Tooth Surface Modelling and Mesh Behaviors for Paralleled Beveloid Gears

Author:

Sun Ruihua1,Song Chaosheng1,Zhu Caichao1,Liu Siyuan1,Wei Changxu1

Affiliation:

1. The State Key Laboratory of Mechanical Transmissions, Chongqing University, Chongqing 400030, China

Abstract

Abstract This paper proposed a new tooth surface modeling method for beveloid gear based on the real cutter surface using two orthogonal variables. Then, the analytical mesh model with and without misalignments were derived and solved to study the influences of geometry design parameters on contact behaviors for paralleled beveloid gear pair. Loaded tooth contact analysis is used to validate the proposed mesh model by abaqus software, and the error is below 5%. Results suggest that the increase in pressure, cone, and helical angles enlarge the contact area for meshing without misalignments. The addendum coefficient has unsubstantial impacts on the contact behaviors. For meshing with axis error in the horizontal direction, the growth of pressure angle, cone angle, helical angle, and addendum coefficient improves the carrying capacity of single tooth. But the transmission error deteriorates with the increase in pressure, cone, and helical angles. All three types of misalignments have little influence on the size of the contact ellipse. The growth of axis errors in horizontal and vertical directions significantly increases the transmission error, but the center distance error has a little influence on the transmission precision.

Funder

Fundamental Research Funds for the Central Universities

Key Research and Development Project of Chongqing Technological Innovation and Application Demonstration Program

National Natural Science Foundation of China

Publisher

ASME International

Subject

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

Reference17 articles.

1. Geometrical Design of Beveloid Gears Using Correction Factor Graphs;Logvinov;Russ Eng J-Ussr,1968

2. Tooth Undercutting of Beveloid Gears;Liu;ASME J. Mech. Des.,2001

3. Meshing Theory and Simulation of Noninvolute Beveloid Gears;Li;Mech. Mach. Theory,2004

4. Computational Tooth Root Stress Analysis of Crossed Beveloid Gears With Small Shaft Angle;Song;Appl. Mech. Mater.,2011

5. Effects of Assembly Errors on Crossed Beveloid Gear Tooth Contact and Dynamic Response;Zhu,2012

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