1.合肥工业大学 机械工程学院, 安徽 合肥 230009
田晓青(1987— ),女,河北石家庄人,博士,副教授,硕士生导师;主要研究方向为数控技术与数控装备、齿轮加工工艺及控制技术、3D打印技术、机床误差建模与补偿技术。
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田晓青,郑鑫荣,陈若峰等.圆柱齿轮滚切力可视化及切削参数对滚切力的影响研究[J].机械传动,2022,46(03):16-23.
Tian Xiaoqing,Zheng Xinrong,Chen Ruofeng,et al.Research on Visualization of Cylindrical Gear Hobbing Cutting Force and the Influence of Cutting Parameter on Hobbing Cutting Force[J].Journal of Mechanical Transmission,2022,46(03):16-23.
田晓青,郑鑫荣,陈若峰等.圆柱齿轮滚切力可视化及切削参数对滚切力的影响研究[J].机械传动,2022,46(03):16-23. DOI: 10.16578/j.issn.1004.2539.2022.03.003.
Tian Xiaoqing,Zheng Xinrong,Chen Ruofeng,et al.Research on Visualization of Cylindrical Gear Hobbing Cutting Force and the Influence of Cutting Parameter on Hobbing Cutting Force[J].Journal of Mechanical Transmission,2022,46(03):16-23. DOI: 10.16578/j.issn.1004.2539.2022.03.003.
滚齿是重要的齿轮加工工艺之一,其加工成形过程复杂,并且涉及较多切削参数。为了量化切削参数对滚切力的影响,研究了一种基于三维几何仿真的滚齿切削力预测方法。根据滚刀和工件的几何参数以及切削参数确定加工过程中滚刀和工件的相对位置和运动关系,在CAD环境中实现滚齿运动过程的三维仿真,并得到未变形切屑的三维模型;根据选定的切削力模型,利用未变形切屑模型的截面尺寸计算单个切削刃的瞬时切削力,得到滚齿的整体受力过程;定量分析了不同切削参数对滚齿切削力的影响。该预测模型有助于滚齿加工工艺过程的优化设计,以提升加工质量和效率,降低加工成本。
Hobbing is one of the most important gear machining process,forming process of which is complicated and involves a large number of cutting parameters. In order to quantify the influence of machining parameters on the cutting force in hobbing process,a method for predicting the cutting force of gear hobbing based on three-dimensional (3D) geometric simulation is studied. The relative position and motion relationship between hob and workpiece are determined according to the geometric parameters and cutting parameters of hob and workpiece, the 3D simulation of hobbing process is realized in CAD environment,and the 3D model of undeformed chips is obtained. According to the selected cutting force model,the instantaneous cutting force of a single cutting edge is calculated by using the cross-section size of undeformed chips model,and the overall cutting force process of hobbing is obtained. The influence of different cutting parameter on hobbing cutting force is analyzed quantitatively. The predictive model helps to optimize the design of the gear hobbing process to improve the quality and efficiency of the machining and reduce the cost.
滚齿切削过程仿真切削力切削参数
Gear hobbingCutting process simulationCutting forceCutting parameter
BOUZAKIS K D,LILI E,MICHAILIDIS N,et al.Manufacturing of cylindrical gears by generating cutting processes:a critical synthesis of analysis methods[J].CIRP Annals-Manufacturing Technology,2008,57(2):676-696.
李特,芮执元,胡赤兵,等.滚齿切削力研究综述[J].现代制造工程,2016(12):154-161.
LI Te,RUI Zhiyuan,HU Chibing,et al.The research development of gear cutting force[J].Modern Manufacturing Engineering,2016(12):154-161.
于春建,黄筱调.滚齿切削力计算方法分析[J].工具技术,2007,41(3):42-45.
YU Chunjian,HUANG Xiaodiao.Analysis of calculating methods for hobbing force[J].Tool Engineering,2007,41(3):42-45.
ANTONIADIS A,VIDAKIS N,BILALIS N.Fatigue fracture investigation of cemented carbide tools in gear hobbing,part 1:FEM modeling of fly hobbing and computational interpretation of experimental results[J].Journal of Manufacturing Science and Engineering,2002,124(4):784-791.
DONG X,LIAO C,SHIN Y C,et al.Machinability improvement of gear hobbing via process simulation and tool wear predictions[J].The International Journal of Advanced Manufacturing Technology,2016,86(9/10/11/12):2771-2779.
DIMITRIOU V M,VIDAKIS N,ANTONIADIS A.Advanced computer aided design simulation of gear hobbing by means of three-dimensional kinematics modeling[J].Journal of Manufacturing Science and Engineering,2007,129(5):911-918.
DIMITRIOU V,ANTONIADIS A.CAD-based simulation of the hobbing process for the manufacturing of spur and helical gears[J].The International Journal of Advanced Manufacturing Technology,2009,41(3/4):347-357.
NIKOLAOS T,ARISTOMENIS A.CAD-based calculation of cutting force components in gear hobbing[J].Journal of Manufacturing Science and Engineering,2012,134(3):1013-1020.
KLOCKE F,GORGELS C,SCHALASTER R,et al.An innovative way of designing gear hobbing processes[C]//Proceedings of the 2010 International Conference on Gears,Munich,Germany.New York:AGMA,c2012:48-53.
KLOCKE F,BRECHER C,LÖPENHAUS C,et al.Calculating the workpiece quality using a hobbing simulation[J].Procedia CIRP,2016,41(C):687-691.
SABKHI N,MOUFKI A,NOUARI M,et al.Prediction of the hobbing cutting forces from a thermomechanical modeling of orthogonal cutting operation[J].Journal of Manufacturing Processes,2016,23:1-12.
张荣闯,王宛山,王军.滚齿切削厚度仿真计算[J].东北大学学报(自然科学版),2015,36(1):95-98.
ZHANG Rongchuang,WANG Wanshan,WANG Jun.Simulation calculation of undeformed chip thickness in gear hobbing[J].Journal of Northeastern University (Natural Science),2015,36(1):95-98.
张荣闯,黎柏春,张景强.圆柱齿轮滚齿切削力的预测[J].东北大学学报(自然科学版),2019,40(7):980-985.
ZHANG Rongchuang,LI Bochun,ZHANG Jingqiang.Prediction of cutting forces in gear hobbing of cylindrical gears[J].Journal of Northeastern University (Natural Science),2019,40(7):980-985.
吕盈,张松,李剑峰,等.基于SolidWorks的滚齿过程几何仿真及切削力计算[J].组合机床与自动化加工技术,2017(11):112-115.
LÜ Ying,ZHANG Song,LI Jianfeng,et al.Geometric simulation of hobbing process based on SolidWorks and calculation of hobbing foce[J].Modular Machine Tool & Automatic Manufacturing Technique,2017(11):112-115.
陈永鹏,曹华军,李先广,等.圆柱齿轮滚切多刃断续切削空间成形模型及应用[J].机械工程学报,2016,52(9):176-183.
CHEN Yongpeng,CAO Huajun,LI Xianguang,et al.The model of spatial forming with multi-cutting-edge for cylindrical gear hobbing and its application[J].Journal of Mechanical Engineering,2016,52(9):176-183.
ZHENG F Y,HAN X H,HUA L,et al.A semi-analytical model for cutting force prediction in face-milling of spiral bevel gears[J].Mechanism and Machine Theory,2021,156:104165.
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