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Effects of Bond Deterioration Due to Corrosion on Seismic Performance of Reinforced Concrete Structures

机译:腐蚀引起的粘结劣化对钢筋混凝土结构抗震性能的影响

摘要

Reinforced concrete structures deteriorate throughout their lifetime. This is particularly apparent in structures subjected to aggressive environments, which results in corrosion of reinforcing steel. Designers make allowances for accelerated deterioration in these environments in an attempt to ensure the durability of the structure. To combat corrosion, improved concrete characteristics and additional concrete cover are used to increase the protection provided by concrete to reinforcing. In spite of these measures, cracking of structures in service and from natural hazards can limit the effectiveness that these measures provide. Ultimately, this results in structures suffering from corrosion, which affects their strength, stiffness, and ductility. While strength reduction can be associated directly with a reduction in bar area, impacts on stiffness and ductility are associated with more complex mechanisms, one of which is bond deterioration. A key assumption in reinforced concrete design is that there is perfect bonding between steel reinforcing and surrounding concrete to allow for strain compatibility to be assumed. Perfect bond does not exist and diminished bond performance due to corrosion deterioration further violates this assumption, the effects of which are not fully understood.This thesis investigates the effects of bond deterioration due to corrosion on the seismic performance of reinforced concrete structures. 60 monotonic and cyclic pull-out tests were undertaken on corroded reinforced concrete specimens, with corrosion levels ranging from 0% to 25% reinforcing mass loss. Additional tests were also conducted on specimens with variations in the amount of confining steel to simulate losses in confinement associated with corrosion of confining steel. Experimental results were used to develop corrosion and confinement dependent cyclic bond-slip model.The proposed bond-slip model was then used to modelling pull-out of reinforcing bars detailed in accordance with New Zealand design standard NZS3101. Analyses were performed at a range of corrosion levels, levels of confinement, and uncorroded bond strengths. These showed that pull-out of reinforcement occurred at as little as 8% corrosion in low strength, unconfined conditions.Multi-spring modelling of standard reinforced concrete columns, representing a bridge pier to foundation connection, was performed at the full range of deterioration with allowance for bond slippage. These analyses showed significant reductions in stiffness occurring with increased corrosion levels as well as reduced ductility and possible pull-out of reinforcement.
机译:钢筋混凝土结构在其整个使用寿命中都会变质。这在经受侵蚀性环境的结构中尤其明显,这会导致钢筋腐蚀。设计者在这些环境中允许加速恶化,以确保结构的耐用性。为了抵抗腐蚀,改进的混凝土特性和附加的混凝土覆盖层用于增加混凝土对钢筋的保护作用。尽管采取了这些措施,服务中的结构破裂和来自自然灾害的破裂仍会限制这些措施提供的有效性。最终,这会导致结构遭受腐蚀,从而影响其强度,刚度和延展性。强度降低可能直接与钢筋面积的减少有关,而对刚度和延展性的影响则与更复杂的机理有关,其中之一就是粘结性能下降。钢筋混凝土设计中的一个关键假设是,钢筋与周围混凝土之间存在完美的粘结,从而可以假定应变相容性。不存在完美的粘结,由于腐蚀恶化而导致粘结性能下降的情况进一步违背了这一假设,其影响尚未得到充分理解。本文研究了腐蚀导致的粘结恶化对钢筋混凝土结构抗震性能的影响。在腐蚀的钢筋混凝土试样上进行了60次单调和循环拉拔试验,腐蚀水平为0%至25%的钢筋失重。还对带有约束钢量变化的样本进行了额外的测试,以模拟与约束钢腐蚀相关的约束损失。实验结果用于建立腐蚀和约束相关的循环粘结滑移模型,然后使用拟议的粘结滑移模型对根据新西兰设计标准NZS3101详细描述的钢筋拔模进行建模。分析是在一定范围的腐蚀水平,限制水平和未腐蚀的粘结强度下进行的。这些表明在低强度,无约束条件下,钢筋的拔出仅在8%的腐蚀下发生。标准的钢筋混凝土柱(代表桥墩与地基的连接)的多弹簧建模在整个劣化范围内进行。债券滑差的准备金。这些分析表明,随着腐蚀水平的提高,延展性的降低以及钢筋的可能拔出,刚度将大大降低。

著录项

  • 作者

    Kivell Anton Richard Lean;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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