1.南京高速齿轮制造有限公司, 江苏 南京 211100
2.大连理工大学 现代制造研究所高性能加工教育部重点实验室, 辽宁 大连 116024
王炯(1964— ),男,江苏南京人,硕士,高级工程师;研究方向为风电齿轮箱精密制造和测试。
扫 描 看 全 文
王炯,禹世航,孙玉文.基于成形磨削的大模数修形风电齿轮几何误差建模[J].机械传动,2022,46(07):151-157.
Wang Jiong,Yu Shihang,Sun Yuwen.Geometrical Error Modeling of Large Modulus Modified Wind Power Gear based on Form Grinding[J].Journal of Mechanical Transmission,2022,46(07):151-157.
王炯,禹世航,孙玉文.基于成形磨削的大模数修形风电齿轮几何误差建模[J].机械传动,2022,46(07):151-157. DOI: 10.16578/j.issn.1004.2539.2022.07.023.
Wang Jiong,Yu Shihang,Sun Yuwen.Geometrical Error Modeling of Large Modulus Modified Wind Power Gear based on Form Grinding[J].Journal of Mechanical Transmission,2022,46(07):151-157. DOI: 10.16578/j.issn.1004.2539.2022.07.023.
因能够有效减小齿轮啮合过程中的冲击,改善载荷分布不均,减少振动和降低噪声,齿面修形技术在风电齿轮中被广泛应用。而成形磨削是风电齿轮加工的最后一道工序,其直接决定了齿面的最后精度。求解成形磨削的几何误差,对于规划成形磨削加工路径,提高齿面加工精度至关重要。为求解成形磨削几何误差,首先,建立了包含齿廓修形、螺旋线修形(包含鼓形修形和螺旋角修形)的齿面模型;然后,根据齿面参数、砂轮齿轮轴线公垂线长度以及交错角,求解了成形磨削的接触线,构建了成形磨削齿面;最后,利用理论齿面和成形磨削齿面,定义了成形磨削几何误差,构建了齿面成形磨削的几何误差模型;并给出了减小成形磨削几何误差的建议。
Due to properties of reducing impact,improving uneven load,and lowering noise in the meshing process,the technology of tooth surface modified are very common in the wind power gear. As the last process of machining gear,form grinding determines the accuracy of gear directly. Therefore,solving geometry error of form grinding becomes vital for optimize grinding tool path and enhancing the machining precision. Thus,this paper builds a model of geometrical error. In order to solve the geometry error of form grinding, firstly, tooth surface model of gears combining the profile and axial modification (including drum and helix modification) is constructed. Then,based on the tooth surface parameter,the length of common perpendicular between axes of the gear and the wheel,the contacting curve between the gear and the wheel is solved. The form grinding tooth surface is constructed. Finally,the geometrical error of tooth surfuce form grinding is defined by using the theoretical tooth surface and form grinding tooth surface, the geometric error model of tooth surface form grinding is established, some suggestions are given to reduce the geometry error of form grinding.
成形磨削风电齿轮大模数几何误差
Form grindingWind power gearLarge modulusGeometry error
刘丹,谷洪亮,阳可军.风电增速箱的磨齿裂纹分析与消除[J].机电工程技术,2009,38(9):48-49.
LIU Dan,GU Hongliang,YANG Kejun.Gear grinding crack analysis and elimination of wind power gearbox[J].Mechanical and Electrical Engineering Technology,2009,38(9):48-49.
何坤,杜彦斌,李国龙.螺旋线修形斜齿轮成形磨削齿面原理性误差分析[J].计算机集成制造系统,2018,24(6):1401-1410.
HE Kun,DU Yanbin,LI Guolong.Error analysis of profile modification helical gear grinding[J].Computer Integrated Manufacturing System,2018,24(6):1401-1410.
吕张来,李志峰,赵旭.渐开线螺旋齿轮的成形磨削研究[J].机械设计与制造,2013(10):136-138.
LÜ Zhanglai,LI Zhifeng,ZHAO Xu.Research on form grinding of involute spiral gear[J].Mechanical Design and Manufacturing,2013(10):136-138.
王晓飞,李志峰,王高勇,等.渐开线螺旋齿轮成形磨削砂轮的修整[J].组合机床与自动化加工技术,2015(4):132-134.
WANG Xiaofei,LI Zhifeng,WANG Gaoyong,et al.Form grinding wheel dressing of involute spiral gear[J].Modular Machine Tool and Automatic Processing Technology,2015(4):132-134.
郭二廓,黄筱调,袁鸿,等.斜齿轮成形磨削接触线优化研究[J].机械科学与技术,2012,31(8):1320-1324.
GUO Erkuo,HUANG Xiaotiao,YUAN Hong,et al.Contact line optimization of helical gear form grinding[J].Mechanical Science and Technology,2012,31(8):1320-1324.
孙伟,张东生,王晓飞.基于成形磨削的渐开线螺旋齿轮研究[J].机械研究与应用,2016,29(3):13-19.
SUN Wei,ZHANG Dongsheng,WANG Xiaofei.Research on involute spiral gear based on form grinding[J].Mechanical Research and Application,2016,29(3):13-19.
郭二廓,黄筱调,方成刚,等.一种提高成形磨齿螺旋线修形精度的接触线优化方法[J].计算机集成制造系统,2014,20(1):134-141.
GUO Erkuo,HUANG Xiaotiao,FANG Chenggang,et al.A contact line optimization method for improving the profile modification accuracy of form grinding[J].Computer Integrated Manufacturing System,2014,20(1):134-141.
汪中厚,宋小明,何伟铭,等.斜齿轮成形磨削螺旋线修形齿面模型构造与误差评价[J].中国机械工程,2015,26(21):2841-2847.
WANG Zhonghou,SONG Xiaoming,HE Weiming,et al.Tooth surface model construction and error evaluation of helical gear profile modification by form grinding[J].China Mechanical Engineering,2015,26(21):2841-2847.
李学艺,李超超,李三帅,等.基于均匀三次B样条曲面的斜齿轮副精确建模[J].机械传动,2012,36(8):44-47.
LI Xueyi,LI Chaochao,LI Sanshuai,et al.Accurate modeling of helical gear pair based on uniform cubic B-spline surface[J].Journal of Mechanical Transmission,2012,36(8):44-47.
王龙,汪刘应,刘顾,等.成型砂轮磨削齿轮的运动学模型构建与齿轮精度分析[J].制造技术与机床,2019(12):112-116.
WANG Long,WANG Liuying,LIU Gu,et al.Kinematic model construction and gear accuracy analysis of gear grinding with forming wheel[J].Technology and Manufacturing,2019(12):112-116.
阳辉,黄筱调,方成刚,等.成形磨齿螺旋线修形扭曲误差分析及补偿[J].机床与液压,2019,47(9):99-106.
YANG Hui,HUANG Xiaotiao,FANG Chenggang,et al.Analysis and compensation of distortion error in profile modification of gear grinding[J].Machine Tools and Hydraulics,2019,47(9):99-106.
李昊凯.修形内斜齿轮成形磨削技术研究[D].洛阳:河南科技大学,2019:30-36.
LI Haokai.Research on form grinding technology of modified internal helical gear[D].Luoyang:Henan University of Science and Technology,2019:30-36.
周玉山,邵明.粉末冶金齿轮模具成形磨齿砂轮的廓形计算方法[J].机械工程学报,2005,41(1):162-165.
ZHOU Yushan,SHAO Ming.Profile calculation method of grinding wheel for powder metallurgy gear die forming[J].Chinese Journal of Mechanical Engineering,2005,41(1):162-165.
娄洋.拓扑修形齿面成形磨削误差消减关键技术研究[D].重庆:重庆大学,2017:21-31.
LOU Yang.Research on the key technology of form grinding error reduction for topologically modified tooth surface[D].Chongqing:Chongqing University,2017:21-31.
蒋云龙.成形磨削螺旋线修形误差补偿及其仿真加工[D].重庆:重庆大学,2016:17-31.
JIANG Yunlong.Profile modification error compensation and simulation processing in form grinding[D].Chongqing:Chongqing University,2016:17-31.
王明镜,王炯,曹荣青,等.风电齿轮螺旋角修形方式的探讨[J].机械工程师,2021(1):135-136.
WANG Mingjing,WANG Jiong,CAO Rongqing,et al.Discussion on spiral angle modification of wind turbine gears[J].Mechanical Engineer,2021(1):135-136.
沈瑞,杨思维.直齿轮传动多工况多目标修形优化设计[J].机械传动,2021,45(2):136-139.
SHEN Rui,YANG Siwei.Optimization design of spur gear transmission under multi working conditions and multi-objective modification[J].Journal of Mechanical Transmission,2021,45(2):136-139.
0
浏览量
4
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构