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Extended sandwich model for reinforced concrete slabs: Shear strength with transverse reinforcement

机译:钢筋混凝土板的扩展夹心模型:横向钢筋的抗剪强度

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In this paper, the description of the shear strength of orthogonally reinforced concrete slabs with transverse reinforcement by the newly developed extended sandwich model is presented. Based on a sandwich model, the slab element is subdivided into two cover elements and a core element. The applied in-plane forces on the cover elements are treated with the cracked membrane model. Regarding shear transfer, rotating crack faces that are able to transfer shear stresses by aggregate interlock are assumed in the core, whereas the crack orientation relative to the slab plane is determined by the crack pattern of the covers. The introduction of stressed crack faces in the core enables a subdivision of the applied shear force into a concrete and a steel contribution, allowing the determination of the required minimum transverse reinforcement ratio that enforces a ductile flexural failure. A brittle shear failure is eliminated by providing a transverse reinforcement even if it is a minimum transverse reinforcement that is not able to resist the applied shear force by itself. In addition, the extended sandwich model enables a general treatment of the deformation behavior. Verifications against experimental data generally show a good agreement. The influences of a deviation of the principal shear and moment direction from the direction of the in-plane reinforcement as well as the transverse reinforcement ratio on the shear strength and the deformation capacity are demonstrated.
机译:本文通过新开发的扩展夹心模型描述了具有横向钢筋的正交钢筋混凝土板的抗剪强度。基于三明治模型,平板元素可分为两个覆盖元素和一个核心元素。用破裂的膜模型处理在覆盖元件上施加的平面力。关于剪切传递,在芯部假定了能够通过聚集互锁传递剪切应力的旋转裂纹面,而相对于平板平面的裂纹取向则由覆盖层的裂纹模式决定。在岩心中引入应力裂缝面可以将所施加的剪切力细分为混凝土和钢成分,从而可以确定所需的最小横向增强比,从而实现延性挠性破坏。即使是最小的横向加强筋,本身也无法抵抗施加的剪切力,通过提供横向加强筋可以消除脆性剪切破坏。此外,扩展的三明治模型可以对变形行为进行一般处理。对实验数据的验证通常显示出良好的一致性。证明了主剪切方向和弯矩方向偏离面内钢筋方向以及横向钢筋比例对剪切强度和变形能力的影响。

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