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Influence of controlled tool orientation on pattern formation and waviness in surface grinding

机译:控制刀具方向对表面磨削中图案形成和波纹度的影响

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摘要

The surface of ground components can exhibit quality impairments which are attributed to grinding wheel irregularities. A remaining grinding wheel imbalance or a non-uniform grinding wheel topography results in a radial run-out which strongly affects the generated surface. By measuring and adjusting the phase-shift of the grinding wheel orientation during consecutive grinding passes, the resulting workpiece surfaces can significantly be improved. Experimental investigations show a strong effect of the phase-shift on the waviness profile and the pattern formation, as the pattern wave length coincides with the tangential feed. Setting the phase-shift directly affects the engagement conditions like the contact stiffness, remarkably influencing the dynamic process behaviour. The amplitudes of the normal force at rotational frequency have a strong effect on the workpiece surface, which can be influenced by a variation of the phase-shift. Constancy of table oscillating period will further increase due to faster machine control hardware, making longer periods of constant phase-shifts more likely to occur. As this parameter is mostly uncontrolled, it can cause intermittent grinding errors.
机译:磨削过的零件表面可能会由于砂轮不规则而导致质量下降。残留的砂轮不平衡或砂轮形貌不均匀会导致径向跳动,这会严重影响所生成的表面。通过在连续磨削过程中测量和调整砂轮方向的相移,可以显着改善工件表面。实验研究表明,由于图案波长与切向进给相一致,相移对波纹度轮廓和图案形成有很大影响。设置相移会直接影响接合条件,例如接触刚度,从而显着影响动态过程行为。旋转频率下法向力的幅度对工件表面有很大影响,这可能会受到相移变化的影响。由于更快的机器控制硬件,工作台振荡周期的常数将进一步增加,从而使更长时间的恒定相移发生的可能性更高。由于该参数几乎不受控制,因此可能导致间歇性磨削错误。

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