DOI QR코드

DOI QR Code

Evaluation of Cleaning Method for Remanufacturing Using Start Motor of Vehicle

차량용 스타트모터를 활용한 재제조 세척방법 평가

  • Park, Sang Jin (Dept. of Industrial Engineering, Pusan National University) ;
  • Son, Woo Hyun (Dept. of Industrial Engineering, Pusan National University) ;
  • Jeon, Chang Su (Energy Plant Group, Korea Institute of Industrial Technology) ;
  • Mok, Hak Soo (Dept. of Industrial Engineering, Pusan National University)
  • Received : 2020.03.30
  • Accepted : 2020.05.11
  • Published : 2020.06.30

Abstract

The necessity and the importance of the remanufacturing are increasing day by day along with environmental problems. Many studies are being conducted on remanufacturing, but the research for cleaning is much lacking. This study aims to evaluate the effective cleaning method for remanufacturing of start motors, one of the automobile parts. The cleaning process consists of oil stain removal, drying and rust removal processes. In this study, the two processes were conducted except for the drying process which has little influence on cleaning. The methodology for cleaning agent selection, degreasing and rust removal process was presented. For each methodology, five analysis factors were calculated by two-way comparison according to the process, and the values were evaluated quantitatively by substituting them into the evaluation table. In the selection of cleaning agent, neutral system, ultrasonic cleaning in degreasing, and grinding in rust removal were selected as the best cleaning methods.

Keywords

References

  1. Steinhilper, R., 1988, Remanufacturing, Fraunhofer IRB Verlag
  2. 국가청정지원센터(Korea National Cleaner Production Center), 2020, 재제조 효과, https://www.kncpc.or.kr/resource/remanufacture.asp
  3. Mok, H. S, et al., 2010, Remanufacturing Industry for Automobile Parts of USA, Journal of the Korean Society for Precision Engineering, 27(3), 58-65
  4. Mok, H. S, et al., 2011, Remanufacturing industry for Automobile Parts of European, Transactions of the Korean Society of Automotive Engineers, 19(1), 38-44
  5. Son, W.H., Park, S.J., Jeong, J.Y., Kim, J.H., Bin H.W., Mok, H.S., 2016, Analysis of Throttle Body's Remanufacturing Process and RPN, J. of Korean Inst. of Resource Recycling, 25(4), 11-22. https://doi.org/10.7844/kirr.2016.25.4.11
  6. Kyu-Chang Lee, Woo-Hyun Son, Sang-Jin Park, Hak-soo Mok, 2018, Remanufacturing Technology Development of Industrial Hydraulic Cylinder, J. of Korean Society of Manufacturing Technologh Engineers, 27(6), 539-545 https://doi.org/10.7735/ksmte.2018.27.6.539
  7. Jin ho Shin, Jae Hoon Lee, Jae Heum Bae, Min Jae Lee, In Gook Hwang, 2009, CLEAN TECHNOLOGY, A Study on the Cleanliness Evaluation Methods for the Selection of Alternative Cleaning Agents, 15(2), 81-90.
  8. Jae Heum Bae, Yoonsang Chang, 2012, CLEAN TECHNOLOGY, Development of Cleaning System of Electronic Components for the Remanufacturing of Laser Copy Machine, 18(3), 287-294. https://doi.org/10.7464/ksct.2012.18.3.287
  9. 한국자동차부품재제조협회(Korea Auto mo tive Parts Remanufacutre Association), 제품소개, 품질인증 제품, 자동차용 재제조 시동전동기, http://kapra.kr/product/product03.php?ptype=view&idx=5163&page=2&code=product0
  10. 한국생산기술연구원 자원순환기술지원센터, 2018, 재제조.청정생산 시장 조사 및 시장확산 전략 연구, 219-220.
  11. KOSHA(Korea Occupational Safety and Health Agency), MSDS, http://www.kosha.or.kr/kosha/allMediaAll.do?mode=list&&pagerLimit=10&srSearchVal=msds&srSearchKey=contents&pager.offset=1
  12. Satty, T., 1986. Axiomatic Foundation of the Analytic Hierachy Process. Management Science. 32(7), 841-855. https://doi.org/10.1287/mnsc.32.7.841
  13. 국가표준인증 통합정보시스템, 2019, 국가표준, 표준번호 KS B ISO 2768-1, https://www.standard.go.kr/KSCI/standardIntro/getStandardSearchView.do