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数控成形砂轮磨齿机床几何误差分析与函数补偿法 被引量:7

Geometric Error Analysis and Function Compensation of a CNC Forming Wheel Grinding Machine
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摘要 以QCYK7332A数控成形砂轮磨齿机为例,对机床误差进行了分析。应用多体系统理论以及齐次坐标变换建立了几何误差模型,得到了此模型下砂轮尖的6个自由度误差表达式,并在此基础上以机床B轴为例,说明了运动轴误差转化到磨具上,从而引起所加工齿轮的齿距、齿形、压力角等误差。为了减小误差,提出了函数补偿法,并以测量机床的X轴角度误差为例,说明机床误差预测以及实时误差补偿的过程,为提高数控成形砂轮磨齿机精度、减小机床的几何误差提供了理论依据。 The geometric errors of QCYK7332A CNC forming wheel grinding machine were ana- lyzed, then using the multi--body system theory and a homogeneous coordinate transformation meth- od, a mathematical model of geometric error was built, and six degrees of freedom error expressions for wheel tip in this model was obtained. Additionally, using the B--axis as an example, the move- ment errors of axis were transformed into the grinding tools, thus the error tendency of teeth space, tooth profile, and pressure angle of gears will be produced. Using function compensation to reduce the errors of gears, and using an example to show the measurement of X--axis angular errors of the ma- chine, the machine error prediction process and real-- time error compensation were introduced. It is a theoretical foundation for improving CNC forming wheel grinding machine and reducation of geometric errors.
机构地区 合肥工业大学
出处 《中国机械工程》 EI CAS CSCD 北大核心 2013年第23期3144-3149,共6页 China Mechanical Engineering
基金 国家科技重大专项(2012ZX04001032)
关键词 数控成形砂轮磨齿机 几何误差模型 函数补偿法 误差预测 CNC forming wheel grinding machine geometric error model function compensation error forecast
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  • 1Lin P D, Ehmann K F. Direct volumetric error evaluation for multi-axis machines. Int.J.Mach. Tools Manufact., 1993, 5(33): 675--693.
  • 2Ni J, Wu S M. An On-line measurement technique for machine volumetric error compensation. Transactions of the ASME, 1993, 115(2): 85~92.
  • 3Ferreira P M, Liu C R. An analytical quadrate model for the geometric error of a machine tool. Journal of Manufacturing Systems, 1986, 5(1): 51-52.
  • 4Jun Ni. CNC machine accuracy enhancement through real-time error compensation. Journal of Manufacturing Science and Engineering, 1997, 11(19):717-724.
  • 5Jay F Tu, Bernd Bossmanns,Spring C C Hung. Modeling and error analysis for assessing spindle radial error motions. Precision Engineering, 1997(21):90--101.
  • 6张国雄,Annals CIRP,1988年,37卷,1期
  • 7张国雄,机床,1986年,8期
  • 8张国雄,Annals CIRP,1985年,34卷,1期
  • 9Chen J S, Yuan J X, Ni J. Real-time compensation for time-variant volumetric error on a machining center [J]. ASME Journal of Engineering for Industry,1993, 114:472-479.
  • 10Bryan J B. International status of thermal error research[J]. Annals of CIRP, 1990, 39(2):645-656.

共引文献145

同被引文献73

  • 1郭世杰,武建新,乔冠,唐术锋.数控机床几何误差正弦低次多项式参数化建模与应用研究[J].仪器仪表学报,2020(10):136-146. 被引量:20
  • 2夏长久,王时龙,徐凯,马驰.基于球杆仪单轴运动测量的旋转轴几何误差辨识[J].仪器仪表学报,2020(7):19-28. 被引量:9
  • 3曲智勇,陈维山,姚郁.导轨几何误差辨识方法的研究[J].机械工程学报,2006,42(4):201-205. 被引量:11
  • 4Karpuschewski B,Knoche H J, Hipke M. Gear finishing byabrasive processes [J]. CIRP Annals: Manufacturing Tech-nology ’ 2008,57(2):621 - 640.
  • 5Ni J,Wu S M. An on-line measurement technique for ma-chine volumetric error compensation [J ]. Journal of Manu-facturing Science and Engineering, 1993,115 (1) . 85-92.
  • 6Okafor A C,Ertekin Y M. Derivation of machine tools errormodels and error compensation procedure for three axesvertical machining center using rigid body kinematics [J].International Journal of Machine Tools and Manufacture.2000,40(8):1199-1213.
  • 7韩江,夏链,田晓青.一种高速高精度柔性电子齿轮箱的控制方法:中国,CN201310180873.0[[D]. 2013-10-18.
  • 8Srivastava A K, Veldhuis S C, Elbestawit M A. Modelinggeometric and thermal errors in a five-axis CNC machinetool[J]. International Journal of Machine Tool and Manu-facture, 1995,35(9) : 1321-1337.
  • 9Lei W T,Hsu Y Y. Accuracy enhancement of five-axis CNCmachines through real-time error compensation[J]. Interna-tional Journal of Machine Tool and Manufacture > 2003 . 43(9):871-877.
  • 10Shabana A A, Transient analysis of flexible multi-bodysystems, part I : dynamics of flexible bodies[J], Comput-er Methods in Applied Mechanics and Engineering, 1986,54(1).75-91.

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