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  4. Application of ball bar system and genetic algorithms for CNC lathe contouring compensation
 
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Application of ball bar system and genetic algorithms for CNC lathe contouring compensation

Journal
International Journal of Advanced Manufacturing Technology
Journal Volume
17
Journal Issue
3
Pages
189-195
Date Issued
2001
Author(s)
Jywe W.-Y.
Liu C.-H.
Wen-Yuh Jywe  
DOI
10.1007/s001700170189
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0034813546&doi=10.1007%2fs001700170189&partnerID=40&md5=8d45e3668ec93340b23ddd663498f23c
https://scholars.lib.ntu.edu.tw/handle/123456789/612016
Abstract
There is considerable interest in the development and improvement of contouring test devices for CNC machines. When ball bar systems are employed to test CNC lathes, the eccentricity cannot be determined accurately from the sampled quadrant contouring data via the least-squares method. Geometric errors, such as squareness and deformation errors, are underestimated, causing significant errors in eccentricity values. Thus, one device with one method is suggested herein for improved lathe compensation for a given radius. Further, it is found that by adjusting a lathe during initial setting-up, for the eccentricity determined via the proposed methodology, the real geometric error of the turned part can be significantly reduced. Thus, it is very important to obtain the correct eccentricity and minimum zone solution. In this paper, genetic algorithms (GAs) are employed to solve the minimum zone solution. Simulated data and analysed results prove that the proposed method is superior to the least-squares method.
Subjects
Computer simulation
Errors
Genetic algorithms
Lathes
Probability
Ball bar system
Eccentricity
Geometric errors
Least-squares method
Minimum zone solution
Contour followers
Type
journal article

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