Mathematical Model for a Universal Face Hobbing Hypoid Gear Generator

Author:

Shih Yi-Pei1,Fong Zhang-Hua1,Lin Grandle C. Y.2

Affiliation:

1. Department of Mechanical Engineering, National Chung Cheng University, No. 168, University Road, Min-Hsiung, Chia-Yi, Taiwan, R.O.C.

2. HOTA Industrial Mfg. Co., Ltd., 115, Ren-hua Road, Ta Li, Taichung County, Taiwan, R.O.C.

Abstract

Based on the theory of gearing and differential geometry, a universal hypoid generator mathematical model for face hobbing spiral bevel and hypoid gears has been developed. This model can be used to simulate existing face hobbing processes, such as Oerlikon’s Spiroflex© and Spirac© methods, Klingelnberg’s Cyclo-Palloid© cutting system, and Gleason’s face hobbing nongenerated and generated cutting systems. The proposed model is divided into three modules: the cutter head, the imaginary generating gear, and the relative motion between the imaginary generating gear and the work gear. With such a modular arrangement, the model is suitable for development of object-oriented programming (OOP) code. In addition, it can be easily simplified to simulate face milling cutting and includes most existing flank modification features. A numerical example for simulation of the Klingelnberg Cyclo-Palloid© hypoid is presented to validate the proposed model, which can be used as a basis for developing a universal cutting simulation OOP engine for both face milling and face hobbing spiral bevel and hypoid gears.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference15 articles.

1. Gleason, J. E., and Stewart, A. L., U.S. Patent No. 1,349,951.

2. Methods of Synthesis and Analysis for Hypoid Gear-Drives of ‘Format’ and ‘Helixform,’ Part 1, 2 and 3;Litvin;ASME J. Mech. Des.

3. Litvin, F. L. , 1989, “Theory of Gearing,” NASA Reference Publication No. 1212, Washington, DC.

4. Determination of Settings of a Tilted Head Cutter for Generation of Hypoid and Spiral Bevel Gears;Litvin;ASME J. Mech., Transm., Autom. Des.

5. Litvin, F. L., and Zhang, Y., 1991, “Local Synthesis and Tooth Contact Analysis of Face-Milled Spiral Bevel Gear,” NASA Technical Report No. 90-C-028, Washington, DC.

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