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Experimental study on skew inverted-T bent caps with minimum traditional and skew transverse reinforcing

机译:最小传统和偏移横向增强抗杆弯曲胶囊的实验研究

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In this paper, the shear behavior of six full-scale Inverted-T Bent Caps (ITBC) specimens with skew angles of 30 degrees, 45 degrees, and 60 degrees are reported to study the effect of skew angle and rebar arrangement on structural performance. The transverse reinforcement in skewed ITBCs is designed as per the traditional methods the TxDOT Bridge Design Manual LRFD, which conform to the AASHTO LRFD Bridge Design Specifications. The traditional design of flaring the transverse rebar in skew ITBCs brings notable difficulty in manufacturing. An alternative way is to apply uniform skewed reinforcing, which is compared to traditional design in this research. The minimum ratio of transverse reinforcement required by AASHTO LRFD specifications was adopted in this research to investigate the most unfavorable design. The load-displacement curves, the internal force diagrams, the strength and displacement capacity, and the strain measuring results are reported in detail. The specimens with a skew angle of 30 degrees or 45 degrees fail in shear-critical mode, while the specimens with a skew angle of 60 degrees fail in torsion-critical mode. The experimental results show that replacing the traditional reinforcement with the skew reinforcement does not reduce the capacity of ITBCs. The cracking behavior of ITBCs with skew rebar are better than the ITBCs with traditional rebar. Based on the extensive experimental study on ITBCs, general design guidelines for the design and construction of the skewed reinforcing in ITBCs are provided.
机译:在本文中,据报道,六个满量程倒立-T弯曲帽(ITBC)标本的剪切行为为30度,45度和60度,旨在研究偏斜角度和钢筋排列对结构性能的影响。歪斜ITBCS中的横向增强根据传统方法设计TXDOT桥梁设计手册LRFD,它符合AASHTO LRFD桥梁设计规范。传统设计歪斜横向钢筋在歪斜ITBCS中带来了显着的难度。另一种方法是应用均匀的偏斜增强,这与本研究中的传统设计进行了比较。本研究采用AASHTO LRFD规范所需的横向增强率的最小比率,以研究最不利的设计。载荷 - 位移曲线,内部力图,强度和位移容量,以及应变测量结果。具有30度或45度的歪斜角度的标本在剪切临界模式下失效,而具有60度的歪斜角度的样本在扭转临界模式下失效。实验结果表明,用歪斜钢筋更换传统的加固,不会降低ITBC的能力。 ITBCS与歪斜螺纹钢的开裂行为比传统钢筋的ITBC更好。基于ITBCS的广泛实验研究,提供了ITBCS中偏斜增强设计和构建的一般设计指南。

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