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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Mathematical modelling of power skiving for general profile based on numerical enveloping
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Mathematical modelling of power skiving for general profile based on numerical enveloping

机译:基于数值包络的一般轮廓功率刮齿数学建模

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摘要

Power skiving is an effective generating machining method for internal parts like gears with respect its high productivity. The general mathematic modelling for power skiving is the basis for cutting tools design, machining precision evaluation, and machining process optimization. Currently, mainly studies are focus on the involute gear machining with adopting the analytical enveloping equation. However, these analytical methods have failed to deal with overcutting for general profile skiving tasks. Moreover, little attention has been devoted to investigate the power skiving process with taking variable configuration parameters, which is significant to control the machined surface topography. Herein, we introduce a mathematic modelling method for power skiving with general profile based on the numerical discrete enveloping. Firstly, the basic mathematic model of power skiving is established, in which the center distance is formulated as polynomial of time. By transforming the power skiving into a forming machining of the swept volume of cutting edge, a numerical algorithm is designed to distinguish the machined transverse profile via the discrete enveloping ideology. Especially, the precise instant contact curve is extracted according to the feed motion speed inversely. Finally, simulations for involute gear and cycloid wheel are carried out to verify the effectiveness of this method and investigate the influence of variable radial motions on the machined slot surface topography. The results validate capability of this method on simulate the dynamic power skiving process for general desire profiles and evaluate the machined results.
机译:强力刮齿是一种有效的加工方法,适用于齿轮等内部零件,具有很高的生产率。强力刮齿的一般数学建模是切削刀具设计、加工精度评估和加工工艺优化的基础。目前主要研究采用解析包络方程的渐开线齿轮加工。然而,这些分析方法未能处理一般轮廓刮削任务的过切削问题。此外,研究采用可变配置参数的强力刮齿工艺,对于控制加工表面形貌具有重要意义。在此,我们介绍了一种基于数值离散包络的具有一般轮廓的功率刮齿的数学建模方法。首先,建立了功率刮齿的基本数学模型,将中心距表述为时间多项式;通过将强力刮齿转化为切削刃扫掠体积的成形加工,设计了一种数值算法,通过离散包络思想来区分加工后的横向轮廓。特别是,根据进给运动速度反比提取精确的瞬时接触曲线。最后,对渐开线齿轮和摆线轮进行了仿真,验证了该方法的有效性,并研究了可变径向运动对加工槽面形貌的影响。结果验证了该方法在模拟一般需求轮廓的动态功率刮削过程和评估加工结果方面的能力。

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