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Preparation of New Corrosive Resistive Magnesium Coating Films
이명훈,Lee, Myeong-Hun Korean Society of Marine Engineers 1996 한국마린엔지니어링학회지 Vol.20 No.5
The properties of the deposited film depend on the deposition condition and these, in turn depend critically on the morphology and crystal orientation of the films. Therefore, it is important to clarify the nucleation occurrence and growth stage of the morphology and orientation of the film affected by deposition parameters, e.g. the gas pressure and bias voltage etc. In this work, magnesium thin flims were prepared on cold-rolled steel substrates by a thermo-eletron activation ion plating technique. The influence of nitrogen gas pressure and substrate bias voltage on their crystal orientation and morphology of the coated films were investigated by scanning electron microscopy (SEM) and X-ray diffraction, respectively. The diffraction peaks of magnesium film became less sharp and broadened with the increase of nitrogen gas pressure. With an increase in nitrogen gas pressure, flim morphology changed from colum nar to granular structure, and surface crystal grain-size decreased. The morphology of films depended not only on gas pressure but also on bias voltage, i.e., the effect of increasing bias voltage was similar to that of decreasing gas pressure. The effect of crystal orientation and morphology of magnesium films on corrosion behaviors was estimated by measuring anodic polarization curves in deaerated 3%NaCl solution. Magnesium, in general, has not a good corrosion resistance in all environments. However, these magnesium films prepared by changing nitrogen gas pressure showed good corrosion resistance. Among the films, magnesium films which exhibited granular structure had the highest corrosion resistance. The above phenomena can be explained by applying the effects of adsorption, occlusion and ion sputter of nitrogen gas.
대형 멀티미디어 파일의 익명성 지원을 위한 수정 GNUnet
이명훈,조인준,Lee, Myeong-Hun,Jo, In-Jun 배재대학교 공학연구소 2005 공학논문집 Vol.7 No.1
The GNUnet proposed a file encoding method by 1KB block size to support anonimity of file and decentralizes encoded block to peers through unstructed model. but, the encoding and block decentralizing method with 600~700MB large multimedia file appered two problems. First problem, it need addition R block and I block, which make about 4% of storage resource. Second problem, unstructed model added network load by broadcasting decentralizing method. The paper suggest variable encoding block size and structured model by block decentralizing solution. Suggested encoding method reduced block request supplementary block generation from 4% to 1%. and network load by proposal structured model sending answer through dedicated peer to decentralize block. GNUnet은 파일의 익명성 지원을 위해 파일을 1KB 블록크기로 분리하는 인코딩 방법을 채택하였고, 인코딩된 블록을 비구조적인 분산기법을 통해 피어들에게 분산시키고 있다. 하지만 이러한 인코딩 및 블록 분산 방안은 약 600~700MB의 대용량 멀티미디어 파일을 처리할 경우 첫째, 추가적으로 R블럭 과 I블럭을 과도하게 요구하게 되어 약 4%의 저장공간을 낭비하는 문제를 지니고 있다. 둘째, 비구조적 브로드캐스팅 분산방법 때문에 네트워크 부하가 과도한 단점을 내포하고 있다. 본 논문에서는 이러한 문제점 해결을 위하여 인코딩 블록의 크기를 가변적으로 결정하는 방법과 구조적 위상을 통해 블록을 분산시키는 방안을 제안하였다. 제안 인코딩 방법은 기존 4%에 해당되는 추가 블록 생성을 1%이내로 최소화하였고, 분리된 블록의 분산을 위해 지정된 피어로 질의를 보내는 구조적 위상을 채택하여 블록 요청에서 발생하는 네트워크 부하를 감소시켰다.