首页> 外文会议>International Structural Engineering and Construction Conference >EXPERIMENTAL STUDY ON INFLUENCE OF BENDING RADIUS OF MAIN TENSILE BARS ON STRESS TRANSMISSION IN REINFORCED CONCRETE KNEE JOINTS WITH PRACTICAL DETAIL
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EXPERIMENTAL STUDY ON INFLUENCE OF BENDING RADIUS OF MAIN TENSILE BARS ON STRESS TRANSMISSION IN REINFORCED CONCRETE KNEE JOINTS WITH PRACTICAL DETAIL

机译:具有实用细节钢筋混凝土膝关节应力传递对钢筋混凝土膝关节应力透射影响的实验研究

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摘要

In Japan, the stress transmission of R/C column and beam joints is calculated differently depending on their type of joint. In interior joints, main bars are continued through the joint panel both vertically and horizontally. Thus, the ultimate strength of interior joints is more reliable. However, in knee joints main bars are not continued. Additionally, since there is no load on knee joints from above, frictional force between concrete and main bars weakens and makes the joint panel relatively easy to break under stress transmission. In the previous studies Hotta and Nishizawa (2012), it's concluded that the sufficient inside radius of the main tensile bars that were continuously arranged through the panel from beam to column improves structural performance and prevents bearing failure of the joint panel when the joints were tested in closing direction. The objective of this following study is to show the influence of the inside radius of the main tensile bars which is separated in the joint panel as a practical design under stress transmission by conducting closing load.
机译:在日本,R / C柱和梁接头的应力传输根据其关节的类型而不同地计算。在内部接头中,主杆通过垂直和水平的关节板继续。因此,内部关节的最终强度更可靠。然而,在膝关节中,不继续主条。另外,由于膝关节从上方没有负载,因此混凝土和主杆之间的摩擦力削弱并使接头面板在应力传输下相对容易破裂。在先前的研究Hotta和Nishizawa(2012)中,得出的结论是,主要拉伸杆的足够内径半径,其连续排列通过面板从梁柱上延伸到柱子,提高了结构性能,并防止了接头在接头进行了测试时的轴承故障在关闭方向。以下研究的目的是展示主要拉伸杆的内半径的影响,其在接头板中分离为通过进行关闭载荷的应力传输下的实际设计。

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