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Long-term microstructure and mechanical properties of polymer-phosphazene concrete exposed to freeze-thaw

机译:聚合物-磷腈混凝土冻融后的长期组织和力学性能

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In this study, the mechanical properties and microstructure of polymer-phosphazene concrete exposed to freeze-thaw was investigated using Anova and Taguchi methods for a period of 1 year. The Taguchi experimental design was used to reduce the number of tests. In the freeze-thaw test, the factors that affect the experimental results were selected as the percentage of phosphazene used in polymer, curing period and cement dosage in the concrete. After the experiment was designed by Taguchi method, 100 x 100 x 100 mm samples were produced. The samples were removed from the water cure at 20 +/- 2 degrees C at the end of 28, 60, 90,180 and 365 days. Then, they dried at 105 +/- 5 degrees C for 24 h. The samples impregnated the polymer containing phosphazene before the freeze-thaw test. Afterwards, these samples were then subjected to a freeze-thaw test. Finally, they were carried out the compressive strength, ultrasonic pulse velocity and weight change experiments. Furthermore, SEM, EDX and XRD analyzes were conducted on the samples. The effects on experimental results of each factor were determined using ANOVA. The results obtained using ANOVA analysis showed that cement dosage had made the most effective parameter. Furthermore, the optimum values for all experiments according to Taguchi method were obtained from polymer-phosphazene concrete produced using the 365 days curing time, 400 kg/m(3) cement dosage and the polymer containing phosphazene 4%. According to these results, the polymer-phosphazene concrete has been resistant to freeze-thaw as it became impermeable. Further, it can be said that other durability properties of the polymer-phosphazene concrete will be good. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,使用Anova和Taguchi方法研究了冻融的聚合物-磷腈混凝土的机械性能和微观结构,为期1年。 Taguchi实验设计用于减少测试数量。在冻融试验中,选择影响实验结果的因素作为聚合物中磷腈的百分比,固化时间和混凝土中的水泥用量。通过Taguchi方法设计实验后,生产了100 x 100 x 100 mm的样品。在28、60、90、180和365天结束时,在20 +/- 2摄氏度下从水固化物中取出样品。然后,它们在105 +/- 5摄氏度下干燥24小时。在冻融测试之前,样品浸渍了含磷腈的聚合物。之后,然后将这些样品进行冻融测试。最后,进行了抗压强度,超声脉冲速度和重量变化实验。此外,对样品进行了SEM,EDX和XRD分析。使用方差分析确定每个因素对实验结果的影响。使用ANOVA分析获得的结果表明,水泥用量已成为最有效的参数。此外,根据Taguchi方法进行的所有实验的最佳值均来自使用365天固化时间,400 kg / m(3)水泥用量和含4%磷腈的聚合物生产的聚合物-磷腈混凝土。根据这些结果,聚合物-磷腈混凝土由于不渗透而具有抗冻融性。此外,可以说聚合物-磷腈混凝土的其他耐久性能将是良好的。 (C)2018 Elsevier Ltd.保留所有权利。

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