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A new approach to shear design of slender reinforced concrete members without transverse reinforcement

机译:无横筋的细长钢筋混凝土构件剪力设计的新方法

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This paper presents the theoretical development of a new approach to determining the shear capacity of slender reinforced concrete members without transverse reinforcement. Taking into account the very small component of the normal stress of concrete in the tension zone, which is normally neglected when determining the bending capacity, it is assumed that the damage is potentially localized in a narrow band that tends to connect the tips of existing flexural cracks. The width of this band increases with the shear force and decreases with the increase of the bending moment. The shear failure is characterized by the formation of the critical shear crack in the shear band when its width reaches a critical value. With the new approach, the bending moment has a positive influence on the shear resistance of a cross-section, which contradicts most existing shear models. The validation of the new approach against experimental data shows that the proposed method accurately predicts the shear capacity of all investigated types of shear span. The influences of the structural system and load arrangement on the shear response observed from experimental investigations can be well captured. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种新方法的理论发展,该方法可以确定没有横向钢筋的细长钢筋混凝土构件的抗剪承载力。考虑到拉力区中混凝土法向应力的很小部分,在确定弯曲能力时通常会忽略这一点,因此认为损坏可能位于一个狭窄的带中,该带倾向于连接现有挠曲的尖端裂缝。该带的宽度随着剪切力而增加,并且随着弯矩的增加而减小。剪切破坏的特征是当剪切带的宽度达到临界值时在剪切带中形成临界剪切裂纹。采用新方法,弯矩对横截面的抗剪力具有积极影响,这与大多数现有的剪力模型相矛盾。新方法对实验数据的验证表明,所提出的方法可以准确预测所有研究类型的剪跨的剪力。可以很好地捕捉到结构系统和载荷布置对从实验研究中观察到的剪切响应的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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