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An optimized calculation method of the grinding wheel profile for the helical flute forming grinding

机译:一种用于螺旋槽成型磨削的砂轮轮廓优化计算方法

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摘要

The forming grinding process is a crucial method for helical flute grinding of the end mill and screw tap, and the grinding wheel profile is the key to ensure the precision of the helical flute, which is constrained by the grinding wheel posture. However, the existing methods have some deficiencies such as the invalidity or uneven wear problems. In this paper, an optimized calculation method of the grinding wheel profile for the forming grinding of the helical flute is proposed, including the suitable grinding posture correspondingly. Firstly, the parametric models of the helical cutting edge and the helical flute surface are established. Secondly, the contact condition between the grinding wheel and the flute is deduced to calculate the grinding wheel profile by the envelop theory. Thirdly, an optimization method for grinding wheel profile is proposed, which could predict of the solution interval, avoid the profile intersection, and improve wear resistance. Finally, the method was verified by a series of simulations and experiments, and the results show that the method could meet the grinding precision requirements and expand the application range of forming grinding technology in helical flute.
机译:成形磨削工艺是立铣刀和丝锥螺旋槽磨削的关键方法,而砂轮轮廓是保证螺旋槽精度的关键,而螺旋槽的精度受砂轮姿态的约束。然而,现有方法存在一些不足,例如无效或磨损不均匀问题。本文提出了一种用于螺旋槽成形磨削的砂轮轮廓优化计算方法,包括相应的磨削姿态。首先,建立了螺旋切削刃和螺旋槽表面的参数化模型;其次,推导砂轮与容屑槽的接触条件,利用包络理论计算砂轮轮廓。再次,提出了一种砂轮轮廓优化方法,该方法可以预测求解区间,避免轮廓交叉,提高耐磨性。最后,通过一系列仿真和实验对该方法进行了验证,结果表明该方法能够满足磨削精度要求,扩大了成形磨削技术在螺旋槽中的应用范围。

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