Minimum vertical reinforcement in RC walls

Yiqiu Lu, R. Henry
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引用次数: 1

Abstract

Recent earthquakes and research have shown that the minimum vertical reinforcement requirements in current concrete standards are insufficient to ensure well distributed cracking occurs in ductile reinforced concrete (RC) walls. To address the deficiencies of existing requirements, new theory was proposed to calculate the minimum distributed and end zone vertical reinforcement required for RC walls to meet current performance expectations. The distributed vertical reinforcement requirement was intended to prevent non-ductile behaviour for walls with low ductility demands, and was derived based on the requirement that nominal flexural strength must exceed the cracking moment capacity. The vertical reinforcement required in the ends of the wall was intended to ensure that well distributed secondary cracks form in the plastic hinge region of walls with high ductility demands, and was derived to ensure that the concrete tensile strength could be overcome by the tensile demands imposed when the vertical reinforcement in the ends of the wall yields. The proposed requirements considered the key parameters that influence the behaviour of walls with minimum vertical reinforcement. In addition, the proposed formulas were compared with current minimum vertical reinforcement limits from different concrete design standards by considering the margin of safety between cracking and nominal flexural strength and the secondary cracking behaviour. The deficiencies of the existing requirements were demonstrated and the proposed requirements were proved to be superior for walls with both low and high ductility demands.
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最小垂直钢筋混凝土墙
最近的地震和研究表明,现行混凝土标准中的最低垂直钢筋要求不足以确保延性钢筋混凝土(RC)墙发生均匀分布的裂缝。为了解决现有要求的不足,提出了新的理论来计算RC墙满足当前性能期望所需的最小分布和端区垂直配筋。分布式垂直配筋要求旨在防止具有低延性要求的墙体的非延性行为,并根据标称抗弯强度必须超过开裂弯矩能力的要求推导。墙体端部竖向配筋要求是为了保证在延性要求较高的墙体塑性铰区形成均匀分布的二次裂缝,并保证墙体端部竖向配筋屈服时混凝土的抗拉强度能够被所施加的抗拉要求所克服。建议的要求考虑了影响竖向钢筋最少的墙体性能的关键参数。此外,通过考虑开裂和名义抗弯强度之间的安全裕度以及二次开裂行为,将所提出的公式与目前不同混凝土设计标准的最小竖向配筋限值进行了比较。证明了现有要求的不足,并证明了拟议的要求对具有低延性和高延性要求的墙壁都是优越的。
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