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A theoretical and experimental investigation into five-DOF dynamic characteristics of an aerostatic bearing spindle in ultra-precision diamond turning

机译:航空轴承超精密金刚石车削五自由度动力学特性的理论和实验研究

摘要

In ultra-precision diamond turning (UPDT), spindle vibration has great influence on machining precision of high precision optical components. However, the spindle-vibration mechanism has not been fully understood. In this study, mathematical solutions for a proposed five-degree-of-freedom (FDOF) dynamic model of an aerostatic bearing spindle are derived to explore natural mechanisms of spindle vibration. Thus, the potential benefits of the solutions are to be applied for the prediction and optimization of the effects of spindle vibration on surface generation. Its dynamic characteristics possess three translational frequencies along the radial and axial directions, a spindle rotational frequency (SRF), and a pair of coupled tilting frequencies (CTFs) around the radial directions influenced the SRF. The theoretical results are identified by the frequency characteristics of thrust cutting forces, and the periodic, concentric, spiral, radial and two-fold patterns (PCSRPs) of the machined and simulated surface topographies, respectively.
机译:在超精密金刚石车削(UPDT)中,主轴振动对高精度光学元件的加工精度有很大影响。然而,尚未充分了解主轴振动机构。在这项研究中,提出了一个拟议的空气轴承主轴五自由度(FDOF)动力学模型的数学解决方案,以探索主轴振动的自然机理。因此,该解决方案的潜在好处将用于预测和优化主轴振动对表面生成的影响。它的动态特性在径向和轴向上具有三个平移频率,一个主轴旋转频率(SRF),以及在径向周围影响着SRF的一对耦合倾斜频率(CTF)。理论结果可以通过推力切削力的频率特性以及经过机械加工和模拟的表面形貌的周期性,同心,螺旋形,径向和双重图案(PCSRP)来确定。

著录项

  • 作者

    Zhang SJ; To S; Wang HT;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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