Analysis of Assembly Tolerance Based on Assembly Constraint Information Model

Mechanical products are composed of two or more parts. The geometric tolerance and dimensional tolerance of each feature in part will affect the assembly performance of the product, which are accumulated and propagated between assembly fit and parts. In this paper, through the secondary development...

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Main Authors: Chunxi Li, Wenjun Hou
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2021/7438966
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spelling doaj-42cd415ad8854e2685e7e53ace4bc7e82021-08-23T01:32:19ZengHindawi LimitedMathematical Problems in Engineering1563-51472021-01-01202110.1155/2021/7438966Analysis of Assembly Tolerance Based on Assembly Constraint Information ModelChunxi Li0Wenjun Hou1Human Computer Interaction LaboratoryHuman Computer Interaction LaboratoryMechanical products are composed of two or more parts. The geometric tolerance and dimensional tolerance of each feature in part will affect the assembly performance of the product, which are accumulated and propagated between assembly fit and parts. In this paper, through the secondary development of CAD software, the B-rep model of parts is obtained. The model information is decomposed and simplified based on geometric features to obtain the key information of parts in the assembly process, simplify the operation, and improve the accuracy. Through a directed graph network, the transmission model of assembly error information based on geometrical and dimensional tolerances (GD&T) on the surface of parts is established. Combined with the error transfer characteristics of different geometric surfaces and different error sources, guided by the breadth-first search algorithm and the shortest path theory, the search and establishment of a three-dimensional assembly chain are realized. Finally, the three-dimensional chain is simulated by the Monte Carlo method. The calculation results are compared with the error range obtained by the traditional method to prove the effectiveness of the method.http://dx.doi.org/10.1155/2021/7438966
collection DOAJ
language English
format Article
sources DOAJ
author Chunxi Li
Wenjun Hou
spellingShingle Chunxi Li
Wenjun Hou
Analysis of Assembly Tolerance Based on Assembly Constraint Information Model
Mathematical Problems in Engineering
author_facet Chunxi Li
Wenjun Hou
author_sort Chunxi Li
title Analysis of Assembly Tolerance Based on Assembly Constraint Information Model
title_short Analysis of Assembly Tolerance Based on Assembly Constraint Information Model
title_full Analysis of Assembly Tolerance Based on Assembly Constraint Information Model
title_fullStr Analysis of Assembly Tolerance Based on Assembly Constraint Information Model
title_full_unstemmed Analysis of Assembly Tolerance Based on Assembly Constraint Information Model
title_sort analysis of assembly tolerance based on assembly constraint information model
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1563-5147
publishDate 2021-01-01
description Mechanical products are composed of two or more parts. The geometric tolerance and dimensional tolerance of each feature in part will affect the assembly performance of the product, which are accumulated and propagated between assembly fit and parts. In this paper, through the secondary development of CAD software, the B-rep model of parts is obtained. The model information is decomposed and simplified based on geometric features to obtain the key information of parts in the assembly process, simplify the operation, and improve the accuracy. Through a directed graph network, the transmission model of assembly error information based on geometrical and dimensional tolerances (GD&T) on the surface of parts is established. Combined with the error transfer characteristics of different geometric surfaces and different error sources, guided by the breadth-first search algorithm and the shortest path theory, the search and establishment of a three-dimensional assembly chain are realized. Finally, the three-dimensional chain is simulated by the Monte Carlo method. The calculation results are compared with the error range obtained by the traditional method to prove the effectiveness of the method.
url http://dx.doi.org/10.1155/2021/7438966
work_keys_str_mv AT chunxili analysisofassemblytolerancebasedonassemblyconstraintinformationmodel
AT wenjunhou analysisofassemblytolerancebasedonassemblyconstraintinformationmodel
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