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Analysis of assembly defects in the cam curved groove mechanism

Weibin Lan (School of Mechanical and Electrical Engineering, University of Electronic Science and Technology of China, Chengdu, China)
Shouwen Fan (School of Mechanical and Electrical Engineering, University of Electronic Science and Technology of China, Chengdu, China)
Shuai Fan (Chengdu University of Technology, Chengdu, China)

Assembly Automation

ISSN: 0144-5154

Article publication date: 28 December 2020

Issue publication date: 19 February 2021

145

Abstract

Purpose

This paper aims to propose an elementary approach toward the identification of assembly defects of a cam curved groove mechanism.

Design/methodology/approach

A numerical analysis method for identifying the assembly defects of the cam curved groove mechanism is proposed by resorting to Hertz contact theory. A general mathematical model is established to analyze the kinematic and dynamic characteristics with an interference fit between the main roller and cam curved groove, including the contact points of the external and internal ring.

Findings

The analysis method of the contact point characteristics of the cam curved groove mechanism is given in this paper, and the kinematic and dynamic characteristics of the main roller can be analyzed. The numerical examples presented in this paper are implemented in MATLAB, feasibility and validity of the above algorithm are verified by the finite element method.

Originality/value

Regarding the defects of the interference fit, the findings of this paper can serve as a reference for researchers in reducing the defects in the design process of the cam mechanism.

Keywords

Acknowledgements

The authors are grateful to the National Natural Science Foundation of China under Grant 51875086.

Citation

Lan, W., Fan, S. and Fan, S. (2021), "Analysis of assembly defects in the cam curved groove mechanism", Assembly Automation, Vol. 41 No. 1, pp. 79-88. https://doi.org/10.1108/AA-02-2020-0033

Publisher

:

Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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