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Modeling cover spalling behavior in high strength reinforced concrete columns using a plasticity-fracture model

机译:使用可塑性裂缝模型在高强度钢筋混凝土柱中建模覆盖剥落行为

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摘要

The cover spalling behavior in reinforced concrete (RC) columns can greatly affect the axial peak load carrying capacity. For RC columns with normal-strength concrete, the concrete cover still carries some load in the post peak regime. However, for high-strength concrete, the concrete cover can spall prematurely, eliminating the cover capacity from the peak axial capacity of the column. The strength reduction due to premature cover spalling in high strength concrete columns may be recovered once confinement of the core increases and results in a second peak axial load. Hence, in nonlinear analysis a proper strategy is required to quantify any premature cover spalling for high- or very high-strength reinforced concrete columns. This paper discusses the strategies in modeling the concrete cover region spalling at the constitutive level. These strategies involve: (1) Adjusting the material properties for the concrete cover elements because of restrained shrinkage caused by the steel reinforcement; (2) Extending the plastic dilation rate into the tensile pressure region and adjusting the concrete dilatancy in presence of the tensile pressure; (3) Adding a tension cut-off failure surface to distinguish cracks caused by pure tensile stresses and concrete crushing (tensile splitting cracks) and (4) Assigning the cover spalling material properties only for cover elements outside the reinforcement cage or weak planes. To verify the proposed strategies, numerical validations against experimental published results are undertaken using a 3D-NLFEA finite element package. From the comparisons, it is shown that the proposed model is in good agreement with the experimental results and can accurately predict the location of the cover spalling in the load-deflection behavior.
机译:钢筋混凝土(RC)柱中的覆盖剥落行为可大大影响轴向峰值承载能力。对于具有正常强度混凝土的RC色谱柱,混凝土罩仍然在邮政峰值方案中携带一些负载。然而,对于高强度混凝土,混凝土盖可以过早地击落,从柱的峰值轴向容量中消除覆盖物容量。一旦核心的限制增加并且导致第二峰值轴向载荷,可以回收由于高强度混凝土柱的过早覆盖剥落引起的强度减小。因此,在非线性分析中,需要采用适当的策略来量化用于高压或非常高强度钢筋混凝土柱的任何过早覆盖剥落。本文讨论了在本组型水平上建模混凝土覆盖区域剥落的策略。这些策略涉及:(1)由于钢筋引入引起的抑制收缩,调节混凝土覆盖元件的材料特性; (2)将塑料扩张速率延伸到拉伸压力区域中并在拉伸压力存在下调节混凝土膨胀; (3)添加张力截止故障表面以区分由纯拉伸应力和混凝土压碎引起的裂缝(拉伸分裂裂缝)和(4)仅在加强笼或弱平面外的盖元件分配覆盖剥落材料特性。为了验证拟议的策略,使用3D-NLFEA有限元包进行对实验公开结果的数值验证。从比较中,表明所提出的模型与实验结果吻合良好,并且可以准确地预测覆盖偏转行为中的盖子剥落的位置。

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