DOI QR코드

DOI QR Code

하우징 형태(Housing Type)로 제작된 배선 연결 커넥터의 안전성 평가에 관한 연구

A Study on the Safety Estimation of Wiring Connection Connector Manufactured by Housing Type

  • 최충석 (전주대학교 소방안전공학과)
  • 투고 : 2010.08.18
  • 심사 : 2010.11.08
  • 발행 : 2010.12.01

초록

The purpose of this study is to evaluate the safety of a wire connector fabricated for the effective installation of a lighting fixture including its contact resistance, insulation resistance, withstanding voltage characteristics, etc., and to provide the basis for the analysis and judgment of PL(Product Liability) dispute by presenting a damage pattern due to a general flame and overcurrent. This study applied the Korean Standard (KS) for the incombustibility test of the connector using a general flame and performed an overcurrent characteristics test of the connector using PCITS (Primary Current Injection Test System). The contact resistance of the housing connector was measured using a high resistance meter and the insulation resistance was measured using a multimeter. In addition, a supply voltage of AC 1,500V for testing the withstanding voltage characteristics was applied to both ends of the connector. Measurement was performed on 5 specimens and the measured values were used as a basis for judgment. Since the connector is fabricated in the form of a housing, it can be connected and separated easily and has a structure that allows no foreign material to enter. In addition, since it has a structure that allows wires to be connected only when their polarity is identical, any misconnection that may occur during installation can be prevented. When the incombustibility test was performed by applying a general flame to the connector, it showed outstanding incombustibility characteristics and the blade and blade holder connected to the housing remained firmly secured even after the insulation sheath (PVC) was completely destroyed by fire. In addition, the mechanism of the damaged connecting wire showed a comparatively uniform carbonization pattern and it was found that some residual melted insulation material was attached to both ends. In the accelerated life test (ALT) to which approximately 500% of the rated current was applied, the connector damage proceeded in the order of white smoke generation, wire separation, spark occurrence and carbonization. That is, it could be seen that the connector damaged by overcurrent lost its own metallic color with traces of discoloration and carbonization. The contact resistance of the connector at a normal state was 2.164mV/A on average. The contact resistance measured after the high temperature test was 3.258mV/A. In addition, the insulation resistance after the temperature test was completed was greater than $10G\Omega$ and the withstanding voltage test result showed that no insulation breakdown occurred to all specimens showing stable withstanding voltage and insulation resistance characteristics.

키워드

참고문헌

  1. 조명학회 편, "조명 핸드북", pp.2-8, 성안당, 2006.
  2. 데이코산업연구소, "LED 및 LED조명 시장의 실태와 전망", pp.25-95, Jinha M&B, 2009.
  3. Kurt Nowak, "Zwanzig Jahre FI-Schutzschaltung Chronologie und Entwicklung varianten" pp.7-9, aus de 16/, 1978.
  4. A.W. Smoot, N. Magan, "Method of Calculating electrical body impedance and equipment for measuring leakage currents", p.298, Underwiters Laboratories, USA, 1985.
  5. Walter F.Hart, P.E., "A Five-part Resistor-Capacitor Network for measurement of Voltage and Current Levels Related to Electric Shock and Burns", pp.183-190, Electrical Shock Safety Criteria, 1985.
  6. 최충석, 고재완, "배선 일체화된 조명등기구의 작업지 시서 개발에 관한 연구", 대한전기학회논문지 Vol.58P No.2, pp.196-201, 2009.
  7. 최충석 외 5, "전기화재공학", 도서출판 동화기술, pp.193-197, 2004.
  8. C.S. Choi et al, "Flame Spread and Damaged Properties of RCD Cases by Tracking", IEEJ Trans. PE, Vol.127, No.1, pp.321-326, 2007. https://doi.org/10.1541/ieejpes.127.321
  9. IEC 60943, "Guidance concerning the permissible temperature rise for parts of electrical equipment, in particular for terminals", 2nd edition, 1998.
  10. IEC 60050-441, "International Electrotechnical Vocabulary(IEV) Chapter 441: Switch gear and control gear and fuses", 1984.
  11. IEC 60085, "Thermal evaluation and classification of electrical insulation", 1984.
  12. IEC 60216-1, "Guide for the determination of thermal endurance properties of electrical insulating materials part 1: general guideline for aging procedures and evaluation of the test results", 1990.
  13. IEC 60364-4-42, "Electrical installations of buildings part 4: Protection for safety-Chapter 42: Protection against thermal effects", 1980.
  14. IEC 60694, "Common specification for high-voltage switchgear and control gear standards", 1996.
  15. IEC 60721-2-1, "Classification of environmental conditions part 2: environmental conditions appearing in nature. Temperature and humidity", 1982.
  16. IEC 60890, "A method of temperature-rise assessment by extrapolation for partially type-tested assemblies (PTTA) of low voltage switchgear and controlgear", 1987.
  17. ANSI/IEEE C57.13.1-1981, "IEEE Guide for Field Testing of Relaying Current Transformers", 1981
  18. IEEE Std 55-1953, "IEEE Guide for Temperature Correlation in the Connection of Insulated Wire and Cables to Electronic Equipment", 1953.
  19. 최충석, 김향곤, 송길목, "외부화염에 의해 소손된 비 닐코드의 단락 특성에 관한 연구", 한국화재소방학회 논문, Vol.18 No.4, pp.72-77, 2004.