Improving RC Beam-Column Joints Characteristics Using Different Reinforcement Details

A. Jaafer, Dhiaa Chasib Resheqal
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Abstract

This paper aims to study the effect of concrete confining using a new style of internal closed stirrups and longitudinal steel bars along with the middle third of the beam length of the beam-column joints. Also, the influence of concrete compressive strength was investigated using three types of concrete normal strength concrete (NSC), high strength concrete (HSC), and steel fiber concrete (SFRC). Nine reinforced concrete specimens with the same dimensions are divided into three groups according to the concrete type with different reinforcement details in the middle third of the specimen’s length. Four specimens with (NSC) represent the first group, while three specimens consist in the second group with (HSC). Steel fiber of 2% was used in two specimens of the third group (SFRC). The test results showed that using additional reinforcement steel bars as a closed stirrup arranged about the neutral axis improved the flexural strength and enhanced the load-carrying capacity for the reinforced concrete joints. The ultimate capacity of the joints increased by a range (34 to 50) % more than the control specimen. The ultimate strength was also increased for the specimens due to using high-strength concrete with a range (of 13 to 66) % compared with the specimen of normal compressive strength.
采用不同配筋方式改善钢筋混凝土梁柱节点特性
本文旨在研究一种新型的内封闭箍筋和纵向钢筋在梁柱节点梁长中间三分之一处的混凝土围合效果。同时,采用正强混凝土(NSC)、高强混凝土(HSC)和钢纤维混凝土(SFRC)三种混凝土类型,研究了混凝土抗压强度对混凝土抗压强度的影响。9个尺寸相同的钢筋混凝土试件,在试件长度的中间三分之一处,按混凝土类型不同,配筋细节不同分为三组。带(NSC)的4个标本为第一组,带(HSC)的3个标本为第二组。第三组(SFRC) 2个试件采用2%钢纤维。试验结果表明,在中性轴上布置附加钢筋作为封闭箍筋,提高了钢筋混凝土节点的抗弯强度,增强了节点的承载能力。节点的极限承载力比对照试件增加了34% ~ 50%。与正常抗压强度相比,使用高强混凝土可提高试件的极限强度(13% ~ 66%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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