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http://dx.doi.org/10.5855/ENERGY.2016.25.3.051

Optimization Analysis of Driving Gear of Large Capacity Non-contact Mixer for MLCC Electronic Materials  

Choi, Byungju (RC&E Co.)
Yang, Youngjoon (Dept. of Automotive Eng., Gyungnam Nat'l Univ. of Sci. and Tech.)
Publication Information
Abstract
MLCC is key parts of many electronic products and mixer is used to make MLCC. Currently, non-contact mixer is increasingly used due to its many merits. In case of large capacity non-contact mixer, function of driving gear is important. In this study, therefore, in order to reduce manufacturing cost through optimal design of driving gear of large capacity non-contact mixer, study on shape optimization of driving gear without excessive design modification was performed. As the results, because safety factors of modification model were decreased about 3.0 ~ 3.5 times compared with those of model with robust design, the possibility for saving manufacturing cost was confirmed.
Keywords
Large capacity non-contact mixer; Driving gear; Structural analysis; Shape optimization; Saving of manufacturing cost;
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Times Cited By KSCI : 7  (Citation Analysis)
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1 Hong, J. O., Kim, S. H. and Hur, K. H., 2009, Development History and Trend of High-Capacitance Multi-layer Ceramic Capacitor in Korea, Journal of the Korean Ceramic Society, Vol. 46, No. 2, pp. 161-169   DOI
2 Wi, S. K., 2011, Development Trends of MLCC Product, Journal of the Korean Ceramic Society, Vol. 14, No. 1, pp. 41-45
3 Choi, B. J. and Yang, Y. J., 2016, Numerical Analysis on Characteristics of Flow Mixing of Non-contact Mixing for MLCC Electronic Materials, J. Korean Soc. Mech. Technol, Vol. 18, No. 3, pp. 355-362   DOI
4 Choi, Y. G., Choi, J. R., Kim, D. J. and Hur, N. K., 2013, A Numerical Analysis on Mixing Performance for Various Types of Turbine Impeller in a Stirred Vessel, KSFM, Vol. 16, No. 1, pp. 47-55
5 Kim, D. H. and Moon, Y. J., 2016, Control of Propeller Hub Vortex for Water Treatment Mixer, KSFM, Vol. 19, No. 2, pp. 11-15
6 Park, C. I. and Cho, D. H., 2012, Comparison of Dynamic Characteristics of Spur Gears and Helical Gears, KSNVE, Vol. 22, No. 4, pp. 358-364   DOI
7 Parker, R. G., Agashe, V. and Vijayakar, S. M., 2000, Dynamic Response of a Planetary Gear System using a Finite Element/Contact Mechanics Model, Transaction of the ASME, Journal of Mechanical Design, Vol. 122, pp. 304-310   DOI
8 Kubur, M., Kahraman, A., Zini, D. M. and Kienzle, K., 2004, Dynamic Analysis of Multi-Shaft Helical Gear Transmission by Finite Elements : Model and Experiment, Transaction of the ASME, Journal of Vibration and Acoustics, Vol. 126, pp. 398-406   DOI
9 Lee, C. M., Ahn, J. W. and Kim, D. H., 2015, A Study on Shape Optimization of High-Speed Index Table with Hypoid Gear, J. Korean Soc. Precis. Eng., Vol. 32, No. 2, pp. 179-184   DOI
10 Jang, J. M., Kim, Y. G., Hur, J. H. and Na, S. M., 2009, A Study on Rigid Front Axle Shape Optimization of a Commercial Vehicle by Hydroforming Process, KSME, Vol. 33, No. 3, pp. 231-236   DOI
11 Lyoo, T. H. and Kim, C. S., 2007, The Valuation of HSA Business Using Broadband over Power Line, Journal of Energy Engineering, Vol. 16, No. 4, pp. 202-214