The study on the Process Capability Index for Continuously Improvement Quality Safety

품질안전개선을 위한 공정능력지수의 연구

  • 양광모 (명지전문대학 산업시스템경영과) ;
  • 오선일 (명지대학교 산업공학과) ;
  • 강경식 (명지대학교 산업공학과)
  • Published : 2006.06.30

Abstract

It is necessary to deal with the process capability index carefully because it has been developed with certain assumptions. Companies make a decision on processes through the results obtained by using and treating data extracted from the processes. However if they have incorrect or wrong results, they cannot lead to proper outputs but also bring to loss of the competition in quality. Therefore, this study will show a method to analysis Cp (process capability ; CP) and an idea of mass-production on Pp (process performance ; PP) based on the Sigma Estimate which is one of the uncertainty in the process capability index and makes a lot of error. To apply this method, it is essential to understand and to analyze the processes exactly. Especially, it is required to establish the more accurate process capability index that can quickly and properly respond to changes on processes to recognize the small changes on the process which lies in specification in mass production system that the continual monitoring of quality managers is required.

Keywords

References

  1. 박창순(1995), 통계적 품질관리, 율곡출판사.
  2. 백재욱, 조진남, "공정능력지수에 대한 비평과 올바른 공정능력분석 절차" 품질경영학회지, (1999): 27-2
  3. 신경석, 김성집, 강창욱, "An Improved Process Incapability Index for the Evaluation of Process Capability", 품질경영학회지(24-4), (1996) : 90-102.
  4. 이보근, 송서일, "치우침에 민감한 비공정능력지수에 관한 연구",동아대학교공과대학부설 생산기술연구소 연구논문집(2-2), (1997) : 101-109.
  5. 이순룡(1995), 품질 경영론 TPM, 법문사
  6. 임태진, 변시섭 "불량률과 일치하는 공정능력 지수 Cpd" 품질경영학회지(28-2), (2000)
  7. hCan, L.K.; Cheng, S.W.; and Spring, F.A., "A New Measure of Process Capability", Journal of Quality Technology, Vol. 20, No. 3, (1988) : 162-175. https://doi.org/10.1080/00224065.1988.11979102
  8. Clements, J.A., "Process Capability Calculations for Non-Normal Distributions", Quality Progress Vol. 22, (1989) : 98-100.
  9. Gunter, B.H. , "The use and abuse of C pk ," Quality Progress, Vol. 22, (1989) : 72-73, 108-109, 79-80, 86-87
  10. Greenwich, M. and Jahr-Schaaffrath, B.L., "A Process Incapability Index", International Journal of Quality & Reliability Management, Vol. 12, No. 4, (1995) : 58-71. https://doi.org/10.1108/02656719510087328
  11. Hsing, T.C. And Taguchi, G., "A Tutorial on Quality Control and Assurance-The Taguchi Methods", ASA Annual Meeting, Las Vegas, NV.(1985)
  12. Juran, J.M., Ed., Quality Control Handbook, 3rd ed. McGraw-Hill, New York, NY. (1974)
  13. Kane, V.E., "Process Capability Index", Journal of Quality Technology, Vol. 18, No. 4, (1986) : 265, 41-52.
  14. Kotz S. and Johnson, N.L., Process Capability Indices, Champman and Hall. (1993)
  15. Montgomery, D.C., Introducetion to Statistical Quality Control, 2nd ed., New York, John Wiley. (1991)
  16. Patnaik, P. B., "The Use of Mean Range as an Estimator of Variance in Statistical Tests," Biometrika, Vol. 37, No. 1, (1950) : 78-87 https://doi.org/10.1093/biomet/37.1-2.78
  17. Pearn, W.L.; Kotz, S.; and Johnson, N.L. "Distributional and Interferential Properties of Process Capabilities", Journal of Quality Technology, Vol. 24, No. 4, (1992) : 216-231 https://doi.org/10.1080/00224065.1992.11979403
  18. Peter A. Wright, "A Process Capability Index Sensitive to Skewness", Sydney, Australia, (1996)
  19. Quesenberry, C. P., "The effect of sample size on estimated limits for X and Xcontrol charts," Journal of Quality Technology, Vol. 25, (1993) : 237-247. https://doi.org/10.1080/00224065.1993.11979470
  20. Yang, K. and Hancock, W.M., "Statistical Quality Control for Correlated Samples", International Journal of Production Research, Vol. 28, (1990) : 595-608. https://doi.org/10.1080/00207549008942738