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首页> 外文期刊>Journal of structural engineering >Yield Penetration Hinge Rotation In Reinforcedconcrete Beams
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Yield Penetration Hinge Rotation In Reinforcedconcrete Beams

机译:钢筋混凝土梁的屈服穿透铰链旋转

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摘要

Structural engineers have long recognized the importance of member ductility, that is member rotation, in the design of reinforced concrete structures in order to redistribute moment and absorb energy due to dynamic, seismic, and blast loads. Understanding the rotation mechanism has been a difficult task due to the complex and variable behavior of reinforced concrete members and this is reflected in the slow but steady research progress. In this paper, the three components of the rotational mechanism of reinforced concrete beams are described. The rotation due to yield penetration of the reinforcing bars is then mathematically quantified using partial-interaction theory, which depends on the bond characteristics. The results are compared with published empirical approaches and shown to be in good agreement. Finally, a variable hinge length that is specific to the rotation limit due to fracture of the reinforcing bar, that is yield penetration, is mathematically developed.
机译:长期以来,结构工程师已经认识到构件延性(即构件旋转)在钢筋混凝土结构设计中的重要性,以重新分配力矩并吸收动力,地震和爆炸荷载引起的能量。由于钢筋混凝土构件的行为复杂且易变,因此了解旋转机制一直是一项艰巨的任务,这反映在缓慢而稳定的研究进展中。本文描述了钢筋混凝土梁旋转机构的三个组成部分。然后,使用局部相互作用理论在数学上量化由于钢筋的屈服穿透而引起的旋转,这取决于粘结特性。将结果与已发布的经验方法进行比较,并显示出很好的一致性。最后,在数学上开发了由于钢筋断裂而产生的特定于旋转极限的可变铰链长度,即屈服强度。

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