首页|Fracturing behavior of brittle solids containing 3D internal crack of different depths under ultrasonic fracturing

Fracturing behavior of brittle solids containing 3D internal crack of different depths under ultrasonic fracturing

扫码查看
Ultrasonic fracturing(UF)can be used to form crack networks for oil or gas in the mining industry and hard rock excavation.In this paper,the three-dimensional internal laser-engraved crack method(3D-ILC)is introduced to make penny-shaped internal crack within the samples without any damage to the surfaces.Physical experiments were performed on the transparent samples with internal cracks at different depths.The macro-and micro-fracture fractography characteristics were focused on and ana-lyzed in details.Based on fractography,the mechanisms of the UF were revealed.The propagation paths of cracks of different depths were simulated based on the Paris fatigue model and compared with exper-imental results.The results show that the 3D-ILC method is a powerful tool for the experimental research on the internal crack propagation in the UF.Under the action of ultrasonic field,fractography shows the characteristics of beach marks,lance-like pattern,rime-like pattern and glass powder.It can be judged that the mechanisms of UF include high cycle fatigue fracture,shear fracture,and friction.The results of the numerical simulation using the Paris fatigue model are consistent with the experimental results.

3D-ILC method3D internal crackUltrasonic fracturingFracture mechanicsUltrasonic fatigueParis fatigue model

Haijun Wang、Hanzhang Li、Lei Tang、Jianchun Li、Xuhua Ren

展开 >

State Key Laboratory of Hydrology-Water Resource and Hydraulic Engineering,Nanjing Hydraulic Research Institute,Nanjing 210029,China

School of Civil Engineering,Institute of Future Underground Space,Southeast University,Nanjing 211186,China

College of Water Conservancy and Hydropower Engineering,Hohai University,Nanjing 210098,China

国家自然科学基金国家自然科学基金江苏省自然科学基金

5173900841831281BK20171130

2022

矿业科学技术学报(英文版)
中国矿业大学

矿业科学技术学报(英文版)

CSTPCDCSCDSCIEI
影响因子:1.222
ISSN:2095-2686
年,卷(期):2022.32(6)
  • 2
  • 2