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Development of perfectly design system using Taguchi methods

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
As swift development with low cost was required for the manufacturing in industry, CAE simulation was used to predict the result of the design process, and Taguchi methods was used to decide optimum conditions for minimizing the dispersion.In this study, the perfectly design system without trial production using CAE and Taguchi methods was developed and evaluated. Software for original Taguchi methods and software for productivity management were firstly created, these softwares were combined with established CAE, and software package was developed for estimating the optimum combination of design parameters. Then the quality and the functionality were advanced to gain the optimum condition for the maximum profit considering the function of the grading of products, the delinquent charge and the loss function in the quality engineering based on the developed software. The research results are summarized as follows. (1) Perfectly design system without trial production using Taguchi methods was developed for calculations of the grading products, adding the delinquent charge and the loss function. (2) The evaluation with Kami-copter contributes to the profit evaluation of the grading; the delinquent charge and the loss function with high dimensional accuracy and is evaluated effective on industry.
Rocznik
Strony
69--80
Opis fizyczny
Bibliogr. 6 poz., tab., rys.
Twórcy
autor
  • Nagaoka University of Technology, Dept. of Information Science and Control Engineering, Japan
autor
  • Nagaoka University of Technology, Dept. of Mechanical Engineering, Japan
autor
  • Nagaoka University of Technology, Educational affairs section, Mechanics and Machinery Group, Japan
Bibliografia
  • [1] MAKINO T., 2005, Optimization of exhaust port using computer simulation, Proceedings of the 13thQuality Engineering Society Conference, 6-9.
  • [2] FUJIKAWA S., 1999, Optimum parameter design using the Taguchi methods for finite-element analysis of 3D forgingdeformation, Journal of the Japan Society of Technology, for Plasticity,40/466,1061-1065.
  • [3] TATEBAYASHI K., 2005, Computer aided engineering combined with Taguchi methods, Proceeding of the Annual Meeting of the Japan Society of Mechanical Engineering, 8/05-1,224-225.
  • [4] SUGAI H., TANABE I., et al., 2006, Predictions of optimum forming conditions in press forming using TAGUCHImethods and FEM simulation, Transactions of the Japan Society of Mechanical Engineer, Series C, 72/721, 3044-3050.
  • [5] NAGAKURA S., et al., 1998, Iwanami physics and chemistry dictionary, pp1235, Iwanami Shoten, (in Japanese).
  • [6] ARIZONO I., KANAGAWA A, OHTA H., WATAKABE K., TATEISHIK., 1997, Variable sampling plans for normal distribution indexed by Taguchi's loss function, Naval Research Logistics, 44/6, 591-603.(in Japanese).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bed42e9c-1b73-434b-9944-f0ede12c18e3
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