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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A new method using double distributed joint interface model for three-dimensional dynamics prediction of spindle-holder-tool system
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A new method using double distributed joint interface model for three-dimensional dynamics prediction of spindle-holder-tool system

机译:一种新方法,采用双分布式联合界面模型的三维动力学预测主轴持有工具系统

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摘要

The cutting process stability strongly depends on dynamics of the spindle-holder-tool system, which often changes and is determined by impact hammer testing in general. In order to avoid repeated and time-consuming impact hammer testing on different spindle-holder-tool combinations, this paper proposes a new method for three-dimensional dynamics prediction of spindle-holder-tool system. The system is modeled using Timoshenko's beam theory and substructure synthesis method. The tool-holder connection is regarded as a double distributed joint interface model including a collet, a holder-collet joint interface and a tool-collet joint interface. The two joint interfaces are further modeled as two sets of independent spring-damper elements, while the collet and tool are modeled as Timoshenko beams with varying cross-sections. The substructure synthesis method is adopted to obtain the equation of motion of the spindle-holder-tool system. Finally, experiments of bending, torsional, and axial FRFs are carried out to verify the proposed method. Good agreements show that the new method is capable of predicting tool point FRFs more accurately compared with the existing methods.
机译:切削工艺稳定性强烈取决于主轴架 - 工具系统的动态,这通常通过冲击锤测试确定。为了避免在不同主轴持有工具组合上重复和耗时的冲击锤测试,本文提出了一种新的主​​轴架 - 刀具系统的三维动力学预测方法。该系统采用Timoshenko的光束理论和子结构合成方法进行建模。工具保持器连接被视为包括夹头,支架 - 夹头接合接口和工具夹头接头的双分布式联合接口模型。两个接合界面进一步建模为两组独立的弹簧阻尼元件,而夹头和工具被建模为具有变化横截面的Timoshenko梁。采用下部结构合成方法来获得主轴座系统的运动方程。最后,进行了弯曲,扭转和轴向FRF的实验以验证所提出的方法。良好的协议表明,与现有方法相比,新方法能够更准确地预测刀具点FRFS。

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