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旋转导向工具心轴弯曲对悬臂轴承影响的研究 被引量:6
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作者 周琴 刘宝林 李颖 《石油机械》 北大核心 2010年第10期14-17,93-94,共4页
指向式旋转导向工具利用心轴的弯曲变形达到导向钻进的目的,在轴承受力分析的基础上,选择滚针轴承达到心轴上部的悬臂轴承限制心轴弯曲的目的,但是心轴的弯曲会影响滚针轴承的工作及寿命。通过对心轴弯曲变形的力学分析,建立了心轴在静... 指向式旋转导向工具利用心轴的弯曲变形达到导向钻进的目的,在轴承受力分析的基础上,选择滚针轴承达到心轴上部的悬臂轴承限制心轴弯曲的目的,但是心轴的弯曲会影响滚针轴承的工作及寿命。通过对心轴弯曲变形的力学分析,建立了心轴在静态偏置状态下的挠曲线方程,得出在滚针轴承处心轴的挠度值与偏置力之间的关系曲线,利用试验验证了力学分析的合理性;并通过试验研究了在静态和动态2种工作条件下心轴弯曲对滚针轴承工作的影响。结果表明,心轴的弯曲变形是滚针轴承失效的主要原因;采用组合轴承或硬质合金轴承可以改变轴承的受力状态以延长轴承的工作寿命。 展开更多
关键词 旋转导向工具 旋转心轴 悬臂轴承 滚针轴承 弯曲变形
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Rotational Flow in a Narrow Annular Gap Based on Lattice Boltzmann Method 被引量:1
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作者 WANG Yimiao ZHANG Jingyang ZHU Guiping 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第3期427-436,共10页
For comprehensive characteristics of flow in a gas bearing,lattice Boltzmann method(LBM)is applied for study of the two-dimensional flow between two eccentric cylinders with the inner one rotating at a high speed.The ... For comprehensive characteristics of flow in a gas bearing,lattice Boltzmann method(LBM)is applied for study of the two-dimensional flow between two eccentric cylinders with the inner one rotating at a high speed.The flow pattern and circumferential pressure distribution are discussed based on critical issues such as eccentricity ranging from 0.2 to 0.9,clearance ratio varying from 0.005 to 0.01 and rotating speed in the range of 3×104—1.8×105 r/min.The analysis and discussion on the circumferential pressure distribution affirmed the quasilinear relation between the extremum pressure and rotating speed.Furthermore,a high eccentricity and small clearance ratio contributes most to the fluctuation of the circumferential pressure distribution.The flow pattern inside the channel exhibits separation vortex under a large eccentricity.The conclusions drawn in this work give rise to prediction of the flow pattern in the gas bearing which is beneficial for evaluating the performance of as well as instructing the design and development. 展开更多
关键词 narrow annular eccentric rotating cylinders gas bearing lattice Boltzmann method(LBM)
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