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OPTIMAL DESIGN OF THE CORING BIT CUTTING EDGE IN PERCUSSIVE / VIBRATORY DRILLING

机译:打击/振动钻井中的芯钻头切削刃的最佳设计

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The objective of this study is to develop an analytical method for the optimization of the design of the coring bits of vibratory drills with cutting teeth that percussively penetrate into brittle material. This optimization is intended to improve the drill rate of the Ultrasonic Driller and Corer (USDC) that was developed by scientists from JPL and engineers from Cy-bersonics, Inc. The USDC was developed for possible in-situ sample and other extraterrestrial applications in future NASA missions. A theoretical investigation was undertaken to study the rock-bit penetration characteristics and derive the analytical formulation of the specific energy for a coring bit with wedge-shape cutting teeth, based on two analytical models from rock fracture mechanics. It was found that there exists an optimal spacing/depth ratio for the cutting teeth, and the optimal number of cutting teeth on the bottom annulus of the coring bit can be designed to achieve a minimum total coring bit specific energy. Experimental tests were performed to corroborate the analytical results. It was shown that the laboratory drilling tests follow the trend predicted by the theoretical analysis. The methodology developed here can be used for the optimization of any coring/drill bit with a wedge-shape cutting teeth array in percussive/vibratory drills into brittle material.
机译:本研究的目的是开发一种用于优化具有切割齿的切割齿的振动钻孔设计的设计的分析方法。这种优化旨在提高由来自Cy-Bersonics,Inc的JPL和工程师开发的超声钻机和CORER(USDC)的钻取速率。USDC在将来的原位样品和其他外星应用中开发美国宇航局任务。基于来自岩石骨折力学的两种分析模型,对岩石钻头渗透特性进行了研究岩石钻头穿透特性,并导出了用楔形切割牙齿的特定能量的分析制剂。发现,切割齿存在最佳间隔/深度比,并且可以设计芯片钻头的底部环上的切割齿的最佳数量以实现最小的整体取钻钻头特定能量。进行实验测试以证实分析结果。结果表明,实验室钻探试验遵循理论分析所预测的趋势。这里开发的方法可用于优化任何芯片/钻头,在冲击/振动钻头中的楔形切割齿阵列成脆性材料。

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