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首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Use of Soft Computing Techniques to Predict the Bond to Reinforcing Bars of Underwater Concrete
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Use of Soft Computing Techniques to Predict the Bond to Reinforcing Bars of Underwater Concrete

机译:使用软计算技术来预测粘合到水下混凝土的钢筋

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The current knowledge and building code recommendations for bond behavior between concrete and embedded steel reinforcement become unwarranted when casting takes place in humid or fully submerged water conditions. The main objective of this paper is to assess the effect of underwater casting on the concrete mechanical and bond properties, including the development of regression models that simplify prediction of washout loss and corresponding bond stress-slip properties. Washout loss was determined using the standard CRD C61 test method and air-pressurized tube that simulates higher hydrostatic water pressure. Particular care was placed to reuse the same washed concrete samples for determining the residual compressive strength and bond properties to embedded steel bars. Test results showed that the washout loss and hydrostatic casting depth are directly affected by the concrete composition. Hence, for example, the decrease in water-to-cement ratio and/or addition of anti-washout admixture or silica fume improved concrete cohesiveness and resistance to washout. The stiffness and confinement of steel bars normally achieved in dry conditions curtailed with underwater casting, which led to reduced ductility and ultimate bond strength at failure. The experimental bond stress-slip data are compared with the CEB-FIP Code models and design strengths specified by ACI 318-19 and European Code EC-2. Regression analysis and predictive charts are established to facilitate assessing the effect of concrete composition on washout characteristics and residual strengths following underwater casting.
机译:当前的知识和建筑代表混凝土和嵌入式钢筋之间的债券行为的建议在潮湿或完全浸没水条件下发生时是无意的。本文的主要目的是评估水下铸件对混凝土机械和粘合性能的影响,包括发育回归模型,简化了冲洗损失的预测和相应的债券胁迫滑移性能。使用标准CRD C61测试方法和空气加压管测定冲洗损失,用于模拟较高的静水水压。施加特别小心以重用相同的洗涤的混凝土样品以确定嵌入钢筋的残余抗压强度和粘合性能。测试结果表明,冲洗损失和静压铸造深度直接受混凝土组成的影响。因此,例如,水 - 水泥比的降低和/或添加防水混合物或二氧化硅烟雾改善的混凝土粘合性和对冲洗的抵抗力。钢筋通常在水下铸造中造成的钢筋刚度和限制,导致失效的延展性和最终粘合强度降低。将实验债券压力滑移数据与ACI 318-19和欧洲代码EC-2指定的CEB-FIP代码模型和设计强度进行了比较。建立回归分析和预测图表,以便于评估混凝土组成对水下铸造后冲洗特性和残余优势的影响。

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