首页|单轴压缩下充填节理石灰岩力学特性与能量演化

单轴压缩下充填节理石灰岩力学特性与能量演化

扫码查看
为清晰了解不同充填节理岩体的力学特性和破坏能量演化规律,进行了完整和含充填节理石灰岩试样的单轴压缩试验,分析了不同倾角或夹角充填节理对岩石强度的影响规律和细观接触力分布情况,总结了压缩过程中各充填节理试样的能量演化规律。结果表明:随单一节理倾角或交叉节理夹角的增大,试样强度和起裂应力均呈"V"形变化,部分交叉节理试样强度略高于单一节理试样强度;交叉节理试样的应力弱化区范围显著大于单一充填节理试样,交叉节理试样应力集中主要在水平节理的两端;单轴压缩下含充填节理试样的能量演化总体可以划分为4个阶段,各试样的峰值输入总能量和弹性能均随节理倾角或夹角的增大呈"V"形变化。研究成果可为深埋节理围岩稳定性预测及灾害防控提供依据。
Mechanical Properties and Energy Evolution of Limestone with Filling Joints under Uniaxial Compression
In order to clearly understand the mechanical properties and failure energy evolution law of rock masses with different filling joints,uniaxial compression tests of limestone specimens with complete and filling joints were carried out,the influence law of filling joints with different dip angles or included angles on rock strength and the distribution of microscopic contact force were analyzed,and the energy evolution law of each filling joint specimen in the compression process was summarized.The results show that the strength and cracking stress of jointed rock samples change in a"V"shape with the increase of the inclination angle of a single joint or the included angle of cross joints,and the strength of some cross jointed rock samples is slightly higher than that of single jointed rock samples;The stress weakening area of the cross joint specimen is significantly larger than that of the single filled joint specimen,the stress concentration of the cross joint specimen is mainly at both ends of the horizontal joint.The energy evolution of specimens with filled joints under uniaxial compression can be divided into four stages.The peak input total energy and elastic energy of each specimen change in a"V"shape with the increase of joint inclination or included angle.The research results can provide reference for the stability prediction and disaster prevention and control of deep buried joint surrounding rock.

filling jointmechanical propertiesenergy evolutionuniaxial compression

任青阳、陈斌、孟欣、肖宋强、任小坤

展开 >

重庆交通大学山区桥梁及隧道工程国家重点实验室,重庆 400074

重庆交通大学土木工程学院,重庆 400074

充填节理 力学特性 能量演化 单轴压缩

国家自然科学基金重庆市高等学校创新研究群体项目重庆市自然科学基金重点项目

41472262CXQT19021cstc2020jcyjzdxmX0012

2024

地下空间与工程学报
中国岩石力学与工程学会,重庆大学

地下空间与工程学报

CSTPCD北大核心
影响因子:0.886
ISSN:1673-0836
年,卷(期):2024.20(1)
  • 22