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首页> 外文期刊>Indian Journal of Science and Technology >Study of Beam-Column Junction based on Variations in Concrete Grade at Junction
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Study of Beam-Column Junction based on Variations in Concrete Grade at Junction

机译:基于交界处混凝土等级变化的梁柱交界研究

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Objectives: A beam-column joint has to transfer the shear forces, bending moments and other related structural response parameters efficiently. The present paper aims at studying the behavior of beam-column junction based on variations in concrete grade at junction. Analysis: To increase the load carrying capacity of a joint, a higher grade of concrete is used at a joint and also up to 1.5D in the direction of beam from face of column, to shift or relocate the plastic hinge from the interface towards the beam. The different specimens were prepared in a T-shaped mould by changing the grade of concrete at beam-column joint and these samples were tested after 7 and 28 days. Findings: Study reveals that use of M20 or M25 grade of concrete at joint and up to 1.5D (D is the depth of beam) of length of beam (M15 grade of concrete in rest of mould) increases the load carrying capacity approximately to about 20% when compared with M20 or M25 grade of concrete at junction and M15 grade in the remaining mould. The most important finding is that the use of higher grade of concrete at a joint and up to 1.5D of length of beam, shifts the failure away from the beam-column interface Thus, a beam hinging mechanism is achieved which is a ductile type of failure compared to beam-column brittle interface failure and there is approximately 15-30% increase in load carrying capacity, in comparison with higher concrete grade only at a joint core. This is a simple and efficient method of preventing the beam-column joint failure. Improvement/Applications: Based on the test results there is remarkable increase in the load carrying capacity of beam-column joint which enhances the rigidity of beam column joint in terms of strength and stiffness.
机译:目标:梁柱节点必须有效地传递剪切力,弯矩和其他相关的结构响应参数。本文旨在基于交界处混凝土等级的变化来研究梁柱交界处的性能。分析:为提高接缝的承载能力,在接缝处使用了更高等级的混凝土,并且从柱子表面沿光束的方向使用了高达1.5D的混凝土,以将塑料铰链从界面移向或重新定位到光束。通过改变梁柱接缝处的混凝土等级,在T形模具中制备不同的样品,并在7天和28天后对这些样品进行测试。结果:研究表明,在接缝处使用M20或M25级混凝土,梁的长度(在其余模具中为M15级混凝土)的最大长度为1.5D(D为梁的深度)时,承载能力大约增加到与接合处的M20或M25级混凝土和其余模具中的M15级混凝土相比,降低20%。最重要的发现是,在接缝处使用更高等级的混凝土以及最大梁长度为1.5D,可以将破坏从梁柱界面移开,从而实现了梁的铰接机制,是一种延性的。与梁柱脆性界面故障相比,这种方法的失效,与仅在接缝核心处的更高混凝土等级相比,承载能力提高了约15-30%。这是防止梁柱接头失效的简单有效的方法。改进/应用:根据测试结果,梁柱节点的承载能力显着增加,从而提高了梁柱节点的强度和刚度。

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