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A precision analysis method for the kinematic assembly of complex products based on equivalence of deviation source

Dongping Zhao (School of Aircraft Engineering, Xi’an Aeronautical University, Xi’an, China)
Gangfeng Wang (Key Laboratory of Road Construction Technology and Equipment of MOE, School of Construction Machinery, Chang’an University, Xi’an, China)
Jizhuang Hui (Key Laboratory of Road Construction Technology and Equipment of MOE, School of Construction Machinery, Chang’an University, Xi’an, China)
Wei Hou (School of Aircraft Engineering, Xi’an Aeronautical University, Xi’an, China)
Richard David Evans (College of Engineering, Design and Physical Sciences, Brunel University London, Kingston Lane, UK)

Assembly Automation

ISSN: 0144-5154

Article publication date: 10 February 2020

Issue publication date: 12 May 2020

229

Abstract

Purpose

The assembly quality of complex products is pivotal to their lifecycle performance. Assembly precision analysis (APA) is an effective method used to check the feasibility and quality of assembly. However, there is still a need for a systematic approach to be developed for APA of kinematic mechanisms. To achieve more accurate analysis of kinematic assembly, this paper aims to propose a precision analysis method based on equivalence of the deviation source.

Design/methodology/approach

A unified deviation vector representation model is adopted by considering dimension deviation, geometric deviation, joint clearance and assembly deformation. Then, vector loops and vector equations are constructed, according to joint type and deviation propagation path. A combined method, using deviation accumulation and sensitivity modeling, is applied to solve the kinematic APA of complex products.

Findings

When using the presented method, geometric form deviation, joint clearance and assembly deformation are considered selectively during tolerance modeling. In particular, the proposed virtual link model and its orientation angle are developed to determine joint deviation. Finally, vector loops and vector equations are modeled to express deviation accumulation.

Originality/value

The proposed method provides a new means for the APA of complex products, considering joint clearance and assembly deformation while improving the accuracy of APA, as much as possible.

Keywords

Acknowledgements

Natural Science Basic Research Project of Shaanxi Province, China: 2019JM-435 and 2019JM-073 China Postdoctoral Science Foundation: 2018M633439 Key Laboratory of Road Construction Technology and Equipment (Chang’an University), MOE: 300102258506.

Citation

Zhao, D., Wang, G., Hui, J., Hou, W. and Evans, R.D. (2020), "A precision analysis method for the kinematic assembly of complex products based on equivalence of deviation source", Assembly Automation, Vol. 40 No. 3, pp. 447-460. https://doi.org/10.1108/AA-03-2019-0044

Publisher

:

Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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