In this paper, as there are many cases of fires occurring due to the failure or inoperability of the thermostat of electronic products, the purpose is to test and analyze the risks and probabilities through fire cases and reproduction experiments, and suggest countermeasures. Among electronic products, water purifiers are composed of a refrigerant system with a compressor to make cold water, a heating device to make hot water, and an electric device used as an energy source. Due to the nature of the water purifier manufacturing, these devices are subject to a lot of moisture and dust. etc. exist in large quantities and use electrical energy, so there is a possibility of fire due to short circuit in the wire, electrical abnormal overheating (tracking phenomenon) in the thermostat, electronic board, starting relay, etc., and overheating of the heating device (Band Heater). there is. Therefore, in order to prevent fires from these devices, a system to remove foreign substances inside the water purifier is necessary, the use of heat-resistant (fire-resistant) wires for electrical devices is essential, and the use of non-combustible materials (semi-combustible materials) for each part is necessary to prevent fire. The risk must be eliminated through prevention and combustion expansion prevention devices.
Restraints of Branch Lines are used as earthquake-resistant support devices for fire-fighting pipes along with sway brace devices. The central types are aligned and fixed in a straight line with center of the pipe, but the eccentric types are fixed to on side of the pipe, so a bending moment occurs. In this study, three specimens each of central type and eccentric type were installed at an angle of 45° from the vertical and a monotonic compression load of 1340N was applied. All central type samples satisfied 17.8mm of the allowable displacement, but all eccentric type samples failed to meet the target load and buckled. Therefore, when considering the performance of eccentric type restraints, both compressive load and bending moment must be considered. Even through material mechanics calculations, the yield stress of eccentric type - 3/8 inch all threaded steel bolt - exceeds 320Mpa of the allowable stress. A experiment standards need to be established for eccentric type restraints.
Cars using diesel have always had problems with reducing exhaust fumes, and have been studied steadily in this regard. There were studies on the remanufacturing effect of DOC catalyst deactivated by diesel vehicle smoke reduction device, analysis of vehicle fire accident cases caused by damage to diesel vehicle smoke reduction device, and related studies on the remanufacturing effect of diesel vehicle smoke reduction device DPF. This study also developed a burner system in a smoke reduction device suitable for exhaust engines to completely burn smoke generated by institutions using diesel engines in low-temperature exhaust gases. Following the development of the existing high-performance heater, burner structure capable of maintaining ignition state in exhaust flow, pulsation generated by diesel engines, and exhaust flow control unit, the actual configuration, function and effect of the device, development contents, basic data and abnormalities of the vehicle, and comparison with other developed products.
When cooking, especially during processes such as grilling or frying, harmful gases are generated. Among them, fine dust is a major factor causing lung cancer, and to eliminate it, range hoods are commonly used. Particularly, when using portable cooking device like gas stoves, it is even more challenging to remove fine dust. In this study, a cooking device was developed to combine steam and cooled air in the air-curtain area to recover fine dust generated during the cooking process, allowing it to be collected as food. The device was evaluated according to criteria defined independently and validated through experiments. As a result, all criteria were satisfied within the specified range.
In this study, for the purpose of reducing the catch of small giant octopus in a net pot, an escape experiment of octopus was performed on five types of escape rings of different sizes. As a result of the experiment, the smallest giant octopus with a weight of 406 g was found to escape from an escape ring with a diameter of 30 mm or larger, and 592 g octopus, a weight similar to the octopus of the current minimum landing weight (600 g), escaped from an escape ring with a diameter of larger than 40 mm. An individual weight with 406 g becomes 39 mm when converted from a diameter of 25 mm circular escape vent; that is, the circumference to the inner diameter of the mesh. It can be inferred that the converted mesh size of 39 mm cannot escape. Logistic regression analysis was performed using a generalized linear model (GLM) to investigate the correlation between the ratio of escape ring size/Mantle diameter (R/MD) and the escape rate. As a result, it was found that there was a significant correlation between the R/MD ratio and the escape rate and that the higher the R/MD ratio, the greater the escape rate. As a result of logistic regression analysis, the R/MD value was denoted 0.520 with the 50% escape rate. In addition, it can be estimated to be about 50 mm when converted to the mesh size. Therefore, in this study, the diameter of the escape ring and the size of the escape possible of the octopus were experimentally considered. It was found that there was a significant correlation.
Communication facilities play an essential role in disaster situations. Therefore, communication facilities need to have structural and functional safety during and after earthquakes. Recently, technology for partial seismic isolation has been increasing to protect data facilities and communication equipment installed in buildings from earthquakes. However, excessive displacement may occur in the seismic isolator during an earthquake due to the resonance between the building and the seismic isolator having long-period characteristics, which may cause overturning and separation of the installed equipment. In this study, analytical and experimental studies were conducted to evaluate the safety of seismic isolators installed in high-rise buildings. It was confirmed that damages might occur in buildings' seismic isolator, with resonance characteristics of less than 1 Hz.
철근콘크리트 기둥에서 후프철근의 내진갈고리 시공성을 개선하기 위하여 기존 연구에서 “띠철근 갈고리 뽑힘 방지 장치”인 RCC장치(Rebar Confinement Clip)를 제안하여 인발실험을 통한 부착 및 정착성능 실험을 실시하였다. 그러나, 기존 연구의 실험에서는 콘크리트 구조기준에서 제시하는 피복두께를 준수하지 않았다. 그러므로, 보다 신뢰성 있는 실험 결과를 도출하 기 위하여 기준에서 제시하는 피복두께를 준수한 실험체로 실험을 실시할 필요가 있다. 이를 위하여 총 6개 실험체를 제작하여 실험을 실시하였으며 실험결과, 부착 및 정착의 합성강도는 RCC장치로 체결된 띠철근의 갈고리가 내진갈고리가 발휘하는 강도 보다 높게 나타났다. 또한, 내진갈고리의 실험체 균열 진전 및 파괴 양상과 RCC장치로 체결된 띠철근의 실험체는 유사하게 나타났다. 그러므로, 콘크리트 피복두께를 준수한 실험체에서 RCC장치로 띠철근에 체결할 경우 내진갈고리가 발휘하는 동등한 성능을 보유하고 있는 것으로 평가된다.
에너지를 절감하기 위해 고효율 히트펌프를 개발하기 위한 많은 연구가 이루어지고 있으며, 실외기 코일에 발생하는 서리가 발생하는 현상을 줄이거나 없애기 위한 연구도 동시에 이루어지고 있다. 계절에 관계없이 히트펌프의 실외기에 서리가 발생하지 않는 연구를 진행할 수 있도록 자연상태와 동일한 조건에서 실험할 수 있는 항온챔버를 구축하였다. 실험장치의 타당성을 검증하기 위해 실험장치인 항온챔버 내의 실외기 앞 덕트의 직선 길이를 3가지 조건으로 나누어 시뮬레이션 하였다. 그 결과 덕트 관경의 10배 길이만큼 직선 공간을 확보해야 한다는 것을 알게 되었다.
본 논문에서는 모듈화(Module)된 부품을 활용한 탄성받침 성능개선기법에 대하여 소개하였다. 각각의 모듈화된 장치들이 지진 강도 및 이동 변위에 따른 단계별 거동을 함으로써 받침의 성능을 개선하게 된다. 모듈화된 장치들은 초기전단저항 블럭, 완충장치, 변위수용가이드, 낙교방지블럭이 있으며, 탄성받침에 추가적으로 적용되었다. 이 장치는 지진의 규모에 따라 4단계로 거동하며, 1차로 설계변위를 수용하고, 2차, 3차에서는 대규모 지진을 수용하며, 4차로는 대규모의 지진에 대해서 낙교방지가 가능하도록 설계되어 탄 성받침의 용량 제한을 증가시킨다. 본 논문에서는, 개발기술인 PRB 지진격리장치를 유한요소해석을 통해 해석하여 격리장치의 이론적인 거동이 구현되는지와, 대규모 지진에 해당하는 하중을 견딜 수 있는지 확인하였다. 그리고 이를 바탕으로 실험을 통해 성능평가를 진행하여 두 결과의 비교 분석을 통해 PRB 지진격리장치가 탄성받침의 성능을 개선할 수 있는지 검증하였다.
중공슬래브 시스템은 슬래브 중앙부의 콘크리트를 경량의 중공재로 대체하여 중량은 감소시키면서 동등한 수준의 구조성능을 지니는 경제적인 시스템이나 콘크리트 타설 시 비중의 차이로 중공재가 부상하게 되는 문제점이 발생한다. 이에 본 연구에서는 중공슬래브 공법에 적용 가능한 경량성형재 고정장치를 고안하고 부력저항성능을 평가하고자 하였으며, 고정성능 평가를 위해 정해진 실험방법이 존재하지 않으므로 이를 검증하기 위해 인발실험장치를 제작하였다. 시공 시 본 장치를 설치하는 과정에서 발생 가능한 변수를 기준으로 실험을 수행하고자 하였고 이에 합판의 상태 및 고정 위치에 따라 변화되는 고정성능을 파악하고자 하였다. 인발 실험 결과 일반합판과 비교하여 코팅합판의 경우 구멍의 크기가 중공재 고정장치의 인장성능에 큰 영향을 미치지 않는 것으로 나타나 작업자의 편의 및 내력 확보의 안전성을 위해 코팅합판을 사용하는 것이 유리한 것으로 판단된다. 또한 고정 위치와 무관하게 동일한 수준의 고정성능을 지니는 것으로 보여져 설치 상태에 대한 별도의 확인 과정 없이 슬래브 상부에서 원터치 방식으로 고정 가능하므로 시공성이 향상된 것으로 사료된다.
In this study, a field bridge test was conducted to find the dynamic properties of cable supported bridges with resilient-friction base isolation systems (R-FBI). Various ambient vibration tests were performed to estimate dynamic properties of a test bridge using trucks in a non-transportation state before opening of the bridge and by ordinary traffic loadings about one year later after opening of the bridge. The dynamic properties found from the results of the tests were compared with an analysis model. From the result of the ambient vibration tests of the cable supported bridge with R-FBI, it was confirmed that the dynamic properties were sensitive to the stiffness of the R-FBI in the bridge, and the seismic analysis model of the test bridge using the effective stiffness of the R-FBI was insufficient for reflecting the dynamic behavior of the bridge. In the case of cable supported bridges, the seismic design must follow the “Korean Highway Bridge Design Code (Limit State Design) for Cable supported bridges.” Therefore, in order to reflect the actual behavior characteristics of the R-FBI installed on cable-supported bridges, an improved seismic design procedure should be proposed.
In order to develop the compatible damping device in various vibration source, a hybrid wall-type damper combining slit and friction damper in parallel was developed. Cyclic loading tests and two-story RC reinforced frame tests were performed for structural performance verification. As a result of the 5-cyclic loading test according to KBC-2016 and low displacement cyclic fatigue test, The hybrid wall type damper increased its strength and the ductility was the same as that of the slit damper. In addition, As a result of the two-layer frame test, the reinforced frame had about twice the strength of the unreinforced frame, and the story drift ratio was satisfied to Life Safety Level.