首页> 外文期刊>Applied Mathematical Modelling >Analytical model for meshing stiffness, load sharing, and transmission error for spur gears with profile modification under non-nominal load conditions
【24h】

Analytical model for meshing stiffness, load sharing, and transmission error for spur gears with profile modification under non-nominal load conditions

机译:非名义上负载条件下具有型材改性的螺旋齿轮夹具,负荷共用和传输误差的分析模型

获取原文
获取原文并翻译 | 示例

摘要

The loaded tooth deflections, manufacturing deviations, and assembly errors on spur gears induce a delay on the driven gear respect to the driving gear, which is called loaded transmission error. This delay causes an earlier start of contact outside the pressure line, resulting in a mesh-in impact, which is an important source of noise and vibrations. To avoid or mitigate this mesh-in impact, profile modifications on the driven tooth tip are frequently used. The additional gap due to the profile relief delays the effective start of contact, and a suitable amount of relief sets the mesh-in point back to the theoretical inner point of contact, which prevents the mesh-in impact and ensures a smooth contact. However, as the loaded transmission error depends on the transmitted load, a specific amount of relief will be suitable only for a specific input torque. For higher transmitted load mesh-in impact will occur again, while for lower transmitted load the effective contact ratio will be reduced due to an excessive delay of the start of contact. Therefore, under variable load conditions it is not possible to adjust the start of contact to the theoretical inner point of contact, so mesh-in impact, smooth contact and reduction of contact ratio may alternatively occur. In this paper, a simple analytical model for the meshing stiffness, load sharing ratio and transmission error is presented for spur gears with profile modification under non nominal -or variable- load conditions.
机译:齿轮上的装载齿偏转,制造偏差和组装误差引起驱动装置对驱动齿轮的延迟,该驱动齿轮被称为加载的传输误差。这种延迟导致较早的接触开始在压力线外,导致射入撞击,这是噪声和振动的重要来源。为了避免或减轻这种网格的影响,经常使用从动齿尖的轮廓修改。由于轮廓释放的额外间隙延迟了接触的有效启动,并且合适量的浮雕将网格蚀刻返回到理论内部接触点,这防止了网眼冲击并确保了平滑接触。然而,随着所载的传输误差取决于传输负载,特定量的浮雕将仅适用于特定输入扭矩。对于较高的透射负载,将再次发生撞击撞击,而对于较低的透射负载,由于接触开始的过度延迟,将减小有效接触比。因此,在可变负载条件下,不可能调节与理论内部接触点的接触的开始,因此可以替代地发生射入碰撞,平稳接触和接触比的减小。本文介绍了在非标称 - 载荷条件下具有型材改性的曲线齿轮的啮合刚度,负荷共享比和传输误差的简单分析模型。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号