• 제목/요약/키워드: lath martensite

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Fe-Ni 합금에서 래쓰 마르텐사이트와 렌즈상 마르텐사이트의 반복변태사이클(α' ↔ γ')에 따른 미세조직과 기계적 성질 (Effect of Transformation Cycles(α' ↔ γ')on Microstructures and Mechanical Properties of Lath and Lenticular Martensites in Fe-Ni Alloys)

  • 서성복;전중환;최종술
    • 열처리공학회지
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    • 제13권2호
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    • pp.85-90
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    • 2000
  • The influence of transformation cycles (${\alpha}^{\prime}{\leftrightarrow}{\gamma}^{\prime}$) on the microstructure and mechanical properties of lath and lenticular martensites has been studied in Fe-Ni alloys. The width of lath in Fe-15%Ni alloy decreased with increasing the number of transformation cycles, while no appreciable change in dislocation density inside the lath was observed. In case of Fe-31%Ni alloy, a number of dislocations were additionally introduced into the martensite plate after the transformation cycling. Tensile strength and Vickers hardness of lath martensite decreased with the increase in number of transformation cycles, whereas those of lenticular martensite increased up to 1 cycle and then remained constant. Elongation of two alloys was deteriorated after 1 transformation cycling, corresponding to the tensile strength. But the decrement of elongation in Fe-31%Ni alloy was smaller than that in Fe-15%Ni alloy.

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Fe-Ni-Mn-(Ti)계 마르에이징강에서 역변태 오스테나이트의 거동 (Behavior of Reverted Austenite in Fe-Ni-Mn-(Ti) Maraging Steels)

  • 김성준
    • 분석과학
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    • 제6권1호
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    • pp.141-147
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    • 1993
  • Fe-Ni-Mn-(Ti)계 마르에이징강을 용체화처리한 후 $400^{\circ}C$부터 $550^{\circ}C$ 사이에서 장시간 시효처리할 때 생성되는 역변태 오스테나이트의 거동을 투과전자현미경 및 분석전자현미경을 이용하여 관찰하였다. 시효온도와 시간에 따라 Widmanstatten, granular, lath-like 및 재결정 오스테나이트 등 4 종류의 역변태 오스테나이트가 관찰되었으며, 역변태 오스테나이트들은 기지조직인 마르텐사이트보다 많은 니켈과 망간을 함유하고 있었다. Widmanstatten과 lath-like 오스테나이트는 기지 조직과 일정한 방위관계를 이루고 있으며 방위관계는 시효조건과 합금조성에 따라 달라진다. 재결정 오스테나이트는 $550^{\circ}C$ 이상의 고온에서 시효할 때 생기지만 불안정하여 냉각시 다시 마르텐사이트로 변태되는 경우도 발견되었다.

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Fe와 V이 Zr-0.8Sn 합금의 $\beta{\rightarrow}\alpha$ 상변태 특성에 미치는 영향 (The Effects of Fe and V on the Characteristics of $\beta$to$\alpha$ Transformation for Zr-0.8Sn Alloys)

  • 오영민;김선진
    • 한국재료학회지
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    • 제10권9호
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    • pp.636-641
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    • 2000
  • Zr-0.86Sn 합금이 $\beta{\rightarrow}\alpha$상변태 특성에 미치는 Fe와 V의 영향을 광학현미경과 투과전자현미경으로 연구하였다. 공냉의 경우에는 V의 첨가량이 증가함에 다라 $\beta{\rightarrow}\alpha+\beta$변태온도가 감소하여 미세한 $\alpha$-lath들의 폭을 더욱 감소시켰으나, Fe의 경우에는 첨가량이 증가함에 다라 오히려 $\alpha$-lath의 폭이 약간 증가하였다. 수냉의 경우에는 모든 합금에서 martensite 미세구조를 보였다. 수냉한 Zr-0.8Sn, Zr-0.8Sn-0.1Fe, Zr-0.8Sn-0.2Fe, Zr-0.8Sn-0.4Fe, Zr-0.8Sn-0.1V 그리고 Zr-0.8Sn-0.2V 합금에서는 주로 slipped martensite 미세구조가 형성된 반면에 수냉한 Zr-0.8Sn-0.4V 합금에서는 twinned martensite 미세구조가 관찰하였다. 수냉한 Zr-0.8Sn 합금에서 V의 첨가향이 증가함에 따라 slipped martensite에서 twinned martensite 미세구조로의 천이는 M(sub)s 온도의 감소에 기인한 것으로 생각된다.

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Fe-Ni-C 마르텐사이트 합금에서 마르텐사이트의 형상이 진동감쇠능과 기계적 성질에 미치는 영향 (Effect of Martensite Morphology on Damping Capacity and Mechanical Property of Fe-Ni-C Alloys)

  • 이영국;신한철;최종술
    • 열처리공학회지
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    • 제10권3호
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    • pp.188-197
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    • 1997
  • Effect of martensite morphology on damping capacity and hardness of Fe-Ni-C martensitic alloys were studied. The morphologies of martensite such as lath, butterfly, lenticular and thin plate were prepared by adjusting nickel content and austenite grain size. The hardness increased in order of lath, lenticular, thin plate, butterfly. The damping capacities of the lath and butterfly martensites were higher than those of the other two morphologies, indicating that the dislocation substructure is more effective in the damping capacity than the twin substructure. Especially, the butterfly martensite showed the highest damping capacity among these morphologies because of presence of not tangled but free dislocations in there.

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저탄소 마르텐사이트 강의 냉간압연과 온간압연을 통한 미세조직 개질

  • 이종철;강의구;이중원;오창석;김성준;남원종
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 춘계학술대회 논문집
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    • pp.274-277
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    • 2009
  • There have been a number of works on manufacturing ultrafine grained steels with average ferrite grain sizes of smaller than a few micrometers to develop beneficial high strength steels. Among microstructures in low carbon steels, lath martensite is known to be useful to produce an ultrafine grained ferrite matrix and finely globular cementite particle. Thus, severe plastic deformation and subsequent annealing at lower temperature of lath martensite would become an effective way to produce ultrafine grained steels. However, most ultrafine grained steels exhibited a total elongation of a few per cent in tensile tests. Such a defect is one of the primary factors restricting the potential applications of ultrafine grained steels. Therefore, the improvement of the strength-elongation balance is required for the application of ultrafine grained structural steels. In this study, the effect of deformation temperatures on microstructure, such as ferrite grain size and the distribution of cementite particles, and mechanical property of lath martensite steels, was investigated. Specimens were fabricated through cold rolling or warm rolling and subsequent annealing.

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Fe-Mn 이원계에서 비열탄성형 BCC 마르텐사이트와 HCP 마르텐사이트의 진동감쇠능 (Damping Capacities of Nonthermoelastic BCC and HCP Martensites of Fe-Mn Binary System)

  • 최종술;김준동;문인기;백승한
    • 열처리공학회지
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    • 제4권4호
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    • pp.15-23
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    • 1991
  • The damping capacities of the nonthermoelastic bcc type lath martensite and of the nonthermoelastic hcp type thin plate martensite in Fe-Mn alloys were studied. Fe-17%Mn alloy showing the hcp type thin plate martensite was superior to Fe-4%Mn alloy having the bcc type lath martensite in damping capacity. The damping capacity of the Fe-17%Mn alloy became greater with increasing the hcp martensite volume fraction. The damping mechanism of the Fe-4%Mn alloy was well explained by the dislocation model. However, the damping mechanism of the Fe-17%Mn alloy was explained on the basis of austenite/martensite interface moving model. The two alloys showed almost same levels of tensile strength. However, the elongation was greater in the Fe-17%Mn alloy than in the Fe-4%Mn alloy, showing lower yield strength in the former than in the latter. This result was considered to be attributed to formation of stress-induced martensite during tension test.

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Zn-Sn 및 Zr-Nb 합금의 ${\beta}{\to}{\alpha}$ 상변태 특성 (The Characteristics of the ${\beta}\;to\;{\alpha}$ Transformation for Zr-Sn and Zr-Nb Alloys)

  • 오영민;정흥식;정용환;김선진
    • 한국재료학회지
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    • 제9권12호
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    • pp.1222-1228
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    • 1999
  • Zr의 ${\beta}{\to}{\alpha}$ 상변태 특성에 미치는 Sn과 Nb 첨가의 영향을 광학현미경과 전자현미경을 이용하여 연구하였다. 공냉한 Zr의 미세구조는 첨가된 합금원소의 종류에 관계없이 모두 미세한 ${\alpha}$-lath 폭이 일정하였으나, Nb의 첨가량이 증가할수록 ${\alpha}$-lath 폭이 감소하였으며, 이는 Nb 첨가에 따른 ${\beta}{\to}{\alpha}$+${\beta}$변태온도의 저하에 기인한 것으로 보인다. Martensitic 변태 특성을 나타낸 수냉의 경우에는 순수한 Zr과 Sn을 첨가한 경우에는 slipped martensite의 특성을 나타낸 반면에, Nb을 첨가한 경우에는 급격한 Ms 온도의 감소에 따라 twinned martensite의 특성을 나타내었다.

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개량 9Cr-1Mo 강의 장시간 크리프거동에 미치는 경도와 하부조직의 영향 (Effect of Hardness and Substructure on Long-term Creep Behavior of Mod.9Cr-1Mo Steel)

  • 박규섭;이근진;정한식;김정호;정영관;엔도타카오
    • 한국정밀공학회지
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    • 제21권2호
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    • pp.168-176
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    • 2004
  • Interrupted creep tests were carried out on the Mod.9Cr-1Mo steel in order to investigate the structural degradation during creep. The ranges of creep stress and temperature were from 71 to 167MPa and 873 to 923k, respectively. The change of hardness and tempered martensitic lath width were measured in the grip and gauge parts of interrupted specimens. The lath structure was thermally stable in static conditions, but was not stable during creep, and the structural evolution was enhanced by creep strain. The relation between the change in lath width and strain was described in the from, $\delta$W= a ($W_s-W_o$)$cdot;varepsilon$, where $\varepsilon$ is the strain, $W_o$is the initial lath width, $W_s$ is the final lath width depending solely on stress, and a is the constant of the magnitude of 0.67 $\mu$m /strain. The change in Victors hardness was expressed by a one-valued function of creep life consumption ratio. Based on the empirical relation between strain and lath width, a model was proposed to explain the relation between change in hardness and creep life consumption ratio. The model revealed that about 65$%$ of dislocations in lath structures were eliminated by the migration of subboundaries.

핫스탬핑용 30MnB5강의 템퍼링 조건에 따른 미세조직 및 기계적 물성 연구 (Effects of Tempering Condition on the Microstructure and Mechanical Properties of 30MnB5 Hot-Stamping steel)

  • 정준영;박상천;신가영;이창욱;김태정;최민수
    • 대한금속재료학회지
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    • 제56권11호
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    • pp.787-795
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    • 2018
  • The effects of tempering condition on the microstructure and mechanical properties of 30MnB5 hot stamping steel were investigated in this study. Before the tempering, hot-stamped 30MnB5 steel was composed of only ${\alpha}^{\prime}$-martensite microstructure without precipitates. After the tempering at $180^{\circ}C$ for 120 min, nano-sized ${\varepsilon}$-carbides were precipitated in the ${\alpha}^{\prime}$-martensite laths. After tempering at $250^{\circ}C$ for 60 min, cementite was precipitated along the ${\alpha}^{\prime}$-martensite lath boundaries. The cementite was also observed in the specimens tempered at $350^{\circ}C$ for 30 min and $450^{\circ}C$ for 6 min, respectively. The globular ${\alpha}$-ferrite appeared at $350^{\circ}C-30min$ tempering, and the volume fraction of ${\alpha}$-ferrite increased when the tempering temperature was increased. The yield strength increased after tempering, and it reached a peak with the tempering condition of $180^{\circ}C-120min$, due to the nano-sized precipitates in the ${\alpha}^{\prime}$-martensite lath. After the tempering, the steel's ultimate tensile strength (UTS) was decreased due to the reduction in dislocation density and C segregation to lath boundaries. The highest elongation was observed at the $180^{\circ}C-120min$ tempering condition, due to the reduction of residual stress, and the lack of precipitates along the lath boundaries. The $180^{\circ}C-120min$ tempering condition was considered to have outstanding crash performance, according to toughness and anti-intrusion calculation results. In drop tower crash tests, the 30MnB5 door impact beam tempered at $180^{\circ}C$ for 120 min showed better crash performance compared to a 22MnB5 door impact beam.

The effect of cooling rates on carbide precipitate and microstructure of 9CR-1MO oxide dispersion strengthened(ODS) steel

  • Jang, Ki-Nam;Kim, Tae-Kyu;Kim, Kyu-Tae
    • Nuclear Engineering and Technology
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    • 제51권1호
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    • pp.249-256
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    • 2019
  • The 9Cr-1Mo ferritic-martensitic ODS steel is a promising structural material for the next generation nuclear power plants including fast reactors for application in reactor vessels and nuclear fuel. The ODS steel was cooled down by furnace cooling, air cooling, oil quenching and water quenching, respectively, after normalizing it at $1150^{\circ}C$ for 1 h and then tempering at $780^{\circ}C$ for 1 h. It is found that grain size, a relative portion of ferrite and martensite, martensitic lath configuration, behaviors of carbide precipitates, and hardness of the ODS steel are strongly dependent on a cooling rate. The grain size and martensitic lath width become smaller with the increase in a cooling rate. The carbides were precipitated at the grain boundaries formed between the ferrite and martensite phases and at the martensitic lath interfaces. In addition, the carbide precipitates become smaller and more widely dispersed with the increase in a cooling rate, resulting in that the faster cooling rate generated the higher hardness of the ODS steel.