Liu Xiao-Yang, Wang Chang-Ming, Liu Hai-Liang, Wu Di
College of Construction Engineering, Jilin University, Changchun 130026, China.
Materials (Basel). 2022 Aug 6;15(15):5423. doi: 10.3390/ma15155423.
Volcanic soil is a special soil that is well-known for its distinctive texture, vesicular nature, and particle fragility. The fragility characteristic of volcanic soil is the main factor affecting the foundation stability in road engineering. This study focuses on the mechanical properties and particle crushing characteristics of volcanic soil retrieved from Northeast China. A series of triaxial consolidation and drainage shear tests are performed on volcanic coarse-grained soil (5 mm > d > 0.075 mm) under different initial relative densities and effective confining pressures. Results show the peak friction angle of volcanic soil significantly decreases with the increase of confining pressure. The particle crushing degree of volcanic soil increases with the increase of confining pressure, particle size, and relative density. The relative breakage rate of the same particle size group has a good linear relationship with a fractal dimension. Moreover, for the same particle size, the relationship between plastic work and relative breakage rate can be fitted by a power function, which is not significantly affected by relative density or effective confining pressure. From an engineering view, in addition to increasing the compaction degree of volcanic soil, volcanic soil with fine particles used as a roadbed filler can significantly reduce the deformation of the roadbed and improve the bearing capacity of the foundation.
火山土是一种特殊的土壤,以其独特的质地、多孔性和颗粒易碎性而闻名。火山土的易碎特性是影响道路工程中地基稳定性的主要因素。本研究聚焦于取自中国东北地区的火山土的力学性能和颗粒破碎特性。对火山粗粒土(5mm>d>0.075mm)在不同初始相对密度和有效围压下进行了一系列三轴固结排水剪切试验。结果表明,火山土的峰值摩擦角随围压的增加而显著降低。火山土的颗粒破碎程度随围压、粒径和相对密度的增加而增大。同一粒径组的相对破碎率与分形维数具有良好的线性关系。此外,对于相同粒径,塑性功与相对破碎率之间的关系可用幂函数拟合,且不受相对密度或有效围压的显著影响。从工程角度来看,除了提高火山土的压实度外,将含细颗粒的火山土用作路基填料可显著减少路基变形并提高地基承载力。