• Title/Summary/Keyword: 내화구조

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A Study on the Test and Installation Standards of the Video Fire Detector (영상화재감지기 시험과 설치기준에 관한 연구)

  • Lee, Jeong-Hyun;Baek, Dong-Hyun
    • Fire Science and Engineering
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    • v.30 no.4
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    • pp.1-5
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    • 2016
  • This research performed tests of Video Fire Detector and criteria of installation to make suggestions regarding the criteria that must be reflected in NFSC 203 by comparing the standards of FM Approvals, UL, ISO7240 and NFPA 72. FM Standard related to Video Fire Detector test has been classified as Smoke, Flame type, but the UL Standard has classified only as a Smoke type. This research examined 6 cases of fire phenomenon detection case in ISO 7240 and 3 cases in NFPA 72, respectively. There are 15 items required for the installation standard of a Video Fire Detector and each field standard is presented as a per installation method. To apply a Video Fire Detector, the pertinent items (the definition of term, detector's classification, structure and function among its test item) must be inserted. In addition, 7 items of the fire test, i.e., the sensitivity adjustment, prevent false alarm, ambient temperature test, the effective sensitivity and detection distance and viewing angle, aging test, flood test, must be applied to the actual test. For installation in the field, the operation environment and levels of illumination, and NFSC 203 must be set, and standards relevant to the sound system, indicators' installation distance, etc. need to be inserted.

Graphene Oxide/Polyimide Nanocomposites for Gas Barrier Applications (산화그래핀이 함유된 폴리이미드 나노복합막의 기체차단성 평가 및 활용)

  • Yoo, Byung Min;Lee, Min Yong;Park, Ho Bum
    • Membrane Journal
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    • v.27 no.2
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    • pp.154-166
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    • 2017
  • Polymeric films for gas barrier applications such as food packaging and electronic devices have attracted great interest due to their cheap, light and easy processability among gas barrier materials. Especially in electronic devices, extremely low gas permeance is necessary for maintaining the device performance. However, current polymeric barrier films still suffer from relatively high gas permeance than other materials. Therefore, there have been strong needs to enhance the gas barrier performance of polymeric barrier films while keep their own advantages. Recently, graphene is highlighted as a 2D-layered material for gas barrier applications. However, owing to the poor workability and difficulty to produce in engineering scale, graphene oxide (GO) is on the rise. GO consists of oxygen-containing functional groups on surface with intrinsic 2D-layered structure and high aspect ratio, and it can be well-dispersed in aqueous polar solvents like water, resulting in scalable mass production. Here, we prepared GO incorporated polyimide (PI) nanocomposites. PI is widely used barrier polymer with high mechanical strength and thermal and chemical stability. We demonstrated that PI/GO nanocomposites could perform as a gas barrier. Furthermore, surfactants (Triton X-100 (TX) and Sodium deoxycholate (SDC)) are introduced to enhance the gas barrier performance by improving the degree of dispersion of GO in PI matrix. As a result, TX enhanced the gas barrier performance of PI/GO nanocomposites which is similar to predicted value. This finding will provide new insight to polymer nanocomposites for gas barrier applications.

A Study on the Confirmation of non-flammabikity of the Cast Resin Mold Transformer in Subway Substation (지하철 변전실용 진공주형형 몰드변압기의 난연성 확인에 관한 연구)

  • 정용기;장성규;곽희로
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.12 no.2
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    • pp.99-107
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    • 1998
  • This dissertationhas confirmed the non-flam mability of cast mold transformer that is increasingly used lately. As a research progress, the investigation has been performed on the installation status and each line of the subway system which have the most mold transformer accidents, and the impediment status of the transformer for rectifier and the high-voltage distribution transformer per each manufacturer. Then, a high voltage mold of the actual mold transformer has been installed in the horiwntal heating furnace and the heat has been applied by the standard heating temperature curve of KSF 2257(Fireproof testing meth od of the construction structures: 1993). Accordingly, the combustibility of the mold transformer based on the test results has been found that 78 minutes has been required for the complete burning per the KSF 2257 combustion test curve and that, after stopping the heat application of the horizontal furnace after ignition, the flame progress has not been made but shown as the self-extinguishing characteristics when the flame progress has been checked. Thus, the non-flammability and self-extinguishability of the mold transformer have been confirmed. The result of this dissertation has indicated that the accident involving mold transformer has been progressed and expanded by the dielectric breakdown or void due to the crack in the mold rather than a fire accident caused by a short-circuit or an overload.r an overload.

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Analysis of Thermal Shock Behavior of Cladding with SiCf/SiC Composite Protective Films (SiCf/SiC 복합체 보호막 금속피복관의 열충격 거동 분석)

  • Lee, Dong-Hee;Kim, Weon-Ju;Park, Ji-Yeon;Kim, Dae-Jong;Lee, Hyeon-Geon;Park, Kwang-Heon
    • Composites Research
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    • v.29 no.1
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    • pp.40-44
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    • 2016
  • Nuclear fuel cladding used in a nuclear power plant must possess superior oxidation resistance in the coolant atmosphere of high temperature/high pressure. However, as was the case for the critical LOCA (loss-of-coolant accident) accident that took place in the Fukushima disaster, there is a risk of hydrogen explosion when the nuclear fuel cladding and steam reacts dramatically to cause a rapid high-temperature oxidation accompanied by generation of a huge amount of hydrogen. Hence, an active search is ongoing for an alternative material to be used for manufacturing of nuclear fuel cladding. Studies are currently aimed at improving the safety of this cladding. In particular, ceramic-based nuclear fuel cladding, such as SiC, is receiving much attention due to the excellent radiation resistance, high strength, chemical durability against oxidation and corrosion, and excellent thermal conduction of ceramics. In the present study, cladding with $SiC_f/SiC$ protective films was fabricated using a process that forms a matrix phase by polymer impregnation of polycarbosilane (PCS) after filament-winding the SiC fiber onto an existing Zry-4 cladding tube. It is analyzed the oxidation and microstructure of the metal cladding with $SiC_f/SiC$ composite protective films using a drop tube furnace for thermal shock test.

W/TiN 금속 게이트 MOS 소자의 물리.전기적 특성 분석

  • 윤선필;노관종;노용한
    • Proceedings of the Korean Vacuum Society Conference
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    • 2000.02a
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    • pp.123-123
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    • 2000
  • 선폭이 초미세화됨에 따라 게이트 전극에서의 공핍 현상 및 불순물 확산의 물제를 갖는 poly-Si 게이트를 대체할 전극 물질로 텅스텐(W)이 많이 연구되어 왔다. 반도체 소자의 배선물질로 일찍부터 사용되어온 텅스텐은 내화성 금속의 일종으로 용융점이 높고, 저항이 낮다. 그러나, 일반적으로 사용되고 있는 CVD에 의한 텅스텐의 증착은 반응가스(WF6)로부터 오는 불소(F)의 게이트 산화막내로의 확산으로 인해 MOS 소자가 크게 열화될수 있다. 본 연구에서는 W/TiN 이중 게이트 전극 구조를 갖는 MOS 캐패시터를 제작하여 전기적 특성을 살펴보았다. P-Type (100) Si위에 RTP를 이용, 85$0^{\circ}C$에서 110 의 열산화막을 성장 및 POA를 수행한 후, 반응성 스퍼터링법에 의해 상온, 6mTorr, N2/Ar=1/6 sccm, 100W 조건에서 TiN 박막을 150, 300, 500 의 3그룹으로 증착하였다. 그 위에 LPCVD 방법으로 35$0^{\circ}C$, 0.7Torr, WF6/SiH4/H2=5/5~10/500sccm 조건에서 2000~3000 의 텅스텐을 증착하였다. Photolithography 공정 및 습식 에칭을 통해 200$\mu\textrm{m}$$\times$200$\mu\textrm{m}$ 크기의 W/TiN 복층 게이트 MOSC를 제작하였다. W/TiN 복측 게이트 소자와 비교분석하기 위해 같은 조건의 산화막을 이용한 알루미늄(Al) 게이트, 텅스텐 게이트 MOSC를 제작하였다. 35$0^{\circ}C$에서 증착된 텅스텐 박막은 10~11$\Omega$/ 의 면저항을 가졌고 미소한 W(110) peak값을 나타내는 것으로 보아 비정질 상태에 가까웠다. TiN 박막의 경우 120~130$\Omega$/ 의 면저항을 가졌고 TiN (200)의 peak 값이 크게 나타난 반면, TiN(111) peak가 미소하게 나타났다. TiN 박막의 두께와 WF/SiH4의 가스비를 변화시켜가며 제작된 MOS 캐패시터를 HF 및 QS C-V, I-V 그리고 FNT를 통한 전자주입 방법을 이용하여 TiN 박막의 불소에 대한 확산 방지막 역할을 살펴 보았다. W/TiN 게이트 MOS 소자는 모두 순수 텅스텐 게이트보다 우수하였고, Al 게이트와 유사한 전기적 특성을 보여주었다. W/TiN 게이트 MOS 소자는 모두 순수 텅스텐 게이트보다 우수하였고, Al 게이트와 유사한 전기적 특성을 보여주었다. TiN 박막이 300 , 500 이고 WF6/SiH4의 가스비가 5:10인 경우 소자 특성이 우수하였으나, 5:5의 경우에는 FNT 전자주입 특성이 열화되기 시작하였다. 그리고, TiN박막의 두께가 150 으로 얇아질 경우에는 WF6/SiH4의 가스비가 5:10인 경우에서도 소자 특성이 열화되기 시작하였다. W/TiN 복층 게이트 MOS 캐패시터를 제작하여 전기적인 특성 분석결과, 순수 텅스텐 게이트 소자의 큰 저전계 누설 전류 특성을 해결할 수 있었으며, 불소확산에 영향을 주는 조건이 WF6/SiH4의 가스비에 크게 의존됨을 알 수 있었다. TiN 박막의 증착 공정이 최적화 될 경우, 0.1$\mu\textrm{m}$이하의 초미세소자용 게이트 전극으로서 텅스텐의 사용이 가능할 것으로 보여진다.

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Study on the Ship Fire Analysis According to Explosion Hazard (폭발의 위험성에 의한 선박화재의 사고사례 분석)

  • You, Jisun;Chung, Yeong-Jin
    • Fire Science and Engineering
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    • v.29 no.1
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    • pp.80-86
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    • 2015
  • This study analyzed recent cases of ship fires explosions and investigated their problems and coping plans. Through analysis on the statistical figures, it was found that our nation's situations of maritime accidents by kind during the period of 2009~2013 showed the ratios of ship accidents caused by fires explosions was the highest in 2012 with 7.58% (55 cases) followed by year 2009 with 3.39% (34 cases), year 2010 with 3.39% (25 cases), year 2011 with 6.03% (57 cases) and year 2013 with 6.74% (43 cases), which indicates a steady increase in the number of ship accidents. Majority of reasons for ship fires explosions were lack of safety awareness. Since those accidents happen on the sea, fires, once they happen, tend to get serious due to absence of on board & nearby fire extinguishing facilities, public fire service's uneasy access to them and great influences of natural factors such as wind and etc. Ship fires explosions are special cases unlike what happens to general edifices. So, their coping plans should focus on preventive measures since the damages those cases bring about can be detrimental. For this reason, it's necessary to research precise evacuation plans, develop ship structure & materials reinforcing fire resistance to secure more time for evacuation and enhance people's safety awareness by implementing thorough safety training.

Hydrophobic property of surface glaze of ceramic tiles by copper powder addition (구리 분말 첨가를 통한 도자타일 표면유약의 소수화 특성)

  • Choi, Cheong-Soo;Han, Kyu-Sung;Hwang, Kwang-Taek;Kim, Jin-Ho
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.29 no.5
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    • pp.215-221
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    • 2019
  • Ceramic tiles, which are widely used as interior and exterior materials for construction, have recently been required to have pollution prevention function. In order to remove contaminants, many researches of ceramic tiles with hydrophilic surface property through $TiO_2$ coating and hydrophobic surface property by improving the flow of water droplets have been proceeded. Expecially, it is very important to develop a surface glaze having hydrophobicity through a sintering process above $1000^{\circ}C$ without an additional coating process and the degradation of mechanical properties. In this study, surface glaze with copper powder was applied to manufacture of ceramic tile. Contact angle of ceramic tile according to thickness of surface glaze layer was investigated after the conventional sintering process. The contact angle of the ceramic tile surface without the copper powder was shown to be $25.3^{\circ}$, which is close to hydrophilic surface. However, the contact angle was increased up to $109.8^{\circ}$ when the thickness of surface glaze with the copper powder was $150{\mu}m$. The excellent hydrophobic property of the surface glaze with copper powder was resulted from the cellular structure of copper particles on the glaze surface. In addition, the mechanical properties of the developed hydrophobic ceramic tiles such as bending strength, chemical resistance, abrasion resistance, and frost resistance were well maintained and meet the criteria of 'KS L 1001 Ceramic tile'.

Surface characteristics for thermal diffusion of FA-BFS-based geopolymer ceramics added alumina aggregate (알루미나 골재를 첨가한 FA-BFS계 지오폴리머 세라믹스의 열확산에 대한 표면 특성)

  • Kim, Jin-Ho;Park, Hyun;Kim, Kyung-Nam
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.29 no.2
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    • pp.61-70
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    • 2019
  • Geopolymer is an eco-friendly construction material that has various advantages such as reduced $CO_2$ emission, fire resistance and low thermal conductivity compared to cement. However, it has not been many studies on the thermal behavior of the surface of the geopolymer panel when flame is applied to the surface. In this study, surface characteristics of hardened geopolymer on flame exposure was investigated to observe its characteristics as heat-resistant architectural materials. External structure changes and crack due to the heat shock were not observed during the exposure on flame. According to the residue of calcite and halo pattern of aluminosilicate gel, decarboxylation and dehydration were extremely limited to the surface and, therefore, it is thought that durability of hardened geopolymer was sustained. Gehlenite and calcium silicate portion was inversely proportional to quartz and calcite and significantly directly proportional to BFS replacement ratio. Microstructure changes due to the thermal shock caused decarboxylation and dehydration of crystallization and it was developed the pore and new crystalline phase like calcium silicate and gehlenite. It is thought that those crystalline phase worked as a densification and strengthening mechanism on geopolymer panel surface.

A Study on the Applicability of Acrylic Water Leak Repair Materials used to Repair Cracks in Conduits and Underground Structures (관거 및 지하구조물 균열 보수에 사용되는 아크릴 누수 보수재의 적용성에 대한 연구)

  • Eunmi Lee;Kyungik Gil
    • Journal of Wetlands Research
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    • v.26 no.2
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    • pp.139-146
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    • 2024
  • Various injection materials, such as asphalt-based injection materials, urethane-based injection materials, cement- based injection materials, and acrylic-based injection materials, are used for the repair of aged conduits and underground structures with cracks. In this study, research was conducted on an environmentally friendly acrylic- based leak repair material that exhibits good curing properties even in humid conditions and stability in temperature fluctuations. To compare the performance of the improved acrylic leak repair material with the existing acrylate injection material, experiments were conducted using KS standard methods, including underwater length change rate tests, underwater leakage resistance tests, and chemical performance tests. The comparative experiments revealed that the improved acrylic leak repair material showed no changes in shrinkage due to humidity, temperature variations, or chemical reactions compared to the existing acrylate injection material. In the underwater resistance test, the improved acrylic leak repair material did not show any leakage. Additionally, to assess the environmental impact of the improved acrylic leak repair material, acute fish toxicity tests and acute oral toxicity tests were conducted, and the results showed no mortality and no specific concerns with the test specimens. The experimental results led to the conclusion that the improved acrylic leak repair material is considered to be superior in performance, environmentally safe, and harmless to the human body. Based on various experimental results, it is inferred that the improved acrylic leak repair material is suitable for use as a repair material for cracks in manholes and underground structures compared to the existing acrylate repair material. This study aims to propose valuable data for future technological development by evaluating the applicability of acrylic leak repair materials.

Effect of Hydration on Swelling Properties and Shear Strength Behavior of MgO-sand Mixture (수화 반응에 따른 MgO-모래 혼합물의 팽창 특성 및 전단 거동 변화)

  • Lee, Jihwan;Yoon, Boyoung;Choo, Hyunwook;Lee, Woojin;Lee, Changho
    • Journal of the Korean Geotechnical Society
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    • v.36 no.11
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    • pp.97-106
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    • 2020
  • Swelling properties and shear strength behavior of MgO-Sand mixtures with hydration procese of MgO are compared according to different MgO contents (WMgO/WTotal=0, 30, 50, 70, 100%) in this study. The specimens are prepared by mixing with crushed MgO refractory bricks and silica sand. After hydration, the particle size and the specific gravity of MgO were decreases. Through microstructure observation and X-ray diffraction analysis, it is confirmed that MgO changes from the cubic structure of Periclase to the hexagonal cubic structure of Brucite after hydration. As the MgO content increases, both swelling rate and swelling pressure of the mixtures increase. WMgO/WTotal=30% specimen shows relatively low swelling pressure and swelling rate because produced Mg(OH)2 mainly fills the pores between sand particles. However, in the case of MgO more than 50%, swelling pressure and swelling rate increase significantly because Mg(OH)2 fills the pores of sand particles at first and then either pushes out sand particles or Mg(OH)2 particles after filling the pores. As a result of the direct shear test, before hydration, the mixtures show a dilative behavior on high MgO contents and a contractive behavior on low MgO contents. However, after hydration, the behavior of all mixtures changes to contractive behavior. The threshold fraction of fine (i.e., Mg(OH)2) contents of the hydrated MgO-Sand mixtures reveals approximately 60% compared with normalized shear strength.