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Development of Software for Calculation of Best Condition Using Taguchi Methods and Its Evaluation

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Recently Taguchi methods are used to decide optimum processing conditions with narrow dispersion for robust design. On the other hand, innovative development with short-term, low cost, labor and energy saving is also required in the world. In this study, the software for development of a product with optimum condition using Taguchi methods is developed and evaluated. There are two trials in the software using Taguchi methods. First trial investigates rough functions regarding all levers of all control factors, then important control factors and meaningless control factors were sorted with the several comments for the second trial. At that time, maximum, intermediate and minimum values for each lever of each of the control factors should be used for pursuit of all possibilities. In the first trial, the relationship between each level value of each of the control factor and the desired property is also decided by the function, then the optimum combination using each level of each of the control factors were calculated for the second trial by using the function. The second trial is confirmed for the best combination using the estimated optimum level values. For example of an application, the optimum design for the paper craft “airplane” was investigated for evaluating this software in the experiment. It is concluded from the result that: (1) The proposed software was useful for developing with short-term and lower cost, (2) This tool could quickly and exactly decide the optimum design condition and (3) The paper craft “airplane“ with most long flying length is manufactured by using the developed software.
Słowa kluczowe
Rocznik
Strony
44--54
Opis fizyczny
Bibliogr. 14 poz., tab., rys.
Twórcy
autor
  • Nagaoka University of Technology, Dept. of Mechanical Engineering, Nagaoka, Japan
autor
  • Nagaoka University of Technology, Dept. of Mechanical Engineering, Nagaoka, Japan
autor
  • Nagaoka University of Technology, Educational affairs section, Mechanics and Machinery Group, Nagaoka, Japan
Bibliografia
  • [1] TATEBAYASHI K., 2005, Computer Aided Engineering Combined with Taguchi Methods, Proceeding of the 2005 Annual Meeting of the Japan Society of Mechanical Engineering, 8/05−1, 224−225.
  • [2] MAKINO T., 2005, Optimization of Exhaust Port Using Computer Simulation, Proceedings of the 13th Quality Engineering Society Conference, 6−9.
  • [3] 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).
  • [4] FUJIKAWA, S., 1999, Optimum Parameter Design Using the Taguchi Methods for Finite-Element Analysis of 3D Forging Deformation, Journal of the Japan Society of Technology for Plasticity, 40/466, 1061−1065.
  • [5] NAGAKURA S., et al., 1998, Iwanami Physics and Chemistry Dictionary, Iwanami Shoten, 1235, (in Japanese).
  • [6] YANO H., 2003, View Point for Taguchi Methods, Nikkan Kogyo Shimbun, 11−187, (in Japanese).
  • [7] MIZUTANI J., HAMAMOTO S., MUKAIYAMA T., TANABE I., YAMADA Y., 2002, Functional Evaluation of a Micro-polishing Process by a Combined Method of Physical and Chemical Treatments, Quality Engineering, 10/1, 84−90.
  • [8] TANABE I., WATANABE M., NAKAMURA T., GOTO A., 2012, Development of Grease Lubrication with Maintenance Fee for Long Term on the Slide of a Machine Tool, Transactions of the JSME, 78/791, 2646−2655, (in Japanese).
  • [9] SUGAI H., et al, 2006, Prediction of Optimum Machining Condition in Press Forming Using Taguchi Methods and FEM Simulation, Transactions of the JSME (in Japanese), 72/721, 3044−3051.
  • [10] TANABE I., IYAMA T., YANAGISAWA T., MIZUTANI J., 2009, Development of Simulation System on CAE Without Trial Working for Products (Manufacture of High Precision System Using Dispersion of Error Factors), Transactions of the JSME, 75/749, 203−209, (in Japanese).
  • [11] SAKAMOTO H., TANABE I., TAKAHASHI S., 2014, Development of Perfectly Design System Using Taguchi Methods, Journal of Machine Engineering, 14/2, 69−80.
  • [12] TANABE I., IYAMA T., VU Le H., 2011, Evaluation of Influence Regarding Control Factors Using Inverse Analysis of Taguchi Methods (Influence Regarding Organic Matter in Control Factors), Transactions of the JSME, 77/780, 3117−3126, (in Japanese).
  • [13] TANABE I., SAKAMOTO H., TAKAHASHI S., 2014, Development of Forced Cooling Using Mist of Strong Alkaline Water for Restraining Thermal Deformation on a Machine Tool, MM Science Journal, 521−526.
  • [14] YANO H., 2006, Calculation Method for Taguchi Methods, Nikkan Kogyo Shimbun, 9−149, (in Japanese).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-80c904b3-6aad-47e9-ae82-0933b65d0df4
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