친환경 소재를 이용한 오일이 침지된 스테인리스강 나노 다공성 양극 산화 피막의 다기능성
- Alternative Title
- Multifunctionalities of Oil-Impregnated Nanoporous Anodic Oxide of Stainless Steel Using Eco-Friendly Materials
- Abstract
- Water – repellency surface indicates exceptional properties, such as Self-cleaning, Anti-corrosion, Anti-biofouling, De-icing, Anti-icing thus This surfaces are used for various industries fields. Especially, Oil - infused porous surface(SLIPS : Slippery Liquid Infused Porous Surface) has not only durability also superior hydrophobic property about contaminants besides water. However, The fluorocarbons and perfluorinated oils used for SLIPS can cause physical, environmental issues. In order to solve these problems, we need eco-friendly and safe lubricants that can alternate perfluorinated oils. In this study, we fabricated SLIPS by using Edible oil as a lubricant impregnated nanoporous surface of stainless steel which is used for various industries fields nowadays. As a result of research, Edible oil impregnated nanoporous surface of stainless steel indicates exceptional water-repellency property. Also, Edible oil infused nanoporous surface shows self-cleaning that contaminants is readily fell off, De-icing, Anti-biofouling, Condensation Heat Transfer and Anti-corrosion.
- Author(s)
- 강민주
- Issued Date
- 2021
- Awarded Date
- 2021. 2
- Type
- Dissertation
- Publisher
- 부경대학교
- URI
- https://repository.pknu.ac.kr:8443/handle/2021.oak/2397
http://pknu.dcollection.net/common/orgView/200000368674
- Alternative Author(s)
- Minju Kang
- Affiliation
- 부경대학교 대학원
- Department
- 대학원 금속공학과
- Advisor
- 이정훈
- Table Of Contents
- Ⅰ. 서 론 1
Ⅱ. 이론적 배경 3
2.1 스테인리스강 3
2.1.1 스테인리스강의 물리적 특징 3
2.1.2 스테인리스강의 양극 산화 처리 7
2.2 소수성 표면 9
2.2.1 소수성 처리법 9
2.2.2 Wetting Theory 12
2.3 SLIPS(Slippery Liquid Infused Porous Surface) 표면의 기능성 15
Ⅲ. 실험 방법 18
3.1 실험의 개요 18
3.2 전처리 18
3.3 양극 산화 19
3.4 소수성 처리 및 윤활유 침지 20
3.5 젖음성 21
3.6 내식성 21
3.7 제빙성 22
3.8 방오성 24
3.9 응축 열 전달 26
Ⅳ. 실험결과 및 고찰 30
4.1 스테인리스강 표면에 나노 다공성 산화 피막 형성 30
4.2 소수성 처리 34
4.3 젖음성 38
4.4 내식성 42
4.5 제빙성 46
4.6 방오성 48
4.7 응축 열 전달 52
Ⅴ. 결론 57
참고 문헌 60
- Degree
- Master
-
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- 대학원 > 금속공학과
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