...
首页> 外文期刊>Innovative Infrastructure Solutions >Experimental, analytical and numerical performance of RC beams with V‑shaped reinforcement
【24h】

Experimental, analytical and numerical performance of RC beams with V‑shaped reinforcement

机译:V形加固型RC梁的实验,分析和数值性能

获取原文
获取原文并翻译 | 示例
           

摘要

Nowadays the construction process is very much challenging and difficult for the civil engineers. The reinforced concrete (RC) is the most essential and extensively used material which possesses various important properties like compressive and strength. Several attempts have been made in the field of RC technology to flourish such concretes with special characteristics. Investigators all over the world are making efforts to develop high-performance RC by using different arrangements of reinforcement in concrete. The objective of this research work is to evaluate the performance of V-shaped reinforcement in RC beams subjected to four-point loading by experimentally, analytically and numerically. The results are compared with equivalent similar RC beams with conventional reinforcement. During the study, a comparison between all the investigation methods is also carried out. The maximum load, deflection, stresses, ductility and failure patterns of the specimens are monitored, analyzed and compared. From the investigation, it has been observed that the experimental results are closely matched with numerical analysis performed by using ANSYS software and numerical results. Therefore, the benefit of using V-shaped reinforcement can be observed significantly. From the study, it is also found that the load-deflection have a stiffer response, and there is an increase in ductility as well as strength level in compression zone due to the arrangement of V-shaped reinforcement. The V-shaped reinforcement develops the folded plate action, which not only increases the ductility but also allows redistribution of moments and reversal of loading in the beam which leads to avoid the collapse during hazards impact. It is also observed that the mode of damage has been changed from brittle to ductile for the V-shaped reinforced beams in comparison with the conventional reinforced beams. However, the observed failure patterns are identical in both the arrangements. From the study, it is concluded that the beam with V-shaped reinforcement is a good alternative over the beam with conventional reinforcement because it not only enhanced structural performance in all directions but also reduced the total cost.
机译:如今,施工过程非常具有挑战性,对土木工程师来说难以。钢筋混凝土(RC)是最必要和广泛使用的材料,其具有抗压性和强度等各种重要性质。 RC技术领域已经在RC技术领域进行了多次尝试,以具有特殊特性的这种混凝土。通过使用混凝土的不同安排,世界各地的调查人员正在努力开发高性能RC。该研究的目的是评估通过通过实验,分析和数值在四点载荷进行的RC光束中进行V形加固的性能。将结果与具有常规加强件的等效类似RC光束进行比较。在研究期间,还进行了所有调查方法之间的比较。监测标本的最大载荷,偏转,应力,延展性和故障模式,分析和比较。从调查中,已经观察到实验结果与使用ANSYS软件和数值结果进行的数值分析密切相关。因此,可以显着地观察使用使用V形加强件的益处。从研究来看,还发现负载偏转具有更致的响应,并且由于V形加强件的布置,压缩区中的延展性以及强度水平的增加。 V形加强件显影折叠板作用,这不仅增加了延展性,而且还允许在梁中重新分配和载荷的加载逆转,这导致避免在危险中撞击的崩溃。还观察到,与传统的加强梁相比,损坏模式已经从脆性到V形增强梁的韧性变化。然而,观察到的故障模式在这两个布置中都是相同的。从研究开始,得出结论是,具有V形加强件的梁是具有传统增强梁的梁上的良好替代,因为它不仅提高了所有方向的结构性能,而且还降低了总成本。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号