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題名:The Determination of Optimum Process Mean for a One-Sided Specification Limit Product with Manufacturing Cost and Linear Quality Loss
書刊名:品質學報
作者:陳忠和 引用關係黃國偉
作者(外文):Chen, Chung-hoHuang, Kuo-wei
出版日期:2011
卷期:18:1
頁次:頁19-33
主題關鍵詞:二次品質損失函數規格界限製程平均數Linear quality loss functionSpecification limitProcess mean
原始連結:連回原系統網址new window
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  • 被引用次數被引用次數:期刊(0) 博士論文(0) 專書(0) 專書論文(0)
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  • 點閱點閱:19
摘 要 本研究將提出產品具不同品質特性的最佳化模式來決定最佳的製程平均數。研究中採線 性品質損失函數來量測產品的品質損失,假設產品具單邊規格界限且產品製造成本為線性函 數,在規格界限內的製造成本與品質特性值偏離規格界限的距離成正比,而在規格界限外的 製造成本則假設為常數。本研究模式的目標為獲取涵蓋製造商與消費者兩者平均總成本為最 小下的最佳製程平均數,文中將舉常態、對數常態、指數、韋伯等品質特性的數值例子加以 說明。
Abstract In this paper, we propose the optimization models for determining the optimum process mean under different quality characteristic to minimize the manufacturing cost and the quality loss. The linear quality loss function is used in measuring the quality loss of product. The manufacturing cost is assumed to be positively and linearly proportional to deviation from the one-sided specification limit when the quality characteristic is within specification. The constant manufacturing cost happens when the quality characteristic exceeds specification. The objective of model is to obtain the optimum process mean based on the minimum total expected cost of manufacturer and consumer. Some numerical examples including the normal, lognormal, exponential, and Weibull quality characteristics are provided for illustration.
期刊論文
1.Golhar, D. Y.、Pollock, S. M.(1988)。Determination of the Optimal Process Mean and the Upper Limit for a 'Canning Problem'。Journal of Quality Technology,20,188-192。  new window
2.Golhar, D. Y.、Pollock, S. M.(1992)。Cost savings due to variance reduction in a canning process。IIE Transactions,24,88-92。  new window
3.Lee, M. K.、Hong, S. H.、Elsayed, E. A.(2001)。The optimum target value under single and two-stage screenings。Journal of Quality Technology,33,506-514。  new window
4.Lee, M. K.、Hong, S. H.、Kwon, H. M.、Kim, S. B.(2000)。Optimum process mean and screening limits for a production process with three-class screening。International Journal of Reliability, Quality and Safety Engineering,7,179-190。  new window
5.Wen, D.、Mergen, A. E.(1999)。Running a process with poor capability。Quality Engineering,11,505-509。  new window
6.Cho, B. R.、Leonard, M. S.(1997)。Identification and extensions of quasiconvex quality loss functions。International Journal of Reliability, Quality and Safety Engineering,4,191-204。  new window
7.Golhar, D. Y.(1987)。Determination of the best mean contents for a canning problem。Journal of Quality Technology,19(2),82-84。  new window
8.Hunter, W. G.、Kartha, C. P.(1977)。Determining the most profitable target value for a production process。Journal of Quality Technology,9,176-181。  new window
9.李明賢(20020900)。Optimal Process Setting for Unbalanced Tolerance Design with Linear Loss Function。工業工程學刊,19(5),17-22。new window  new window
10.Misiorek, V. I.、Barrnett, N. S.(2000)。Mean selection for filling processes under weights and measures requirements。Journal of Quality Technology,32,111-121。  new window
11.Carlsson, O.(1984)。Determining the most profitable process level for a production process under different sales conditions。Journal of Quality Technology,16,44-49。  new window
圖書
1.Trietsch, D.(1999)。Statistical Quality Control: A Loss Minimization Approach。World Scientific Publishing Co.。  new window
2.田口玄一(1986)。Introduction to Quality Engineering: Designing Quality into Products and Processes。Tokyo:Asian Productivity Organization。  new window
其他
1.Bisgaard, S. ; Hunter, W. G. ; Pallesen, L.(1984)。Economic selection of quality and manufactured product。  new window
2.Chen, C. H.(2004)。Determining the optimum process mean of a one-sided specification limit with the linear quality loss function of product。  new window
3.Chen, C. H.(2007)。Determining the optimum process mean based on manufacturing cost and quality loss。  new window
4.Chen, C. H. ; Chou, C. Y.(2005)。Determining a one-sided optimum specification limit under the linear quality loss function。  new window
5.Chen, C. H. ; Huang, K. W.(2006)。Optimum process mean for a one-sided specification limit product considering manufacturing cost and quadratic quality loss。  new window
6.Golhar, D. Y. ; Pollock, S. M.(1988)。Determination of the optimal process mean and the upper limit for a canning problem。  new window
7.Jeang, A.(1995)。Economic tolerance design for quality。  new window
8.Jeang, A.(1996)。Optimal tolerance design for product life cycle。  new window
9.Li, M. H. C.(1997)。Optimal setting of the process mean for asymmetrical quadratic quality loss function,Chinese Institute of Industrial Engineer。  new window
10.Li, M. H. C.(1998)。Optimal setting of the process mean for an asymmetrical truncated loss function,Chinese Institute of Industrial Engineer。  new window
11.Li, M. H. C.(2000)。Quality loss function based manufacturing process setting models for unbalanced tolerance design。  new window
12.Li, M. H. C.(2002)。Unbalanced tolerance design and manufacturing setting with asymmetrical linear loss function。  new window
13.Li, M. H. C. ; Chemg, H. S.(2000)。Unbalanced tolerance design with asymmetric truncated linear loss function。  new window
14.Li, M. H. C. ; Chimg, H. S.(1999)。Optimal setting of the process mean for asymmetrical linear quality loss function,I-Shou University。  new window
15.Li, M. H. C. ; Chou, C. Y.(2001)。Target selection for an indirectly measurable quality characteristic in unbalanced tolerance design。  new window
16.Li, M. H. C. ; Wu, F. W.(2001)。A general model of unbalanced tolerance design and manufacturing setting with asymmetric quadratic loss function,Chinese Society of Quality。  new window
17.Li, M. H. C. ; Wu, F. W.(2002)。A general model of manufacturing setting with asymmetric linear loss function,Chinese Society of Quality。  new window
18.Maghsoodloo, S. ; Li, M. H. C.(2000)。Optimal asymmetric tolerance design。  new window
19.Phillips, M. D. ; Cho, B. R.(2000)。A nonlinear model for determining the most economic process mean under a beta distribution。  new window
20.Wu, C. C. ; Tang, G. R.(1998)。Tolerance design for products with asymmetric quality losses。  new window
 
 
 
 
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