Ye Zhitian, Wang Qingzhi, Fang Jianhong, Zhang Kui, Huang Hao, Ge Aoyu
School of Civil Engineering and Water Resources, Qinghai University, Xining, 810016, Qinghai, China.
Qinghai Research and Observation Base, Key Laboratory of Highway Construction & Maintenance Technology in Permafrost Region, Ministry of Transport, Xining, 810016, Qinghai, China.
Sci Rep. 2024 Aug 19;14(1):19209. doi: 10.1038/s41598-024-69972-6.
The subgrade crushed-rocks of Gonghe-Yushu (Gongyu) Expressway in Qinghai Province are seriously weathered, resulting in a series of pavement diseases. Among the weathered crushed-rocks, the weathering degree of slate is particularly serious, and its physical and mechanical properties, weathering resistance and applicability are not clear. Therefore, this paper takes the slate in the subgrade crushed-rocks of Gongyu Expressway as the research object, and drills the core of the slate rock block to make a cylindrical standard sample, and uniaxial and triaxial compression tests, nuclear magnetic resonance tests, and electron probe micro-analysis tests were performed on it within 50 freeze-thaw cycles (FTC) under saturated conditions. According to the test results, the mass, longitudinal wave velocity, and strength of the slate specimens all decrease with the increase of the number of FTC, the cohesion increases first and then decreases, and the change trend of internal friction angle (φ) is completely opposite to the cohesion. The FTC has an expansion effect on the pores of the slate specimens, and the microstructure of the rock particles on the specimen's surface is removed and becomes smooth. The results of mechanical tests are used in the Hoek-Brown (H-B) strength criterion, and a unified expression of the H-B criterion suitable for slate in permafrost regions is established. The above conclusions can provide some construction reference and maintenance of high-grade highways in cold regions.
青海省共和至玉树(共玉)高速公路的路基碎石严重风化,导致一系列路面病害。在风化碎石中,板岩的风化程度尤为严重,其物理力学性质、抗风化能力及适用性尚不明确。因此,本文以共玉高速公路路基碎石中的板岩为研究对象,钻取板岩岩块芯样制作圆柱形标准试件,并在饱和状态下进行50次冻融循环(FTC)内的单轴和三轴压缩试验、核磁共振试验以及电子探针微分析试验。根据试验结果,板岩试件的质量、纵波速度和强度均随冻融循环次数的增加而降低,黏聚力先增大后减小,内摩擦角(φ)的变化趋势与黏聚力完全相反。冻融循环对板岩试件的孔隙有扩张作用,试件表面岩石颗粒的微观结构被去除并变得光滑。将力学试验结果应用于Hoek-Brown(H-B)强度准则,建立了适用于多年冻土地区板岩的H-B准则统一表达式。上述结论可为寒区高等级公路的建设与养护提供一定参考。