郑山锁, 桑子蔚, 周炎. 酸雨环境下低矮RC剪力墙抗震性能试验研究与抗剪强度预测[J]. 工程力学, 2023, 40(3): 213-224. DOI: 10.6052/j.issn.1000-4750.2021.09.0743
引用本文: 郑山锁, 桑子蔚, 周炎. 酸雨环境下低矮RC剪力墙抗震性能试验研究与抗剪强度预测[J]. 工程力学, 2023, 40(3): 213-224. DOI: 10.6052/j.issn.1000-4750.2021.09.0743
ZHENG Shan-suo, SANG Zi-wei, ZHOU Yan. SEISMIC TEST AND SHEAR STRENGTH PREDICTION OF SQUAT RC SHEAR WALLS UNDER ACIDIC ENVIRONMENT[J]. Engineering Mechanics, 2023, 40(3): 213-224. DOI: 10.6052/j.issn.1000-4750.2021.09.0743
Citation: ZHENG Shan-suo, SANG Zi-wei, ZHOU Yan. SEISMIC TEST AND SHEAR STRENGTH PREDICTION OF SQUAT RC SHEAR WALLS UNDER ACIDIC ENVIRONMENT[J]. Engineering Mechanics, 2023, 40(3): 213-224. DOI: 10.6052/j.issn.1000-4750.2021.09.0743

酸雨环境下低矮RC剪力墙抗震性能试验研究与抗剪强度预测

SEISMIC TEST AND SHEAR STRENGTH PREDICTION OF SQUAT RC SHEAR WALLS UNDER ACIDIC ENVIRONMENT

  • 摘要: 为揭示酸雨环境中低矮RC剪力墙的抗震性能变化规律,在人工气候实验室中模拟酸雨环境,对5榀低矮RC剪力墙进行加速腐蚀,在达到预期腐蚀目标后对其进行拟静力加载试验。以此研究酸雨腐蚀程度相同情况下,不同设计参数对剪力墙试件承载力、变形等指标的影响。试验结果表明:酸雨环境下,H+\rmSO_4^2- \rmNO_3^- 等多种侵蚀离子将导致试件混凝土强度损失、钢筋锈蚀、保护层锈胀开裂与脱落;随轴压比的增加,墙体的开裂、屈服和峰值荷载增大,裂缝发展速度变慢,但其破坏时更突然;水平分布筋的增大对承载力提升不大,但可以约束剪力墙腹板混凝土,限制裂缝发展从而提升试件延性。在试验研究基础上,基于拉压杆模型提出了针对酸雨腐蚀的RC剪力墙抗剪强度预测公式,并验证了其准确性。所提模型可为酸雨侵蚀环境下RC剪力墙全寿命周期内的抗震性能评估提供理论支撑。

     

    Abstract: To investigate the seismic behavior of squat reinforced concrete (RC) shear walls corroded in the environment of acid rain, five corroded squat RC shear wall specimens were made subjected to accelerated corrosion in a simulated acidic environment, and quasi-static tests were carried out. The seismic behavior of RC shear walls was investigated under different design parameters and the same degree of acid rain corrosion. Experimental results shows the loss of concrete strength, corrosion of steel bars, rust expansion, cracking and shedding of protective layers of the shear wall due to the combined erosion of H+\rmSO_4^2- \rmNO_3^- and other corrosive ions in the simulated acid solution. As the axial compression ratio increases, the cracking load, yielding load, and peak load of the wall increase, the crack development slows down, but the damage occurs more suddenly. Reducing the spacing of the transversely distributed reinforcements can restrain the concrete web of the shear wall, limit the development of cracks and improve the ductility of specimens, but the improvement in bearing capacity is slight. On the basis of experimental study, a prediction formula for shear strength of RC shear wall against acid rain corrosion is proposed using the strut-and-tie model, and its accuracy is verified. The proposed model can provide theoretical support for life-cycle seismic performance evaluation of RC shear walls under an acid rain erosion environment.

     

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