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DEVELOPMENT OF A PERCUSSION ASSISTED ROTARY DRILLING SYSTEM FOR BLASTHOLE DRILLING

机译:爆破孔钻探辅助旋转钻进系统的开发

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A more effective method of fracturing and chipping the formation is necessary to significantly increase the productivity of blasthole drilling with a roller cone bit. The conventional rotary blasthole bit engages the formation and initiates spalls, chipping and fractures in the formation at a rate dependent on the amount of pull down force applied by the drill. The rotary speed of the drill increases the number of fractures and creates drilled chips that are removed from the hole by the air circulation. An engineering project was motivated to develop a low pressure, low impact downhole percussion hammer to provide an overstrike force to a blasthole bit, in addition to the conventional pull down force and rotary speed. The objective of the project was to utilize existing rig air packages in the range of 50-110 psig and provide an overstrike force to the bit in the range of 1100-1500 impacts per minute. Laboratory testing performed on Barre granite achieved, on average, a 40% improvement in rate of penetration. This performance has been confirmed in actual blasthole drilling in copper and iron ores mines. During the testing phase, additional unexpected benefits have also been realized.
机译:必须采用一种更有效的压裂和压裂地层的方法,以显着提高使用牙轮钻头进行爆破孔钻孔的生产率。常规的旋转爆破孔钻头与地层接合并以取决于钻头施加的下拉力的量的速率在地层中引起剥落,碎裂和破裂。钻头的转速增加了裂缝的数量,并产生了被空气循环从孔中去除的钻屑。一个工程项目的动机是开发一种低压,低冲击力的井下冲击锤,以提供除传统的下拉力和转速外的爆破力。该项目的目标是利用50-110 psig压力范围内的现有钻机气包,并为钻头提供每分钟1100-1500冲击范围的超冲击力。在Barre花岗岩上进行的实验室测试平均可使渗透率提高40%。这种性能已在铜矿和铁矿的实际爆破孔钻探中得到证实。在测试阶段,还实现了其他意外的好处。

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