Browse > Article
http://dx.doi.org/10.21289/KSIC.2022.25.6.1119

A Study on the Improvement of Optimal Design for the Re-Manufacturing of Planner Miller Spindle  

Lee, Hyun-Jun (Dept. of Mechanical Design Engineering, Graduate School of Changwon National University)
Kim, Jin-Woo (Dept. of Mechanical Design Engineering, Graduate School of Changwon National University)
Kim, Hyun-Su (Dept. of Mechanical Engineering, Changwon National University Bachelor)
Lee, Seong-Won (Dept. of Machinery Materials and Parts Center, Gyeongnam Technopark)
Gong, Seok-Whan (Dept. Mechatronics Research Institure, Changwon National University)
Chung, Won-Ji (Dept. of Mechanical Engineering, Changwon National University)
Publication Information
Journal of the Korean Society of Industry Convergence / v.25, no.6_2, 2022 , pp. 1119-1125 More about this Journal
Abstract
The depletion of resources and waste disposal caused by the continuous development of industry have emphasized the need to reduce consumption and production, recycle and reuse, and the importance of remanufacturing has increased in recent years. The spindle part of the aging planner miller, which is currently being remanufactured, is one of the factors that has the greatest impact on the performance of the machine tool. When designing the spindle part of the spindle shaft, there are considerations such as the configuration size bearing performance of the main shaft, but the diameter of the main shaft, the dangerous speed bearing, and the arrangement that affect the machining accuracy should be basically considered. As such, various studies have been conducted on the design of machine tool spindle spindles, but research on the reverse engineering of existing aging machine tool spindle spindles is poor. Reverse engineering is designing in the direction of improving performance by extracting specifications from already finished products, and first scanning the reverse engineered object through a 3D scanner, 3D modeling is performed based on the collected data, and then the process of deriving improvement plans by reverberating to improve performance by identifying wear and damage conditions is followed. Therefore, in this study, the purpose of this study is to provide data on reverse engineering by deriving improvement plans through optimal design for the bearing position of the aging planar Miller spindle spindle using central composite programming.
Keywords
Planner Miller; Spindle; Re-Manufacturing; Central Composite Design Optimal Design;
Citations & Related Records
연도 인용수 순위
  • Reference
1 H. R. Kim, H. J. Lee, "Reverse Engineering of Aged Planner Miller Main Spindle Using Central Composite Design", Journal of the Korean Society of Manufacturing Process Engineers, Vol. 21, No. 3, pp. 36-42(2022).
2 S. S. Park, W. J. Chung, "A Study on the Optimum Design of High Speed Built-In Spindle Considering the Thermo Behavior", Journal of Korean Society of Manufacturing Technology Engineers, Vol.20 No.6 2011. 12. pp. 767-772
3 H. H. Lee, S. B. Shin, "A Study on Thermal Deformation of Spindle for Five-axis Machine Tools", Journal of the Korean Society of Manufacturing Technology Engineers, (2022) pp.298-299.
4 S. W. Yoo, J. H. Lee, "A Study on the Thermally Stable Design of a Worn Lathe Spindle for Remanufacturing", Journal of the Korean Society of Manufacturing Technology Engineers 31:1 (2022) 48-54.   DOI