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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The effect of dynamic behavior on surface roughness of ball screw under the grinding force
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The effect of dynamic behavior on surface roughness of ball screw under the grinding force

机译:磨削力下动态行为对滚珠丝杠表面粗糙度的影响

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摘要

The dynamic behavior of a ball screw under a moving grinding force and the resulting ball screw surface roughness are investigated. The system includes a ball screw, a headstock, a tailstock, a steady rest, a grinding wheel, and a wheel head. Equations of motion of the system are derived through Lagrangian approach combined with global assumed mode method in this study. The transient responses of the system due to a moving force are evaluated using Runge-Kutta method. Results show that the steady rest can reduce 90% vibration in a grinding process. An equation is proposed to predict the maximum response by the cutting depth. Then we simulate the grain height distribution on the grinding wheel, considering transient response on the ball screw and the grinding wheel. Lastly, the ball screw surface roughness could be simulated via calculating the depth of all working grains. The purpose of using grinding process is that the ball screw needs fine surface roughness. The ball screw surface roughness is influenced by the grain size more than the structure numbers can be.
机译:研究了滚珠丝杠在移动磨削力下的动态行为以及由此产生的滚珠丝杠表面粗糙度。该系统包括一个滚珠丝杠,一个主轴箱,一个尾座,一个稳定的支座,一个砂轮和一个砂轮头。在本研究中,通过拉格朗日方法与全局假定模式方法相结合,得出了系统的运动方程。使用Runge-Kutta方法评估系统由于运动力而产生的瞬态响应。结果表明,稳定的休息可以减少研磨过程中90%的振动。提出了一个方程来预测切削深度的最大响应。然后,我们考虑滚珠丝杠和砂轮的瞬态响应,模拟砂轮上的晶粒高度分布。最后,可以通过计算所有加工晶粒的深度来模拟滚珠丝杠的表面粗糙度。使用磨削工艺的目的是滚珠丝杠需要良好的表面粗糙度。滚珠丝杠的表面粗糙度受晶粒尺寸的影响大于结构编号的影响。

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