• Title/Summary/Keyword: ${\gamma}$-Ti 합금

검색결과 34건 처리시간 0.019초

HSC발전소 터빈용 초내열합금 Alloy 617 및 263 용접부의 미세조직에 미치는 후열처리의 영향 (Effects of Post Weld Heat Treatment on Microstructures of Alloy 617 and 263 Welds for Turbines of HSC Power Plants)

  • 김정길;심덕남;박해지
    • Journal of Welding and Joining
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    • 제34권3호
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    • pp.52-60
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    • 2016
  • Recently nickel based superalloys are extensively being regarded as the materials for the steam turbine parts for hyper super critical (HSC) power plants working at the temperature over $700^{\circ}C$, since the materials have excellent strength and corrosion resistance in high temperature. In this paper, alloy 617 of solution strengthened material and alloy 263 of ${\gamma}^{\prime}$-precipitation strengthened material were prepared as the testing materials for HSC plants each other. Post weld heat treatment (PWHT) was conducted with the gas tungsten arc (GTA) welded specimens. The microstructure of the base metals and weld metals were investigated with Electron Probe Micro-Analysis (EPMA) and Scanning Transmission Electron Microscope (STEM). The experimental results revealed that Ti-Mo carbides were formed in both of the base metals and segregation of Co and Mo in both of the weld metals before PWHT and PWHT leaded to precipitation of various carbides such as Mo carbides in the specimens. Furthermore, fine ${\gamma}^{\prime}$ particles, that were not precipitated in the specimens before PWHT, were observed in base metal as well as in the weld metal of alloy 263 after PWHT.

Nimonic 80A 초내열합금의 경도와 전기화학적부식에 미치는 시효열처리의 효과 (The Effects of Aging Heat Treatments on the Hardness and Electrocemical Corrosion for the Nimonic 80A Superalloy)

  • 나은영
    • Journal of Advanced Marine Engineering and Technology
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    • 제22권5호
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    • pp.660-669
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    • 1998
  • In this paper the Hardness and Electro-chemical corrosion of the Nimonic 80A superalloy were studied. It aging heat treatments was carried out at $650^{\circ}C$, $700^{\circ}C$, $750^{\circ}C$,$800^{\circ}C$ and $850^{\circ}C$ with different time of 20min , 30min 1hour, 2hours, 4hours, and 16hours additionally 64hours and 128hours at $650^{\circ}C$. The obtained results were as follows; 1. As aging temperature increased the time for the maximum hardness was reduced from 128hours at $650^{\circ}C$ to 30min at $850^{\circ}C$ whereas the highest hardness was reduced from Hv 381 at $650^{\circ}C$ to Hv 321 at $850^{\circ}C$. 2. In the Electro-chemical corrosion test as a function of aging heat treatment time and tem-perature the corrosion potential was reversely proportional to Hardness which indicated the effects of ${\gamma}/{\gamma}'$ coherency of base material and precipitate. 3. Initiation point of the pitting was observed at grain boundary twin boundary and near${\gamma}'$ pre-cipitates. The results of composition analysis by EDS at this point indicated that sulphur originat-ed from 1N $H_2SO_4$ solution was found in depletion at the grain boundaries and the pit which arouse in the near precipitates were lack of Al Ti and Ni which are the main element of ${\gamma}'$ The depletion of such element was cause breakdown of passive film.

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조선 중기 제작된 지자총통의 보존처리와 제작기법 연구 -동아대학교 석당박물관 소장 보물 지자총통을 중심으로- (Conservation Treatment and Study on Manufacturing Techniques of Jija Chongtong Gun in the Middle of Joseon Dynasty)

  • 남도현;박영환;이재성
    • 박물관보존과학
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    • 제30권
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    • pp.23-46
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    • 2023
  • 동아대학교 석당박물관 소장 지자총통은 조선 중기에 사용하던 전장유통식 중화기무기로 천자총통 다음으로 큰 화기류이다. 지자총통의 표면에는 표면 이물질들로 인해 고유의 색상이 가려져 있는 상태로, 보존처리가 필요한 상황으로 판단되었다. 안정적인 보존처리를 위해 감마선(γ선), X선 비파괴 투과조사, 내시경카메라 관찰을 실시하여 내부 구조와 보존상태를 파악하였고, p-XRF 성분분석, SEM-EDS 성분분석, XRD 분석 등을 활용하여 지자총통의 재질 성분과 표면 오염물 등에 관한 성분분석을 진행하였다. 휴대용현미경 관찰과 정밀 3D스캔으로 지자총통 표면 명문의 상태, 새김형태 등을 확인하였다. 감마선, X선 비파괴 투과조사 결과, 지자총통 내부에 다량의 기포가 관찰되었으며, 육안관찰로 확인되는 표면의 채플릿은 비파괴투과조사 결과로는 확인되지 않았다. p-XRF 성분분석 결과 지자총통은 구리(Cu), 주석(Sn), 납(Pb) 합금으로 만들어진 청동으로 확인되었으며, SEM-EDS를 활용한 표면 이물질 성분분석 결과, 백색이물질은 칼슘(Ca), 황(S), 티타늄(Ti)이 주성분으로 확인되었다. 티타늄은 백색수정액의 주성분인 이산화티타늄(TiO2)으로 추정되었으며, 적색이물질은 바륨(Ba)이 주성분으로 확인되어 페인트의 체질안료인 황산바륨(BaSO4)으로 추정되었다. 티타늄과 바륨을 주성분으로 하는 백색과 적색 오염물은 근래에 이르러 표면에 묻은 것으로 추정된다. 황색이물질은 알루미늄(Al), 규소(Si)로 확인되어 토양성분에서 유래한 것으로 추정했다. 백색이물질의 XRD 성분분석결과 황화칼슘(CaS)으로 확인되었고, SEM-EDS와 XRD 성분분석결과로 백색이물질은 석고(CaS)로 확인하였다. 성분분석의 결과를 토대로 표면 이물질 제거, 안정화처리, 강화처리를 진행하였다. 보존처리를 진행하던 중에 휴대용 현미경과 정밀 3D스캔을 통해 알려지지 않았던 명문 우(右), 병(兵), 상(上), 이(二)를 발견하였다. 또한, 명문의 새김방법과 깊이, 너비 등을 측정하였다. 우병상(右兵上)은 창원 합포성 내 위쪽이며, 이(二)는 두 번째 돈대로 파악할 수 있다.

일방향 초내열합금 GTD-111DS에서 삽입금속 분말에 따른 천이액상확산접합부의 접합강도 특성 (The Bonding Strength Characteristic of the Filler Metal Powder on the TLP Bonded Region of Superalloy GTD-111DS)

  • 오인석;김길무;문병식
    • Journal of Welding and Joining
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    • 제25권5호
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    • pp.45-50
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    • 2007
  • The Ni-base superalloy GTD111 DS is used in the first stage blade of high power land-based gas turbines. Advanced repair technologies of the blade have been introduced to the gas turbine industry over recent years. The effect of the filler metal powder on Transient Liquid Phase bonding phenomenon and tensile mechanical properties was investigated on the GTD111 DS superalloy. At the filler metal powder N series, the base metal powders fully melted at the initial time and a large amount of the base metal near the bonded interlayer was dissolved by liquid inter metal. Liquid filler metal powder was eliminated by isothermal solidification which was controlled by the diffusion of B into the base metal. The solids in the bonded interlayer grew from the base metal near the bonded interlayer inward the insert metal during the isothermal solidification. The bond strength of N series filler metal powder was over 1000 MPa. and ${\gamma}'$ phase size of N series TLP bonded region was similar with base metal by influence of Ti, Al elements. At the insert metal powder M series, the Si element fluidity of the filler metal was good but microstructure irregularity on bonded region because of excessive Si element. Nuclear of solids formed not only from the base metal near the bonded interlayer but also from the remained filler metal powder in the bonded interlayer. When the isothermal solidification was finished, the content of the elements in the boned interlayer was approximately equal to that of the base metal. But boride and silicide formed in the base metal near the bonded interlayer. And these boride decreased with the increasing of holding time. The bond strength of M series filler metal powder was about 400 MPa.