• 제목/요약/키워드: 오스테나이트 스테인리스강

검색결과 150건 처리시간 0.025초

오스테나이트 분포에 따른 수퍼 2상 스테인리스강의 기계적 특성과 피로균열 진전거동 (Mechanical Characteristics and Fatigue Crack Propagation of Super Duplex Stainless Steel by Distribution of Austenite)

  • 도재윤;이상기;안석환;남기우;강창룡
    • 열처리공학회지
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    • 제14권4호
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    • pp.205-211
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    • 2001
  • The characteristics of super duplex stainless steel were investigated on its fibrous structure and dispersed structure. These structures consist of various volume fractions and distributions of the austenite phase that were obtained by changing the heat treatment temperature and cycle. The fibrous structure had higher austenite volume fraction than dispersed structure on the same temperature. As the austenite volume fraction increased in both structures, tensile strength and elongation increased, but hardness decreased. Fatigue life of fibrous structure parallel to rolling direction was shorter than that of perpendicular to rolling direction. Fatigue life of dispersed structure was longer than parallel fibrous structure, and shorter than perpendicular fibrous structure. Fatigue crack propagation rate of fibrous structure was faster than that of dispersed structure.

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F316 오스테나이트 스테인리스강의 상변태 및 입계부식저항성에 미치는 입열의 영향 (Effects of Heat Inputs on Phase Transformation and Resistance to Intergranular Corrosion of F316 Austenitic Stainless Steel)

  • 정규석;이인성;김순태
    • Corrosion Science and Technology
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    • 제19권3호
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    • pp.146-155
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    • 2020
  • To elucidate the effect of heat inputs on phase transformation and resistance to intergranular corrosion of F316 austenitic stainless steel (ASS), thermodynamic calculations of each phase and time-temperature-transformation diagram were conducted using JMaPro simulation software, oxalic acid etch test, double-loop electrochemical potentiokinetic reactivation test (DL-EPR), field emission scanning electron microscopy with energy dispersive spectroscopy, and transmission electron microscopy analyses of Cr carbide (Cr23C6), austenite phase and ferrite phase. F316 ASS containing a relatively low C content of 0.043 wt% showed a slightly sensitized microstructure (acceptably dual structure) due to a small amount of Cr carbide precipitated at heat affected zone irrespective of heat inputs. Based on results of DL-EPR test, although heat input was increased, the ratio of Ir to Ia was only increased very slightly due to a slight sensitization. Therefore, heat inputs have little influences on resistance to intergranular corrosion of F316 austenitic stainless steel containing 0.043 wt% C.

고온/고압 산화제 과잉 환경에 적합한 재질 및 코팅 조사

  • 유재한;하성업;문일윤;이수용
    • 천문학회보
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    • 제37권2호
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    • pp.149.1-149.1
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    • 2012
  • 고성능 다단연소싸이클 엔진은 산화제과잉 예연소기를 사용한다. 예연소기 후류에 위치한 배관 및 연소기 헤드 등은 고온/고압 산화제 과잉 환경에 놓이게 되며, 운용 조건에서는 국부적으로 온도를 상승시키는 외부 발화제에 의하여 녹는점보다 낮은 온도에서 재질이 발화될 수 있다. 따라서, 이러한 환경에 적합한 재질 및 코팅은 내산화성, 내인화성 및 자발화성도 중요하나, 외부 발화제에 의한 내발화성이 가장 중요한 특성이 된다. 여기서는 이러한 환경에 적합하며 지상 시험용 노즐 및 배관에 적용될 수 있는 재질 및 코팅에 대하여 조사한다. 러시아는 이미 이러한 환경에 적합한 재질 및 코팅들을 개발하여 RD-170, 180에 적용 중이다. 그러나 미국은 최근에 이러한 연구를 시작한 것으로 추정된다. 따라서 자료 접근이 가능한 범위에서 러시아의 재질 및 코팅을 조사하며, 미국 자료에서는 산소 시스템 안전 등과 같이 간접적인 자료들을 통하여 대체가 가능한 후보 재질 및 코팅을 조사한다. 다단연소싸이클 연소시험 배관에 적용할 수 있는 방법은 다음과 같다. 코팅 없이 Monel K500을 사용하거나, OFHC 혹은 Ni 라이너에 고강도 외피를 사용하는 방법이 있으나, 두 방법 모두 재질의 가격 및 수급, 라이너 적용 방법 등이 어려울 수 있다. 국내에서 산화제과잉 가스 환경에서 적용할 수 있는 법랑을 개발하거나 수급이 용이한 법랑을 찾아 오스테나이트 스테인리스강에 적용하는 방법이 있다. 이 방법은 외부 발화제에 대한 내발화성을 증가시키는 경제적이고 용이한 방법으로 판단된다.

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고 Mn 스테인리스강의 감쇠능에 미치는 잔류 및 역변태 오스테나이트의 영향 (Effect of Retained and Reversed Austenite on the Damping Capacity in High Manganese Stainless Steel)

  • 김영화;이상환;김슬기;강창룡
    • 한국재료학회지
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    • 제25권1호
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    • pp.9-15
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    • 2015
  • The effect of retained and reversed austenite on the damping capacity in high manganese stainless steel with two phases of martensite and austenite was studied. The two phase structure of martensite and retained austenite was obtained by deformation for various degrees of deformation, and a two phase structure of martensite and reverse austenite was obtained by reverse annealing treatment for various temperatures after 70 % cold rolling. With the increase in the degree of deformation, the retained austenite and damping capacity rapidly decreased, with an increase in the reverse annealing temperature, the reversed austenite and damping capacity rapidly increased. With the volume fraction of the retained and reverse austenite, the damping capacity increased rapidly. At same volume of retained and reversed austenite, the damping capacity of the reversed austenite was higher than the retained austenite. Thus, the damping capacity was affected greatly by the reversed austenite.

Bone ingrowth 향상을 위해 플라즈마 용사된 초내식성 오스테나이트 스테인리스강의 다공성 코팅층에 대한 연구 (A Study on Plasma Sprayed Porous Super Austenitic Stainless Steel Coating for Improvement of Bone Ingrowth)

  • 오근택;박용수
    • 한국표면공학회지
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    • 제29권2호
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    • pp.81-92
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    • 1996
  • The cementless fixation of bone ingrowth by porous coatings on artificial hip joint prostheses are replacing polymethylmethacrylate(PMMA) bone cement fixations. However, the major interests in the field of porous metal coating are environmental corrosivity accelerated by metal ion release, deterioration in the mechanical property of the coating, and the mechanical failure of the coatings as well as the substrate. Therefore, the selection of right materials for coatings and the development of porous coating techniques must be accomplished. Because of the existing problems in Ti and Ti alloys which are used extensively, this study is focused on the plasma spraying technique for coating on super stainless steel substrate. In order to determine the optimum conditions which satisfy the requirement for the porous coatings, under the plasma spraying, we selected the experimental parameters which extensively influenced on the characteristics of the coating through the pre-examination. Spray distance has been selected among 120, 160, and 200mm and primary gas flow rate among 70, 100, and 130 SCFH. Current and secondary gas($H_2$) flow rate was fixed at 400A, and 15 SCFH respectively. To understand the characteristics of the coatings, surface morphology, cross-sectional micro-structure, surface roughness, residual stress, and corrosion resistance were elucidated and the best conditions for the bone ingrowth improvement on artificial hip joint prostheses were found.

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전해연마 용액에서 안정화 시간과 표면 거칠기에 따른 오스테나이트 스테인리스강의 전기화학적 특성 (Electrochemical Properties of Austenitic Stainless Steel with Initial Delay Time and Surface Roughness in Electropolishing Solution)

  • 황현규;김성종
    • Corrosion Science and Technology
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    • 제21권2호
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    • pp.158-169
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    • 2022
  • The objective of this study was to investigate the electrochemical behavior and damage degree of metal surface under different conditions by performing a potentiodynamic polarization experiment using an electropolishing solution for UNS S31603 based on initial delay time and surface roughness (parameters). A second anodic peak occurred at initial delay time of 0s and 100s. However, it was not discovered at 1000s and 3600s. This research referred to an increase in current density due to hydrogen oxidation reaction among various hypotheses for the second anodic peak. After the experiment, both critical current density and corrosion current density decreased when the initial delay time (immersion time) was longer. As a result of surface analysis, characteristics of the potentiodynamic polarization behavior were similar with roughness, although the degree of damage was clearly different. With an increase in surface roughness value, the degree of surface damage was precisely observed. As such, electrochemical properties were different according to the immersion time in the electropolishing solution. To select electropolishing conditions such as applied current density, voltage, and immersion time, 1000s for initial delay time on the potentiodynamic polarization behavior was the most appropriate in this experiment.

해수 환경에서 슈퍼 오스테나이트 스테인리스강의 전기화학적 거동에 미치는 캐비테이션 진폭의 영향 (Effect of Cavitation Amplitude on the Electrochemical Behavior of Super Austenitic Stainless Steels in Seawater Environment)

  • 허호성;김성종
    • Corrosion Science and Technology
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    • 제21권2호
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    • pp.138-146
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    • 2022
  • The cavitation and potentiodynamic polarization experiments were conducted simultaneously to investigate the effect of cavitation amplitude on the super austenitic stainless steel (UNS N08367) electrochemical behavior in seawater. The results of the potentiodynamic polarization experiment under cavitation condition showed that the corrosion current density increased with cavitation amplitude increase. Above oxygen evolution potential, the current density in a static condition was the largest because the anodic dissolution reaction by intergranular corrosion was promoted. In the static condition, intergranular corrosion was mainly observed. However, damage caused by erosion was observed in the cavitation environment. The micro-jet generated by cavity collapse destroyed the corrosion product and promoted the repassivation. So, weight loss occurred the most in static conditions. After the experiment, wave patterns were formed on the surface due to the compressive residual stress caused by the impact pressure of the cavity. Surface hardness was improved by the water cavitation peening effect, and the hardness value was the highest at 30 ㎛ amplitude. UNS N08367 with excellent mechanical performance due to its high hardness showed that cavitation inhibited corrosion damage.

다구찌 기법을 활용한 통계적·표면 분석에 따른 오스테나이트 스테인리스강의 전해연마조건 최적화 연구 (Optimization of Electropolishing Conditions with Statistical and Surface Analyses Using Taguchi Method for Austenitic Stainless Steel)

  • 황현규;김성종
    • Corrosion Science and Technology
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    • 제21권5호
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    • pp.360-371
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    • 2022
  • Electropolishing has various parameters because an electrochemical reaction is applied. Accordingly, experiments to determine factors and levels of electropolishing conditions are in progress for various materials. The purpose of this investigation was to optimize conditions for electropolishing using the taguchi method for UNS S31603. Factors such as electrolyte composition ratio, electrolyte temperature, and electropolishing process time were selected. Electropolishing was optimized using analysis of variance (ANOVA), signal-to-noise ratio (the smaller the better characteristics), and surface analysis. Results of ANOVA revealed that only the electrolyte composition ratio among factors was effective for surface roughness. As a result of statistical analysis of the signal-to-noise ratio, the highest signal-to-noise ratio was calculated under electropolishing conditions with sulfuric acid and phosphoric acid ratio of 4:6, an electrolyte temperature of 75 ℃, and electropolishing process time of 7 minutes. In addition, the surface roughness after electropolishing under the above conditions was 0.121 ㎛, which was improved by more than 88% compared to mechanical polishing.

오스테나이트 스테인리스강의 해수에서 전기화학적 특성에 미치는 전해연마시간의 영향 (Effect of electropolishing process time on electrochemical characteristics in seawater for austenitic stainless steel)

  • 황현규;신동호;허호성;김성종
    • 한국표면공학회지
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    • 제55권4호
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    • pp.236-246
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    • 2022
  • Electropolishing is a surface finishing treatment that compensates for the disadvantages of the mechanical polishing process. It not only has a smooth surface, but also improves corrosion resistance. Therefore, the purpose of this investigation is to examine the corrosion resistance and electrochemical characteristics in seawater of UNS S31603 with electropolishing process time. The roughness improvement rate after electropolishing was improved by about 78% compared to before polishing, indicating that the electropolishing is effective. As a result of potential measuring of mechanical polishing and electropolishing, the potential of electropolishing was nobler than the mechanical polishing condition. As a result of calculating the corrosion current density after potentiodynamic polarization experiment with electropolishing conditions, the corrosion current density of mechanical polishing was about 6.4 times higher than that of electropolishing. After potentiodynamic polarization experiment with electropolishing conditions, the maximum damage depth of mechanical polishing was about 2.2 times higher than that of electropolishing(7 minutes). In addition, the charge transfer resistance of the specimen electropolished for 7 minutes was the highest, indicating improved corrosion resistance.

계기용 밸브 재질의 검증 인장시험에 의한 사용적합성 평가 (Fitness-for-Service Assessment for Instrument Valve Material by Tensile Test for Verification)

  • 신인환;박치용
    • 한국압력기기공학회 논문집
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    • 제17권1호
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    • pp.49-55
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    • 2021
  • In this paper, an application example for fitness-for-service of material is shown. A kind of instrument valve is made of austenitic stainless steel fabricated by the cold working process. The tensile strength of the cold worked austenitic stainless steel has to be limited under 90 ksi to prevent the stress corrosion cracking in power plants. In industrial fields, tensile strengths of some materials were discovered to be over the regulation requirements in a certified material test report (CMTR). Owner's verification tests were performed to compare with that in a CMTR and to check the appropriateness. It is found that, in the case of verification test under the required test speed, valve materials could be used in the field. Although it is only one application sample of material check process in the power generation site, this case study could show an importance of basic experimental technology in academia and research circles.