| Home | KSAE | E-Submission | Sitemap | Contact Us |  
top_img
International Journal of Automotive Technology > Volume 14(3); 2013 > Article
International Journal of Automotive Technology 2013;14(3): 423-428.
doi: https://doi.org/10.1007/s12239-013-0046-7
DEVELOPMENT OF THERMAL DEFORMATION COMPENSATION DEVICE AND CNC BASED REAL-TIME COMPENSATION FOR ADVANCED MANUFACTURING
D.-H. KIM, J.-Y. SONG
Korea Institute of Machinery & Materials
ABSTRACT
The biggest factors, which lower the machining accuracy of machine tools for advanced manufacturing, are thermal deformation and chatter vibration. In this article, we introduce the development case of a device and technology that can automatically compensate thermal deformation errors of machine during long-time processing on the machine tool's CNC(Computerized Numerical Controller) in real time. In machine processing, the data acquisition of temperature signal in real time and auto-compensation of the machine origin of machine tools depending on thermal deformation have significant influence on improving the machining accuracy and the rate of operation. Thus, we attempts to introduce the related contents of the development we have made in this article: The development of a device that embedded the acquisition part of temperature data, linear regression to get compensation value, compensation model of neural network and a system that compensates the machine origin of machine tool automatically during manufacturing process on the CNC.
Key Words: Thermal deformation, Compensation device, CNC, Machine tools
TOOLS
Preview  Preview
Full text via DOI  Full text via DOI
Download Citation  Download Citation
  Print
Share:      
METRICS
13
Scopus
1,123
View
2
Download
Related article
Editorial Office
21 Teheran-ro 52-gil, Gangnam-gu, Seoul 06212, Korea
TEL: +82-2-564-3971   FAX: +82-2-564-3973   E-mail: manage@ksae.org
About |  Browse Articles |  Current Issue |  For Authors and Reviewers
Copyright © The Korean Society of Automotive Engineers.                 Developed in M2PI
Close layer
prev next