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Design of basic chamber of the Main Control Valve

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Języki publikacji
EN
Abstrakty
EN
Purpose: The development of a control valve for closed circuit requires comprehensive technologies in the overall precision machinery industry, from the development of casting materials for the housing to various types of parts. The development of a new type of control valve would have great advantage with a long lifecycle. Therefore, it is necessary to secure the MCV (Main Control Valve) development technology that applies various sensors. This paper aims at providing a fundamental base for the establishment of design systems including the flow chamber design database of the MCV for wheel loaders, strength and rigidity design system, and the system for energy efficiency improvement. Particularly, this study set up the basic design database for the flow chamber design to establish the flow chamber design database, and secured the stability of the flow chamber from the basic design stage. In addition, major design variables were determined by utilizing a statistical technique in order to design such flow chamber. Design/methodology/approach: This study uses the I-DEAS to analyze the MCV structure characteristics. In addition, it uses the factorial design and sensitivity analysis to select important factors for the MCV design. Findings: This study establishes the unit flow chamber database for the MCV housing unit and the governing equation for the flow chamber. Research limitations/implications: Since the MCV damage often occurs due to the problem with the material itself and in the manufacturing process, it is difficult to tell clearly whether it occurred as the MCV reached the failure pressure. Practical implications: The basic data needed to design the MCV can be provided, and the required time for the design and the reliability of the design can be reduced and improved respectively. Originality/value: The verification of the design factors obtained from the flow analysis and structural analysis as well as the DOE was made by fabricating a sample MCV and performing tests on it.
Rocznik
Strony
175--178
Opis fizyczny
Bibliogr. 12 poz., wykr.
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Bibliografia
  • [1] J. A. Collons, Failure of Materials in Mechanical Design, Wiley Interscience, New York, 1993.
  • [2] Y. C. Fung, P. Tong, Classical and Computational Solid Mechanics, World Scientific, Singapore, 2001.
  • [3] R. D. Mason, D. A. Lind, W. G. Marchal, Statistics: An Introduction, Harcourt Brace Jovanovich, New York, 1983.
  • [4] K. J. Bathe, Finite element procedures, Prentice hall, New Jersey, 1996.
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  • [8] Ch. Cho, W. Kim, B. Choi, S. Kwak, A finite element mesh management in casting simulation, International Journal of Computational Materials Science and Surface Engineering 1 (2007) 4-17.
  • [9] L. A. Dobrzański, A. Śliwa, W. Sitek, W. Kwaśny, The computer simulation of critical compressive stresses on the PVD coatings, International Journal of Computational Materials Science and Surface Engineering 1 (2007) 28-39.
  • [10] E. Rusinski, J. Czmochowski, P. Moczko, Numerical and experimental analysis of a mine's loader boom crack, Journal of Achievements in Materials and Manufacturing Engineering 17 (2006) 273-276.
  • [11] S. W. Lee, D. Y. Shin, C. W. Byun, H. J. Yang, I. C. Baek, Modified design for the poppet in check valves, Journal of Achievements in Materials and Manufacturing Engineering 23 (2007) 67-70.
  • [12] S. P. Timosenko, An introduction to the mechanics of solids, McGraw-Hill, New York, 1978.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWAW-0001-0033
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