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Experimental Research on T-Shaped Beam-Column Joints at Top Floor with Mechanically Anchored Reinforcement

机译:顶层T形梁柱接头的实验研究,机械锚固加固

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Mechanical anchorage becomes popular for recent reinforced concrete construction because of the ease-to-install at congested connections. Column longitudinal reinforcement is anchored at T-shaped beam-column joints at top floor where the anchorage may be positioned beyond the beam core because columns typically have larger dimensions than beams. Thus premature failure can be caused at the anchorage; however, no design details have been provided in previous studies. Therefore, this study proposes a theoretical method to evaluate the minimal requirement for reinforcement to prevent anchorage failure of column longitudinal rebar. Static cyclic loading tests were conducted on three 1/2 scale T-shaped partial frame specimens representing a beam-column joint at top floor to examine the effectiveness of the proposed quantity of anchorage-reinforcing bars. The anchorage-reinforcing bars were intensively arranged at the ends of the anchor plates in all the specimens, while different amounts of joint shear reinforcement were applied to the specimens. Consequently, all the specimens failed with beam flexural yielding, and none obvious strength deterioration was observed until a drift ratio of l/25rad. The theoretical requirement for anchorage-reinforcing bars proposed in this study is effective to prevent premature anchorage failure in T-shaped beam-column joints.
机译:由于拥挤的连接,机械锚固因近期钢筋混凝土结构而变得流行。柱纵向加强件在顶层的T形梁柱接头处锚固,其中锚固可以定位超过梁芯,因为柱通常具有比梁的较大尺寸。因此,可以在锚地上引起过早的失效;但是,之前的研究中没有提供设计细节。因此,本研究提出了一种评价增强要求的理论方法,以防止柱纵钢筋的锚固失效。静态循环加载试验在三个1/2刻度的T形部分框架上进行,其在顶层表示梁柱接头以检查所提出的锚固钢筋的有效性。锚固加强杆在所有样本中施加在锚板的端部处强烈布置,同时将不同量的关节剪切增强物施加到样本上。因此,所有标本都失效,射线弯曲屈服,并且没有观察到明显的强度劣化,直到L / 25RAD的漂移比。本研究中提出的锚固增强条的理论要求是有效的,可防止T形梁柱接头中的过早锚固失效。

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