저압방전 불꽃에서 전극재질이 점화에너지에 미치는 영향

Effect of Electrode Material on the Minimum Ignition Energy in Low-Voltage Spark Discharge

  • 최상원 (한국산업안전공단 산업안전연구원) ;
  • 이관형 (한국산업안전공단 산업안전연구원 기계전기연구실) ;
  • 문정기 (한국기계연구원)
  • Choi, Sang-Won (Industrial Safety Research Institute, Korea Industrial Safety Corporation) ;
  • Lee, Gwan-Hyung (Industrial Safety Research Institute, Korea Industrial Safety Corporation) ;
  • Moon, Jung-Gi (Korea Institute of Machinery and Metals)
  • 발행 : 1995.07.20

초록

In the hazardous areas where explosive gases, vapor or mists exist, electrical apparatus and installations must be of explosion-proof construction to prevent or limit the danger of the ignition of potentially explosive atmosphere. In Korea, nine types of protection have been specified in the government regulations at present: flameproof enclosure, pressurization, oil immersion, increased safety, intrinsic safety, non-incendive, sand filling, encapsulation, and special types. Among these types, the intrinsic safety has the construction which limit or by-pass igniting the electric energy using electronic devices. This type has lots of merits but at the same time requires a high-degree of technology. In this paper, we investigated several dominating factors which affect the minimum ignition energy: this energy plays a very important role in design and evaluation of the intrinsic safety type electrical apparatus. Eletrode material, which is one of the most important factors, was intensively studied for the five sorts of material(Al, Cd, Mg, Sn, and Zn) with performing experiment in a low-voltage inductive circuit using IEC-type spark apparatus. The experimental results show that the minimum ignition energy of electrode material is varied: highest in Cd and lowest in Sn. We also confirmed the effect of eletrode make-and-break speed and magnetic field magnitude.

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