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Research On The Unstability Motion Of BTA Deep Hole Boring Bar

机译:BTA深孔镗杆不稳定运动的研究

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Analysis of BTA deep hole drilling bar on Liquid-Solid Coupled Vibration model, there are vortex and unstability on bending deformation of the rotating boring drilling bar induced by cutting fluid force. At first, the rotating fluid force inside the boring bar was expressed linear physical form, and it's stiffness and damping coefficients were derived by the unsteady reynolds dynamic equation of the fluid. Then establish conditions including eddy and mechanical mechanism of the boring bar by cutting fluid force. The results of analysis show that the solution on coupled vibration model are more accurate than the other vibration model. Coriolis effect is the main reason for eddy or unstability of the deep hole boring bar induced by cutting fluid internal the drilling bar's wall. Some rales are also derived with which cutting parameters can be selected reasonably, which is coincide with the parameters used in heavy machine building industry.
机译:BTA深孔钻杆对液体固体耦合振动模型的分析,涡旋和通过切割流体力引起的旋转钻孔钻杆弯曲变形的涡流和不稳定性。首先,镗杆内的旋转流体力被表达线性物理形式,并且通过流体的不稳定雷诺动态方程来源刚度和阻尼系数。然后通过切割流体力建立包括镗杆的涡流和机械机构的条件。分析结果表明,耦合振动模型的解决方案比其他振动模型更准确。科里奥利效应是通过切割钻井杆壁切割液体诱导的深孔镗杆涡流或不稳定的主要原因。一些RALE也是推导的,可以合理地选择切割参数,这与重型机械建筑业中使用的参数一致。

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