含裂纹煤体破坏特征及声发射响应数值研究

Numerical simulation research on damage characteristics and acoustic emission response of coal with pre-existed cracks

  • 摘要: 为研究裂纹倾角对煤体破坏特征及声发射响应特征的影响,利用RFPA2D数值模拟软件对单轴压缩下含不同预制裂纹倾角的煤样进行模拟,分析裂纹倾角对试样裂纹扩展模式、力学性能和声发射响应特征的影响。结果表明,当预制裂纹倾角α为0°时,主破裂沿垂直于预制裂纹中间位置的方向扩展;对于α为15,30,45,60,75°的试样,其主裂纹扩展模式为典型的翼裂纹,或者是翼裂纹基础上发展而来的“Y”形裂纹;而α为90°的试样和完整试样,其主裂纹分布存在随机性。裂纹的存在降低了煤体的峰值强度和弹性模量,且峰值强度和弹性模量随裂纹倾角的增加而增加,前者呈二次函数的关系增加,后者呈倾斜的“S”形增加。此外,随着预制裂纹倾角的增加,煤样由延性破坏逐渐向脆性破坏过渡。破裂时声发射瞬时计数存在阶段性增长,即α为0~45,60~75,90°和完整试样,此3个阶段的试样破裂时瞬时声发射计数依次递增。

     

    Abstract: In order to research influences of crack inclination angle on damage characteristics and acoustic emission characteristics of coal, numerical simulation of coal with pre-existed cracks of different inclination angles under uniaxial compression was conducted using RFPA2D numerical simulation software, and crack propagation mode, mechanical properties and acoustic emission response influenced by crack angel were analyzed. The analysis results show that the main fracture extends in the direction perpendicular to the middle of the pre-existed crack when pre-existed crack angle (α) is 0°. For specimens with α of 15,30,45,60,75°, the main crack propagation mode are typical wing crack, or Y-shaped crack propagation mode developed from wing crack. However, there is randomness in the distribution of the main cracks of the specimen with crack angel of 90° and the intact specimen. The existence of cracks reduces the peak strength and modulus of elasticity of the coal, and the peak strength and modulus of elasticity both increase with pre-existed crack angel, the former increases with the relation of quadratic function, and the latter increases as inclined "S". In addition, with the increase of the inclination angle, the specimens gradually transform from ductile failure to brittle fracture. When main fracture occurs the instantaneous acoustic emission count has a periodic increase, namely the instantaneous acoustic emission count increases in turn at three stages when α is 0-45, 60-75, 90° and the intact specimen.

     

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