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首页> 外文期刊>International Journal of Mechanical Sciences >Theoretical and experimental investigations on the spinning BTA deep-hole drill shafts containing fluids an subject to axial forces
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Theoretical and experimental investigations on the spinning BTA deep-hole drill shafts containing fluids an subject to axial forces

机译:含流体承受轴向力的旋转BTA深孔钻杆的理论和实验研究

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摘要

The object of this investigation is to develop equations of motion and analyze the eigenproperties of spinning boring trepanning association (BTA) deep-hole drill shafts containing flowing fluid and subject to compressive axial force. The energyformulations are based on a coordinate system attached to the spinning shaft (floating coordinate system), and the equations of motion were derived using Hamilton's principle. This problem was studied for two different models: a Timoshenko beam model(which includes shear deformation, rotatory inertia moment, and gyroscopic moment effects) and a Euler-Bernoulli beam model. Galerkin's method was used to obtain solutions of the dynamic system. And two kinds of experimental test were performed toinvestigate the eigenproperties of spinning BTA deep-hole drill shafts: impulsive testing for non-spinning tool shafts, and random-input excitation testing for spinning tool shafts. Experimental results are also compared with simulation results.
机译:本研究的目的是开发运动方程,并分析包含流动流体并承受轴向压缩力的旋转镗孔钻削组合(BTA)深孔钻杆的本征特性。能量公式基于附着在纺纱轴上的坐标系(浮动坐标系),并且使用汉密尔顿原理导出了运动方程。针对两个不同的模型研究了该问题:一个Timoshenko梁模型(包括剪切变形,旋转惯性矩和陀螺力矩效应)和一个Euler-Bernoulli梁模型。 Galerkin方法用于获得动力系统的解。并进行了两种实验测试来研究旋转BTA深孔钻轴的本征特性:非旋转工具轴的脉冲测试和旋转工具轴的随机输入激励测试。实验结果也与模拟结果进行了比较。

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