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AUTOMATED DRILLING OF HIGH ASPECT RATIO, SMALL DIAMETER HOLES IN REMOTE, CONFINED SPACES

机译:自动钻孔高纵横比,遥控空间中的小直径孔

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We describe the development and benchtop prototype performance characterization of a mechatronic system for automatically drilling small diameter holes of arbitrary depth, to enable monitoring the integrity of oil and gas wells in situ. The precise drilling of very small diameter, high aspect ratio holes, particularly in dimensionally constrained spaces, presents several challenges including bit buckling, limited torsional stiffness, chip clearing, and limited space for the bit and mechanism. We describe a compact mechanism that overcomes these issues by minimizing the unsupported drill bit length throughout the process, enabling the bit to be progressively fed from a chuck as depth increases. When used with flexible drill bits, holes of arbitrary depth and aspect ratio may be drilled orthogonal to the wellbore. The mechanism and a conventional drilling system are tested in deep hole drilling operation. The experimental results show that the system operates as intended and achieves holes with substantially greater aspect ratios than conventional methods with very long drill bits. The mechanism enabled successful drilling of a 1/16 " diameter hole to a depth of 9", a ratio of 144:1. Dysfunctions prevented drilling of the same hole using conventional methods.
机译:我们描述了机电系统的开发和台式原型性能表征,用于自动钻出任意深度的小直径孔,以便在原位监测油气井的完整性。非常小的直径,高纵横比孔的精确钻孔,特别是在尺寸约束空间中,具有若干挑战,包括位屈曲,有限的扭转刚度,芯片清除和钻头和机构的有限空间。我们描述了一种紧凑的机制,通过在整个过程中最小化不受支持的钻头长度来克服这些问题,使得随着深度增加,使该位从卡盘逐渐馈送。当与柔性钻头一起使用时,可以向井筒正交钻出任意深度和纵横比的孔。在深孔钻井操作中测试机构和传统的钻井系统。实验结果表明,该系统按预期操作并实现具有与具有非常长的钻头的传统方法具有基本更大的宽高比的孔。使机构能够成功钻出1/16“直径孔至9”的深度,比率为144:1。功能障碍防止使用常规方法钻孔相同的孔。

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