1.烟台职业学院 汽车与船舶工程系, 山东 烟台 264670
李绍春(1976— ),男,山东招远人,硕士研究生,副教授,研究方向为汽车系统设计、机械传动。
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李绍春,初永玲,于子强等.抛光磨削工艺对齿轮振动噪声影响的试验分析[J].机械传动,2020,44(08):137-141.
Li Shaochun Chu Yongling Yu Ziqiang Wang Zhongxun Qu Jingyuan.Test Analysis of Effect of Polish Grinding Process on Gear Vibration and Noise[J].Journal of Mechanical Transmission,2020,44(08):137-141.
李绍春,初永玲,于子强等.抛光磨削工艺对齿轮振动噪声影响的试验分析[J].机械传动,2020,44(08):137-141. DOI: 10.16578/j.issn.1004.2539.2020.08.024.
Li Shaochun Chu Yongling Yu Ziqiang Wang Zhongxun Qu Jingyuan.Test Analysis of Effect of Polish Grinding Process on Gear Vibration and Noise[J].Journal of Mechanical Transmission,2020,44(08):137-141. DOI: 10.16578/j.issn.1004.2539.2020.08.024.
基于对比试验探究了抛光磨削工艺对齿轮振动噪声的影响。试验对象分别为抛光磨削齿轮和常规磨削齿轮各一对。试验前,对两齿轮副的齿形齿向形貌和粗糙度进行检测以得到齿面微观形貌特征;之后,对两齿轮副进行齿轮运转试验,在不同的转速下,采集振动噪声数据,利用Matlab对试验数据处理,得到频谱和噪声变化趋势;结合两齿轮副的表面形貌特征,分析探讨了抛光磨削工艺对齿轮振动噪声的影响。由频谱对比得知,抛光磨削齿轮的振动加速度明显低于常规磨削齿轮;由噪声结果对比得知,300~600 r/min时,抛光磨削齿轮比常规磨削齿轮噪声略低;700~1 000 r/min时,两齿轮副声增加均较为缓慢;1 100~1 400 r/min时,常规磨削齿轮振动噪声比抛光磨削齿轮增加的更快。
The effect of polishing and grinding process on the vibration and noise of gear is investigated based on comparative experiments. The test objects are one pair of polishing grinding gear and one pair of conventional grinding gear. Before the test, the profile and roughness of the two gear pairs are detected to obtain the micro-profile characteristics of the tooth surface. After that, the gear running test is carried out with the two gear pairs. The vibration and noise data are collected at different speeds, and Matlab is used to process the test data to obtain the frequency spectrum and noise variation trend. Based on the surface morphology of the two gear pairs, the influence of polishing and grinding process on the vibration and noise of the gear is analyzed and discussed. From the frequency spectrum comparison, the vibration acceleration of polished grinding gear is obviously lower than that of conventional grinding gear. According to the comparison of noise results, the noise of polished grinding gear is slightly lower than that of conventional grinding gear at 300~600 r/min. The sound of both gear pairs increased slowly at 700~1 000 r/min. In the range of 1 100~1 400 r/min, the vibration noise of conventional grinding gear increases faster than that of polished grinding gear.
抛光磨削 齿轮试验 振动噪声 微观形貌
Polish grindingGear testVibration and noiseMicro morphology
裴玲,鲁守荣,叶仲新,等.关于齿轮振动、噪声与齿轮修形关系的探讨[J].汽车技术,1998(2):23-26.
PEI ling,LU Shourong,YE Zhongxin,et al.Discussion on the relationship between gear vibration,noise and gear modification[J].Automotive Technology,1998(2):23-26.
邵正宇,丁卫东,鞠远萍,等.基于振动理论的圆柱齿轮精度设计的概率方法[J].机械设计与制造,2005,(6):23-24.
SHAO Zhengyu,DING Weidong,JU Yuanping,et al.Probabilistic method for precision design of cylindrical gears based on vibration theory[J].Mechanical Design and Manufacturing,2005(6):23-24.
LIU T J,DING Y L,ZHANG F S.Research on the error of grinding gear[J].Machine Design & Research,2009,25(5):64-67.
CHEN H F,TANG J Y,ZHOU W.Modeling and predicting of surface roughness for generating grinding gear[J].Journal of Materials Processing Technology,2013,213(5):717-721.
MA H,PANG X,FENG R J,et al.Evaluation of optimum profile modification curves of profile shifted spur gears based on vibration responses[J].Mechanical Systems & Signal Processing,2015(70):1331-1149.
JONAS B,SIMON B,WELF G D.Simulation of dressing process for continuous generating gear grinding[J].Procedia CIRP,2019,79:280-285.
于子强,刘尚伟.抛光磨削工艺对齿轮磨损特性的影响分析[J].机械设计与制造,2019(8):114-117.
YU Ziqiang,LIU Shangwei.Analysis on the influence of polishing and grinding process on gear wear characteristics[J].Mechanical Design and Manufacturing,2019(8):114-117.
李直.粗糙齿面接触界面摩擦特性及齿轮系统动力学研究[D].合肥:合肥工业大学,2017:25-42.
LI Zhi.Friction characteristics of contact interface of rough tooth surface and dynamics of gear system[D].Hefei:Hefei University of Technology,2017:25-42.
全国齿轮标准化技术委员会.声学声压法测定噪声源声功率级反射面上包络测量面的简易法:GB/T 3768-1996[S].北京:中国标准出版社,1996:1-24.
National Technical Committee on Gear Standardization.Simple method for determining the envelope measurement surface of the reflection surface of sound power level of noise source by acoustic pressure method:GB/T 3768-1996[S].Beijing:China Standard Press,1996:1-24.
全国齿轮标准化技术委员会.验收试验中齿轮装置机械振动的测定:GB/T 6404.2-2005[S].北京:中国标准出版社,2005:1-19.
National Technical Committee on Gear Standardization.Measurement of mechanical vibration of gears in acceptance tests:GB/T 6404.2-2005[S].Beijing:China Standard Press,2005:1-19.
全国齿轮标准化技术委员会.齿轮装置空气传播噪声的试验规范:GB/T 6404.1-2005[S].北京:中国标准出版社,2005:1-40.
National Technical Committee on Gear Standardization.Test specification for airborne noise in gear units: GB/T 6404.1-2005[S].Beijing:China Standard Press,2005:1-40.
陶昆,亓秀梅,高创宽.粗糙齿面接触应力与齿轮转速关系的理论探析[J].机械传动,201,41(5):10-13.
TAO Kun,QI Xiumei,GAO Chuangkuan.Theoretical analysis on the relationship between contact stress of rough tooth surface and gear speed[J].Journal of Mechanical Transmission,2017,41(5):10-13.
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