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首页> 外文期刊>Journal of Composites for Construction >Response of Concrete Corbels Reinforced with Internal Steel Rebars and External Composite Sheets: Experimental Testing and Finite Element Modeling
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Response of Concrete Corbels Reinforced with Internal Steel Rebars and External Composite Sheets: Experimental Testing and Finite Element Modeling

机译:内部钢筋和外部复合板增强的混凝土牛腿的响应:实验测试和有限元建模

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This paper aims to investigate the structural response of concrete corbels reinforced internally with steel rebars and externally with carbon fiber-reinforced polymer (CFRP) composite sheets. Nine specimens were constructed and tested. Test parameters included the amount of internal longitudinal steel rebars and configuration of the external composite sheets. Nine two-dimensional finite-element (FE) models were developed, assuming a perfect bond between the CFRP and concrete. Three additional FE models were developed in which an interfacial bond stress-slip model was adopted between the diagonal CFRP reinforcement and the concrete. The external CFRP composite reinforcement resulted in up to 40% increase in the load capacity. The contribution of the external CFRP reinforcement to the load capacity decreased with an increased amount of internal steel rebars. The addition of primary longitudinal CFRP sheets in a direction parallel to the primary steel rebars reduced the steel strains and increased the yield and ultimate loads. The inclusion of secondary CFRP longitudinal reinforcement at the midheight of the corbels did not result in additional strength gain. The diagonal CFRP reinforcement restricted growth and widening of the shear cracks, and hence, increased the gain in the load capacity. The numerical load capacity was in the range of 10% error band. The numerical crack pattern, deflection response, and steel and CFRP strain responses were in good agreement with those measured experimentally. The integration of the interfacial bond stress-slip model in the FE analysis between the diagonal CFRP reinforcement and concrete resulted in more conservative/accurate predictions for the structural response.
机译:本文旨在研究内部用钢钢筋和外部用碳纤维增强聚合物(CFRP)复合板增强的混凝土牛腿的结构响应。构造并测试了9个标本。测试参数包括内部纵向钢筋的数量和外部复合板的配置。假设CFRP和混凝土之间存在完美的结合,则开发了九个二维有限元(FE)模型。开发了另外三个有限元模型,其中在对角CFRP钢筋和混凝土之间采用了界面粘结应力-滑移模型。外部CFRP复合材料增强材料的承载能力提高了40%。随着内部钢筋数量的增加,外部CFRP钢筋对承载能力的贡献降低。在平行于初级钢筋的方向上添加初级纵向CFRP钢板可减少钢应变,并增加屈服强度和极限载荷。在牛腿中间高度处包含次级CFRP纵向钢筋,不会增加强度。斜向CFRP钢筋限制了剪切裂纹的扩展和扩展,因此增加了载荷能力。数值负载能力在10%误差带范围内。数值裂纹模式,挠度响应以及钢和CFRP应变响应与实验测量值吻合良好。在对角CFRP钢筋和混凝土之间的有限元分析中界面粘结应力-滑移模型的集成导致对结构响应的更保守/准确的预测。

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