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1.重庆大学 机械传动国家重点实验室, 重庆 400030
2.重庆磐联传动科技有限公司, 重庆 400060
林超(1958— ),男,重庆市人,博士,教授,博士生导师;研究方向为机械设计计算机辅助工程、精密传动与驱动以及新型齿轮传动及微纳传动设计与制造;linchao@cqu.edu.cn。
纸质出版日期:2023-01-15,
收稿日期:2021-12-13,
修回日期:2022-02-28,
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林超,冉贵,徐萍.端曲面齿轮防滑差速器运动特性分析与仿真[J].机械传动,2023,47(01):88-95.
Lin Chao,Ran Gui,Xu Ping.Motion Characteristics Analysis and Simulation of Limited Slip Differential with Curve-faced Gear Pair[J].Journal of Mechanical Transmission,2023,47(01):88-95.
林超,冉贵,徐萍.端曲面齿轮防滑差速器运动特性分析与仿真[J].机械传动,2023,47(01):88-95. DOI: 10.16578/j.issn.1004.2539.2023.01.013.
Lin Chao,Ran Gui,Xu Ping.Motion Characteristics Analysis and Simulation of Limited Slip Differential with Curve-faced Gear Pair[J].Journal of Mechanical Transmission,2023,47(01):88-95. DOI: 10.16578/j.issn.1004.2539.2023.01.013.
为了探究端曲面齿轮防滑差速器的运动特性和防滑性能,基于端曲面齿轮副啮合原理和差速器工作原理,建立了端曲面齿轮防滑差速器的静力学模型,分析了端曲面齿轮副阶数、偏心率以及转速差对差速器转弯时运动特性的影响;利用Adams软件对端曲面防滑差速器的防滑特性进行了动力学仿真。结果表明,与普通圆锥差速器相比,端曲面齿轮防滑差速器具有显著的防滑特性,防滑系数可达2.5。通过简化端曲面齿轮防滑差速器模型,搭建差速器实验平台,得到了非圆行星齿轮偏转角速度,验证了在差速状态时其理论值的准确性。
In order to analyze motion and anti-slip characteristics of a limited-slip differential with curve-faced gear-pair
a static model of the differential is established based on the principle of the curve-faced gear pair meshing and the differential. The influence of the order
the eccentricity and the gear pair's velocity on the differential's motion characteristics when turning is analyzed. The dynamic characteristics of the limited-slip differential with curve-faced gears are worked out with the Adams software. The results show that
compared with the ordinary cone differential
the limited-slip differential with curve-faced gears has significant anti-slip characteristics
and the anti-slip coefficient can reach 2.5. By simplifying the limited-slip differential with curve-faced gear pair
an experimental platform is built. The deflection angular velocity value of the non-circular planetary gear is obtained
which verifies its theoretical value's accuracy in the differential state.
端曲面齿轮副防滑差速器静力学分析运动仿真
Curve-faced gear pairLimited slip differentialStatics analysisMotion simulation
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