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Practical Prediction Models of Tensile Strength and Reinforcement-Concrete Bond Strength of Low-Calcium Fly Ash Geopolymer Concrete

机译:低钙粉煤灰地缘聚合物混凝土拉伸强度和加固混凝土粘结强度的实用预测模型

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摘要

There have been a few attempts to develop prediction models of splitting tensile strength and reinforcement-concrete bond strength of FAGC (low-calcium fly ash geopolymer concrete), however, no model can be used as a design equation. Therefore, this paper aimed to provide practical prediction models. Using 115 test results for splitting tensile strength and 147 test results for bond strength from experiments and previous literature, considering the effect of size and shape on strength and structural factors on bond strength, this paper developed and verified updated prediction models and the 90% prediction intervals by regression analysis. The models can be used as design equations and applied for estimating the cracking behaviors and calculating the design anchorage length of reinforced FAGC beams. The strength models of PCC (Portland cement concrete) overestimate the splitting tensile strength and reinforcement-concrete bond strength of FAGC, so PCC’s models are not recommended as the design equations.
机译:目前有一些尝试开发分裂拉伸强度和加固混凝土粘合强度的预测模型(低钙粉煤灰缘聚合物混凝土),然而,没有模型可以用作设计方程。因此,本文旨在提供实用的预测模型。使用115试验结果对分裂拉伸强度和147个测试结果,从实验和先前的文献中粘合强度和147个测试结果,考虑到粘合强度的强度和结构因素的效果,本文开发和验证了更新的预测模型和90%预测间隔通过回归分析。该模型可用作设计方程,并应用于估计裂缝行为并计算增强FAGC光束的设计锚固长度。 PCC(波特兰水泥混凝土)的强度模型高估了FAGC分裂拉伸强度和加固混凝土粘合强度,因此不推荐PCC的模型作为设计方程。

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