Justification of the parameters of rotary-vibration drilling of small-diameter boreholes in rocks based on a submersible cavitation hydrovibrator

S. Minieiev, L. Vasyliev, Мyкola Trohymets, Vira Maltseva, M. Polushyna
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Abstract

The article presents the results of laboratory studies of the rotary-vibration drilling method of blast-holes and boreholes of small diameter based on a submersible cavitation hydro-vibrator. A generator that operates in the mode of intermittently stalled cavitation was used as a source of vibration load to the rock-breaking tool. The authors of this article developed and described the design of a submersible cavitation hydro-vibrator at the level of the patent of Ukraine for the invention. In addition, a bench design for laboratory studies of the parameters of a rotary-vibration drilling method was developed and described at the level of a patent of Ukraine for a utility model. It is established that the optimal mode of operation of the cavitation generator is ensured by its cavitation parameter in the range of 0.16-0.2. The geometrical parameters of the cavitation generator in the submersible cavitation hydro-vibrator are determined: the diameter of the critical section is 2.0 mm, the opening angle of the diffuser is 20º, and the outlet diameter is 10.0 mm, and the length of the post-diffuser channel is 200 mm. It is established that under the action of pressure pulses of the washing liquid, which is passed through the cavitation vibrator in the optimal mode, the additional deepening of the rock-breaking tool into the rock sample reaches up to 0.6 mm per rotation. Thus, the drilling speed of small-diameter blast-holes and boreholes (up to 55 mm) with the ЕБГП‑1М drilling rig of the Konotop Machine-Building Plant with the optimal mode of the rotation frequency of the rock-breaking tool, which equals 315 min-1 (5.25 s-1), can be increased by 3∙10-3 m/s, from 23∙10-3 m/s up to 26∙10-3 m/s, which is 13%. Keywords: the rotary-vibration drilling method, cavitation generator, submersible cavitation hydro-vibrator, mining rock.
基于潜式空化振动器的岩石小直径井眼旋转振动钻井参数论证
本文介绍了基于潜式空化水力振动器的爆破孔和小直径钻孔旋转振动钻进方法的室内研究结果。在间歇停止造穴模式下工作的发电机被用作破岩工具的振动载荷源。本文作者开发并描述了一种潜水式空化水激振器的设计,该设计达到了乌克兰专利的水平。此外,还开发了用于旋转振动钻井方法参数的实验室研究的实验台设计,并在乌克兰实用新型专利级别上进行了描述。确定了空化参数在0.16 ~ 0.2范围内,保证了空化发生器的最佳运行模式。确定了潜水式空化水激振器中空化发生器的几何参数:临界截面直径为2.0 mm,扩压器开口角为20º,出口直径为10.0 mm,后扩压器通道长度为200 mm。结果表明,在洗矿液压力脉冲的作用下,洗矿液以最优模式通过空化振动器,每旋转一次,破岩工具对岩样的额外深度可达0.6 mm。因此,Konotop机械厂ЕБГП‑1М钻机在破岩工具旋转频率为315 min-1 (5.25 s-1)的最优模式下,小直径爆破孔和55 mm以下钻孔的钻进速度可提高3∙10-3 m/s,由23∙10-3 m/s提高到26∙10-3 m/s,提高幅度为13%。关键词:旋转振动钻孔法,空化发生器,潜式空化水力振动器,开采岩石
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