Drilling Performance of Rock Drill by High-Pressure Water Jet under Different Configuration Modes
Производительность бурения горных пород буровым инструментом с использованием высоконапорной водяной струи при различных схемах конфигурации
2017-01-01
SCID: 54.1/y9pdhxyn
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drill rod deflectiondrilling performancehigh-pressure water jetrock drillingrotary sealing device
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Abstract (AI)
In the rock drilling progress, the resistant force results in tools failure and the low drilling efficiency; thus, it is necessary to reduce the tools failure and enhance the drilling efficiency. In this paper, different configuration modes of drilling performance assisted with water jet are explored based on the mechanism and experiment analysis of rock drilling assisted with water jet. Moreover, the rotary sealing device with high pressure is designed to achieve the axial and rotation movement simultaneously as well as good sealing effect under high-pressure water jet. The results indicate that the NDB and NFB have better effects on drilling performance compared with that of NSB. Moreover, the high-pressure water jet is helpful not only to reduce the drill rod deflection, but also to reduce the probability of drill rod bending and improve the drill rod service life.
Key Findings
1
A high-pressure rotary sealing device was designed to enable simultaneous axial and rotational movement while maintaining effective sealing.
2
Different high-pressure water-jet configuration modes were evaluated through mechanism analysis and experiments to improve rock-drilling performance.
3
High-pressure water jets reduce drill-rod deflection and the probability of bending, thereby improving drill-rod service life.
4
The NDB and NFB configuration modes provide better drilling performance than the NSB mode.
Research Object
rock drilling by a drill under high-pressure water-jet assistance in different configuration modes
Research Subject
drilling performance, drill-rod deflection and bending, tool failure, and service life under different water-jet configurations
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2017-01-01
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