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Mathematical model for design and analysis of power skiving tool for involute gear cutting

机译:用于渐开线齿轮切割的电动刮刀设计和分析的数学模型

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摘要

Power skiving is an efficient means of producing high accuracy gears; particularly internal gears. However, the literature lacks a systematic mathematical model for the design and analysis of such tools. Accordingly, the present study proposes a comprehensive yet straightforward methodology for the design of resharpening power skiving tools based on conjugate surface theory and full-field angle analysis. The proposed methodology has three important features. First, mathematical models of the virtual-conjugate-surface and rake surfaces are derived, and thus the cutting edges can be obtained. Second, the power skiving is modeled by transformation matrices, and the normal/tangent vectors of the relative surface can be explicitly obtained. As a result, the working rake and clearance angles can be investigated in accordance with recommended ISO-standards. Finally, a method is prescribed for determining the working rake angles, clearance angles and wedge angles of the cutter based on the ISO-defined reference planes. Utilizing this method, a simple technique is proposed for redesigning the power skiving tool so as to avoid negative working clearance angles. The results of the illustrative example are shown that the proposed approach provides a comprehensive, simple and versatile technique for modeling a wide range of power skiving tool design features. (C) 2016 Elsevier Ltd. All rights reserved.
机译:动力刮削是生产高精度齿轮的有效方法;特别是内部齿轮。然而,文献缺乏用于此类工具的设计和分析的系统数学模型。因此,本研究提出了一种基于共轭表面理论和全视场角分析的综合而直接的方法用于重新磨削动力刮削工具的设计。所提出的方法具有三个重要特征。首先,推导虚拟共轭表面和前刀面的数学模型,从而获得切削刃。其次,通过变换矩阵对功率切削进行建模,并可以明确获得相对表面的法线/切向量。因此,可以根据建议的ISO标准研究工作前角和游隙角。最后,规定了一种方法,用于根据ISO定义的参考平面确定刀具的工作前角,游隙角和楔角。利用这种方法,提出了一种简单的技术来重新设计电动刮刀,从而避免了负的工作间隙角。说明性示例的结果表明,所提出的方法提供了用于建模各种电动刮刀设计特征的全面,简单和通用的技术。 (C)2016 Elsevier Ltd.保留所有权利。

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