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Effectiveness of spirally shaped stirrups in reinforced concrete beams

机译:钢筋混凝土梁中螺旋形箍筋的有效性

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摘要

Normally, shear reinforcement of concrete beams consists of traditional stirrups. Replacing the individual stirrups by a continuous spiral can reduce the labour cost for production of the reinforcement cage. In this paper the use of spiral shear reinforcement is investigated by testing of 24 reinforced concrete beams in a static four-point bending test. During the tests, crack evolution is monitored, and the fracture mechanisms of the beams are analysed and compared. The results indicate that, within the inclination range used, spirally shaped shear reinforcement is a valid alternative, that could be used in international codes. In addition, it confirms earlier findings that shear span-to-depth dependency is present, although it is not considered in some international codes, and that SCC (self compacting concrete) yields a more favourable critical crack evolution compared to CVC (conventional vibrated concrete).
机译:通常,混凝土梁的抗剪钢筋由传统的箍筋组成。用连续的螺旋形代替单个的箍筋可以减少用于制造加强笼的人工成本。本文通过在静态四点弯曲试验中测试24条钢筋混凝土梁,研究了螺旋剪切钢筋的使用。在测试过程中,监测裂纹的发展,并分析和比较梁的断裂机理。结果表明,在所用的倾斜范围内,螺旋形抗剪钢筋是一种有效的替代方法,可以在国际规范中使用。此外,它证实了较早的发现,尽管在某些国际法规中没有考虑到剪力跨度对深度的依赖性,但与CVC(常规振动混凝土)相比,SCC(自密实混凝土)产生的裂纹扩展更为有利。 )。

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