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Helically reinforced high strength concrete beams

机译:螺旋钢筋高强度混凝土梁

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摘要

Current developments of the construction industry have led to the continuous improvement of construction materials. However, continuous improvements in a material's strength capacity are often burdened by a decrease in ductility. To increase the ductility will allow new materials to be used, as well as harness the fall potential flexural strength of reinforced concrete beams. Improved ductility through the incorporation of helical reinforcement located in the compression region is investigated herein. The helix must successfully confine the inner core in order for substantial ductility improvements to occur. In this study, different helical configurations are investigated, in order to determine the full implications of their use. This paper considers the strength gain and ductility of high strength reinforced concrete beams incorporating high strength tensile and helical reinforcement. The effect on ductility through the application of helical reinforcement located in the compressive region of the beam is highlighted. Beams of span four meters were subjected to flexural loading, with an emphasis placed on the mid span deflection. The results indicate that helical reinforcement is an effective way of increasing ductility in high strength reinforced concrete beams.
机译:该建筑业的目前发展导致建筑材料的持续改进。然而,材料的强度容量的持续改进通常因延展性的降低而受到负担。增加延展性将允许使用新材料,以及利用钢筋混凝土梁的落下势抗弯曲强度。本文研究了通过掺入位于压缩区域中的螺旋加强件的改善的延展性。螺旋必须成功限制内核,以便发生大量延展性。在这项研究中,研究了不同的螺旋配置,以确定其使用的全面影响。本文考虑了高强度钢筋混凝土梁的强度增益和延展性,其采用高强度拉伸和螺旋加固。突出了通过施加位于光束的压缩区域中的螺旋加强件的对延展性的影响。跨度四米的梁进行弯曲载荷,重点放在中间跨度偏转上。结果表明,螺旋加强件是高强度钢筋混凝土梁中延展性增加的有效途径。

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