【24h】

The effect of the gear wear for the contact ratio

机译:齿轮磨损对接触比的影响

获取原文

摘要

The contact ratio is such a parameter of a gear, that is very important because of the noise of the drive and the quality of the mesh. In general condition, the contact ratio can be considered constant during the whole lifetime. Although there are applications where the gears are working without any lubrication and the only criteria of the lifetime. Among these conditions the measure of the wear can be so extensive, that has a significant influence on the contact ratio in a quite long period of the lifetime. In these cases, the contact ratio decreases, which leads to the increase of the dynamic loads. The pressure line can be move, which results the modification of the tooth bending force's arm. It is easy to understand that this phenomenon depends on geometrical parameters, the initial conditions, relative movements and the loads. This means, not only the measure of the wear can be restricted by the strength, but the new geometry. In these conditions, the operational characteristics can be significantly different from the original, which was determined by calculation. Because of that, it is expedient to suppose more conditions as a basis in case of non-lubricated gear drives. It is recommended to calculate in every condition the safety factors. If we know the measure of the wear, we can determine when will be the gear pair inoperable with the use of known calculations. This paper shows an iterative process, in which the suspected measure of the wear is used as tolerance, the possible consequences were determined.
机译:接触比是齿轮的这样的参数,这是非常重要的,因为驱动器的噪音和网格的质量。在一般情况下,在整个寿命期间,接触比可以被认为是恒定的。虽然有齿轮在没有任何润滑的情况下工作的应用以及寿命的唯一标准。在这些条件中,磨损的量度可以如此广泛,这对长时间的长时间内对接触比具有显着影响。在这些情况下,接触比降低,这导致动态载荷的增加。压力线可以移动,这导致齿弯力的臂的改变。很容易理解,这种现象取决于几何参数,初始条件,相对运动和负载。这意味着,不仅可以通过强度限制磨损的量度,而是新的几何形状。在这些条件下,操作特性可以与原始的显着不同,这是通过计算确定的。因此,在非润滑齿轮驱动器的情况下,有利的是假设更多条件作为基础。建议在每个条件下计算安全因素。如果我们知道佩戴的尺寸,我们可以确定何时将使用已知计算的齿轮对不可操作。本文显示了一种迭代过程,其中使用诸如耐磨的可疑测量作为耐受性,确定可能的后果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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