• 제목/요약/키워드: Low-temperature corrosion

검색결과 326건 처리시간 0.03초

플라즈마 용융 공정시의 폐열 재활용 연구 (A Study on Waste Heat Recycling of Plasma Melting System)

  • 김성중
    • 유기물자원화
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    • 제14권3호
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    • pp.85-90
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    • 2006
  • 플라즈마 용융로에 설치된 폐열 보일러를 실측치와 근접한 모의 보일러를 설계하여 CFD(전산유체역학) 프로그램을 이용하여 얻어진 보일러 내에서의 유해가스발생 및 열 유동현상에 대한 열 설계 능력 확보와 폐열보일러 효율 개선에 대한 연구를 수행하는데 목적이 있다. 보일러 내에서의 온도변화 및 연소가스의 공기 유동, 부식성 가스의 영향으로 인해 보일러 내부에서의 부식위치 및 클링커 생성여부에 관한 연구를 통해 효율적인 보일러의 구조 설계 및 에너지 재활용방안에 이용하고자 한다. 연구결과 플라즈마 용융로에 설치된 보일러 설비는 2차 연소로 출구에서 배출되는 약 $1,200^{\circ}C$의 연소가스를 약 $450^{\circ}C$까지 냉각시킬 수 있는 설계조건을 만족시켰다. 반면 유해가스 유동 결과 보일러 입구 부분의 상단부와 하단부에 부식성 가스 (SOx, HCl)의 영향으로 인하여 부식 및 클링커 생성이 보일러의 다른 위치보다 쉽게 발생될 것으로 예상된다. 이로 인해 보일러 내 외관벽의 부식으로 보일러의 수명 단축 및 효율적인 폐열을 재활용 할 수 없다고 예상된다. 이에 따른 저온 및 고온 부식 방지대책에 대한 세심한 고려가 필요하다 하겠다.

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저사이클 피로하중을 받는 316L 스테인리스강의 피로수명 분석 및 예측 (Fatigue Life Analysis and Prediction of 316L Stainless Steel Under Low Cycle Fatigue Loading)

  • 오혁;명노준;최낙삼
    • 대한기계학회논문집A
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    • 제40권12호
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    • pp.1027-1035
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    • 2016
  • 내식성과 기계적 성능이 우수한 316L 스테인리스 강의 저주기 변형률제어 피로시험에서 3가지 변형률진폭과 3가지 변형률비의 조건이 피로수명에 미치는 효과를 분석하였다. 낮은 변형률범위에서 곡선이 거의 중첩되는 Masing 거동이 나타나고, 높은 변형률범위에서 비선형거동 응력범위가 서로 크게 벗어나는 non-Masing 거동과 함께 평균응력의 감소가 나타났다. 소성 변형률에너지를 이용하여 저주기 피로수명을 예측하고 non-Masing 거동을 고려한 수명예측 방법의 정확성 여부를 검토하였다. 각각의 변형률진폭과 변형률비의 조건에서 초기 수 사이클 동안 반복경화 현상 후 장시간동안 점진적으로 낮아져 연화하다가 파괴 되었다. 저사이클 피로수명을 정확히 예측하기 위해서는 변형률진폭에 따라 Masing 및 non-Masing 거동을 구분하고, 이를 반영한 수명예측식을 적용해야 함을 알았다.

초음파 볼밀링 공정에 의한 용매 점도 특성에 따른 텅스텐계 합금 분쇄 거동 (Investigation on Size Distribution of Tungsten-based Alloy Particles with Solvent Viscosity During Ultrasonic Ball Milling Process)

  • 류근혁;소형섭;윤지석;김인호;이근재
    • 한국분말재료학회지
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    • 제26권3호
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    • pp.201-207
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    • 2019
  • Tungsten heavy alloys (W-Ni-Fe) play an important role in various industries because of their excellent mechanical properties, such as the excellent hardness of tungsten, low thermal expansion, corrosion resistance of nickel, and ductility of iron. In tungsten heavy alloys, tungsten nanoparticles allow the relatively low-temperature molding of high-melting-point tungsten and can improve densification. In this study, to improve the densification of tungsten heavy alloy, nanoparticles are manufactured by ultrasonic milling of metal oxide. The physical properties of the metal oxide and the solvent viscosity are selected as the main parameters. When the density is low and the Mohs hardness is high, the particle size distribution is relatively high. When the density is high and the Mohs hardness is low, the particle size distribution is relatively low. Additionally, the average particle size tends to decrease with increasing viscosity. Metal oxides prepared by ultrasonic milling in high-viscosity solvent show an average particle size of less than 300 nm based on the dynamic light scattering and scanning electron microscopy analysis. The effects of the physical properties of the metal oxide and the solvent viscosity on the pulverization are analyzed experimentally.

18Ni 마르에이징강의 피로특성 및 유한요소해석 (Fatigue Characteristics and FEM Analysis of $18\%$Ni(200) Maraging Steel)

  • 최병기;장경천
    • 한국공작기계학회논문집
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    • 제14권2호
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    • pp.75-82
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    • 2005
  • Recently the needs of high reliable substances of high strength and high ductility are gradually increased with the development of aerospace industry. The characteristics of maraging steel has high ductililty, formability, corrosion resistant and high temperature strength and is easy to fabricate, weld and treat with heat, and maintain an invariable size even after heat treatment. e steels are furnished in the solution annealed condition and they achieve full properties through martensitic precipitation aging a relatively simple, low temperature heat treatment. As is true of the heat treating procedures, aging is a time/temperature dependent reaction. Therefore, the objective of this stud)'was consideration of fatigue characteristics according as Nb(niobium) content and time/temperature of heat treatment change. Also the stress analysis, fatigue lift, and stress intensity factor were compared with experiment results and FEA(finite element analysis) result. The maximum ftresses of)( Y, and Z axis direction showed about $2.12\times$10$^{2}$MPa, $4.40\times$10$^{2}$MPa and $1.32\times$10$^{2}$MPa respectively. The fatigue lives showed about $7\%$ lower FEA result than experiment result showing almost invariable error every analyzed cycle. Stress intensity factor of the FEA result was lower about $3.5~ 10\%$ than that of the experiment result showing that the longer fatigue crack ten添 the hi인or error. It considered that the cause for the difference was the modeled crack tip having always the same shape and condition regardless of the crack growth.

미소역학 시험기법에 의한 9Cr1MoVNb강의 열화도 평가 (A Study on Material Degradation Evaluation of 9Cr1MoVNb Steel by Micromechanics Test Method)

  • 백승세;나성훈;유현철;이송인;안행근;유효선
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 추계학술대회논문집A
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    • pp.105-110
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    • 2000
  • The Micromechanics test is new test method which uses comparatively smaller specimen than that required in conventional material tests. There are several methods, such as small-specimen creep test, the continuous indentation test, and small punch(SP) test. Among them, the small punch(SP) test method has been applied to many evaluation fields, such as a ductile-brittle transition temperature, stress corrosion cracking, hydrogen embrittlement, and fracture properties of advanced materials like FGM or MMC. In this study, the small punch(SP) test is performed to evaluate the mechanical properties at high/low temperature from $-196^{\circ}C$ to $650^{\circ}C$ and the material degradation for virgin and aged materials of 9Cr1MoVNb steel which has been recently developed. The ${\Delta}P/{\Delta}{\delta}$ parameter defined a slope in plastic membrane stretching region of SP load-displacement curve decreases according to the increase of specimen temperature, and that of aged materials is higher than the virgin material in all test temperatures. And the material degradation degrees of aged materials with $630^{\circ}C$ -500hrs and $630^{\circ}C$ -1000hrs are $36^{\circ}C$ and $38^{\circ}C$ respectively. These behaviors are good consistent with the results of hardness($H_v$) and maximum displacement(${\delta}_{max}$).

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APS법으로 제조된 열장벽 피막과 PAS법으로 제조된 열장벽 성형체의 고온 물성에 관한 연구 (A Study on the high Temperature Properties of the Graded Thermal Barrier Coatings by APS and PAS)

  • 강현욱;권현옥;한주철;송요승;홍상희;허성강;김선화
    • 한국표면공학회지
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    • 제32권2호
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    • pp.144-156
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    • 1999
  • Thermal Barrier Coating with Functional Gradient Materials (FGM-TBC) can play an important role to protect the parts from harmful environments in high temperatures such as oxidation, corrosion, and wear and to improve the efficiency of aircraft engine by lowering the surface temperature on turbine blade. FGM-TBC can increase the life spans of product and improve the operating properties. Therfore, in this study the evaluations of mechanical and thermal properties of FGM-TBC such as fatigue, oxidation and wear-resistance at high temperatures have been conducted. The samples of both the TBC with 2, 3, 5 layers (YSZ/NiCrAlY) to be produced by Air Plasma Spray method (APS) and the bulk TBC with 6 layers to be produced by Plasma Assisted Sintering method (PAS) were used. Furthermore, residual stress, bond strength, and thermal conductivity were evaluated. The average thickness of the APS was 500$\mu\textrm{m}$ to 600$\mu\textrm{m}$ and the average thickness of the PAS was 3mm. The hardness number of the top layer of APS was 750 Hv to 810Hv and that of PAS was 950 Hv to 1440Hv. The $ZrO_2$ coating layer of APS was composed of tetragonal structure after spraying as the result of XRD analysis. As shown in the results of the high temperature wear test, the 3 layer coating of APS had the best wear resistance at $800^{\circ}C$ and the 5 layer coating of APS had the best wear resistance at $600^{\circ}C$. But, these coatings had the tendency of the low-temperature softening at $300^{\circ}C$. The main mechanism of wear was the adhesive wear and the friction coefficient of coatings was increased as increasing the test temperatures. A s results of thermal conductivity test, the ${\Delta}T$ of the APS coating was increased as number of layer and the range of thermal conductivity of the PAS was $800^{\circ}C$ to $1000^{\circ}C$.

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수열법에 의한 calcite$(CaCO_3)$ 단결정 성장 (Growth of calcite$(CaCO_3)$ single crystal by hydrothermal method)

  • 이영국;유영문;박로학
    • 한국결정학회지
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    • 제7권1호
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    • pp.30-35
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    • 1996
  • 수열법에 의해 고온 고압용 autoclave내에서 calcite 단결정을 성장하였으며, 자외-가시영역에서의 투과율 등을 측정하였다. Calcite 단결정 성자에 관해 보고된 광화제로는 6M의 M2CO3(M=K, Rb)와 chloride등이 있는데 강알카리의 경우 성장속도는 크나 autoclave를 백금으로 내장해야 하며 chloride의 경우 자발 핵생성에 의한 성장(spontaneous nucleation and growth)의 경향이 강하여 종자결정위에서 성장하는 것에 비해 autoclave 벽면 위에서 자발 핵생성에 의한 성장이 더 우세한 것으로 알려져 있다. 본 연구에서는 autoclave의 내장재료로 고가의 백금대신 테프론을 사용하고자 성장온도가 테프론의 내온(280℃)에서 NH4Cl을 광화제로 사용하여 calcite 단결정을 성장하였다. 연구결과 NH4Cl 수열용액으로 calcite 단결정을 성장할 때 자발 핵생성을 억제하려면 NaCl 또는 CH3COOH가 소량 첨가된 수열용액에서 온도구배를 6-7℃ 이하로 유지하여 성장하여야 함을 확인하였다. 성장된 calcite의 자외 및 청색 가시영역에서 투과율은 80% 정도로 천연보다 약 10% 높았다.

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고온자전반응합성과 확산 열처리를 이용한 FeAl계 금속간화합물 복합판재의 제조 (Formation of Fe Aluminide Multilayered Sheet by Self-Propagating High-Temperature Synthesis and Diffusion Annealing)

  • 김연욱;윤영목
    • 한국재료학회지
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    • 제18권3호
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    • pp.153-158
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    • 2008
  • Fe-aluminides have the potential to replace many types of stainless steels that are currently used in structural applications. Once commercialized, it is expected that they will be twice as strong as stainless steels with higher corrosion resistance at high temperatures, while their average production cost will be approximately 10% of that of stainless steels. Self-propagating, high-temperature Synthesis (SHS) has been used to produce intermetallic and ceramic compounds from reactions between elemental constituents. The driving force for the SHS is the high thermodynamic stability during the formation of the intermetallic compound. Therefore, the advantages of the SHS method include a higher purity of the products, low energy requirements and the relative simplicity of the process. In this work, a Fe-aluminide intermetallic compound was formed from high-purity elemental Fe and Al foils via a SHS reaction in a hot press. The formation of iron aluminides at the interface between the Fe and Al foil was observed to be controlled by the temperature, pressure and heating rate. Particularly, the heating rate plays the most important role in the formation of the intermetallic compound during the SHS reaction. According to a DSC analysis, a SHS reaction appeared at two different temperatures below and above the metaling point of Al. It was also observed that the SHS reaction temperatures increased as the heating rate increased. A fully dense, well-bonded intermetallic composite sheet with a thickness of $700\;{\mu}m$ was formed by a heat treatment at $665^{\circ}C$ for 15 hours after a SHS reaction of alternatively layered 10 Fe and 9 Al foils. The phases and microstructures of the intermetallic composite sheets were confirmed by EPMA and XRD analyses.

Study on the effect of long-term high temperature irradiation on TRISO fuel

  • Shaimerdenov, Asset;Gizatulin, Shamil;Dyussambayev, Daulet;Askerbekov, Saulet;Ueta, Shohei;Aihara, Jun;Shibata, Taiju;Sakaba, Nariaki
    • Nuclear Engineering and Technology
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    • 제54권8호
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    • pp.2792-2800
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    • 2022
  • In the core of the WWR-K reactor, a long-term irradiation of tristructural isotopic (TRISO)-coated fuel particles (CFPs) with a UO2 kernel was carried out under high-temperature gas-cooled reactor (HTGR)-like operating conditions. The temperature of this TRISO fuel during irradiation varied in the range of 950-1100 ℃. A fission per initial metal atom (FIMA) of uranium burnup of 9.9% was reached. The release of gaseous fission products was measured in-pile. The release-to-birth ratio (R/B) for the fission product isotopes was calculated. Aspects of fuel safety while achieving deep fuel burnup are important and relevant, including maintaining the integrity of the fuel coatings. The main mechanisms of fuel failure are kernel migration, silicon carbide corrosion by palladium, and gas pressure increase inside the CFP. The formation of gaseous fission products and carbon monoxide leads to an increase in the internal pressure in the CFP, which is a dominant failure mechanism of the coatings under this level of burnup. Irradiated fuel compacts were subjected to electric dissociation to isolate the CFPs from the fuel compacts. In addition, nondestructive methods, such as X-ray radiography and gamma spectrometry, were used. The predicted R/B ratio was evaluated using the fission gas release model developed in the high-temperature test reactor (HTTR) project. In the model, both the through-coatings of failed CFPs and as-fabricated uranium contamination were assumed to be sources of the fission gas. The obtained R/B ratio for gaseous fission products allows the finalization and validation of the model for the release of fission products from the CFPs and fuel compacts. The success of the integrity of TRISO fuel irradiated at approximately 9.9% FIMA was demonstrated. A low fuel failure fraction and R/B ratios indicated good performance and reliability of the studied TRISO fuel.

INCOLOY 825합금 및 STS316L합금의 용접성과 성형성에 관한 기초적 연구 (Fundamental study on the weldability and formability of INCOLOY825 alloys and STS316L alloys)

  • 김평수;최호영;최소영;김영식;김종도
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권6호
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    • pp.698-703
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    • 2014
  • 최근 기존 화석연료의 고갈로 인하여 대체에너지로써 천연액화가스의 수요 증가와 함께 LNG 운반선의 수요가 증가하고 있으며, 그로인해 극한의 환경에서 사용할 수 있는 LNG 선박용 벨로우즈의 수요 또한 증가할 것으로 예상된다. 현재 LNG 선박용 벨로우즈에 사용되는 재료는 저온취성과 해수부식에 강한 INCOLOY 825와 STS316L합금이다. 본 연구에서는 극저온에 사용되는 LNG용 벨로우즈 재질인 INCOLOY 825과 STS316L 합금에 대하여 최적의 용접조건을 설정하고, 에릭센 시험을 통하여 용접부의 성형성을 분석하였다. 최적 조건에서의 용접시 용접부의 인장강도는 모재에 비하여 90% 이상의 강도값을 나타내었다. 또한 에릭센 시험을 통한 성형성 분석의 결과, 용접부가 아닌 모재에서 파단이 발생하는 매우 양호한 용접부를 얻을 수 있었다.