In the fire there are fusion signs and damage by fire, and insulation aging and carbonization of the electric wiring in the ignition spot because of special characteristic of the appliance in the electricity fire. Because of the physical factor applied in the damage of fire, the decision of ignition spot by eye investigation is insufficient. In this paper, the cause of electricity fire is researched. The focus is on the operation state of operated MCCB(Molded Case Circuit Breaker) at the time of electricity fire. Through grasping the operation principle of MCCB and the experiment, the state of MCCB after fire suppression is discriminated. The distinction possibility on the exist of electricity fire is proposed.
This study set three kinds of situation and observed the various states such as carbonization by experimenting damages by fire of electric iron. The results of this study are as follows: The fire did not occurred when the unpowered iron over mattress and cotton shirts was com busted completely by external flame because the temperature of surface of soleplate and mattress did not reach the minimum ignition energy and when the powered electric iron over mattress and cotton shirts was left for an hour with its temperature dial set to high because the temperature of combustibles did not reach the minimum ignition energy. The fire occurred when the electric iron in which the outer box, bi-metal switch, and temperature fuse were removed over mattress and cotton shirts was powered by through heater terminal, and then the electric iron, mattress, and cotton shirts were combusted by the fallen combustibles because the temperature of combustibles reached to the minimum ignition energy with the help of active transfer of heat.
The purpose of this study is to distinguish the causes of broken glass on doors or windows when it is originally kept among the remains on the floor in fire site - whether it was broken due to heating or outer power-through test and characteristics of the broken plane including the pattern on the plane. Addition to it, the study tries to find characteristics to judge the point and direction of breakdown through the analysis of glass broken by outer power. With two assumed causes - a) breakdown due to heating and b) breakdown due to outer power-3 pieces of glass plates (30cm×30cm×5mm) were tested for each case, getting the results as following: First, for the glass broken due to the change of temperature, the broken plane is of slow and smooth curve without any pattern. Second, for the glass broken due to outer power, with the impact point as the center, the glass shows breakdown of radial type and the side shows breakdown of near-perpendicular type. The far the broken piece is from the impact point, the bigger the size is. The broken piece at the impact point is of long triangle type and the two long planes of the triangle shows semi-arc with the center of breakdown point and the other plane shows opposite pattern. Third, when glass that is damaged by outer power is heated, damaged forms and side patterns of the glass that is damaged by outer power are heated and disappeared.
본 연구에서는 고해상도 영상획득을 위해 저온액상법을 이용하여 Europium doped gadollium oxide(Gd2O3:Eu) 미 세 형광체를 제조하여 입자의 형상 및 구조를 분석하였으며, 발광체 필름에 대한 방사선에 대한 광학적 반응특성 실험 을 통해 고해상도 영상검출기 적용 가능성을 확인하였다. 제조된 형광체 필름 두께에 따른 광량 및 선량에 따른 발광 의 선형성을 조사하였다. 측정결과, 270 ㎛ 두께의 Gd2O3:Eu에서 2945 pC/cm2/mR의 발광 강도로 이 값은 벌크 형광 체 필름의 발광 강도보다 약 1.2배 높은 영상 획득을 위한 충분한 신호임을 확인할 수 있었다. 또한, 임상 진단 영역의 X선 조사선량 범위에서 대체로 좋은 선형적 특성을 보였다.
최근 디지털 방사선 영상획득을 위한 평판형 X선 검출기에 이용되는 광도전체(a-Se, HgI2, PbO, CdTe, PbI2 등)에 대 한 관심이 증대되고 있다. 본 연구에서는 HgI2 와 a-Se 필름 변환체에 대해 X선에 대한 전기적 신호검출 특성을 조사하였 다. 수백 마이크로의 두꺼운 광도전체 필름 제작을 위해 HgI2는 입자침전방법을 이용하였고, a-Se은 종래의 진공열증착법 을 이용하였다. 제작된 시편에 대한 전기적 특성 실험은 누설전류, 신호응답 특성, 민감도 등을 측정하였다. 실험결과로부 터, HgI2는 상용화된 a-Se에 비해 낮은 동작전압특성과 우수한 신호 발생율을 보임을 알 수 있었다.