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Mechanical properties of SFRHSC with metakaolin and ground pumice: Experimental and predictive study

机译:具有甲状腺素和地面浮石的SFRHSC的力学性能:实验性和预测研究

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摘要

The mechanical properties of steel fiber reinforced high strength concrete (SFRHSC) made with binary and ternary blends of metakaolin (MK) and ground pumice ( GP) are investigated in this study. The investigated properties are ultrasonic pulse velocity (U-pv), compressive strength (f(c)), flexural strength (f(f)) and splitting tensile strength (f(st)) of SFRHSC. A total of 16 steel fiber reinforced concrete mixtures were produced by a total binder content of 500 kg/m(3) for determining the effects of MK and GP on the mechanical properties. The design fc was acquired from 70 to 100 MPa by using a low water-binder ratio of 0.2. The test results exhibit that high strength concrete can be obtained by replacing the cement with MK and GP. Besides, correlations between these results are executed for comprehending the relationship between mechanical properties of SFRHSC and the strong correlations are observed between these properties. Moreover, two models in the gene expression programming (GEP) for predicting the f(c) of SFRHSC made with binary and ternary blends of MK and GP have been developed. The results obtained from these models are compared with the experimental results. These comparisons proved that the results of equations obtained from these models seem to agree with the experimental results.
机译:本研究研究了用二元和二元混合物制备的钢纤维增强高强度混凝土(SFRHSC)的机械性能和偏孔(MK)和地面浮石(GP)。研究性质是超声波脉冲速度(U-PV),压缩强度(F(C)),弯曲强度(F(F))和SFRHSC的分裂拉伸强度(F(ST))。通过总粘合剂含量为500kg / m(3)的总粘合剂含量,共产生了总共16种钢纤维钢筋混凝土混合物,用于测定MK和GP对机械性能的影响。使用0.2的低水粘合剂比例,将设计Fc从70至100MPa获得。测试结果表明,通过用MK和GP替换水泥可以获得高强度混凝土。此外,这些结果之间的相关性被执行用于理解SFRHSC的机械性能之间的关系,并且在这些性质之间观察到的强相关性。此外,已经开发出用于预测用二元和GP的二元混合物制成的SFRHSC的F(C)的基因表达编程(GEP)中的两种模型。将从这些模型获得的结果与实验结果进行比较。这些比较证明,从这些模型获得的方程的结果似乎与实验结果一致。

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