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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Research on the Cutting Principle and Tool Design of Gear Skiving Based on the Theory of Conjugate Surface
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Research on the Cutting Principle and Tool Design of Gear Skiving Based on the Theory of Conjugate Surface

机译:基于共轭表面理论的齿轮互动切割原理和工具设计研究

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Tool design is one of the key factors that restrict the development of gear skiving technology since the design principle does not correspond to the cutting principle. The existing skiving tool cannot achieve ideal machining accuracy and reasonable cutting angles. In view of this, some research has been done in this paper. Firstly, the skiving principle is investigated essentially according to the skiving motions. Then, the principle of tool design is analyzed based on the theory of conjugate surface, and a new tool design method is proposed to match the skiving principle. For this, all the skiving patterns for various kinds of workpieces are enumerated and summarized to abstract a normalized skiving model. Based on this, the mathematical model of the conjugate surface is then derived to lay the foundation for tool design. Then, the design methods of cutting edge, rake face, and flank face are proposed. An example is presented at last, and the cutting simulation is conducted. The result proves that the proposed methods are correct and valid. The theoretical research in this paper could promote the improvement of skiving tools.
机译:模具设计是制约齿轮刨削技术的发展,因为其设计原理并不对应于切割原理的关键因素之一。现有的刮削刀具不能达到理想的加工精度和合理的切削角度。鉴于此,一些研究已经在本文中进行。首先,刮削原理是根据刮削运动本质的影响。然后,刀具设计的原理是基于共轭曲面理论分析,并提出了一种新的工具,设计方法,以配合刮削原则。对于这一点,所有各种工件的刮削模式列举和总结,以抽象的归一化的刮削模型。在此基础上,共轭面的数学模型,然后推导奠定工具设计的基础。然后,切削刃,前刀面,和后刀面的设计方法提出。一个例子给出在最后,和切割模拟进行的。结果证明了该方法是正确和有效的。本文的理论研究能促进刮削工具的改进。

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