首页> 外文期刊>Journal of Manufacturing Processes >An optimal process of machining complex surfaces of anti-backlash roller enveloping hourglass worms
【24h】

An optimal process of machining complex surfaces of anti-backlash roller enveloping hourglass worms

机译:防沙漏滚子蜗轮蜗杆复杂表面加工的最佳工艺

获取原文
获取原文并翻译 | 示例
           

摘要

Anti-backlash roller enveloping hourglass worm gear drives, as a new precision transmission system, has been extensively applied in robot joint design, and CNC (computer numerical control) machine tools. However, tooth profiles of the roller enveloping hourglass worms are spatial complex surfaces and very difficult to machine. The meshing and transmission properties such type of worm gear drive are especially sensitive to the errors in machining the tooth profiles of such worms. Thus, in order to improve the accuracy in machining their tooth profile surfaces and reduce the surface roughness, barriers to achieve precision machining of these complex surfaces have to be overcome. In the present study, an equation of grinding contact line for the roller enveloping hourglass worm gear drives with seven critical error parameters was for the first time established based on modern theory of gear meshing. Influence of each error parameter on the grinding contact line was decided through numerical analysis. Also, in order to find the best relationship between the grinding speed and the grinding feed rage, real contact patterns between the grinding rod and the machined worm tooth surface at different grinding speeds were observed using a metallurgical microscope and compared with the theoretical contact pattern calculated from the developed line of contact equation. Based on the obtained results, an innovative grinding method that can offset the loss of radius of the grinding rod was developed and a grinding process under the optimal rotational speed was presented. The proposed grinding process was then applied to generate the complex helical surface of a high precision roller enveloping hourglass worm. Outcomes of this study formed a profound theoretical and practical background for manufacturing and machining of the roller enveloping hourglass worm gear drives.
机译:作为一种新型的精密传动系统,采用防滚轮的沙漏蜗轮蜗杆传动装置已广泛应用于机器人关节设计和CNC(计算机数控)机床。但是,滚轮式沙漏蜗杆的齿形是空间复杂的表面,很难加工。这种类型的蜗轮驱动装置的啮合和传动特性对机加工此类蜗轮的齿廓误差特别敏感。因此,为了提高机加工其齿廓表面的精度并减小表面粗糙度,必须克服实现这些复杂表面的精密机加工的障碍。在本研究中,基于现代齿轮啮合理论,首次建立了具有七个临界误差参数的辊子包裹式沙漏蜗杆传动装置的磨削接触线方程。通过数值分析确定了每个误差参数对磨削接触线的影响。此外,为了找到最佳的磨削速度和磨削进给率之间的关系,使用金相显微镜观察了在不同磨削速度下磨棒与机加工蜗杆齿表面之间的实际接触方式,并将其与理论接触方式进行了比较。从已开发的接触方程式中基于获得的结果,提出了一种可以弥补磨棒半径损失的创新磨削方法,并提出了一种在最佳转速下的磨削工艺。然后,将所提出的研磨工艺应用于产生高精度辊子包裹式沙漏蜗杆的复杂螺旋表面。这项研究的成果为制造和加工滚子式沙漏蜗轮驱动器提供了深刻的理论和实践背景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号