Capability performance analysis for processes with multiple characteristics using accuracy and precision

被引:36
作者
Chang, Tsang-Chuan [1 ]
Wang, Kung-Jeng [1 ]
Chen, Kuen-Suan [2 ]
机构
[1] Natl Taiwan Univ Sci & Technol, Dept Ind Management, Taipei, Taiwan
[2] Natl Chin Yi Univ Technol, Dept Ind Engn & Management, Taichung 41170, Taiwan
关键词
Process capability indices; six sigma; process accuracy; process precision; mathematical programming; hypothesis testing; QUALITY; INDEXES; SPECIFICATION;
D O I
10.1177/0954405413508118
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Process capability indices have been widely used in the manufacturing industry to provide numerical measures for process potential and process performance. However, from the perspective of improving process quality, there is a significant amount of process information that cannot be conveyed with a single index. Therefore, a single index does not have the ability to represent distinct problems in process performance or to provide the production department with sufficient information to make improvements. Thus, we applied an accuracy index and a precision index capable of reflecting the degree of deviation from target values and the degree of variance and incorporated the quality-level concept of the six-sigma model to develop a process quality-level analysis chart capable of analyzing the process capabilities of multiple quality characteristics. In addition to being able to directly identify the quality levels for various quality characteristics, the process quality-level analysis chart also provides recommendations for improvement of all quality-level regions to serve as a reference for production departments. Mathematical programming was used to develop a statistical hypothesis testing model to assist production departments in confirming the effectiveness of implemented improvements. This was achieved through derivation of a joint confidence interval for and from Boole's inequality. From this, we obtained the upper and lower limits of the ( 1 - ) x 100 % for and . Finally, we also applied the proposed approach to a case study of a five-way pipe process.
引用
收藏
页码:766 / 776
页数:11
相关论文
共 33 条
[1]   THE TAGUCHI CAPABILITY INDEX [J].
BOYLES, RA .
JOURNAL OF QUALITY TECHNOLOGY, 1991, 23 (01) :17-26
[2]   PROCESS CAPABILITY WITH ASYMMETRIC TOLERANCES [J].
BOYLES, RA .
COMMUNICATIONS IN STATISTICS-SIMULATION AND COMPUTATION, 1994, 23 (03) :615-643
[3]   A NEW MEASURE OF PROCESS CAPABILITY - CPM [J].
CHAN, LK ;
CHENG, SW ;
SPIRING, FA .
JOURNAL OF QUALITY TECHNOLOGY, 1988, 20 (03) :162-175
[4]   Multi-process capability plot and fuzzy inference evaluation [J].
Chen, K. S. ;
Chen, T. W. .
INTERNATIONAL JOURNAL OF PRODUCTION ECONOMICS, 2008, 111 (01) :70-79
[5]   Performance evaluation on manufacturing times [J].
Chen, K. S. ;
Huang, M. L. ;
Chang, P. L. .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2006, 31 (3-4) :335-341
[6]   A MAIC approach to TFT-LCD panel quality improvement [J].
Chen, K. S. ;
Wang, C. H. ;
Chen, H. T. .
MICROELECTRONICS RELIABILITY, 2006, 46 (07) :1189-1198
[7]   Application of RPN analysis to parameter optimization of passive components [J].
Chen, K. S. ;
Wang, C. C. ;
Wang, C. H. ;
Huang, C. F. .
MICROELECTRONICS RELIABILITY, 2010, 50 (12) :2012-2019
[8]   The communion bridge to Six Sigma and process capability indices [J].
Chen, K. S. ;
Ouyang, L. Y. ;
Hsu, C. H. ;
Wu, C. C. .
QUALITY & QUANTITY, 2009, 43 (03) :463-469
[9]   Capability measures for processes with multiple characteristics [J].
Chen, KS ;
Pearn, WL ;
Lin, PC .
QUALITY AND RELIABILITY ENGINEERING INTERNATIONAL, 2003, 19 (02) :101-110
[10]   Estimation of the process incapability index [J].
Chen, KS .
COMMUNICATIONS IN STATISTICS-THEORY AND METHODS, 1998, 27 (05) :1263-1274