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饱水冻结裂隙砂岩力学特性试验研究
引用本文:宋勇军,郭玺玺,谭皓,车永新.饱水冻结裂隙砂岩力学特性试验研究[J].煤炭工程,2022,54(2):147-152.
作者姓名:宋勇军  郭玺玺  谭皓  车永新
作者单位:1. 西安科技大学;2. 西安科技大学建筑与土木工程学院;
摘    要:为探究寒区裂隙岩体的力学特性及破坏机理,对不同裂隙倾角的饱水砂岩开展-10℃冻结环境下的常规三轴压缩试验.结果表明:裂隙几何特征对加载过程中砂岩应力应变曲线发展有较大影响.应力应变曲线初始段呈"上凸型"特征,这是由于该阶段主要由岩体孔隙和裂隙内冰体承担荷载.砂岩峰值强度、 弹性模量、 抗剪强度参数与裂隙倾角呈线性正相关...

关 键 词:饱水冻结  裂隙倾角  三轴压缩  力学性质  破坏模式
收稿时间:2021-06-29
修稿时间:2021-08-04

Experimental study on mechanical properties of saturated frozen fractured sandstone
Abstract:In order to explore the mechanical properties and failure mechanism of fractured rock mass in cold region, conventional triaxial compression tests were carried out on saturated sandstone with different fracture dip angles under -10℃ freezing environment. The results show that the geometric characteristics of fractures have a great influence on the development of stress-strain curves of sandstone during loading. The initial section of the stress-strain curve is "convex", which is due to the fact that the load is mainly borne by the ice body in the pores and fissures of the rock mass. The peak strength, elastic modulus and shear strength parameters of sandstone are linearly positively correlated with fracture dip angle, while Poisson's ratio and volume strain are negatively correlated with fracture dip angle, but the variation range is not obvious. The low temperature freezing environment enhances the degree of cementation and friction between sandstone particles to a certain extent, so that different fractured sandstones show the characteristics of monooblique shear failure, and there are no obvious wing cracks and secondary cracks except the oblique cracks in the main shear plane. By establishing the damage evolution equation considering the strength and deformation of fractured sandstone, it is found that with the increase of fracture dip angle, The stress levels of initiation and dilatancy of sandstone increase gradually, and the drop state of post-peak stress-strain curve is more obvious. it shows that the elastic stage of the stress-strain curve becomes longer, the plastic stage becomes shorter, the brittleness of sandstone increases and the ability to resist plastic deformation decreases
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