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Process alternative generation from product geometric design data

 

作者: YUI WEI,   PIUSJ. EGBELU,  

 

期刊: IIE Transactions  (Taylor Available online 2000)
卷期: Volume 32, issue 1  

页码: 71-82

 

ISSN:0740-817X

 

年代: 2000

 

DOI:10.1080/07408170008963880

 

出版商: Taylor & Francis Group

 

数据来源: Taylor

 

摘要:

A fundamental element in operating a competitive manufacturing system is the ability to control material, cost, and other production resources required to transform the raw material to a finished product. To successfully control cost, it is essential that a reliable assessmentofthe tasks required to manufacture the product be made. This involves identifying the operations and the machinetoolsrequired. In this research, a method of decomposing polyhedral components to generate all possible ways to process the part is presented. The technique takes as input the geometric design data of the product, analyzes and interprets the design to identify the volume of material to be machined out from the raw material block to obtain the finished product. The volume of material to be removed are characterized to generate various approach directions from which the material can be machined out. The alternate tool approach directions are used to construct anAND/ORgraph that captures the process alternatives. Using this graphical representation, a model is proposed for selecting the best process plan based on some user defined criterion. The developed procedure can be integrated into aCAD/CAMsystem to provide the required linkage between design and manufacturing and thus, automate a critical link in manufacturing.

 

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