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Optimal design of geopolymer grouting material for semi-flexible pavement based on response surface methodology

机译:基于响应面法的半柔性路面岩土聚合物灌浆材料的最佳设计

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摘要

Composite grouting material (CGM) is an important part of constructing the semi-flexible pavement (SFP). The usage of CGM can improve pavement durability and rutting resistance in heavy-duty traffic. Owing to the environmental protection and performance requirements for grouting in loose sediments, the geopolymer grouting material (GPGM) as a new type of CGM is designed by a combination of powder materials, alkali and activator. The response surface method (RSM) is used to study the influence of three independent constituents (powder quality ratio, sodium oxide content, and water-binder ratio) as well as their interactions on four response variables (fluidity, 7 d dry-shrinkage ratio, 7 d compressive strength, and 28 d compressive strength) of GPGM. Furthermore, three types of additives, including water reducer, shrinkage reducing admixture and polymer latex, are taken into account to design the expected responses of GPGM by using the orthogonal test design method (OTDM). Finally, the micro detection experiments are built to compare the micro characteristics of GPGM blended with and without additives. The results show that the optimal mix proportion of GPGM can be obtained by RSM and OTDM. The micro performance tests and analysis can well explain the mechanism of inner constituents in GPGM.
机译:复合灌浆料(CGM)是构建半柔性路面(SFP)的重要组成部分。 CGM的使用可以提高重型交通路面的耐久性和抗车辙性能。由于环保和性能要求为在松散沉积灌浆,地质聚合物灌浆料(GPGM)作为一种新的类型的CGM由粉末材料,碱和活化剂的组合而设计的。响应面方法(RSM)被用于研究的三个独立的成分(粉末质量比,氧化钠含量,以及水基粘合剂比)以及它们之间的相互作用在四个反应变量(流动性的影响,7 d干收缩率7 d抗压强度,和GPGM 28 d抗压强度)。此外,三种类型的添加剂,包括减水剂,减缩剂和聚合物胶乳,考虑到通过使用正交试验设计方法(OTDM)来设计GPGM的预期响应。最后,微检测实验是建立的GPGM混合有和没有添加剂进行比较的微特性。结果表明,GPGM的最佳组合比例可通过RSM和OTDM来获得。微性能测试和分析可以很好地解释在GPGM内组分的机制。

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