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Variable Compliance-related Aspects of Chatter in Turning Thin-walled Tubular Parts

机译:车削薄壁管状零件中颤振的可变合规性相关方面

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Thin tubular parts are often subject to turning process during manufacturing. The increasing compliance of the workpiece, which is associated to tool displacement and to matter removal, can give rise to chatter, leading to poor surface quality or premature machine/tool damage. The present work addresses an experimental case of turning a steel thin-walled tube featuring intense vibrations with variable parameters. Observations of transient records during the pass suggest a strong influence of the matter removal on the eigenfrequencies of the system, while the tool's motion implies strong variation of the modal projection of the cutting force. Another characteristic phenomenon is the intermittency of the vibrations and discontinuous chatter frequency evolution. These phenomena are reproduced and analyzed numerically. By means of a finite element modeling, the part's geometry variation during the pass is taken into account. Finally, a stability analysis is carried out for several states of this evolutive system in order to gather insight into the steady cutting conditions.
机译:薄的管状零件在制造过程中通常会经受车削加工。与工具位移和物质去除相关的工件顺应性的提高会引起颤动,从而导致较差的表面质量或过早的机器/工具损坏。本工作解决了一个实验案例,该案例是旋转具有可变参数的强烈振动的钢薄壁管。通过过程中对瞬态记录的观察表明,物质清除对系统的本征频率有很大的影响,而工具的运动暗示切削力的模态投影有很大的变化。另一个特征现象是振动的间歇性和不连续的颤振频率演变。对这些现象进行了复制和数值分析。通过有限元建模,可以考虑通过过程中零件的几何形状变化。最后,对该渐进式系统的几种状态进行了稳定性分析,以便深入了解稳定的切削条件。

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