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Analysis and implementation of chatter frequency dependent constrained layer damping tool holder for stability improvement in turning process

机译:颠覆频率依赖性层阻尼工具支架的分析与实现转换过程中稳定性改进

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摘要

The machining stability is closely affected by dynamics behavior of the tool holder in turning operation. In this paper, the constrained layer damping (CLD) tool holder with chatter frequency dependent dynamics is analyzed to further improve machining stability. The dynamics behavior of CLD tool holder is first considered to be influenced by the chatter frequency due to the viscoelastic material. The mechanical properties of viscoelastic materials are determined by the testing frequency. Analytical models are built to calculate the modal parameters such as damping ratio. The chatter frequency dependence further increases the critical depth of cuts in stability lobes. Then, dimensions of the CLD structure are simulated and selected to increase damping where the chatter frequency is assumed to approximate the natural frequency, after that the developed CLD tool holder is manufactured. Lastly, modal tests and cutting experiments are performed for verification. The damping ratio of developed CLD tool holder are increased by 99% compared to that of conventional steel tool holder. It has been proved that the developed CLD tool holder can further improve machining stability with better damping performance especially when the chatter frequency is farther from the natural frequency.
机译:加工稳定性受到转动操作时刀架的动力学行为的影响。在本文中,分析了具有接通频率相关动态的约束层阻尼(CLD)工具架,以进一步提高加工稳定性。 CLD工具架的动力学行为首先被认为是由于粘弹性材料引起的颤频的影响。粘弹性材料的机械性能由测试频率确定。构建分析模型以计算诸如阻尼比的模态参数。颤频依赖性进一步增加了稳定性裂片中的临界深度。然后,模拟和选择CLD结构的尺寸以增加阻尼,其中假设颤频以近似于所开发的CLD工具支架。最后,进行模态测试和切割实验进行验证。与传统钢工具架相比,开发CLD工具架的阻尼比率增加了99%。已经证明,开发的CLD工具架可以进一步提高加工稳定性,特别是当颤频远离自然频率时,尤其是当颤振频率更高时。

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