钻削机构与煤岩互作用系统耦合动力学研究

崔新霞;谭长均

振动与冲击 ›› 2014, Vol. 33 ›› Issue (16) : 97-104.

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PDF(2906 KB)
振动与冲击 ›› 2014, Vol. 33 ›› Issue (16) : 97-104.
论文

钻削机构与煤岩互作用系统耦合动力学研究

  • 崔新霞1,谭长均2
作者信息 +

Coupling vibration research on interacted system of drilling mechanism and coal rock

  • CUI Xin-xia1,TAN Chang-jun2
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摘要

针对因井下煤岩复杂性及钻削煤岩时冲击、钻削机构间扰动、煤岩-钻头-钻杆系统的耦合振动,使钻削式破岩机构运动规律、动力学行为、可靠性难以有效控制、预测问题,考虑钻头与煤岩互作用的实际载荷及钻杆与孔壁煤岩接触碰撞载荷,将钻杆离散成有限个单元,建立钻削机构与煤岩互作用系统耦合非线性动力学模型,研究钻削机构在煤岩硬度f=4.65,f=3.7,f=2.7及不同转速下纵向、横向、扭转振动及不同条件下钻削机构振动试验。结果表明,随煤岩硬度的减小,钻杆横向振动半径、纵向振动频率及幅值均有所减小;对相同硬度煤岩,钻杆横断面上位移最大半径随深度变化始终呈指数关系;在研究的转速范围内,耦合系统横向振动受转速变化影响不大,且转速变化均仅改变纵向、扭转振动曲线幅值。可为钻削机构设计提供理论依据。

Abstract

It is difficult for controlling and predicting the motion law, the dynamics action and the reliability of the drilling mechanism in drilling coal rock process, which are due to the complicacy of coal rock, the contact impact between drill pipe and coal rock, the coupling vibration of the Coal rock –Drill bit –Drill pipe system. Based on this, considering the drilling load of drill bit and coal rock, contacting load of the drill pipe and coal rock wall, and dispersing the drill pipe into a number of finite elements, the coupling nonlinear dynamics model of the drilling system is built. And the vibration coupled the longitudinal, transverse and torsional is studied under the conditions of different coal rock hardness and different rotate speed of drill bit. And discuss the vibration of drilling mechanism through experiment under different conditions. The results indicate that the transverse vibration radius, the longitudinal vibration frequency and amplitude are all reduced when the coal rock hardness decreases; and for the same coal rock, the biggest transverse vibration radius has exponent relation to the change of drilling depth; the effect of rotary speed change on the transverse vibration is small, which only changes the amplitude of the longitudinal and torsional vibration; and the transverse vibration and longitudinal vibration are generated by taking the torsional vibration as the exciting force, Which provides a theoretical basis for the design of drilling mechanism.

关键词

钻削机构 / 煤岩 / 冲击 / 非线性振动 / 耦合动力学

Key words

drilling mechanism / coal rock / impact / nonlinear vibration / coupling dynamics

引用本文

导出引用
崔新霞;谭长均. 钻削机构与煤岩互作用系统耦合动力学研究[J]. 振动与冲击, 2014, 33(16): 97-104
CUI Xin-xia;TAN Chang-jun. Coupling vibration research on interacted system of drilling mechanism and coal rock[J]. Journal of Vibration and Shock, 2014, 33(16): 97-104

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