• 제목/요약/키워드: $Cr_{23}C_6$

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Microstructure and Mechanical Properties of Cr-Mo Steels for Nuclear Industry Applications

  • Kim, Sung-Ho;Ryu, Woo-Seong;Kuk, Il-Hiun
    • Nuclear Engineering and Technology
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    • 제31권6호
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    • pp.561-571
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    • 1999
  • Microstructure and mechanical properties of five Cr-Mo steels for nuclear industry applications have been investigated. Transmission electron microscopy, energy dispersive spectrometer, differential scanning calorimeter, hardness, tensile, and impact test were used to evaluate the Cr and W effect on the microstructure and mechanical properties. Microstructures of Cr-Mo steels after tempering are classified into three types : bainitic 2.25Cr-lMo steel, martensitic Mod.9Cr-lMo, HT9M, and HT9W steels, and dual phase HT9 steel. The majority of the precipitates were found to be M$_{23}$C$_{6}$ carbides. As minor phases, fine needle-like V(C,N), spherical NbC, fine needle-like Cr-rich Cr$_2$N, and Cr-rich M$_{7}$C$_3$were also found. Addition of 2wt.% W in Cr-Mo steels retarded the formation of subgrain and dissolution of Cr$_2$N precipitates. Hardness and ultimate tensile strength increased with increasing Cr content. Though Cr content of HT9W steel was lower than that of HT9 steel, the hardness of HT9W was higher due to the higher W content. W added HT9W steel had the highest ultimate tensile strength above $600^{\circ}C$. But impact toughness of W added steel (HT9W) and high Cr steel (HT9) was low.w.w.

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Cr-Mo-V강(T24)의 재현 HAZ의 결정립 성장에 미치는 피크온도의 영향 (Effect of Peak Temperature on the Grain Growth in Simulated HAZ of Cr-Mo-V Steel(T24))

  • 이경운;이성형;나혜성;강정윤
    • Journal of Welding and Joining
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    • 제34권6호
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    • pp.55-61
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    • 2016
  • Recently developed ferritic heat resistance steel, T24 was used to evaluate microstructure characteristics of simulated heat affected zone. Also, correlation between the prior austenite grain size and amount of $M_{23}C_6$ carbide dissolution was discussed. With the increasing of peak temperature, Grain size steadily increased up to $1050^{\circ}C$ and then rapidly increased at $1150^{\circ}C$. Of the peak temperature $950{\sim}1050^{\circ}C$, amounts of $M_{23}C_6$carbide dissolution are low. But Most of $M_{23}C_6$ carbide that is inhibited grain growth were dissolved above $1050^{\circ}C$ and decreased volume fraction of carbide. This indicates that grain growth may be achieved through dissolution of carbide in the base material. As of welding, due to very rapid heating rate, $M_{23}C_6$ carbide exists above equilibrium solution temperature that is $800^{\circ}C$, even at $1050^{\circ}C$. So, It was confirmed that close correlation between carbide dissolution in the base material and grain growth. Calculated grain size has a linear relationship with peak temperature, on the other hand, measured grain size discontinuously increased between $950{\sim}1050^{\circ}C$ and above $1050^{\circ}C$. Grain size of heat affected zone at $1350^{\circ}C$ peak temperature showed maximum 67um and minimum 4um. Also, The number of side showed 3 to 10.

1.0Cr-1.0Mo-0.25V강 용접부의 $M_6C$ 탄화물에 의한 크립 파단 (Creep Rupture Due to Molybdenum Rich $M_6C$ Carbide in 1.0Cr-1.0Mo-0.25V Steel Weldment)

  • 오영근;김병철;강계명;민태국
    • 한국재료학회지
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    • 제6권12호
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    • pp.1257-1262
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    • 1996
  • 1.0Cr-1.0Mo-0.25V강 용접부의 크립 파단 시험시 파단 발생 원인에 관한 연구가 시행되었다. 파괴는 Intercritical Heat Affected Zone에서 발생하였으며 파단면에서 구상의조대한 M6C탄화물이 발견되었다. 모재는 molybdenum 주성분의 M2C, vanadium 주성분의 M4C3 및 chromium 주성분의 M23C6와 M7C3 탄화물이 존재하였다. 모의 실험 결과 준안정 상태인 M2C 탄화물은 85$0^{\circ}C$, 10oh에서 안정한 M6C탄화물로 변태하였다. M6C 탄화물은 주변의 molybdenum 농도를 떨어뜨려 강도의 저하를 가져오며 크립 기공의 발생 원인을 제공하였다.

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Fe-Cr합금의 침탄에 관한 연구 (A study on the carburization of Fe-Cr alloys.)

  • 박병옥;윤병하
    • 한국표면공학회지
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    • 제22권1호
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    • pp.10-16
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    • 1989
  • The properties of carburization on Fe-Cr alloys at 900-96$0^{\circ}C$were investiged. The study on carbide layer which had developed during solid-carburizing was made by use of S.E.M, E.PM.A, and X-ray analyzer. The results obtained were summarized as follows, the composition of carbide and the value of activation energy for the growth of carbide layer on each Fe-Cr alloy were 1) Fe-1Cr : M3C and 52Kcal/mole 2) Fe-3Cr and Fe-5Cr : M7C3and 85-88Kcal/mole 3) Fe-7Cr and Fe-9Cr : (M7C3+M23C6)and 55-66Kcal/mole.

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Fe-2.3%Cr-1.6%W 합금의 고온산화 부식속도와 스케일 분석 (High-temperature Oxidation Kinetics and Scales Formed on Fe-2.3%Cr-1.6%W Alloy)

  • 박상환;김민정;이재호;봉성준;김슬기;이동복
    • 한국세라믹학회지
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    • 제48권1호
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    • pp.57-62
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    • 2011
  • The T23 steel, whose composition was Fe-2.3%Cr-1.6%W, was arc-melted, and oxidized between $600^{\circ}C$ and $900^{\circ}C$ in air for up to 7 months. The amount of precipitates in the arc-melted microstructure was as large as 11.4 vol.%. The precipitates increased the oxidation rate of the arc-melted T23 steel. Owing to the low amount of Cr in the T23 steel, breakaway oxidation occurred after a few hours during oxidation above $700^{\circ}C$ in both arc-melted and as-received T23 steels. The scales that formed on arc-melted and as-received T23 steels were similar to each other. They consisted primarily of the outer $Fe_2O_3$ layer and the inner ($Fe_2O_3$, $FeCr_2O_4$)-mixed layer. The precipitates increased the microhardness and the oxidation rates.

9Cr-3W 강의 크리프 특성에 미치는 Mo 첨가의 영향 (Effect of Mo addition on the Creep Properties of 9Cr-3W Steel)

  • 김용래;장진성;김태규
    • 한국주조공학회지
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    • 제33권1호
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    • pp.1-7
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    • 2013
  • The effect of the Mo addition on the high temperature creep properties of the 9Cr-3W steel was also evaluated. Two experimental steels, (9Cr-3W and 9Cr-3W-0.5Mo), were prepared using a vacuum induction melting process, followed by hot rolling and heat treatment processes. Three types of precipitates, ($M_{23}C_6$, Nb-rich MX and V-rich MX) were observed in a typical tempered martensitic matrix. Significant effects of the Mo addition on the tensile properties were not observed. However, the creep properties at $650^{\circ}C$ under applied stresses of 140 and 150 MPa were considerably enhanced by the Mo addition. The microstructural observation after the creep test indicated that the addition of Mo could function to retain the recovery of the martensitic matrix, thus resulting in the enhanced creep properties of the 9Cr-3W-0.5Mo steel. Furthermore coarsening of the $M_{23}C_6$ carbides and formation of Laves phases were observed in both samples after the creep tests.

Closed field unbalanced magnetron sputtering system을 이용하여 증착한 CrZr-Si-N 박막의 고온 안정성과 내 마모 특성 연구

  • 오승천;김광석;김범석;이상율
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2008년도 추계학술대회 초록집
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    • pp.61-62
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    • 2008
  • Closed field unbalanced magnetron sputtering 방법을 이용하여 CrZr-Si-N 박막을 증착하였다. Si Target power의 변화에 따라 박막을 증착하여 XRD, SEM, XPS, GDOES, AFM, XPS, Nanoindentation을 이용하여 박막의 미세구조, 성분분석, 표면 조도, 경도를 측정하였다. $500^{\circ}C$에서 annealing한 후 상온에서의 박막의 경도와 비교하였고, 상온과 $500^{\circ}C$에서 마모 실험을 행한 후 마찰 계수를 측정하여 비교하였다. $Cr_{39.4}Zr_{12.3}N_{48.3}$ 박막은 $500^{\circ}C$ annealing 후 경도는 30 GPa에서 24 GPa로 감소하였고 마찰계수는 0.23에서 0.81로 약 4배 증가하였다. $500^{\circ}C$ annealing 후 $Cr_{34.6}Zr_{10.6}-Si_{6.4}-N_{48.4}$ 박막의 경도는 30 GPa로 상온에서의 경도 32 GPa과 비슷하였고 $500^{\circ}C$와 상온에서 수행된 마모시험 결과는 $500^{\circ}C$에서 마찰계수 0.43으로 상온 마모시험 결과와 거의 비슷한 결과를 보였다. 상온의 경우 Si 함량에 따른 기계적 특성 및 마모특성의 변화는 거의 없었다. 그러나 $500^{\circ}C$ annealing 후 CrZi-Si-N 박막의 기계적 특성 및 마모특성은 Si 함량에 따라 큰 차이를 나타내었다. 이러한 결과들을 통해 Si 첨가가 CrZrN 박막의 고온 안정성 향상에 기여함을 확인할 수 있었다.

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크리프-피로 손상된 페라이트기 9Cr 내열강의 미세조직 발달과 자기적 특성 (Microstructural Evolution and Magnetic Property of Creep-Fatigued Ferritic 9Cr Heat-Resisting Steel)

  • 김정석;권숙인;박익근
    • 비파괴검사학회지
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    • 제27권5호
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    • pp.417-425
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    • 2007
  • 보자력 측정을 통하여 페라이트기 9Cr-1Mo-V-Nb 내열강의 크리프-피로변형 동안 미세조직의 변화를 평가하였다. 크리프-피로시험은 $550\;^{\circ}C$에서 각각 인장유지시간을 60초와 600초로 하여 수행 하였다. 보자력은 파단 전까지 감소하였고 경도는 파단 시까지 지속적으로 감소하였다. 크리프-피로 수명소비율이 증가함에 따라서 $M_{23}C_6$ 탄화물은 오스트왈드 성장기구를 따라서 조대화가 나타났지만 MX 탄질화물은 $550\;^{\circ}C$에서 안정하기 때문에 조대화가 나타나지 않았다. 마르텐사이트 래스 폭은 래스경계에서의 전위회복으로 인해 증가하였다. 보자력은 전위, 석출물 그리고 마르텐사이트 래스경계와 같은 미세조직적 특성에 영향을 받게 되며 이를 미세조직변화와 관련하여 이해하였다. 결과적으로, 본 연구는 페라이트기 9Cr-1Mo-V-Nb 내열강의 크리프-피로변형 동안 미세조직의 변화와 손상 정도를 보자력을 통하여 평가하는 것을 제안하였다.

13%Cr-0.17%C 스테인리스강의 고온 가스질화에 미치는 Al 함량 변화의 영향 (Effect of Al Content Variation on High Temperature Gas Nitriding in 13%Cr-0.16%C Stainless Steel)

  • 박범태;김정민;강희재;공정현;강창룡;성장현
    • 열처리공학회지
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    • 제24권6호
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    • pp.318-326
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    • 2011
  • This study has been performed to investigate the effect of Al addition on High Temperature Gas Nitriding (HTGN) in 13%Cr-0.16%C stainless steel with different Al contents of 0.54%, 1.76% and 2.36%, respectively. HTGN treatment was carried out at $1100^{\circ}C$ for 1 hr, 5 hrs and 10 hrs. Nitrogen-permeated surface layers showed round type carbides of $Cr_{23}C_6$ and needle type nitrides of AlN in the matrix of martensite, representing 600~700 Hv. And the thickness of the surface layer increased with increasing Al content and HTGN treatment time. The inner region that was not permeated nitrogen showed chromium carbides in the mixed phase of martensite and ferrite for the 0.53% Al alloyed steel, however chromium carbides in the matrix of ferrite single phase were shown for the steels with the addition of 1.76%Al and 2.36%Al, representing the hardness of ~200 Hv. During nitrogen permeation from surface to the interior, substitutional elements of Cr, Al and Si moved toward the surface and interstitial element of carbon also moved from interior to the surface. This movement of alloying elements leads high concentration of these elements at the outmost surface, subsequently the lowest peak of substitutional elements were shown in the vicinity of near surface. After showing the lowest peak, the high concentration region of Al and C were formed due to the continuous movement of Al toward the surface. The long discontinuous precipitates of $Cr_{23}C_6$ and AlN were formed along the outmost surface owing to the high concentration of these alloying elements.

Mod.9Cr-1Mo강의 항온변태시 기계적 특성변화에 미치는 Cr탄화물의 영향 (Influence of the Cr-Carbides on the Mechanical Characteristics during Isothermal Heat-Treatment of the Mod.9Cr-1Mo Steel)

  • 허성강;이재현;구지호;신기삼;;신종호
    • 한국재료학회지
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    • 제22권1호
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    • pp.46-53
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    • 2012
  • In this study, mechanical tests and microstructural analyses including TEM analyses with EDX of precipitates in modified 9Cr-1Mo steel were carried out to determine the cause of embrittlement observed after heat-treatment, which limits the usage of the alloy for power plants. Mod. 9Cr-1Mo steel specimens at austenite temperature were quenched to the molten salt baths at $760^{\circ}C$ and $700^{\circ}C$, in which the specimens were kept for 10 min ~ 10 hr with subsequent air-cooling. Impact tests showed that the impact value dropped abruptly when the specimens were kept longer than 30 min at $\sim760^{\circ}C$ reaching to minima in about 1 hr, and then increasing at further retention. The tensile strength of the specimens reached the minimum value without much change afterward, whereas the values of elongation showed the same trend as that of the impact value. The isothermally heat-treated steel at $700^{\circ}C$ also showed a minimum impact value in about 1 hr. These results suggest that the isothermal heattreatment at 760 and $700^{\circ}C$ for about 1 hr induces temporal embrittlement in Mod. 9Cr-1Mo steel. The microstructural examination of all the specimens with extraction replica of the carbides revealed that the specimens with temporal embrittlement had $Cr_2C$, indicating that the cause of the embrittlement was the precipitation of the $Cr_2C$. In addition, TEM/EDX results showed that the Fe/Cr ratio was 0.033 to 0.055 for $Cr_2C$, whereas it was 0.48 to 0.75 for $Cr_{23}C_6$, making the distinction of the $Cr_2C$ and $Cr_{23}C_6$ possible even without direct electron diffraction analyses.