• 제목/요약/키워드: Thermal insulation material

검색결과 389건 처리시간 0.031초

항공기용 블랙박스의 자료보호모듈 극한환경해석 및 시험에 관한 연구 (The Study of analysis and test for crash survival about the Crash Protected Module in Black Box used at aircraft)

  • 이석규;이병호;최지호
    • 한국항공우주학회지
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    • 제40권1호
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    • pp.61-68
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    • 2012
  • 항공기용 블랙박스의 자료보호모듈(CPM)은 항공사고와 같은 극한 환경후에도 저장된 정보(비행데이터 및 조종석음성)를 안전하게 보호하는 것을 목적으로 한다. 본 연구에서는 CPM에 대하여 관통저항력과 고온 및 저온내화의 극한환경시험에 대한 구조 및 방열측면의 해석 및 시험을 통한 검증에 대하여 기술하였다. 특히 관통저항력해석에서는 하우징의 두께에 따른 영향성을 LS-DYNA를 이용하여 검토하였으며, 고온 및 저온내화해석에서는 상변화물질과 단열재의 체적비에 따른 영향성을 Icepak을 이용하여 수행하였다. 또한 실험을 통하여 CPM의 구조 및 열적 신뢰성을 검증하였다.

C-C 복합재료와 Graphite 노즐목 내열재의 침식조직 특성에 대한 연구 (A Study on Erosion Structure Properties for Thermal Insulation Materials on Carbon-Carbon Composites and Graphite Nozzle Throat)

  • 김영인;이수용
    • 항공우주시스템공학회지
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    • 제11권5호
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    • pp.42-49
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    • 2017
  • 고체추진 로켓(SRM)은 모터케이스, 점화기, 추진제, 노즐, 절연체, 제어 및 구동장치 등으로 구성되어 있으며 액체로켓과 다르게 노즐을 냉각시킬 수 없어 고온 및 고속의 연소가스에 의해 침식(Erosion)이 발생한다. 이러한 침식현상은 노즐목의 형상 변화를 일으키며 로켓의 추력 성능을 감소시킨다. 로켓 노즐의 재질은 침식현상을 최소화하고 열을 차단시키는 효과가 있어야 하며 용융 상태에서 소실되지 않고 전단력이나 압력에 견딜 수 있어야 한다. 본 연구는 실험을 통하여 고체로켓 노즐의 재질에 대하여 연소시간별 침식특성을 파악한다. 그리고 Graphite와 C-C 복합재료의 각 재질별 조직검사를 통하여 침식 후의 미세특징을 비교 분석하여 침식특성을 규명한다.

건축용 합성 단열재의 연소특성에 관한 연구 (A Study on the Combustion Characteristics of Synthetic Insulation for Building)

  • 권현석;이시영;김종북;윤명오
    • 한국화재소방학회논문지
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    • 제32권2호
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    • pp.30-37
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    • 2018
  • 본 연구는 주택이나 창고 등의 건축용 합성 단열재의 연소특성을 분석한 것으로 콘칼로리미터 및 SEM을 활용해 난연 스티로폼, 일반 스티로폼, 우레탄, 석고보드 등 4종의 재료별 연소특성을 실험 및 분석하였다. 시험결과 각 재료별 착화특성으로는 상기 단열재에 대한 착화시간(TTI)은 27 s~43 s로 나타났으며, 이중 난연 스티로폼은 TTI이 가장 낮은 27 s에 착화되었다가 28 s에 소멸됨을 보였다. 또한 각 재료들의 최대열방출율(peak HRR)과 평균열방출율(mean HRR)의 크기는 우레탄>석고보드>난연 스티로폼>일반 스티로폼으로 나타났으며, 총열방출량(Total Heat Release Rate, THR)은 우레탄>난연 스티로폼>일반 스티로폼>석고보드 순으로 나타났다. 또한 총연기방출량(Total smoke release, $m^2/m^2$)은 난연 스티로폼에서 가장 많은 $30.798m^2/m^2$을 보였다. 일반 스티로폼의 CO 방출농도는 0.275 kg/kg, $CO_2$ 방출농도는 12.807 kg/kg값이 나타났다. 잔유물은 위 4가지 재료 중 석고보드에서 가장 많은 0.029 g을 보였다.

초미세 발포 공법 시 가스 혼합에 따른 셀 형상 연구 (The Study for Cell Morphology with Gas Cocktail in Microcellular Foaming Process)

  • 차성운;윤재동;이윤성;김학빈
    • 한국정밀공학회지
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    • 제22권6호
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    • pp.168-174
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    • 2005
  • Nowadays, the companies use polymer materials for many purposes fur they have many advantages. The costs of these materials take up too high a proportion of the overall cost of products that use these materials as their major material. It is advantage for polymer industries to reduce these costs. The microcellular foaming process was developed in the early 1980s to solve this problem and proved to be quite successful. Microcellular foaming process uses inert gases such as $CO_2,\;N_2$. As these gases solve into polymer matrices, many properties are changed. The microcellular foaming process makes the glass transition temperature of polymers to low, and diminish the residual stress of polymer matrices. Besides, the microcellular foaming process has several merits, impact strength elevation, thermal insulation, noise insulation, and raw material saving etc. In previous research, many facts of microcellular foaming process are founded its characteristics. But previous researcher found the characteristics of microcellular foaming process with pure gas, for example $CO_2,\;N_2$ and so on, they did not found the characteristics of microcellular foaming process with one more gases. If one more gases inlet the resin, the characteristics of microcellular foaming process is changed very amazingly. In this paper, discuss on the characteristics of microcellular foaming process wi th gas cocktail about cell morphology.

수관 피복이 노지재배 '부지화' 감귤나무의 보온과 내한성에 미치는 영향 (Effect of Canopy Covering on Thermal Insulation and Freezing Tolerence of 'Shiranui' Hybrid Mandarin Cultivated in Field During Winter Season)

  • 좌재호;강석범;문영일;이혜진
    • 생물환경조절학회지
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    • 제30권4호
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    • pp.441-447
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    • 2021
  • 노지재배 '부지화' 나무의 동해를 경감시키기 위해 피복재로 타이벡, 위드스톱, 35% 차광망을 사용하여 피복재 내, 외부 온도와 상대습도 변화를 평가하였다. 한파 시 피복에 따른 보온 정도와 잎의 LT50을 조사하였다. 타이벡은 1.5m에서 피복재 내부와 외부의 온도 차이는 낮았고 0.4m에서는 높았다. 상대습도는 주야간 차이가 컸으며 오전 6-8시에 높았다.-2℃일 때 24시간 타이벡 피복은 수관 1.5m에서 무처리보다 적산온도가 3.4℃ 높았다. 잎의 LT50은 타이벡 1.51℃, 위드스톱 1.33℃, 35% 차광망은 1.61℃로 무처리보다 낮았다. 타이벡의 수관 내 보온효과와 상대습도를 고려할 때 환기를 위한 미세한 천공 후 '부지화' 나무에 피복시 동해 발생을 줄일 수 있을 것으로 보인다.

방화문 내부 심재로 적용하기 위한 경량기포콘크리트의 물리적 성능 검토 (A Review of the Physical Performance of Lightweight Aerated Concrete for Use as an Interior Core Material in Fire Doors )

  • 홍상훈;김봉주;정의인;김해나;박준서
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.111-112
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    • 2023
  • With the development of cities, the density of the population is continuously increasing as buildings become larger and more high-rise, but since the Haeundae residential complex fire in Busan in 2010, there has been a growing need to meet the fire protection performance of buildings as large-scale fires continue to occur every year. On the other hand, fire doors, which are one of the fire protection performance of buildings, have been judged unqualified in 82% of cases when fire doors constructed on the actual site were inspected after completion. The reason for this is that paper honeycomb and glasswool, which are used as core materials for fire doors, absorb moisture, reducing thermal insulation performance, and sagging due to increased weight, leading to performance degradation due to warping in empty spaces. To overcome these problems, research is underway to apply lightweight aerated concrete, an inorganic material, as a core material. Therefore, in order to select a blowing agent that produces stable bubbles prior to the production of lightweight bubble concrete for application as a fire door inner core, this study examined the physical performance according to the type of blowing agent and dilution concentration, and the following conclusions were drawn. Compared to vegetable bubbles and independent bubbles, synthetic bubbles have 3~8% higher thermal conductivity than independent bubbles, but 3~6% lower slurry density than vegetable bubbles, and 2~13% higher compressive strength, which is thought to be an improvement of synthetic bubbles.

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ZrO2가 코디어라이트-뮬라이트 세라믹스의 기계적 강도 및 내열충격성에 미치는 영향 (Effects of ZrO2 Addition on Mechanical Strength and Thermal Shock Resistance of Cordierite-Mullite Ceramics)

  • 임진현;김시연;여동훈;신효순;정대용
    • 한국재료학회지
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    • 제28권12호
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    • pp.719-724
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    • 2018
  • Cordierite composed of an alumina-silica-magnesia compound has a low coefficient of thermal expansion(CTE) and excellent thermal shock resistance. It also has a low dielectric constant and high electrical insulation. However, due to low mechanical strength, it is limited for use in a ceramic heater. In this study, $ZrO_2$ is added to an 80 wt% cordierite-20 wt% mullite composition, and the effect of $ZrO_2$ addition on the mechanical strength and thermal shock resistance is investigated. With an increasing addition of $ZrO_2$, cordierite-mullite formed $ZrO_2$, $ZrSiO_4$ and spinel phases. With sintering conducted at $1400^{\circ}C$ with the addition of 5 wt% $ZrO_2$ to 80 wt% cordierite-20 wt% mullite, the most dense microstructure forms along with an excellent mechanical strength with a 3-point flexural strength of 238MPa. When this composition is quenched in water at ${\Delta}T=400^{\circ}C$, the 3-point flexural strength is maintained. Moreover, when this composition is cooled from $800^{\circ}C$ to air, the 3-point flexural strength is maintained even after 100 cycles. In addition, the CTE is measured as $3.00{\times}10^{-6}{\cdot}K^{-1}$ at $1000^{\circ}C$. Therefore, 80 wt% cordierite-20 wt% mullite with 5 wt% $ZrO_2$ is considered to be appropriate as material for a ceramic heater.

한지 소재 내장재의 친환경적 요소 분석 연구 (Study on the Environmental Factor Analysis of Interior Material using Hanji)

  • 김지수;이유라;임현아
    • 한국가구학회지
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    • 제22권1호
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    • pp.63-71
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    • 2011
  • Hanji has known for its high qualities for more than thousand years. Hanji is stronger, and has better durability, air permeability, flexibility, thermal insulation, soundproofs and UV absorbability. Therefore, developing industrial interior finishing materials using Hanji is replaced with the PVC (Poly-Vinyl Chloride) materials instead, it will be a new environment-friendly material and positively represents Korean brand marketing. The industrial inter-construction material is discomposed by heat or light because of material characteristics. As a result, it emits a lot of noxious substances. Hanji is essentially a neutral paper since it does not rely on any acidic chemicals of artificial bleaching methods. Hanji is also known as the living paper because of its close relation to nature. Therefore, I would like to suggest that Hanji made from alternative material as a chicken fiber. It will be a non-polluting interior finishing materials by making use of Hanji to a taste of Korean culture in the green industry around the world. Rather than PVC used commonly in construction material, kitchen and office furniture, interior materials in the subway, trains, or other vessels, credit cards, and ID cards, I created an interior construction material by using patented Hanji. This will be increased the value of usefulness in the environment-friendly green industry instead of PVC.

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Sheath Heater 모듈 실링용 B2O3-ZnO-Bi2O3계 유리소재 및 첨가제에 따른 물성 변화 (Effect of an Additive on the Physical and Electrical Properties of the B2O3-ZnO-Bi2O3 Glass System for a Sheath Heater Module)

  • 최진삼;신동우;배원태
    • 한국세라믹학회지
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    • 제50권1호
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    • pp.57-62
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    • 2013
  • We investigated the thermal and electrical properties of the $B_2O_3-ZnO-Bi_2O_3$ glass system as a sealing material in sheath heater modules. A composition with over 90 wt% $Bi_2O_3$ in the $B_2O_3-ZnO-Bi_2O_3$ system was glassified by controlling the cooling rate. The glass transition temperature and thermal expansion coefficient in bismate glass could be controlled by the minor ingredients of ZnO, $SiO_2$, $BaO_2$, and $K_2O$. The $B_2O_3-ZnO-Bi_2O_3$ glass system bonded well to metal, and bismate glass insulating properties were comparable to those of bismate glass $B_2O_3-ZnO-PbO$ glass system in a sheath heater module.

A Study on the properties of aluminum nitride films on the Al7075 deposited by pulsed DC reactive magnetron sputtering

  • Kim, Jung-hyo;Cha, Byung-Chul;Lee, Keun-Hak;Park, Won-Wook
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2012년도 추계총회 및 학술대회 논문집
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    • pp.179-180
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    • 2012
  • Aluminum alloys are widely known as non-ferrous metal with light weight and high strength. Consequently, these materials take center stage in the aircraft and automobile industry. The Al7075 aluminum alloy is based on the Al-Zn-Mg-Cu and one of the strongest wrought aluminum alloys. Aluminum nitride has ten times higher thermal conductivity($319W/m{\cdot}K$) than Al2O3 and also has outstanding electric insulation($1{\times}1014{\Omega}{\cdot}cm$). Furthermore, it has high mechanical property (430 MPa) even though its co-efficient of thermal expansion is less than alumina For these reasons, it has great possibilities to be used for not only the field which needs high strength lightweight but also electronic material field because of its suitability to be applied to the insulator film of PCB or wafer of ceramic with high heat conduction. This paper investigates the mechanical properties and corrosion behavior of aluminum alloy Al7075 deposited with aluminum nitride thin films To improve the surface properties of Al7075 with respect to hardness, and resistance to corrosion, aluminum nitride thin films have been deposited by pulsed DC reactive magnetron sputtering. The pulsed DC power provides arc-free deposition of insulating films.

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