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动态加载下含单一预设节理类岩石材料试样断裂行为的试验与数值研究

Experimental and Numerical Study of Fracture Behavior of Rock-Like Material Specimens with Single Pre-Set Joint under Dynamic Loading.

作者信息

Pan Bo, Wang Xuguang, Xu Zhenyang, Guo Lianjun, Wang Xuesong

机构信息

School of Civil and Resource Engineering, University of Science and Technology Beijing, Beijing 100083, China.

School of Mining Engineering, University of Science and Technology Liaoning, Anshan 114051, China.

出版信息

Materials (Basel). 2021 May 20;14(10):2690. doi: 10.3390/ma14102690.

Abstract

The Split Hopkinson Pressure Bar (SHPB) is an apparatus for testing the dynamic stress-strain response of the cement mortar specimen with pre-set joints at different angles to explore the influence of joint attitudes of underground rock engineering on the failure characteristics of rock mass structure. The nuclear magnetic resonance (NMR) has also been used to measure the pore distribution and internal cracks of the specimen before and after the testing. In combination with numerical analysis, the paper systematically discusses the influence of joint angles on the failure mode of rock-like materials from three aspects of energy dissipation, microscopic damage, and stress field characteristics. The result indicates that the impact energy structure of the SHPB is greatly affected by the pre-set joint angle of the specimen. With the joint angle increasing, the proportion of reflected energy moves in fluctuation, while the ratio of transmitted energy to dissipated energy varies from one to the other. NMR analysis reveals the structural variation of the pores in those cement specimens before and after the impact. Crack propagation direction is correlated with pre-set joint angles of the specimens. With the increase of the pre-set joint angles, the crack initiation angle decreases gradually. When the joint angles are around 30°-75°, the specimens develop obvious cracks. The crushing process of the specimens is simulated by LS-DYNA software. It is concluded that the stresses at the crack initiation time are concentrated between 20 and 40 MPa. The instantaneous stress curve first increases and then decreases with crack propagation, peaking at different times under various joint angles; but most of them occur when the crack penetration ratio reaches 80-90%. With the increment of joint angles in specimens through the simulation software, the changing trend of peak stress is consistent with the test results.

摘要

分离式霍普金森压杆(SHPB)是一种用于测试不同角度预设节理的水泥砂浆试件动态应力-应变响应的装置,以探究地下岩石工程节理产状对岩体结构破坏特征的影响。核磁共振(NMR)也被用于测量试件测试前后的孔隙分布和内部裂纹。结合数值分析,本文从能量耗散、细观损伤和应力场特征三个方面系统地探讨了节理角度对类岩石材料破坏模式的影响。结果表明,SHPB的冲击能量结构受试件预设节理角度的影响很大。随着节理角度的增加,反射能量的比例呈波动变化,而透射能量与耗散能量的比值则各不相同。NMR分析揭示了冲击前后那些水泥试件中孔隙的结构变化。裂纹扩展方向与试件的预设节理角度相关。随着预设节理角度的增加,裂纹起裂角度逐渐减小。当节理角度在30°-75°左右时,试件会出现明显的裂纹。利用LS-DYNA软件对试件的破碎过程进行了模拟。结果表明,裂纹起裂时的应力集中在20至40MPa之间。瞬时应力曲线随裂纹扩展先增大后减小,在不同节理角度下在不同时间达到峰值;但大多数情况发生在裂纹贯穿率达到80%-90%时。通过模拟软件增加试件中的节理角度,峰值应力的变化趋势与试验结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/715d/8160656/02c93930d08c/materials-14-02690-g001.jpg

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