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Gray Relational Optimization of the Surface Performance of Splines Formed by Cold Roll-Beating

机译:冷轧打磨形成的花键表面性能的灰色关联优化

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摘要

Surface roughness, residual stress, and work hardening are the key parameters characterizing the mechanical properties of a spline surface after undergoing cold roll-beating. A comprehensive optimization of the mechanical properties of such surfaces has not been previously reported. To improve the performance of the spline surface, gray theory is used to study the relationships between the surface roughness, residual stress, and work hardening in the pitch diameter of spline teeth. This method addresses the surface performance optimization of an involute spline as influenced by the cold roll-beating speed and feed rate as the main parameters during the cold roll-beating process. The results show that the surface roughness and hardening degree of the splines increase with an increasing feed rate but decrease with an increasing cold roll-beating speed; the residual stress of the spline decreases with an increasing feed rate and increases with an increasing cold roll-beating speed. 'I he results also show that the feed rate has a strong influence on the surface performance of splines produced by cold roll-beating. The optimal process parameters in terms of the spline surface performance are a cold roll-beating speed of 1428 r/min and a feed rate of 42 mm/min. The results of the present work emphasize the significance of improving the surface performance of the cold roll-beating spline-forming process and determining the optimal process parameters.
机译:表面粗糙度,残余应力和加工硬化是表征花键表面经过冷滚打后的机械性能的关键参数。先前尚未报道过这种表面的机械性能的全面优化。为了改善花键表面的性能,使用灰色理论研究了花键齿的节圆直径中表面粗糙度,残余应力和加工硬化之间的关系。该方法解决了渐开线花键的表面性能优化问题,该渐开线花键受到冷轧打浆速度和进给速度的影响,这是冷轧打浆过程中的主要参数。结果表明,花键的表面粗糙度和硬化程度随进给速度的增加而增加,而随冷轧打浆速度的增加而降低;花键的残余应力随着进给速度的增加而减小,并随着冷轧打浆速度的增加而增加。 '他的结果还表明,进给速度对冷轧打浆产生的花键的表面性能有很大影响。就花键表面性能而言,最佳工艺参数是冷轧打浆速度为1428 r / min,进给速度为42 mm / min。本工作的结果强调了改善冷轧打浆样条成形工艺的表面性能并确定最佳工艺参数的重要性。

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  • 来源
    《Mathematical Problems in Engineering》 |2018年第9期|4346015.1-4346015.10|共10页
  • 作者

    Cui Fengkui; Su Yongxiang;

  • 作者单位

    Collaborat Innovat Ctr Machinery Equipment Adv Mf, Luoyang 471003, Henan, Peoples R China;

    Henan Univ Sci & Technol, Sch Mechatron Engn, Luoyang 471003, Henan, Peoples R China;

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