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ELID groove grinding of ball-bearing raceway and the accuracy durability of the grinding wheel

机译:滚珠滚道的ELID凹槽磨削和砂轮的精度耐久性

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摘要

The groove profile of ball-bearing raceway is of vital importance to ensure the bearing transmission accuracy. It is an attempt to apply electrolytic in-process dressing (ELID) groove grinding for the ball-bearing raceway finishing process. The wear rate of the grinding wheel is directly related to the profile accuracy of the bearing raceway. In order to maintain a high-forming accuracy, the interrupt truing has to be performed at the grinding interval. However, how to rationally plan the grinding interval for high-forming accuracy is hard to resort to the general concept of the wear of the grinding wheel. This study recorded the raceway profile variation on axial direction and radial direction by monitor points. The results show that the raceway profile variation (monitor points) on the axial direction could be omitted, because it is far less than the profile variation (monitor points) on radial direction. An evaluation method was proposed to plan the interrupt truing based on the raceway profile variation (monitor points) on radial direction. Finally, the feasibility of the proposed evaluation method was verified by the experimental results. The evaluation method of forming accuracy could provide a reference for selecting the truing interruption during ELID groove grinding process. The approach that incorporates the interrupt truing with the ELID groove grinding enriches bearing manufacturing method. The ELID groove grinding has a great potential for application in precision machining of ball bearing ring raceway.
机译:滚珠轴承滚道的凹槽轮廓对于确保轴承传动精度至关重要。尝试将电解过程修整(ELID)凹槽磨削用于滚珠轴承滚道的精加工过程。砂轮的磨损率直接关系到轴承滚道的轮廓精度。为了保持较高的成型精度,必须在打磨间隔进行打磨整顿。但是,如何合理地规划磨削间隔以实现较高的成型精度很难诉诸于砂轮磨损的一般概念。这项研究通过监测点记录了滚道轮廓在轴向和径向上的变化。结果表明,可以忽略轴向上的滚道轮廓变化(监控点),因为它远远小于径向上的轮廓变化(监控点)。提出了一种评估方法,该方法根据径向上的滚道轮廓变化(监控点)来规划中断处理。最后,实验结果验证了所提方法的可行性。成形精度的评估方法可为选择ELID槽磨削过程中的整平中断提供参考。将中断整形与ELID凹槽磨削相结合的方法丰富了轴承的制造方法。 ELID凹槽磨削在滚珠轴承套圈滚道的精密加工中具有巨大的潜力。

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