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이온빔을 이용한 STS304와 알루미나 브레이징 접합효과
박일수(Park, Il-Su) 한국산학기술학회 2015 한국산학기술학회논문지 Vol.16 No.12
세라믹은 고온에서 뛰어난 내마모성, 내부식성을 가지기 때문에 산업적 응용에 있어서 널리 사용된다. 세라믹은 금속과 비교해서 고온에서 더 큰 강도를 가지고 있고, 더 낮은 열전도도 및 열팽창 계수를 가진다. 그러나, 세라믹이 가진 취성의 성질은 전기전자산업과 고온에서의 구조적 적용에의 넓은 적용을 제한한다. Ti 활성금속과 STS304를 IBAD 기술을 이용해서 동시에 증착시켜 STS304 스테인레스강에 AL<sub>2</sub>O₃(알루미나)의 브레이징 접합강도에 어떤 영향을 미치는지 알아보았 으며, 시험편들은 Ti 타겟과 Ti+ STS304 타겟 두 종류를 이용하여 두께를 변화시켜가며 증착하였다. 브레이징 접합을 위한 삽입금속으로는 일반적으로 사용되는 Ag-Cu 공정조성의 합금이 사용되었다. 브레이징 접합품의 강도는 Ag-Cu 삽입금속과 알루미나 사이의 반응층의 두께와 반응 생성물 조직에 의해 결정되며, 본 실험에서는 계면 반응의 메커니즘을 보다 구체화하 고 계면 반응에 의한 경사기능성의 접합계면을 더욱 향상시키는 결과를 얻고자 한다. Using a surface modification technique, ion beam assisted deposition (IBAD) of Ti thin film it becomes possible to prepare an active ceramic surface to braze AL<sub>2</sub>O₃-STS304 with conventional Ag-Cu eutectic composition filler metal. Researches on bonding formations at interfaces of ceramic joints were mainly related on the development of filler metals to ceramic, the process parameters, and clarifications of reaction products. From the results, the reactive brazing is a very convenient technique compared to the conventional Mn-Mo method. However melting point of reactive filler is still higher than that of Ag-Cu eutectic and it forms the brittle inter metallic compound. Recently several new approaches are introduced to overcome the main shortcomings of the reactive metal brazing in ceramic-metal, metal vapor vacuum arc ion source was introduced to implant the reactive element directly into the ceramics surface, and sputter deposition with sputter etching for the deposition of active material.
박일석 대한이비인후과학회 2009 대한이비인후과학회지 두경부외과학 Vol.52 No.12
While genetic alterations in head and neck cancer have long been documented, the appreciation of epigenetic changes is more recent. Epigenetics of head and neck cancer becomes an area of emerging research direction due to a growing understanding of specific epigenetic pathways and rapid development of detection technologies. Epigenetic changes alter expression of tumor suppressor genes without changes in DNA sequence. Epigenetic mechanisms such as DNA methylation, histone modification and alteration in genomic imprinting have been shown to silence key genes involved in cell proliferation, differentiation and genome integrity, and clearly have a central role in head and neck cancer. The pattern of hypermethylation in any individual tumor can now be accurately determined, which may find application in molecular staging. The study of epigenetic changes should provide a global view of gene profile in head and neck cancer, and epigenetic markers could be used for early detection, prognosis, and therapy of cancer patients.
1950-1970년대 도시미화를 위한 서울 간선도로변 고층화제도의 사적 고찰
박일향(Park, Ilhyang),전봉희(Jeon, BongHee) 대한건축학회 2019 대한건축학회논문집 Vol.35 No.10
The purpose of this study was to analyze the historical development of high-rise buildings-promoting policies in Seoul in terms of modern urban redevelopment. The results of this study were as follows; The maximum height of the buildings has been limited by National codes since 1934. But at the same time, Seoul Metropolitan government had limited the minimum building floors of roadside buildings through local regulations after the Korean War. The high-rise city had been regarded as a means of beautifying Seoul for a long time. However since the 2000s, the minimum height limit for buildings was removed from local regulations and the concept of high-rise restrictions was no longer significant as before.
폴리이미드 패시베이션과 폴리비닐알콜 패시베이션 레이어 성막이 고성능 유기박막 트렌지스터에 주는 영향
박일흥,형건우,최학범,황선욱,김영관,Park, Il-Houng,Hyung, Gun-Woo,Choi, Hak-Bum,Hwang, Sun-Wook,Kim, Young-Kwan 한국진공학회 2008 Applied Science and Convergence Technology Vol.17 No.3
이 논문에서 무기 게이트 인슐레이터 위에 Polyimide 유기 점착층을 성형하여, 고성능의 유기 박막 트렌지스터(OTFT)소자를 제작한 후 450 nm 두께로 폴리이미드를 Vapor deposition polymerization (VDP)방법을 사용하여 패시베이션하였다. 이때 폴리이미드성막을 위해, 스핀코팅 방법 대신 VDP 방법 도입하였다. 이 폴리이미드 고분자막은 2,2 bis(3,4-dicarboxyphenyl) hexafluoropropane dianhydride (6FDA)와 4,4‘-oxydianiline(ODA)을 고진공에서 동시에 열증착 시킨 후, $170^{\circ}C$에서 2시간 열처리하여 고분자화 된 막을 형성하였다. 다른 종류의 유기 패시베이션 막이 소자에 주는 영향을 비교 분석하기 위해, 450 nm 두께로 스핀코팅법을 이용하여 폴리비닐알콜 패시베이션 막을 형성하였다. 이 두 가지 패시베이션 막 형성법이 소자의 문턱전압과, 전하이동도에 주는 영향을 전기적 특성을 통해 변화를 확실히 볼 수 있었다. 최초 유기 박막 트렌지스터의 전기적 특성은 문턱전압, 점멸비, 그리고 정공의 이동도는 각각, -3 V, 약 $10^6$ 그리고, $0.24cm^2$/Vs 이 측정되었고. 폴리이미드를 사용하여 패시베이션 후 특성이 각각 0 V, 약 $10^6$ 그리고, $0.26cm^2/Vs$, 폴리비닐알콜 패시베이션 경우는 특성이 각각, 문턱전압의 경우 0 V에서 +2 V로, 점멸비는 $10^6$에서 $10^5$으로 전계효과이동도는 $0.13cm^2/Vs$ 에서 $0.13cm^2/Vs$로 변화하였다. In this paper, it was demonstrated that organic thin-film transistors (OTFTs) were fabricated with the organic passivation layer by vapor deposition polymerization (VDP) processing. In order to form polymeric film as a passivation layer, VDP process was also introduced instead of spin-coating process, where polymeric film was co-deposited by high-vacuum thermal evaporation from 6FDA and ODA followed by curing. In order to investigate by compared with different passivation layer, the other OTFTs is fabricated to passivation by Polyvinylalcohol using spincoating. We can see that two different ways of passivation layer affect electric characteristic of OTFTs. The initial electric characteristic of OTFTs before passivation such as field effect mobility, threshold voltage, and on-off current ratio are $0.24cm^2/Vs$, -3V, and $10^6$, respectively. Then after polyimide passivation layer, field effect mobility change from $0.24cm^2/Vs$ to $0.26cm^2/Vs$, threshold voltage from -3V to 1V and on-off current ratio from $10^6$ to $10^6$, respectively. In the case of polyvinylalcohol passivation, the initial electric characteristic of OTFTs before passivation such as field effect mobility, threshold voltage, and on-off current ratio are $0.13cm^2/Vs$, 0V, and $10^6$, respectively. Then after polyvinylalcohol passivation layer, field effect mobility changes from $0.13cm^2/Vs$ to $0.13cm^2/Vs$, threshold voltage from 0V to 2V, and on-off current ratio from $10^6$ to $10^5$, respectively.