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Shear strengthening of reinforced concrete beams using different configurations of externally bonded carbon fibre reinforced plates

机译:使用不同构型的外部粘结碳纤维增强板对钢筋混凝土梁进行抗剪加固

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This paper deals with research undertaken at Oxford Brookes University into shear strengthening of reinforced concrete beams using externally bonded carbon fibre reinforced plastic plates (CFRP). Thirty-eight reinforced concrete beams of 1.8 m length were constructed and tested and are described in this paper. The relative performance of a group of sixteen beams with the same steel reinforcement but with different amounts of shear strengthening is discussed. All the beams were designed to tail in shear using a spreadsheet program. The spreadsheets were designed to ensure that the beams' flexural capacity exceeded the shear capacity after strengthening. The variables were: main reinforcement ratio, spacing between links in the shear span and different configurations of CFRP plates on shear spans. The concrete had an average compressive strength of 61.76 N/mm~2. The majority of the beams tested showed a significant improvement in shear strength by the addition of CFRP plates, with increases of between 19-122% over the control beams.
机译:本文涉及在牛津布鲁克斯大学进行的研究,即使用外部粘结的碳纤维增强塑料板(CFRP)对钢筋混凝土梁进行剪力加固。建造并测试了38根长度为1.8 m的钢筋混凝土梁,并在本文中进行了描述。讨论了具有相同钢筋但具有不同抗剪强度的一组十六根梁的相对性能。使用电子表格程序将所有梁设计为剪力拖尾。电子表格的设计可确保加固后梁的抗弯能力超过抗剪能力。变量为:主钢筋比率,剪切跨度中的链节之间的间距以及剪切跨度中CFRP板的不同配置。混凝土的平均抗压强度为61.76 N / mm〜2。通过添加CFRP板,大多数测试梁显示出抗剪强度的显着提高,比控制梁提高了19-122%。

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