• Title/Summary/Keyword: 우레탄폼

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A Study on the Urethane Foam Material Characteristics and Appropriate Soil Covering for Mine Reclamation Emergency Action through Atificial Fire Test (인공 화재 실험을 통한 광해방지 응급조치용 우레탄 폼 재료 특성 및 적정 복토에 관한 연구)

  • Kim, Soo Lo;Park, Jay Hyun;Lee, Jin Soo;Yang, In Jae
    • Economic and Environmental Geology
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    • v.53 no.3
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    • pp.287-296
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    • 2020
  • Mine Reclamation Project is being carried out with the aim of ensuring a sustainable green living and helping to develop eco-friendly mines by analyzing, removing and preventing the harmful factors. Mines developed during the japanese colonial period and mining boom period are still not repaired throughout the country, and from these scattered risks, public safety is worth pursuing as a top priority. The project that is close to public safety in the mine recalmation project is an emergency treatment, and the most widely used method is a filling method similar to the ground subsidence prevention. If dangerous mine cavity or tunnels are located in the mountains, charging with existing materials may not be possible, or unreasonable cases may occur, and new methods of technological development are required. Emergency actions should be carried out safely and efficiently to prevent the loss of precious people's lives on the hiking paths adjacent to dangerous mining sites. In these field conditions, urethane foam materials may be an alternative. In this study, the applicability of urethane foam materials in mining was reviewed through overseas cases. It was also tested on the appropriate depth of top soil for the protection of urethane foam materials through forest fire simulation test. The test result show that approximately 15cm of soil covering (recommended 20cm over) was suitable for maintaining the function of foam materials from forest fires.

The Combustion Gas Hazard Assessment of Main Building Materials (주요 건축 재료별 연소가스 유해성 평가)

  • Kim, Jong-Buk;Lee, Si-Young
    • Journal of the Korean Wood Science and Technology
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    • v.44 no.5
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    • pp.639-654
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    • 2016
  • This study building materials by relates to human hazard assessment in accordance with the combustion gas SEM, the flame-retardant foam FTIR and cone calorimeter to configure the Forest products of MDF and preservative treated Lauan two kinds of Retardant styrofoam, Styrofoam, Urethane foam and gypsum board four kinds of plastics material by the combustion gas were each analyzed. MDF was burned to the structure of the wood and the glue evenly mixed combustion area preservative treated Lauan, kept constant even in the form of high heat to penetrate deep into the wood flame retardant agents. Retardant styrofoam is due to feed my Dropped dissolved inorganic flame retardant without the fire-stick and confirmed that the weak form of gypsum board, but keep the column. In MDF ammonia ($NH_3$), lethal concentration (750 ppm) compared to 795 ppm, preservative treated Lauan is carbon dioxide ($CO_2$) that was greater than 2.5 times the lethal concentration (100,000 ppm) to 256,965 ppm, the lethal concentration (500 ppm) of hydrogen chloride (HCl). The Urethane greater than 697 ppm, 434 ppm also greatly exceeding the nitrogen dioxide ($NO_2$) lethal concentration (250 ppm) in Retardant styrofoam and 398 ppm was released. It is confirmed that the human body is extremely harmful gas emitted from most of the materials to be utilized as basic data for evaluating the hazard-specific human future building material.

Improvement of Flame-Retardant Performance of Polyurethane Foam Coated with Water Glass (물유리코팅에 따른 폴리우레탄 폼의 난연성능 개선에 대한 연구)

  • Kim, Hyeong-Jun;Park, Jewon;Na, Hyein;Lim, Hyung Mi;Chang, Gabin
    • Fire Science and Engineering
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    • v.34 no.2
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    • pp.7-13
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    • 2020
  • In this study, water glass was applied as a coating material to a rigid polyurethane foam to improve the flame-retardant properties of the foam. The heat release rate of the cone calorimeter of the urethane foam, in which the inorganic water-glass coating layer was applied, decreased rapidly. The water glass coated on the polyurethane surface formed a glassy foam by foaming with water, which did not escape during the vitrification reaction when the foam or glass was heated. The glassy foam formed on the polyurethane foam became a fire-resistant insulation layer that inhibited the combustion of the polyurethane foam for more than 10 min. Water glass was found to improve the flame-retardant properties of the rigid polyurethane foam.

Study on the characteristics of perlite insulation for the storage tank in LNG carrier (LNG선박 화물창의 펄라이트 단열재 적용성에 관한 설계 특성 연구)

  • Yun, Sangkook
    • Journal of Advanced Marine Engineering and Technology
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    • v.37 no.8
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    • pp.843-848
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    • 2013
  • As the LNG demands are growing, the constructions of LNG FPSO (Floating Production Storage and Off-loading) and LNG carriers have been constantly increased, and the various design of storage tank has been tried. This paper propose that the material of inner storage tanks is made of 5~9% Ni steel plate and perlite powder insulation instead of urethane foam block. It needs essentially to obtain the proper design specifications that are the pressure of perlite, the characteristics of resilient blanket as the pressure absorber, optimum thickness of blanket and design pressure of tank wall, etc. to enable the perlite insulation system to LNG carrier, The results show that the design thickness of blanket should be between 1/4 to 1/3 of insulation width and the optimum rate becomes 30%, and the design pressure be applied below 1,500 Pa with blanket thickness.

An Experimental Study on the Fire Risk at Welding·Cutting Process (용접·절단 작업시 화재위험성에 관한 실험적 연구)

  • Lee, Sung-Ryong
    • Fire Science and Engineering
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    • v.26 no.3
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    • pp.60-66
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    • 2012
  • In this study, it was evaluated the fire risk during welding cutting tasks. Welding-cutting machines are representatively used at construction sites. Inverter AC/DC TIG welding macnine and inverter air plasma cutting machine were used in experiments. Temperature of spreaded cinders was measured using a thermal camera. Cinder sizes and spread range were measured according to the height and input current. It was also evaluated the fire risk during welding-cutting process, when flammable materials were located around the working area. There were used hay, dust fence, urethane foam, vinyl, paper and oil as flammable materials. Temperature of spreaded cinders was reached at about $450^{\circ}C$. Cinders were spread approximately 4.7 m, when a worker carried out cutting process at 2.5 m height. The possibility of a fire is very high, when flammable materials were located around the working area.

Physical Properties of Light Weight Foamed Glass Using Waste Glass Powder and Fly Ash (폐유리분말과 플라이애시를 사용한 경량 발포소재의 물리적 특성)

  • Song, Hun;Shin, Hyeon-Uk
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.3 no.4
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    • pp.328-334
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    • 2015
  • Building insulation materials use for the purpose of energy saving. Insulation materials can be classified inorganic and organic insulation materials. Inorganic insulation is used for fire resistive performance parts and organic insulation is used for thermal performance parts. Meanwhile, organic insulation is due to toxic gas emission in fire. Inorganic insulation is too heavy and low thermal performance than organic materials. This study is focused on evaluation of the physical properties of inorganic foam material using industrial by-products such as waste glass powder and fly ash. From the test result, inorganic foam materials for the applicability of fire-resistance and insulation light-weight materials.

Development of Urethane Foams for Planting Media from Woodwastes (목질폐재를 이용한 식물식재용 우레탄폼의 개발)

  • Cho, Nam-Seok;Seo, Won-Sung;Han, Gyu-Seong
    • Journal of the Korean Wood Science and Technology
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    • v.26 no.4
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    • pp.43-49
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    • 1998
  • The availability of large quantities of waste woods provides an impetus for investigating woody biomass potential uses. Polyurethane (PU) foams are prepared with reacting isocyanates and polyols, and are used. in various industry fields. Thus, lignocellulosic waste raw-materials are proposed as replacement for synthetic polyol to PU foam formulation. In this study PU foams were manufactured from liquefied woods, methanediisocyanate(MDI), catalyst, foaming stabilizer, and viscosity aids. The polyol content, isocyanate.hydroxyl group (NCO/OH) ratio, and water content were varied to evaluate their effects on the foaming and water absorption of the PU foams. Less than 400 Molecular weight. of polyethylene glycol(PEG) and 1 to 3 solvent to woody raw-material ratio were desirable for liquefying woody materials. Liquefying rate was increased with more than 3 % addition of inorganic and organic catalysts and raising reaction temperature more than $150^{\circ}C$. Addition of starch enhanced liquefying of woody materials. Fourty percents of starch resulted in about 90% liquefying rates. Foaming rates were increased with increasing moisture contents of liquefied wood. Moisture contents of 0.6% resulted in 5 time-foaming rates, and seven percents of moisture contents more than 30 time-foaming rates. But, an increase in water content may result in a decrease in cross-links between wood polyol and isocyanate, because the NCO/OH ratio is constant. Increasing moisture contents have significantly decreased density of PU foams. The optimum water content should be about 2.5% or less in this adopted condition.

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Analysis of the Working Conditions of Fire Protection Systems in the Goyang Bus Terminal Building Fire (고양종합터미널화재 시 소방시설의 작동실태 분석)

  • Lee, Eui-Pyeong
    • Fire Science and Engineering
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    • v.32 no.3
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    • pp.95-107
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    • 2018
  • This study analyzed the working conditions of the fire protection system in the Goyang Bus Terminal fire based on the fire investigation results. The results were as follows. First, extinguishing using an indoor fire hydrant was not attempted immediately after the fire burned the ceiling urethane foam. Second, a sprinkler alarm valve was turn off and did not work in the repair work space of the 1st basement. On the other hand, the sprinklers in the $2^{nd}$ basement, $1^{st}$ floor, $2^{nd}$ floor, and $3^{rd}$ floor worked and prevented the fire from moving to stories other than the $1^{st}$ basement. Third, although an exit light worked normally, it was not installed in the exit from the waiting room in the $2^{nd}$ floor to the bus stop. This resulted in many casualties. Fourth, although a fire receiver sent an electrical signal to the fan controller of the smoke control system, it was treated manually in the fan controller and the fan in the $2^{nd}$ floor did not work.

Establishment of Design Standard and Analysis of Insulation Property for Underground Space in Architecture (건축물의 지하공간을 위한 단열재의 특성 분석 및 설계 기준 수립)

  • Hwang, Min-Kyu;Cho, Woo-Jin;Kim, Kang-Soo
    • KIEAE Journal
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    • v.13 no.2
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    • pp.107-112
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    • 2013
  • The purpose of this study is to analyze an insulation property and to establish a design standard for the underground space in architecture. Insulation materials for this study are 12 kinds of Insulation which qualified KS standards(3 classes of EPS type 1, 3 classes of EPS type 2(Neopor), 3 classes of XPS and 3 classes of PU Boards). For insulation materials of underground space, insulating and water tightening property are desired. So conductivity for insulating and water absorption for water tightening are measured in this study. Temperature, insulation is exposed to in the underground space, is different from temperature above the ground. Conductivity is measured in a temperature of $17^{\circ}C$, $20^{\circ}C$, $23^{\circ}C$ and $26^{\circ}C$. In KS standards, water absorption are measure after 24 hours, but insulation is exposed to water for a long time in the underground. So after 110 days, water absorption are measured. As time goes by, increasing of water absorption means decreasing of water tightening and insulating. So after water absorption had measured for 110 days, conductivity has measured again. As a result, XPS is selected as optimized insulation for underground. And Conductivity of XPS insulation with water should be added by 20%.

The Study on Brilliant Performance Appraisal of The EPS Sandwhich Pannel Leads an Actual Fire Test (실물화재 실험을 통한 난연 EPS샌드위치패널의 난연성능 평가)

  • Choi, Ki-Young;Kim, Byeong-Sun;Oh, Jae-Hoon;Park, Seon-Yeong;Park, Hyo-Seok;Moon, Jong-Wook
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2011.11a
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    • pp.57-60
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    • 2011
  • EPS패널의 열방출율과 가스유해성에 대한 연구는 꾸준히 진행되어왔다. 그러나 그 동안의 시험 결과는 KSF ISO 5660-1(콘칼로리미터) 시험규정에 의한 소형시편을 이용한 것으로 난연제의 과다투입 또는 심재의 변형이 쉬워 결과를 신뢰하기 힘들고 실제 생산되는 크기의 샌드위치패널의 난연성능을 판단하기 힘들다. 따라서, 보다 정확한 실물화재시험의 필요성이 요구되고 있다. 난연 EPS샌드위치패널과 일반EPS샌드위치패널의 실물화재 실험결과 난연EPS샌드위치패널은 기타재료의 샌드위치패널과 열방출율, 연기발생율, 부분별 온도분포, 플래시오버등과 같은 난연성능이 EPS샌드위치패널과 우레탄폼패널보다 우수하며, 글라스울과 비슷한 성능을 나태내는 것을 확인 할 수 있다. 그래서 시공성, 경제성 등의 EPS샌드위치패널의 장점을 그대로 유지하며 난연제의 코팅법을 통해 우수한 난연성능을 확보하였다.

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