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The Characteristic of Temperature in Ventilating Fans by Festraint or Nonrestraint

무 구속·구속 실험에 의한 환풍기 온도 특성

  • Kim, Sung-Sam (Dept. of Electrical Engineering, Kyungnam University)
  • Received : 2015.10.21
  • Accepted : 2015.11.26
  • Published : 2016.01.31

Abstract

In this paper, we analyzed the operating characteristics of a ventilating fan due to overload and overheating. The experiment assumed the forcible restraint of the blade due to external objects and the aging process. We analyzed the experimental temperature and operating characteristics of the three places in the interior of the ventilating fan. As a result of the analysis, the temperature distribution was highest to lowest in the following order: the thermal fuse, the motor inside, and the above winding. There was smell of burning enamel in the restraint experiment. Following the thermal fuse operation, the insulation of motor winding was good. In the case of rated voltage and new ventilating fan restrained for about 4hours, and the results of restraint experiments in the presence or absence of the thermal fuse, no risk of deformation or fire due to overheating was identified. Henceforward, ignition hazard experiments will be required for additional factors of aging, pollution, and defective insulation.

Keywords

References

  1. http://www.nema.go.kr/nema_cms_iba/show_nema/board/board1/view.jsp?cNo=393720&c_relation=25&check_the_code=1&check_the_num=135&check_up_num=110&pageNo=1
  2. Sung-sam Kim, "The Survey of Fire Hazard of Fan in Manufacturing Industries", Journal of the Korean Institute of Illuminating and Electrical Installation Engineers, Vol. 27, No. 10, pp. 21-29, 2013. https://doi.org/10.5207/JIEIE.2013.27.10.021
  3. http://www.nema.go.kr/nema_cms_iba/show_nema/board/board1s/view.jsp?cNo=337241&c_relation=18&check_the_code=2&check_the_num=116&check_up_num=113&pageNo=1
  4. Robert A. Yereance, Todd Kerkhoff, "Electrical Fire Analysis", Charles C. Thomas, pp. 191-193, 266-271, 2010.
  5. Durham, Marcus O. et. al., "Electrical Failure Analysis", Dream point Publishers, pp. 47-48, 2011.
  6. Sun-Ho Choi, Geon-Tae Lee, "An Experimental Study on the Kitchen Ventilation System Effectiveness by Character of Static Pressure Loss of Each System Component in Apartment Building", AIK, Vol. 28, No. 3, pp. 269-276, 2012.
  7. J. Park, "Design of multipurpose ventilator for a vehicle using air-multiplier", KSPE Spring Annual Conference, pp. 1131-1132, 2010.
  8. Hyun-Rok Cha, et. al., "Inverter Motor Drive System Development for High Static Pressure Ventilation Fan", KIEE Summer Annual Conference, pp. 1193-1194, 2008.
  9. Jun-Won Song, et. al., "Study on Selection of Optimal Bathroom Ventilating fans Based on Measurements of Performance Appraisal and Flow Resistance in Exhaust Duct", SAREK Summer Annual Conference, pp. 672-680, 2002.
  10. Seung-Bin Lim, et. al., "Design of High efficiency 2phase Brushless DC Motor for Ventilation Fan", KIEE Autumn Annual Conference, pp. 17-19, 2009.
  11. B. J. Rho, et. al., "Fundamental Design and Test of Seam Blade in Ventilation Fan", KSME Autumn Annual Conference, pp. 1-5, 2006.
  12. Pil-Dong Song, Jin-Sik Ham, "A Study on the Ventilation Performance Estimation of Marketing Ventilation Fan Used in the Apartment House Kitchen", KHousing Annual Conference, pp. 315-320, 2002.
  13. J. H. Shin, et. al., "Electric Machines", Jinsaem Media, pp. 437-450, 2012.
  14. Chung-Seog Choi, et. al., "Electrical Fire Engineering", DongHwa Publishing, pp. 165-166, 329-330, 2000.
  15. H. S. Joe, et. al., "Study on the Mechanism, Properties & State of the Ignitible, and Fire Investigation Technique to Electric & Ventilating Fans", KIFI Annual Conference, pp. 109-125, 2008.