Surface Contact Analysis for a Spatial Cam Mechanism

Author:

Wang W. H.1,Tseng C. H.1,Tsay C. B.1

Affiliation:

1. Department of Mechanical Engineering, National Chiao Tung University, Hsinchu, Taiwan 30050, R.O.C.

Abstract

This paper proposes and analyzes a new meshing condition between a modified hyperboloidal roller follower and a spatial cam surface. This new geometrical model can be utilized to avoid the edge contact phenomenon between a cylindrical roller follower and its mating cam surface. In the new model a modified hyperboloidal roller follower is selected to replace the original cylindrical roller follower. Once the new spatial cam mechanism is modeled by means of surface contact analysis (SCA), the contact condition between the modified hyperboloidal roller follower and the cam surface is clearly derived. Errors in the displacement function and the contact path arising from assembly errors are also analyzed. This study assists the manufacture and assembly of more accurate and higher quality spatial cam mechanisms.

Publisher

ASME International

Subject

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

Reference15 articles.

1. Angeles, J., and Lopez-Cajun, C. S., 1991, Optimization of Cam Mechanisms, Kluwer Academic Publishers.

2. Ardayfio, D. D., and Trower, P. S., 1985, “Kinematic Analysis of Three Dimensional Cams,” ASME Design Engineering Division Conference and Exhibit on Mechanical Vibration and Noise, Cincinnati, Ohio, pp. 1–11.

3. Chakraborty, J., and Dhande, S. G., 1977, Kinematics and Geometry of Planar and Spatial Cam Mechanisms, Wiley, New York.

4. Chen, F. Y., 1982, Mechanics and Design of Cam Mechanisms, Pergamon Press, New York.

5. Dhande S. G. , BhadoriaB. S., and ChakrabortyJ., 1975, “A Unified Approach to the Analytical Design of Three-Dimensional Cam Mechanisms,” ASME Journal of Engineering for Industry, Vol. 97, pp. 327–333.

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