Research on noise reduction of drive axle hypoid gear based on tooth surface mismatch modification

Shaowu Nie, Jinyu Chen, Shaohang Liu
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Abstract

In order to reduce the transmission noise of drive axle hypoid gear, a method of tooth surface mismatch modification was proposed. Firstly, on the basis of establishing the grinding mathematical model of hypoid gear with cutter tilt, the theoretical tooth surface equation was derived, and the numerical tooth surface was calculated by dividing the grid points on tooth surface. Secondly, the pinion tooth surface which was full conjugated with gear tooth surface was constructed, and the tooth surface mismatch topography was established and decomposed into the first order and second order mismatch coefficients. According to the modification requirements, the pinion target surface was constructed by modifying the tooth surface mismatch coefficients, and the pinion modified machine setting parameters were acquired by establishing the pinion processing parameters corrected mathematical model. Finally, the loaded tooth contact analysis with finite element simulation and drive axle NVH (Noise, Vibration, Harshness) simulation were carried out for a pair of hypoid gear, therefore the loaded tooth contact areas, transmission errors curves, and noise simulation curves were obtained, and the simulation results show that after modification the tooth contact stress, loaded transmission errors amplitude, and NVH simulation curves value are all reduced. The road test results indicate that the drive axle hypoid gear howling phenomenon under the high speed operation can be eliminated, so the effectiveness of tooth surface modification method and NVH simulation method were verified.
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基于齿面错位修正的驱动桥准二齿 轮降噪研究
为了降低传动轴准双曲面齿轮的传动噪声,提出了一种齿面失配修正方法。首先,在建立带刀具倾斜的准双曲面齿轮磨削数学模型的基础上,推导出理论齿面方程,并通过划分齿面上的网格点计算出数值齿面。其次,构建了与齿轮齿面完全共轭的小齿轮齿面,建立了齿面错配形貌,并将其分解为一阶和二阶错配系数。根据修改要求,通过修改齿面失配系数构建了小齿轮目标面,并通过建立小齿轮加工参数修正数学模型获得了小齿轮修改后的机床设置参数。最后,对一对准双曲面齿轮进行了有限元仿真的加载齿面接触分析和驱动桥 NVH(噪声、振动和声振粗糙度)仿真,得到了加载齿面接触面积、传动误差曲线和噪声仿真曲线,仿真结果表明,改装后齿面接触应力、加载传动误差振幅和 NVH 仿真曲线值均有所降低。路试结果表明,驱动桥准双曲面齿轮在高速运转下的嚎叫现象得以消除,从而验证了齿面修正方法和 NVH 模拟方法的有效性。
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