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地聚合物稳定碎石宏观与微观力学性能的试验研究

Experimental Investigation on Macroscopic and Microscopic Mechanical Properties of Geopolymer-Stabilized Macadam.

作者信息

Dan Hancheng, Ma Shenglong, Li Mengjin, Tan Jiawei, Zhang Haoran

机构信息

School of Civil Engineering, Central South University, Changsha 410075, China.

National Engineering Research Center of High-Speed Railway Construction Technology, Central South University, Changsha 410075, China.

出版信息

Materials (Basel). 2025 Jan 20;18(2):454. doi: 10.3390/ma18020454.

Abstract

Geopolymer, as a promising inorganic binding material, holds potential for use in constructing base layers for highway pavements. This study aims to evaluate the mechanical properties of geopolymer-stabilized macadam (GSM) at both the micro- and macro-scale by a series of tests, demonstrating that high-Ca GSM is a high-quality material for pavement base layers. The results demonstrated that GSM exhibits outstanding mechanical and fatigue properties, significantly surpassing those of cement-stabilized macadam (CSM). Performance improvements were particularly notable with higher binder-to-aggregate ratios. GSM derived from a high-Ca precursor achieved a relatively higher fatigue life and resistance to permanent deformation under cyclic loading, outperforming CSM. Furthermore, relationship models developed from the indirect tensile fatigue test results provide a valuable framework for evaluating GSM's long-term road performance. Microstructural analyses revealed that geopolymer features a reticulated gel structure and a denser, more continuous internal matrix, which contribute to its superior properties. The interface products of GSM, including C-A-S-H gel and C(N)-A-S-H gel, enhance mechanical interlocking and promote early strength development, accounting for its exceptional mechanical strength and fatigue resistance. These findings offer valuable insights and technical guidance for employing geopolymer as a sustainable and effective alternative to cement-stabilized macadam in base layer construction.

摘要

地质聚合物作为一种很有前景的无机粘结材料,在公路路面基层施工中具有应用潜力。本研究旨在通过一系列试验在微观和宏观尺度上评估地质聚合物稳定碎石(GSM)的力学性能,表明高钙GSM是一种用于路面基层的优质材料。结果表明,GSM具有优异的力学和疲劳性能,显著优于水泥稳定碎石(CSM)。随着粘结剂与集料比的提高,性能改善尤为显著。由高钙前驱体制备的GSM在循环荷载作用下具有相对较高的疲劳寿命和抗永久变形能力,优于CSM。此外,根据间接拉伸疲劳试验结果建立的关系模型为评估GSM的长期道路性能提供了有价值的框架。微观结构分析表明,地质聚合物具有网状凝胶结构和更致密、更连续的内部基体,这有助于其优异性能的发挥。GSM的界面产物,包括C-A-S-H凝胶和C(N)-A-S-H凝胶,增强了机械联锁作用并促进了早期强度发展,这是其具有卓越机械强度和抗疲劳性的原因。这些发现为在基层施工中使用地质聚合物作为水泥稳定碎石的可持续且有效的替代品提供了有价值的见解和技术指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a490/11766898/c126f703a090/materials-18-00454-g001.jpg

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