首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Effect of crowning radius on rolling contact fatigue strength for traction drive elements (Evaluation by simulation)
【24h】

Effect of crowning radius on rolling contact fatigue strength for traction drive elements (Evaluation by simulation)

机译:凸度半径对牵引驱动元件滚动接触疲劳强度的影响(通过仿真评估)

获取原文

摘要

A simulation of the rolling contact fatigue strength of a traction drive element was developed. This simulation accounts for both the distribution of sizes of inclusions in the element material and the influence of traction forces at the element surface. The shear strength of the matrix structure surrounding an inclusion was estimated with an equation. The hardness distribution and the Weibull distribution of inclusion dimensions, which are necessary parameters to calculate the rolling contact fatigue strength, were determined by observation of an actual test specimen. The purpose of this report is simulations to evaluate the effect of the crowning radius on the rolling contact fatigue strength and the torque capacity. The simulations were carried out by varying the crowning radius of the virtual roller. To consider the effect of the crowning radius, a simulated two-dimensional virtual roller, which has actual material properties, was modified to a roller multilayered toward the axial direction. The simulation assuming the actual roller led to a difference of 1.0% from the experimental rolling contact fatigue strength. This difference was 2.4 points smaller than the result for the two-dimensional virtual roller. The rolling contact fatigue strength decreased with increasing crowning radius for two reasons. One was the increase in the number of inclusions under the high stress due to the increasing crowning radius. The other was the expansion of the portion of the roller subject to high stresses down to a depth having small hardness. However, the torque capacity calculated from the contact force resulting in failure increased with the increasing crowning radius.
机译:开发了牵引驱动元件滚动接触疲劳强度的模拟。该模拟考虑了元素材料中夹杂物的尺寸分布以及元素表面处的牵引力的影响。用方程式估算包裹体周围的基体结构的剪切强度。夹杂物尺寸的硬度分布和威布尔分布是计算滚动接触疲劳强度的必要参数,是通过观察实际试样来确定的。该报告的目的是进行仿真,以评估凸出半径对滚动接触疲劳强度和扭矩容量的影响。通过改变虚拟辊的凸面半径进行模拟。为了考虑凸面半径的影响,将具有实际材料属性的模拟二维虚拟辊修改为沿轴向多层的辊。假设实际滚子的模拟导致与实验滚动接触疲劳强度的差异为1.0%。该差异比二维虚拟辊的结果小2.4点。滚动接触疲劳强度随着凸出半径的增加而降低,原因有两个。一是由于增加的凸出半径,在高应力下夹杂物的数量增加。另一个是承受高应力的辊子部分的膨胀,直至硬度小的深度。但是,根据导致失效的接触力计算出的扭矩容量随着凸出半径的增加而增加。

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