• 제목/요약/키워드: plasma spray

검색결과 336건 처리시간 0.027초

STUDY OF FLARE-ASSOCIATED X-RAY PLASMA EJECTIONS : II. MORPHOLOGICAL CLASSIFICATION

  • KIM YEON-HAN;MOON Y.-J.;CHO K.-S.;BONG SU-CHAN;PARK Y.-D.
    • 천문학회지
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    • 제37권4호
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    • pp.171-177
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    • 2004
  • X-ray plasma ejections often occurred around the impulsive phases of solar flares and have been well observed by the SXT aboard Yohkoh. Though the X-ray plasma ejections show various morphological shapes, there has been no attempt at classifying the morphological groups for a large sample of the X-ray plasma ejections. In this study, we have classified 137 X-ray plasma ejections according to their shape for the first time. Our classification criteria are as follows: (1) a loop type shows ejecting plasma with the shape of loops, (2) a spray type has a continuous stream of plasma without showing any typical shape, (3) a jet type shows collimated motions of plasma, (4) a confined ejection shows limited motions of plasma near a flaring site. As a result, we classified the flare-associated X-ray plasma ejections into five groups as follows: loop-type (60 events), spray-type (40 events), jet-type (11 events), confined ejection (18 events), and others (8 events). As an illustration, we presented time sequence images of several typical events to discuss their morphological characteristics, speed, CME association, and magnetic field configuration. We found that the jet-type events tend to have higher speeds and better association with CMEs than those of the loop-type events. It is also found that the CME association (11/11) of the jet-type events is much higher than that (5/18) of the confined ejections. These facts imply that the physical characteristics of the X-ray plasma ejections are closely associated with magnetic field configurations near the reconnection regions.

산소플라즈마와 급속열처리에 의해 제조된 티타니아 박막의 휴믹산 제거 (Removal of Humic Acid Using Titania Film with Oxygen Plasma and Rapid Thermal Annealing)

  • 장준원;박재우
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제12권3호
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    • pp.29-35
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    • 2007
  • 본 연구에서는 산소플라즈마로 티타늄을 산화하고 급속열처리하여 티타니아 광촉매 박막을 제조하고 휴믹산 제거실험을 수행하였다. 플라즈마 화학기상증착장치에서의 산소플라즈마는 티타늄 표면을 산화시킴으로써 광촉매 피막을 생성하게 된다. 증착조건에서 RF power는 최대 500 W 이하에서 100 W, 150 W, 300 W, 처리시간은 5분, 10분에서 조절되었다. 박막의 특성은 XPS와 XRD로 측정하였다. 실험으로서 우리는 박막이 높은 성능을 나타내는 최적을 조건을 찾았다. 또한 제조된 박막의 경우 기존 Thermal spray Titania film에 비해 2배정도 우수하였고 분말만큼 광촉매 성능을 갖는다.

대기압 플라즈마 용사 공정에서의 기판 코팅 온도 영향 연구 (Measurement of the Coating Temperature Evolution during Atmospheric Plasma Spraying)

  • 이기영;오현철
    • 공업화학
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    • 제31권6호
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    • pp.624-629
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    • 2020
  • 대기 플라즈마 용사(APS)법을 이용한 지르코니아 열차폐 코팅의 보다 효과적인 온도 제어를 위해서는 기판 온도에 영향을 미치는 매개 변수에 대한 이해가 필수적이며 실험 데이터를 기반으로 한 더 많은 결과가 필요하다. 본 연구는 APS (atmospheric plasma sprayed) 공정에서 기판 온도 제어에 관한 연구를 목적으로 한다. 특히, APS 기판 코팅과정에서 기판 표면 온도 제어를 위한 공랭 시스템, 플라즈마 가스 흐름, 분말 공급 속도, 로봇 속도 및 기판소재 영향 등을 보고하고 있다. 이러한 체계적인 접근은 APS 방식의 표면 코딩에서 온도를 제어하는데 도움이 되며, 이는 코팅 품질의 향상으로 이어질 것이다.

Thermal Spray Coating

  • 김종영
    • 전기의세계
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    • 제42권1호
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    • pp.5-11
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    • 1993
  • 금속이나 세라믹 입자를 용사하여 보호피막을 형성하는 기술은 화염을 사용하는 방법에서 시작했으며 용사재료는 분말, 선, 봉의 형태로 공급되었다. 1960년대에 상업적인 plasma 용사장비가 개발되었으며 여기서 사용된 D.C.plasma jet를 이용하여 분말형태의 용사재료를 용융하고 고속으로 피용사테에 용융입자를 분사하여 피용사체면에 충돌시켜 다층의 얇은 피막을 형성한다. 최근(1985년)에는 R.F.(Radio Frequency) Plasma를 이용하여 열전도도가 작은 재료나 산소와 반응성이 큰 재료를 용사하는 방법도 개발되고 있다. 용사피복법은 현재 여러가지 방법이 실용되고 있으며 재료를 용융하는 열원에 따라 분류하면 표1과 같다. 즉 산소와 연료 가스의 혼합에 의한 연소나 폭발에너지를 이용하는 가스식 용사법과 Arc, Plasma등의 전기 에너지를 이용하는 전기식 용사법으로 크게 나눌 수 있다.

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$TiO_2$ 반도체 용사피막의 광전극 특성에 미치는 용사조건의 영향 (Effects of Plasma Spray Conditions on Photoelectric Properties of Plasma Sprayed $TiO_2$ Semiconductor)

  • 박정식;박경채
    • Journal of Welding and Joining
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    • 제12권1호
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    • pp.94-101
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    • 1994
  • In this study, plasma spraying has been used to produce $TiO_2$ polycrystalline coatings from $TiO_2$ powders. The physical and chemical properties of plasma sprayed $TiO_2$ coatings depend greatly on plasma spraying conditions. The electrical resistivity, oxygen concentration, photocurrent and crystal structure of plasma sprayed $TiO_2$ coating has been studied. The results are as follows: 1. The oxygen loss and electrical conductivity of $TiO_2$ plasma sprayed coatings increased by low pressure and high amount of auxiliary gas, hydrogen in plasma spraying. 2. Oxygen loss increase electrical conductivity, and decrease photocurrent of $TiO_2$ plasma sprayed coatings. 3. Photocurrent of $TiO_2$ plasma sprayed coatings manufactured in atmospheric pressure is higher than that of low pressure.

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플라즈마-스프레이법에 의해 코팅한 옥시불화이트륨(YOF) 증착층의 플라즈마 내식성에 미치는 불화알루미늄(AlF3) 첨가 효과 (Effect of AlF3 addition to the plasma resistance behavior of YOF coating deposited by plasma-spraying method)

  • 김영주;박제홍;유시범;정승원;김강민;유정호
    • 한국결정성장학회지
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    • 제33권4호
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    • pp.153-157
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    • 2023
  • 반도체 회로를 제조하기 위해서 에칭, 세척, 증착 등의 공정들이 반복적으로 진행된다. 따라서 이러한 공정이 진행되면 진공장비 내부는 부식성이 높은 가혹한 플라즈마 환경에 노출되게 된다. 따라서 반도체 공정 장비의 내부를 플라즈마 노출에 강한 재료를 사용하여 코팅층의 에칭과 오염 입자의 생성을 최소화하여야 한다. 본 연구에서는 고상합성법에 의해 합성된 옥시불화이트륨 (YOF)를 이용한 증착층의 플라즈마 식각 특성을 향상시키기 위하여 YOF 분말에 AlF3 분말을 혼합하여 플라즈마 스프레이 공정으로 Al 금속위에 증착시키고 그 특성을 분석하였다. AlF3 혼합비율의 증가에 따른 증착층의 결정구조, 미세구조 및 화학조성 변화를 조사하고 증착된 코팅층의 플라즈마 식각율을 측정하여 AlF3 혼합비율과의 상관관계를 분석하였다.

Interaction study of molten uranium with multilayer SiC/Y2O3 and Mo/Y2O3 coated graphite

  • S.K. Sharma;M.T. Saify;Sanjib Majumdar;Palash K. Mollick
    • Nuclear Engineering and Technology
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    • 제55권5호
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    • pp.1855-1862
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    • 2023
  • Graphite crucibles are used for melting uranium and its alloys in VIM furnace. Various coating materials namely Al2O3, ZrO2, MgO etc. are applied on the inner surface of the crucibles using paint brush or thermal spray technique to mitigate U-C interaction. These leads to significant amount of carbon pick-up in uranium. In this study, the attempts are made to develop multilayer coatings comprising of SiC/Y2O3 and Mo/Y2O3 on graphite to study the feasibility of minimizing U-C interaction. The parameters are optimized to prepare SiC coating of about 70㎛ thickness using CVD technique on graphite coupons and subsequently Y2O3 coating of about 250㎛ thickness using plasma spray technique. Molybdenum and Y2O3 layers were deposited using plasma spray technique with 70㎛ and 250㎛ thickness, respectively. Interaction studies of the coated graphite with molten uranium at 1450℃ for 20 min revealed that Y2O3 coating with SiC interlayer provides physical barrier for uranium-graphite interaction, however, this led to the physical separation of coating layer. Y2O3 coating with Mo interlayer provided superior barrier effect showing no degradation and the coatings remained intact after interaction tests. Therefore, the Mo/Y2O3 coating was found to be a promising solution for minimizing carbon pick-up during uranium/uranium alloy melting.

스프레이 코팅 기술 (Spray Coating Technology)

  • 이창희
    • 한국분무공학회지
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    • 제13권4호
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    • pp.193-199
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    • 2008
  • Spray coating is a versatile surface modification technology in which coating is built-up based on the successive deposition of micron-scaled particles. Depending on the coating materials, the coatings can meet the required mechanical properties, corrosion resistance, and other properties of base materials. Spraying processes are mainly classified into thermal and kinetic spraying according to their bonding mechanism and deposition characteristics. Specifically, thermal spraying process can be further classified into many categories based on the design and mechanism of the process, such as frame spraying, arc spraying, atmospheric plasma spraying (APS), and high velocity oxygen-fuel (HVOF) spraying, etc. Kinetic spraying or cold gas dynamic spraying is a newly emerging coating technique which is low-temperature and high-pressure coating process. In this paper, overall view of thermal and kinetic spray coating technologies is discussed in terms of fundamentals and industrial applications. The technological characteristics and bonding mechanism of each process are introduced. Deposition behavior and properties of technologically remarkable materials are reviewed. Furthermore, industrial applications of spray coating technology and its potentials are prospected.

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아크 용사를 이용한 쾌속 금형 제조 기술 (A study on rapid tooling technology using thermal spray process)

  • 김경하;김선경;유영은;제태진;최두선
    • Design & Manufacturing
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    • 제2권2호
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    • pp.20-24
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    • 2008
  • Recently, the study for production technology is focused on cycle time reduction as various products are manufactured. In order to manufacture tool and die, rapid prototyping and rapid tooling are researched. Stereolithography apparatus, selective laser sintering, 3D printing, laminated object manufacturing are developed in rapid prototype. The purpose of this study is to develop rapid tooling technology using thermal spray process. This technology is not well-known to korea, but this study will be contributed in development of domestic molds industry through continuous research and development.

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