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EFFECTIVE ANCHORAGE LENGTH FOR SRHSHPC COMPOSITE STRUCTURE

机译:SRHSHPC复合结构的有效锚固长度

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The interfacial shear stress transfer capacity between steel and concrete has great influence on the mechanical performance of steel-concrete composite structural members. Therefore, study on the interfacial shear stress transfer mechanism between steel and concrete is of great significance. The fracture mechanics method is an effective way to analyze the interfacial crack porpagation and shear stress transfer capacity between steel and concrete. In this paper, the nonlinear fracture mechanics (NLFM) method is employed to investigate the interfacial behavior between embedded steel and concrete for SRHSHPC composite structural members. Considering the stress equilibrium, the interfacial governing differential equation is derived based on some basic assumptions. By introducing a simplifed bond stress-slip constitutive model with softening, the closed-form solutions for the distribution of bond stress, relative slip and steel stress are obtained and the anchorange force between embedded steel and concrete can be calculated accordingly. The analytical results show that the peak value of bond stress transfers towards the free end gradually after bond softening occurs. At last the effective anchorge length for SRC composite structure, which is defined as the length needed to attain the maximum anchorage force, is proposed on the basis of the analytical results.
机译:钢和混凝土之间的界面剪切应力传递能力对钢混凝土复合结构构件的机械性能产生了很大的影响。因此,研究钢和混凝土之间的界面剪切应力转移机制具有重要意义。裂缝力学方法是分析钢和混凝土之间的界面裂纹孔径和剪切应力传递能力的有效方法。本文采用非线性断裂力学(NLFM)方法来研究嵌入式钢与SRHSHPC复合结构构件混凝土之间的界面行为。考虑到应力平衡,基于一些基本假设来源的界面控制微分方程。通过用软化引入简化的粘合应力滑动本构型模型,获得用于分布粘合应力,相对滑动和钢应力的闭合溶液,并且可以相应地计算嵌入钢和混凝土之间的锚固力。分析结果表明,在粘结软化后逐渐转移粘合应力逐渐转移到自由端的峰值。最后,基于分析结果提出了基于分析结果的基础上定义为达到最大锚固力所需的长度的SRC复合结构的有效锚。

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