A review of machining feature recognition methodologies

被引:87
作者
Verma, Arvind Kumar [1 ]
Rajotia, Sunil [2 ]
机构
[1] Jai Narain Vyas Univ, Dept Prod & Ind Engn, Jodhpur 342011, Rajasthan, India
[2] Jai Narain Vyas Univ, Dept Mech Engn, Jodhpur 342011, Rajasthan, India
关键词
feature recognition; graph-based; hint-based; volume decomposition; neural network-based; CAPP; MANUFACTURING FEATURE RECOGNITION; NEURAL-NETWORK; AUTOMATIC RECOGNITION; VOLUME DECOMPOSITION; CONVEX DECOMPOSITION; FEATURE-EXTRACTION; MILLING FEATURES; FEATURE PATTERNS; SHAPE-FEATURES; HYBRID METHOD;
D O I
10.1080/09511921003642121
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
In a continuing quest to decrease the time interval between conceptualisation of a product and its first production, the use of information technology in design, analysis and manufacturing practice has been actively researched. The design engineer designs a part and sends the final design to the manufacturing engineer, who re-interprets the design and plans the manufacturing activities to produce the part. These two sections generally work in isolation from each other, resulting in high lead-time, duplication of data, inconsistent product data and sometimes redesign of a product. Feature recognition is a process of reinterpreting a design model database for automating downstream manufacturing activities. Active research in this field has developed numerous techniques such as syntactic pattern recognition, graph theory, volume decomposition, artificial intelligence and hint-based, and neural network-based systems. This paper presents a critical review of strengths and weaknesses of these approaches.
引用
收藏
页码:353 / 368
页数:16
相关论文
共 95 条
[1]   Swept volumes: void and boundary identification [J].
Abdel-Malek, K ;
Yeh, HJ ;
Othman, S .
COMPUTER-AIDED DESIGN, 1998, 30 (13) :1009-1018
[2]   A review of automated feature recognition with rule-based pattern recognition [J].
Babic, Bojan ;
Nesic, Nenad ;
Miljkovic, Zoran .
COMPUTERS IN INDUSTRY, 2008, 59 (04) :321-337
[3]   Efficiency of boundary evaluation for a cellular model [J].
Bidarra, R ;
Madeira, J ;
Neels, WJ ;
Bronsvoort, WF .
COMPUTER-AIDED DESIGN, 2005, 37 (12) :1266-1284
[4]   Representation and management of feature information in a cellular model [J].
Bidarra, R ;
de Kraker, KJ ;
Bronsvoort, WF .
COMPUTER-AIDED DESIGN, 1998, 30 (04) :301-313
[5]   Semantic feature modelling [J].
Bidarra, R ;
Bronsvoort, WF .
COMPUTER-AIDED DESIGN, 2000, 32 (03) :201-225
[6]   Multiple-view feature modelling for integral product development [J].
Bronsvoort, WF ;
Noort, A .
COMPUTER-AIDED DESIGN, 2004, 36 (10) :929-946
[7]   Retrieval of machining information from feature patterns using artificial neural networks [J].
Chakraborty, S ;
Basu, A .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2006, 27 (7-8) :781-787
[8]   3-DIMENSIONAL SHAPE PATTERN-RECOGNITION USING VERTEX CLASSIFICATION AND VERTEX EDGE GRAPHS [J].
CHUANG, SH ;
HENDERSON, MR .
COMPUTER-AIDED DESIGN, 1990, 22 (06) :377-387
[9]   FACE-BASED FEATURE RECOGNITION - GENERALIZING SPECIAL CASES [J].
CORNEY, J ;
CLARK, DER .
INTERNATIONAL JOURNAL OF COMPUTER INTEGRATED MANUFACTURING, 1993, 6 (1-2) :39-50
[10]  
CORNEY J, 1993, GRAPH BASED FEATURE