work, the shear behavior of ultra-high-performance fiber-reinforced concrete beams is analyzed using the plastic damaged model developed in Abaqus. For this purpose, a comparative study is previously carried out by means of an experimental test available in the literature to validate the finite element model with conventional rebars. Then, the shear behavior of different ultra-high-performance concretes without fiber reinforcement, with the addition of 13 mm steel straight fibers, with 30 mm steel hooked-end fibers, and a mixture in 50% of 13 and 30 mm steel fibers are analyzed.
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超高性能混凝土梁抗剪性能数值研究
近几十年来,对钢纤维增强混凝土的试验和数值研究表明,在基体中提供合适的纤维含量和分布可以提高混凝土的开裂后强度。虽然钢纤维混凝土梁的剪切试验和数值试验数据库比较庞大,但传统横向剪切配筋(箍筋)钢纤维混凝土梁的试验数据和数值模型并不丰富。本文采用Abaqus开发的塑性损伤模型对高性能纤维混凝土梁的抗剪性能进行了分析。为此,先前通过文献中可用的实验测试进行了比较研究,以验证传统钢筋的有限元模型。然后,分析了无纤维增强、添加13 mm钢直纤维、添加30 mm钢钩端纤维、添加50%的13和30 mm钢纤维的超高性能混凝土的抗剪性能。
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来源期刊
Hormigon y Acero
Hormigon y Acero ENGINEERING, CIVIL-
CiteScore
0.50
自引率
0.00%
发文量
4
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