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作 者:蒋凯佳 宋爱平[1] 黄嘉铭 陈忠权 周强强 JIANG Kaijia;SONG Aiping;HUANG Jiaming;CHEN Zhongquan;ZHOU Qiangqiang(College of Mechanical Engineering,Yangzhou University,Yangzhou 225127,CHN)
出 处:《制造技术与机床》2024年第2期142-146,共5页Manufacturing Technology & Machine Tool
摘 要:通过对现有磨齿加工工艺的研究,文章提出了一种可实现齿向修形的新型磨削工艺,通过在倾斜安装的立方碳化硼磨盘对齿轮齿面进行磨削,基于Vericut加工仿真验证,该磨削方法可以实现齿轮的齿向修形并全齿宽磨削齿面。利用仿真后的齿轮进行齿轮副齿面接触分析,得到接触区间主要分布在齿面中间部分区域,可有效减小齿轮副啮合偏载,提升齿轮传动的平稳性。根据磨盘磨削轨迹与被加工齿轮节圆切平面的几何位置关系,构建鼓形量控制调节模型,得出鼓形量可由立方碳化硼磨盘的安装角度进行控制,能够保证齿向修形量的准确性与稳定性。Based on the study of the existing grinding technology,a new grinding process which can realize tooth profile modification is put forward.The gear tooth surface is grinded by an inclined cubic boron carbide grinding disc.Based on Vericut machining simulation verification,this grinding method can realize gear tooth profile modification and full tooth width grinding.The contact analysis of the tooth surface of the gear pair is carried out by using the simulated gear,and it is found that the contact interval is mainly distributed in the middle part of the tooth surface,which can effectively reduce the meshing partial load of the gear pair and improve the stationarity of the gear transmission.According to the geometric position relationship between the grinding track of the grinding disc and the circular cutting plane of the machined gear section,the drum shape control adjustment model is constructed,and it is concluded that the drum shape can be controlled by the installation angle of the cubic boron carbide grinding disc,which can ensure the accuracy and stability of the tooth modification.
分 类 号:TH132.417[机械工程—机械制造及自动化]
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