基于在机测量的圆弧端齿齿廓自适应倒圆方法

Adaptive fillet based on on-machine measurement of circular-arc end tooth profile

  • 摘要: 圆弧端齿作为一种特殊的齿形结构,是航空发动机和燃气轮机的重要联接结构,为保证配合精度、降低应力集中,圆弧端齿的齿廓部位需进行倒圆处理,传统人工打磨难以满足一致性要求,且由于零件存在装夹偏差及齿面变形,数控加工无法直接使用理论刀路进行加工。为了保证圆弧端齿齿廓的倒圆加工质量,提出一种基于在机测量的几何自适应倒圆方法。利用在机测量获取圆弧端齿零件的形位信息,基于点-面距离精确配准零件位置,采用最小二乘和B样条曲面拟合方法重建端齿实际型面,通过等参数映射方法得到自适应倒圆加工刀路。某型号涡轮盘圆弧端齿的倒圆加工结果表明,加工精度和一致性相比自适应前分别提高了77%和56%,加工误差小于0.02 mm,满足圆弧端齿实际使用工艺要求。

     

    Abstract: As a special tooth form, the circular-arc end teeth serve as a critical connection component in aero-engines and gas turbines. To ensure mating accuracy and reduce stress concentration, the tooth flanks of circular-arc end teeth require a fillet operation. Traditional manual grinding fails to meet consistency requirements. Moreover, due to part clamping deviations and tooth surface deformations, theoretical tool paths cannot be directly applied in CNC machining. To ensure the quality of rounding the circular-arc end tooth profile, a geometric adaptive rounding method based on in-machine measurement is proposed. The shape and position information of circular-arc end tooth parts are obtained through in-process measurement, the part positions are accurately registered based on the point-to-plane distance metric, the actual end tooth profile is reconstructed by using the least-squares and B-spline surface fitting method, and the self-adaptive rounding machining tool path is obtained through the isoparametric mapping method. Rounding machining of the circular-arc end teeth of a certain model turbine disk shows that machining accuracy and consistency improved by 77% and 56%, respectively, compared to the pre-adaptive method, with machining errors less than 0.02 mm, meeting the actual process requirements for circular-arc end teeth.

     

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