Formation of Bearings Parts Waviness in Centerless Mortise Grinding on Rigid Supports

IF 0.6
V. Chalyj, S. Moroz, A. Tkachuk, V. Zablotskyi, I. Trokhymchuk, O. Stelmakh
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引用次数: 1

Abstract

The formation of waviness on the working surfaces of bearing parts is associated with fluctuations in the size of the cut layer of metal and changes in the components of the cutting force. Laplace operators were used to model the centerless grinding system based on the construction of the transfer function and the characteristic equation. It was found that the formation of waviness depends on the position of the hodograph of the movement of the vector of the center of the part in the complex plane, which in turn depends on the geometric parameters of the rigid supports of the centerless grinder machine. This makes it possible, based on hodographs and the angular orientation of their asymptotes, to determine the geometric stability of the process depending on the angles of adjustment of the rigid supports of the grinder machine. Two methodological approaches were used to confirm the correctness of the hypotheses. The first one is a multiplication of wave’s hodographs. The second one is regeneration displacement and the coincidence of the combined hodograph of regeneration and waviness displacement mechanisms with the hodograph of infinitely rigid machine displacement. The diagrams which allow choosing geometry of adjustment of rigid support that allows to increase or decrease parameters of certain harmonics are developed. The 3D diagram allows setting the local minima, characterized by acceptable geometric adjustment conditions, providing regulated waviness of the working surfaces of bearing parts.
刚性支承无心榫槽磨削中轴承零件波纹的形成
轴承零件工作表面波纹的形成与金属切削层尺寸的波动和切削力组成的变化有关。在构造传递函数和特征方程的基础上,采用拉普拉斯算子对无心磨削系统进行建模。研究发现,波纹的形成取决于零件中心矢量运动轨迹在复平面上的位置,而这又取决于无心磨床刚性支承的几何参数。这使得它有可能,基于hodograph和他们的渐近线的角取向,以确定过程的几何稳定性取决于磨床的刚性支撑的调整角度。两种方法被用来证实假设的正确性。第一个是波的全息图的乘法。二是再生位移,再生和波纹位移机构的组合轨迹图与无限刚性机械位移轨迹图的重合。开发了允许选择刚性支撑调整几何形状的图表,允许增加或减少某些谐波参数。3D图允许设置局部最小值,其特征是可接受的几何调整条件,提供轴承零件工作表面的调节波浪度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.40
自引率
0.00%
发文量
15
审稿时长
12 weeks
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