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首页> 外文期刊>Journal of Sound and Vibration >Dynamics of ultrasonic percussive drilling of hard rocks
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Dynamics of ultrasonic percussive drilling of hard rocks

机译:硬岩超声冲击钻探动力学

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摘要

Ultrasonic percussive drilling with diamond-coated tools has been extensively studied under laboratory conditions on rocks such as sandstone, limestone, granite and basalt, in order to investigate the applicability of this technique to downhole drilling. An experimental set-up, a programme of work and example results are presented. The studies showed that an introduction of high-frequency axial vibration significantly enhances drilling rates compared to the traditional rotary type method. It has been found out that the material removal rate (MRR) as a function of static load has at least one maximum. Looking at the time histories of the measured drilling force, strong nonlinear effects have been observed. which were explained using simple nonlinear models. Among them.. pure impact and impact with dry friction oscillators were used to provide an insight into the complex dynamics of ultrasonic percussive drilling. It is postulated that the main mechanism of the MRR enhancement is associated with high amplitudes of forces generated by impacts. Novel procedures for calculating MRR are proposed, explaining an experimentally observed fall of MRR at higher static loads. (C) 2004 Elsevier Ltd. All rights reserved.
机译:为了研究该技术在井下钻井中的适用性,已经在实验室条件下对砂岩,石灰石,花岗岩和玄武岩等岩石进行了超声波冲击钻探研究。介绍了实验设置,工作程序和示例结果。研究表明,与传统的旋转式方法相比,引入高频轴向振动可以显着提高钻速。已经发现,作为静态载荷的函数的材料去除率(MRR)具有至少一个最大值。观察所测钻力的时间历史,已观察到强烈的非线性效应。使用简单的非线性模型对此进行了解释。其中,纯冲击和干摩擦振荡器的冲击被用来洞察超声冲击钻的复杂动力学。据推测,MRR增强的主要机制与冲击产生的力的高振幅有关。提出了计算MRR的新方法,解释了在较高静态载荷下实验观察到的MRR下降。 (C)2004 Elsevier Ltd.保留所有权利。

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