A selection method of key temperature points for thermal error modeling of machine tools featuring multiple heat sources

  • Cao, Lei
  • Khim, Gyungho
  • Baek, Seung Guk
  • Chung, Sung-Chong
  • Park, Chun-Hong
Citations

WEB OF SCIENCE

5
Citations

SCOPUS

7

초록

A method that integrates grey relational and thermal sensitivity analyses, and fuzzy c-means clustering, called GTF method, is proposed to select key temperature points for thermal error modeling of machine tools featuring multiple heat sources. A two-dimensional temperature-error index is employed to prevent candidate temperature points with high correlations from being excluded when selecting the temperature points to improve thermal error compensation. To verify the method effectiveness and versatility, prediction accuracies were estimated for a vertical machining center and a floor-type boring machine with multiple heat sources. The root mean square error average reduction rates of the GTF method were approximately 28.0 % and 25.8 % in comparison with the conventional method for the two machine tools, respectively. From the results, it was confirmed that the proposed GTF method ensures accurate thermal predictions for machine tools with multiple heat sources, and is versatile.

키워드

Average thermal sensitivityKey temperature pointsMultiple heat sourcesSelection methodThermal errorsAverage thermal sensitivityFuzzy C-Means clusteringKey temperature pointMultiple heat sourcesSelection methodsThermal errorThermal error modelingThermal sensitivityThermal sensitivity analysisTwo-dimensional
제목
A selection method of key temperature points for thermal error modeling of machine tools featuring multiple heat sources
저자
Cao, LeiKhim, GyunghoBaek, Seung GukChung, Sung-ChongPark, Chun-Hong
DOI
10.1016/j.precisioneng.2025.01.021
발행일
2025-05
유형
Article
저널명
Precision Engineering
93
페이지
528 ~ 539