• 제목/요약/키워드: gel coat thickness

검색결과 5건 처리시간 0.023초

FRP 어선 보수에 적용되는 겔코트의 해수 침투 방지 효과 (The Prevention Effect of Seawater Penetration of Gel Coat Applied in Repair of FRP Fishing Vessel)

  • 강대곤;박재학
    • 한국안전학회지
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    • 제33권6호
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    • pp.15-21
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    • 2018
  • Ships may collide with reefs or other objects during operation, when arriving or departing ports. The hull plate may be damaged due to the contact with other ships. The total number of domestic powered fishing vessels has decreased, but that of FRP fishing vessels has increased by 0.7% and the ratio of FRP fishing vessels to the total fishing vessels increased to 96%. Recently, fishing vessels has been used as fishing boats for income of non-fishermen as well as fishermen. Therefore, safety management for repair and maintenance is necessary. The penetration of moisture and moisture in the composite material such as FRP may deteriorate the mechanical properties and the salt (NaCl) component of the damaged portion may cause a relatively high deterioration in material strength. The gel coat painting is the final stage of repairs ans maintenance of FRP fishing vessels. The thickness criteria in the domestic and foreign gel coat is 0.3~0.762 mm. The joint specimens, which was immersed in seawater for 120 days, were compared with those without seawater immersion. As a result, the tensile strength was 83 ~ 121.8% and the flexural strength was 83 ~ 113% compared with the specimens without seawater immersion. According to the previous study the tensile strength decreased by more than 29% and the flexural strength decreased by more than 50% when the composite material was immersed in seawater for 1,083 hours without coating. As a result, it was found that the gel coat with 0.5 mm thickness is very effective in preventing the strength decrease of the composite material.

초소형 연소기를 위한 촉매 합성, 담지방법 및 담지체 (Catalyst preparations, coating methods, and supports for micro combustor)

  • 진정근;김충기;권세진
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2006년도 제33회 KOSCO SYMPOSIUM 논문집
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    • pp.235-241
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    • 2006
  • Catalytic combustion is one of the suitable methods for micro power source due to high energy density and no flame quenching. Catalyst loading in the micro structured combustion chamber is one of the most important issues in the development of micro catalytic combustors. In this research, to coat catalyst on the chamber wall, two methods were investigated. First, $Al_2O_3$ was selected as a support of Pt and $Pt/Al_2O_3$ was synthesized through the alumina sol-gel procedure. To improve the coating thickness and adhesion between catalyst and substrate, heat resistant and water solvable organic-inorganic hybrid binder was used. Porous silicon was also investigated as a catalyst support for platinum. Through the parametric studies of current density and etching time, fabrication process of $1{\sim}2{\mu}m$ of diameter and about $25{\mu}m$ depth pores was confirmed. Coated substrates were test in the micro channel combustor which was fabricated by the wet etching and machining of SUS 304. Using $Pt/Al_2O_3$ coated substrate and Pt coated porous silicon substrate, conversion rate of fuel was over 95% for $H_2$/Air premixed gas.

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초소형 연소기를 위한 촉매 합성, 담지방법 및 담지체 (Catalyst Preparations, Coating Methods, and Supports for Micro Combustor)

  • 진정근;김충기;이성호;권세진
    • 한국연소학회지
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    • 제11권2호
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    • pp.7-14
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    • 2006
  • Catalytic combustion is one of the suitable methods for micro power source due to high energy density and it can be applied to micro structured chamber without consideration of quenching since it is flameless combustion. Catalyst loading in the micro structured combustion chamber is one of the most important issues in the development of micro catalytic combustors. In this research, to coat catalyst on the chamber wall, two methods were investigated. First, $Al_2O_3$ was selected as a support of Pt and $Pt/Al_2O_3$ was synthesized through the alumina sol-gel procedure. To improve the coating thickness and adhesion between catalyst and substrate, heat resistant and water solvable organic-inorganic hybrid binder was used. Porous silicon was also investigated as a catalyst support for platinum. Through the parametric studies of current density and etching time, fabrication process of $1{\sim}2{\mu}m$ of diameter and about $25{\mu}m$ depth pores was confirmed. Coated substrates were test in the micro channel combustor which was fabricated by the wet etching and machining of SUS 304. Using $Pt/Al_2O_3$ coated substrate and Pt coated porous silicon substrate, conversion rate of fuel was over 95 % for $H_2/Air$ premixed gas.

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Urea-SCR 시스템에서의 Cu-ZSM5/알루미나 비드 촉매필터의 De-NOx 특성 (De-NOx Characteristics for Cu-ZSM5/Alumina Beads Catalyst Filter in Urea-SCR System)

  • 장영상;신영섭;이병준;박재구
    • 한국자동차공학회논문집
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    • 제16권5호
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    • pp.60-67
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    • 2008
  • The catalytic filter of Cu-ZSM5/alumina beads was considered to reduce NOx in the urea SCR system. Catalytic support of porous alumina beads with mean pore size $130{\mu}m$ and porosity $75{\sim}83%$ were prepared using foaming and gel-casting method. The Cu-ZSM5 catalysts were coated on the supporting alumina beads using $Cu(NO_3)_2$ by ion exchange method. After a washcoating process was applied to coat 10w% Cu-ZSM5 on porous alumina bead, coating layer was estimated $20{\mu}m$ in thickness. The characterization and the feasibility as a catalytic supports were investigated. And the NOx conversion test in Cu-ZSM5/Alumina Beads filter system was conducted by using Urea as reductants under laboratory test. The NOx conversion was increased as size and porosity of beads and observed more than 95% excellent NOx conversion above $300^{\circ}C$.

상입하에서의 실리카 에어로겔의 합성 및 박막코팅(I) (Synthesis of Silica Aerogel and Thin Film Coating at Ambient)

  • 양희선;최세영
    • 한국세라믹학회지
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    • 제34권2호
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    • pp.188-194
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    • 1997
  • TMCS(Trimethylchlorosilane)로 표면개질한 습윤겔을 에탄올에 재분산시켜 코팅용 재분산 실리카 졸을 제조하였고 제조된 졸을 실리콘 기판에 스핀 코팅한 후 상압 하에서 건조(8$0^{\circ}C$) 및 열처리(>25$0^{\circ}C$)하여 열처리온도에 따른 박막의 물성 변화를 관찰하였다. 습윤겔의 재분산시 안정한 재분산 실리카 졸의 제조를 위한 최적 재분산 조건을 습윤겔:에탄올=1g110$m\ell$로 하였고, 이렇게 제조된 재분산 실리카 졸의 농도와 점도는 각각 0.11 M, 2.0-2.2cP였으며 평균 졸 입자크기는 약 30nm정도였다. 1500rpm, 10회 스핀 코팅한 후 8$0^{\circ}C$에서 2시간 건조, 45$0^{\circ}C$에서 2시간 열처리에 의하여 굴절율이 약 1.14, 두께가 400nm정도인 균열이 없는 박막을 얻을 수 있었다.

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