首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Spindle vibration influencing form error in ultra-precision diamond machining
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Spindle vibration influencing form error in ultra-precision diamond machining

机译:超精密钻石加工中的主轴振动影响表格误差

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Ultra-precision diamond machining (UPDM) is widely used to manufacture high quality surface within sub-micrometric form error and nanometric surface roughness due to its high efficiency and low cost. However, in a complex UPDM process, many factors affect such sub-micrometric form error. Especially, spindle vibration produces a significant impact upon surface generation, not only influencing nanometric surface roughness, but also affecting sub-micrometric form error. In this study, a five-DOF dynamic model is established for spindle vibration in UPDM. The form error under spindle vibration is discussed with a surface generation model. The results show that (i) axial, radial, and coupled-tilting spindle vibration makes a great contribution to form error; (ii) the coupled-tilting frequencies are influenced by spindle speed; and (iii) the spindle vibration is reproduced at a machined surface to generate regular patterns consequently to cause form error, which is well identified with a focus on axial spindle vibration by face turning in UPDM. Its wavelength is linearly proportional to spindle speed and cutting radius distance, i.e. cutting speed. Significantly, the proposed models provide a possibility to predict surface roughness and form error under spindle vibration.
机译:超精密金刚石加工(UPDM)广泛用于在副微电动形式误差和纳米表面粗糙度内制造高质量表面,因为其高效率和低成本。但是,在复杂的updm过程中,许多因素会影响这些子微管错误。特别是,主轴振动对表面产生产生显着影响,不仅影响纳米表面粗糙度,而且影响亚微米粗糙度误差。在本研究中,在UPMM中建立了五型DOF动态模型,用于主轴振动。用表面生成模型讨论主轴振动下的形式误差。结果表明(i)轴向,径向和耦合倾斜主轴振动是形成误差的巨大贡献; (ii)耦合倾斜频率受主轴速度的影响; (iii)(iii)在加工表面上再现主轴振动,以产生规则图案,从而引起形状误差,这很好地识别通过逆转器的面部转动焦点振动。其波长与主轴速度和切割半径距离线性成比例,即切割速度。值得注意的是,所提出的模型提供了预测主轴振动下的表面粗糙度和形成误差的可能性。

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