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Influence of stress waves on the propagation behavior of main crack induced by the slotted cartridge blasting

  • Chenxi Ding
  • , Chenglong Xiao*
  • , Jianhua Chen
  • , Changda Zheng
  • , Genghao Zhang
  • , Shuai You
  • , Songlin He
  • , Wen Chen
  • , Xintong Liang
  • *此作品的通讯作者
  • University of Science and Technology Beijing
  • Key Laboratory of Deep Earth Science and Engineering
  • Shougang Group
  • China University of Mining & Technology, Beijing

科研成果: 期刊稿件文章同行评审

摘要

According to the traditional blasting theory and practice, the slotted cartridge blasting can form straight cracks extending along the slot direction and achieve directional fracture. In this paper, an experimental study has been carried out to determine the influence of incident stress waves and reflected stress waves. Under the influence of stress waves, the propagation path of the main crack in slotted cartridge blasting is not straight, and the directional fracture effect is inadequate. Under the experimental conditions in this paper, the propagation of main cracks mainly experienced three stages: directional propagation stage, counterclockwise deflecting propagation stage, and clockwise deflecting propagation stage. The difference between incident stress waves and reflected stress waves results in the difference in the deflecting direction, transforming the main crack into a wing shape. In rock roadway drilling and blasting engineering, the propagation path of main cracks produced by peripheral boreholes using the slotted cartridge blasting is also affected by the incident and reflected stress waves. These stress waves are inevitably generated from free faces and adjacent boreholes; however, these are rarely considered in the design of blasting parameters. Therefore, the design and optimization of blasting parameters considering the interaction of stress waves and main cracks in the slotted cartridge blasting need to be further developed.

源语言英语
页(从-至)595-601
页数7
期刊Mechanics of Advanced Materials and Structures
31
3
DOI
出版状态已出版 - 2024

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