• 제목/요약/키워드: Grain growth

검색결과 2,425건 처리시간 0.032초

THE EFFECTS OF TiN PARTICLES ON THE HAZ MICROSTRUCTURE AND TOUGHNESS IN HIGH NITROGEN TiN STEEL

  • Jeong, Hong-Chul;An, Young-Ho;Choo, Wung-Yong
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2002년도 Proceedings of the International Welding/Joining Conference-Korea
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    • pp.217-221
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    • 2002
  • In the coarse grain HAZ adjacent to the fusion line, most of the TiN particles in conventional Ti added steel are dissolved and austenite grain growth is easily occupied during welding process. To avoid this difficulty, thermal stability of TiN particle is improved by increasing the nitrogen content in steel. In this study, the effect of high nitrogen TiN particle on preventing austenite grain growth in HAZ was investigated. Increased thermal stability of TiN particle is helpful for preventing the austenite grain growth by pinning effect. High nitrogen TiN particle in simulated HAZ were not dissolved even at high temperature such as 1400 C and prevented the austenite grain growth in simulated HAZ. Owing to small austenite grain size in HAZ the width of coarse grain HAZ in high nitrogen TiN steel was decreased to 1/10 of conventional TiN steel. Even high heat input welding, the microstructure of coarse grain HAZ consisted of fine polygonal ferrite and pearlite and toughness of coarse grain HAZ was significantly improved.

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입계기공의 확산성장 모델을 이용한 고온기기의 크립균열전파해석(1)-응력장 및 균열전파속도에 미치는 입계기공의 영향- (Analysis of Creep Crack Growth at High-Temperature Components by Diffusive Growth Model of Grain Boundary Cavities (I)-Effect of Grain Boundary Cavitation on Stress Field and Crack Growth Rate-)

  • 전재영
    • 대한기계학회논문집A
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    • 제20권4호
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    • pp.1177-1185
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    • 1996
  • The crack growth under creep condition is one of the major damage mechanisms which determines remaining life of the component operating at high temperatures. In this paper, the creep crack growth by grain boundary cavitation is studied, which is frequently observed failure mechanism for creep brittle materials. As a result of diffusive growth of creep cavities, it is shown that the crack-tip stress field is modified from the original stress distribution by the amount of singularity attenuation parameter which is function of crack growth rate and material properties. Also, the stress relaxation at crack-tip results in the extension of cavitating area by the load dump effect to meet the macroscopic force equilibrium conditdion.

고크롬 (α+γ) 2상강의 결정립 성장기구 (A study on the grain growth mechanism in dual-phase high Cr-steel)

  • 위명용
    • 열처리공학회지
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    • 제11권4호
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    • pp.324-332
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    • 1998
  • The grain growth characteristics of dual-phase (${\alpha}+{\gamma}$) containing high Cr-steel have investigate using ${\alpha}$-, ${\gamma}$-single phases and (${\alpha}+{\gamma}$)dual-phase of 12%Cr Steel. The heat treatment has performed at $1000-1200^{\circ}C$ for 1-100hr. The results are as follows : 1) The grain growth rate in (${\alpha}+{\gamma}$) dual phase was substantially slower than that of single grain. 2) The relation between mean grain radius $\bar{{\gamma}}$ and annealing time t is, in general, described as following equation : $$(\bar{{\gamma}})^n-(\bar{{\gamma}_o})^n=K_n{\cdot}t{\cdots}{\cdots}(1)$$ i) In the case of single phase of high Cr steel, Eq.(1) is described as $(\bar{{\gamma}})^2-(\bar{{\gamma}_o})^2=K_2{\cdot}t$ and the grain growth is controlled by boundary migration. ii) In dual phase, the grain growth needs diffusion of alloying elements because the chemical composition of ${\alpha}$- and ${\gamma}$- phases differs from each other. When the volume fraction of ${\alpha}$-, ${\gamma}$-phase was almost equal and ${\gamma}$-phase in the case of 80 and $90%{\gamma}$. Eq.(1) is described as $(\bar{{\gamma}})^3-(\bar{{\gamma}_o})^3=K_3{\cdot}t$ because the grain growth is controlled by volume diffusion iii) In the case of ${\gamma}$-rich phase (80 and $90%{\gamma}$), the grain growth of minor phase (10 and $20%{\alpha}$) is described as $(\bar{{\gamma}})^4-(\bar{{\gamma}_o})^4=K_4{\cdot}t$ because the boundary diffusion is predominent rather than volume diffusion.

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Varietal Characteristics of Kernel Growth of Rice influenced by Different Temperature Regimes During Grain Filling

  • Kim, Deog-Su;Shin, Jin-Chul;Park, Kyung-Jin;Lee, Chung-Kuen;Kim, Je-Kyu
    • 한국작물학회지
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    • 제48권5호
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    • pp.397-401
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    • 2003
  • This experiment was conducted to know the characteristics of kernel growth as affected by various temperature regimes during grain filling using the varieties Hwaseongbyeo, Ilpumbyeo and Chucheongbyeo. The rice plants tested were grown in the natural condition at 1/5000a Wagner pots until flowering. After flowering, the rice plants were moved to controlled temperature conditions in a phytotron. The minimum/maximum daily temperature in the phytotron was controlled by 12/18, 15/21, 18/24, 21/27, and 24/$30^{\circ}C$, respectively. The grain weights were measured every three days after treatment. The mean daily kernel growth rate during active grain filling period showed different responses among varieties under various temperature regimes. The kernel growth rate of Chucheongbyeo was seriously reduced as temperature regimes were decreased. However, that of Ilpumbyeo was not influenced so critically. Ilpumbyeo showed some advantages in grain filling under low temperature regimes compared to Chucheongbyeo. The lag phase in grain filling of Chucheongbyeo was the longest among tested varieties, followed by Hwaseongbyeo under daily mean temperature regime of $15^{\circ}C$. Kernel weight of Ilpumbyeo increased fast in early grain filling phase under low temperature. This characteristic may be favorable for grain filling in temperate zone where the daily mean temperature is drastically dropped during grain filling period. Regression analysis with kernel growth rate and temperature showed the estimated critical low temperature for grain filling among varieties were $9^{\circ}C$, $12^{\circ}C$, $13^{\circ}C$ in Ilpumbyeo, Hwaseongbyeo and Chucheongbyeo, respectively. Under moderate temperature the duration of grain filling of Ilpumbyeo was longer than that of Chucheongbyeo. However, Under low temperature that of Ilpumbyeo was more favorable than Chucheongbyeo.

분위기와 첨가제가 TiO2 세라믹스의 입자성장에 미치는 영향 (Effects of Additives and Atmospheres on the Grain Growth of TiO2 Ceramics)

  • 박정현;최헌진;박한수
    • 한국세라믹학회지
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    • 제25권4호
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    • pp.390-398
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    • 1988
  • Effects of atmospheres and adidtives on the grain growth of TiO2 ceramics were investigated. In the range of 1300~140$0^{\circ}C$, grain growth was increased in CO2 as compared with O2 atmosphere and the grain boundary migration activation energy was lower than the diffusion activation energy of oxygen ion in TiO2. Also, in the case of addition of oxides, the grain growth was increased by oxides acting as a acceptor andinhibited by oxides acting as a donor. From the above results, when the oxygen vacancy concentration was increased, the intrinsic grain boundary mobility was increased and the pore drag force was decreased due to the rapid densification. Also it seems that the pore was migrated by the surface diffusion rather than lattice diffusion.

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이온선 조사의 열충격 효과에 의한 grain 성장 (Grain Growth By The Thermal Spike Effect of the Ion Irradiation)

  • 김성수;송종환;채근화;주장헌;우정주;이임렬;황정남;김현경;문대원
    • 한국표면공학회지
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    • 제24권3호
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    • pp.137-143
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    • 1991
  • The relation between the ion irradiation induced grain growth and the basic parameters sinvolved in ion beam mixing process was studied. TEM micrographs showed that a significant grain growth has been induced by Ar+ irradiation at room temperature. The grain size increases rapidly in low dose region, while it approaches a saturated value in high dose region, and it has close relationship with nuclear energy deposition and thermodynamic properties such as cohesive energy ( Hc) and heat of mixing ( Hm). A model for the grain growth based on the thermal spike induced atomic migration was developed and applied to interpret experimental results.

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첨가제와 소결분위기가 $SnO_2$ 요업체의 치밀화에 미치는 영향 (Effects of Sintering Atmosphere and Dopant Addition on the Densifcation of $SnO_2$ Ceramics)

  • 정재일;김봉철;장세홍;김정주
    • 한국세라믹학회지
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    • 제34권12호
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    • pp.1221-1226
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    • 1997
  • The effects of sintering atmosphere and dopant addition on the behavior of densification and grain growth of SnO2 ceramics were investigated with consideration of defect chemistry. CoO and Nb2O5 were chosen as dopants, and oxygen and nitrogen were used for controlling of sintering atmospheres. With the decrease of oxygen partial pressure, densification was depressed due to evaporation of SnO2 ceramics. In the case of SnO2 sintering, the addition of CoO, which produced oxygen vacancy in SnO2 ceramics, led to acceleration of densification and grain growth. On the contrary, when Nb2O5 as a dopant producing Sn vacancy was added to SnO2 ceramics, densification and grain growth were simultaneously retarded. As results, it was conformed that diffusion of oxygen ions was rate determinant in densification and grain growth of SnO2 ceramics.

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Effect of Interface Structures on Densification and Grain Growth during Sintering

  • Hwang, Nong-Moon
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
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    • pp.62-63
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    • 2006
  • Both densification and grain growth are driven by the reduction of the interfacial area, kinetics of which depends strongly on the interface structure. Abnormal grain coarsening in the system of singular solid/liquid interface such as WC-Co alloys was explained by the growth mechanism of 2-dimensional nucleation. Based on this concept, the marked inhibition of coarsening of WC grains by VC addition can be approached by the increase in the step free energy, which increases the barrier of 2-dimensional nucleation. The activated sintering in tungsten powders can be approached by the interface structure change induced by the addition of a small amount of nickel.

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알루미늄 1050계 판재에서 결정립 성장 집합조직에 미치는 재결정 집합조직의 영향 (Effect of Primary Recrystallization Texture on the Formation of Grain Growth Texture in Aluminum 1050 Sheet)

  • 김현철;강형구;허무영
    • 대한금속재료학회지
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    • 제47권6호
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    • pp.356-362
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    • 2009
  • In order to vary the primary recrystallization textures, AA 1050 sheets were cold rolled in two different manners. Differences in cold rolling schedule gave rise to the formation of different cold rolling textures also leading to the formation of different primary recrystallization textures. Upon annealing for grain growth, changes in microstructure and texture hardly occurred in the sample depicting Cube recrystallization texture, while grain growth was accompanied with the development {001}<100> Cube texture in the sample displaying a recrystallization texture comprising of weak rolling texture components. The selective growth of Cube oriented grains is attributed to the high mobility of their grain boundaries.

알루미나가 분산된 세리아 안정화 지르코니아 세라믹스의 미세구조 (Microstructure of alumina-dispersed Ce-TZP ceramics)

  • 김민정;이종국
    • 한국결정성장학회지
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    • 제10권2호
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    • pp.122-127
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    • 2000
  • 불규칙 입자형성을 갖는 Ce-TZP와 알루미나가 분산된 Ce-TZP 세라믹스를 세라아 도핑조선과 열처리 조건을 변화시켜 제조한 다음, 미세구조를 관찰하였다. 제조된 시편들은 상대밀도가 99% 이상인 고밀도의 소결체였으며, 정방정 및 입방정상 지르코니아 입자로 구성되었다. 도핑하지 않거나 소결만 시킨 시편의 경우 직선적인 입계와 정상적인 입자형성을 나타낸데 비하여 세리아를 침적법으로 도핑한 후 고온으로 열처리한 시편에서는 확산구동 입계이동이 일어나 입계 및 입자형성이 불규칙하였으며. 이러한 Ce-TZP에서는 입자당 평균 입계같이 정상입자에 비하여 크게 증가하였다. 알루미나를 분산시켜 소결한 {{{{ { Al}_{2 }{ O}_{3 } }}}}/Ce- TZP 시편의 경우, 알루미나 입자에 의해서 입성장이 크게 억제되었고, 세리아를 도핑한 후 소결과 열처리를 행한 {{{{ { Al}_{2 }{ O}_{3 } }}}}/Ce-TZP에서는 불규칙 입자형상이 형성되면서도 입성장이 억제되어 입자크기에 비하여 입계면적이 크게 증가하였다. 분산된 알루미나 입자들은 소결과 열처리 과정 중 입자크기가 증가하였고, 열처리 동안 많은 입자들이 입계에서 입내로 위치가 변화하였다. 정상적인 입자형성을 갖은 시편에서는 균열진전시 입계파괴가 주로 일어났으나 불규칙 입자형성을 갖는 시편에서는 주로 입내파괴가 관찰되었다.

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