• Title/Summary/Keyword: Dislocation Structure

검색결과 131건 처리시간 0.023초

다결정 미세입자 소각입계면에서의 전위밀도 확산 (Dislocation Density Propagation adjacent to the Low Angle Grain Boundaries of Polycrystalline Materials)

  • 마정범
    • 한국생산제조학회지
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    • 제20권5호
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    • pp.618-622
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    • 2011
  • Specialized large-scale computational finite-element and molecular dynamic models have been used in order to understand and predict how dislocation density emission and contact stress field due to nanoindentation affect inelastic deformation evolution scales that span the molecular to the continuum level in ductile crystalline systems. Dislocation density distributions and local stress fields have been obtained for different crystalline slip-system and grain-boundary orientations. The interrelated effects of grain-boundary interfaces and orientations, dislocation density evolution and crystalline structure on indentation inelastic regions have been investigated.

Si 모재 위의 $Si_xGe_{1-x}$ 박막에서 부정합 전위와 임계두께에 관한 연구 (Study on Misfit Dislocations and Critical Thickness in a $Si_xGe_{1-x}$ Epitaxial Film on a Si Substrate)

  • 신정훈;김재현;엄윤용
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집A
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    • pp.298-303
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    • 2001
  • The critical thickness of an epitaxial film on a substrate in electronic or optoelectronic devices is studied on the basis of equilibrium dislocation analysis. Two geometric models, a single dislocation and an array of dislocations in heteroepitaxial system, are considered respectively to calculate the misfit dislocation formation energy. The isotropic linearly elastic stress fields for the models are obtained by means of complex potential method combined with alternating technique, and are used for calculating the formation energies. As a result, the effect of elastic mismatch between film and substrate on critical thickness is presented and $Si_xGe_{1-x}/Si$ epitaxial structure is analyzed to predict the critical thickness with varying germanium concentration.

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고온가압성형된 다결정 $TiB_{2}$내에서 전위구조 (Dislocation structure in hot-pressed polycrystalline $TiB_{2}$)

  • Kwang Bo Shim;Brian Ralph;Keun Ho Auh
    • 한국결정성장학회지
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    • 제6권2호
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    • pp.194-202
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    • 1996
  • 고온가압성형된 다결정상 titanium diboride내에 형성된 전위구조를 투과전자현미경으로 분석하였다. Ion beam thinner를 사용하여 제작한 박편시편은 전위구조에 대한 특징을 드러내 보였다. 이들 특징들은 전위들로 배열된 적각결정입계, ledges나 steps들이 결정입계면에 존재하는 고각결정입계 등이다. 결정입계에서의 ledges나 steps들은 전위형성이나 결정입계 근처에서의 crack전파와 같은 결함구조로서 평가되었고, 고각결정입계는 부분적으로 결정입계전위를 포함하고 있는 것으로 관찰되었다. 또한, 시편의 미세구조에 존재하는 전위들의 Burger's vectors를 결정하였다.

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미세조직기반 구성모델을 이용한 고크롬강의 크리프 거동 해석 (Creep Behavior Analysis of High Cr Steel Using the Constitutive Model Based on Microstructure)

  • 윤승채;서민홍;백경호;김성호;류우석;김형섭
    • 소성∙가공
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    • 제13권2호
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    • pp.160-167
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    • 2004
  • In order to theoretically analyze the creep behavior of high Cr steel at $600^{\circ}C$, a unified elasto-viscoplastic constitutive model based on the consideration of dislocation density is proposed. A combination of a kinetic equation describing the mechanical response of a material at a given microstructure in terms of dislocation glide and evolution equations for internal variables characterizing the microstructure provides the constitutive equations of the model. Microstructural features of the material such as the grain size and spacing between second phase particles are directly implemented in the constitutive equations. The internal variables are associated with the total dislocation density in a simple model. The model has a modular structure and can be adjusted to describe a creep behavior using the material parameters obtained from uniaxial tensile tests.

미세조직학적 변수를 고려한 합금의 구성모델링 (Constitutive Modelling of Alloys Implementing Microstructural Variables)

  • 김형섭;김성호;류우석
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2002년도 춘계학술대회 논문집
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    • pp.129-132
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    • 2002
  • A unified elastic-viscoplastic ocnstitutive model based on dislocation density considerations is described. A combination of a kinetic equation, which describes the mechanical response of a material at a given microstructure in terms of dislocation glide and evolution equations for internal variables characterizing the microstructure provide the constitutive equations of the Model. Microstructural features of the material, such as the grain size, spacing between second phase particles etc., are directly implemented in the constitutive equations. The internal variables are associated with the total dislocation density in the simple version of the model. The model has a modular structure and can be adjusted to describe a particular type of metal forming processes.

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나노구조를 응용한 AlN 성장 방법 및 특성 (High Quality AlN Layer Regrown on AlN Nanostructure by Hydride Vapor Phase Epitaxy)

  • 손호기;김진원;임태영;이미재;김진호;전대우;황종희;오해곤;최영준;이혜용
    • 한국전기전자재료학회논문지
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    • 제28권11호
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    • pp.711-714
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    • 2015
  • In this paper, high quality AlN layers were regrown on AlN nanopillar structure with $SiO_2$-dots by HVPE. Surface morphology of AlN layer regrown exhibited flatter than a conventional AlN template. The laterally overgrown AlN regions would consist of a continuous well coalesced layer with lower dislocation density than in the template because of the dislocation blocking and dislocation bending effects. Moreover, result of Raman spectroscopy suggest that the AlN nanopillar structure with $SiO_2$-dots relieves the strain in the AlN layer regrown by HVPE.

Cu와 Cu-Zn 합금의 저주기피로 동안 발달한 미세조직 평가를 위한 비파괴기술 (Nondestructive Techniques for Characterization of Microstructural Evolution during Low Cycle Fatigue of Cu and Cu-Zn Alloy)

  • 김정석;장경영;현창용
    • 비파괴검사학회지
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    • 제31권1호
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    • pp.32-39
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    • 2011
  • 본 연구에서는 Cu와 Cu-Zn 합금의 저주기 피로 동안 발달한 전위 하부조직의 변화를 비파괴적으로 구분하고 평가하고자 하였다. 비파괴시험으로 초음파속도, 전기비저항 그리고 양성자소멸시간을 측정하였다. 서로 다른 적층결함 에너지를 갖는 Cu와 Cu-Zn에 대해 반복피로시험을 수행하고 이들 재료에서의 전위거동과 비파괴평가 파라미터와의 상관성을 연구하였다. Cu는 전위셀 하부구조를 형성하였지만, Cu-Zn 합금은 피로 사이클에 따라서 전위밀도는 증가하고 단지 평면배열의 전위구조를 형성하였다. 상온에서의 반복적인 피로에 의해 발달한 격자결함인 전위와 공공으로 인해 초음파속도의 감소, 전기비저항의 증가 그리고 양성자 소멸시간이 증가하였다. 비파괴평가파라미터의 지속적인 변화를 보이는 평면배열의 전위구조를 갖는 Cu-Zn에서와 달리, Cu에서는 전위셀구조가 발달하면서 더 이상의 큰 변화를 보이지 않았다.

단순 전단변형에 의한 15Cr 산화물 분산강화 강의 미세조직 변화 (Microstructure Evolution of 15Cr ODS Steel by a Simple Torsion Test)

  • 진현주;강석훈;김태규
    • 한국분말재료학회지
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    • 제21권4호
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    • pp.271-276
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    • 2014
  • 15Cr-1Mo base oxide dispersion strengthened (ODS) steel which is considered to be as a promising candidate for high- temperature components in nuclear fusion and fission systems because of its excellent high temperature strength, corrosion and radiation resistance was fabricated by using mechanical alloying, hot isostatic pressing and hot rolling. Torsion tests were performed at room temperature, leading to two different shear strain routes in the forward and reverse directions. In this study, microstructure evolution of the ODS steel during simple shearing was investigated. Fine grained microstructure and a cell structure of dislocation with low angle boundaries were characterized with shear strain in the shear deformed region by electron backscattered diffraction (EBSD). Grain refinement with shear strain resulted in an increase in hardness. After the forward-reverse torsion, the hardness value was measured to be higher than that of the forward torsion only with an identical shear strain amount, suggesting that new dislocation cell structures inside the grain were generated, thus resulting in a larger strengthening of the steel.

Al-Mg합금의 압연변수에 다른 미세구조의 변화와 고온인장특성 (The effects of rolling process on microstructures and high temperature tensile properties of Al-Mg alloy)

  • 김태규;전채홍;권숙인;박종우
    • 열처리공학회지
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    • 제10권2호
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    • pp.81-92
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    • 1997
  • The effect of alloying elements, precipitate size, its distribution, and dislocation substructure resulted from warm rolling or cold rolling in the superplastic Al-Mg alloy system was investigated. One of the major requirements for fine structure superplasticity is that the grain size should be very small. Fine grain structure is controlled by the dislocation substructure and the dynamic recrystallization during hot or warm working. The recovery of Al-Mg base alloys was constrained resulting in relatively high dislocation density when the alloys were warm rolled. In particular, Al-Mg-Zr alloy exhibited the smallest sub-grain size among Al-Mg alloys containing Mn, Cu, Zr as a third element. The Al-Mg-Mn alloy cold rolled 80% after hot rolling showed the maximun strain rate sensitivity exponent, m, of 0.75 under strain rate of $7.1{\times}10^{-4}/s$ at $500^{\circ}C$. The elongation of the alloys was limited in spite of high m values due to large dispersoids containing appreciable amount of Fe impurities.

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Al-Cu-Mg 합금에 있어서의 2차 결함조직 (The Secondary Defect Structure in Al-Cu-Mg Alloy)

  • 조현기;우기도
    • Applied Microscopy
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    • 제16권2호
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    • pp.14-24
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    • 1986
  • The interrelation of secondary defects, intermediate S' phase and aging condition in Al-2.0 wt% Cu-1.1 wt% Mg alloy is studied by transmission electron microscope. The results obtained in this study are as follows. 1. High density of dislocation loops, helices and stacking faults are observed in this specimen with aging treatment. 2. The number of dislocation loops and the width of loop free zone (LFZ) are increased with aging time. 3. The intermediate S' phase precipitates and grows on the dislocations and secondary defects. 4. The misfit dislocations are formed around intermediate S' phase. 5. It is thought that the helices appear to be produced by the climb of screw dislocations, while the dislocation loops appear to be formed both by condensation of vacancies into collapsed discs and by interaction of helices with screw of opposite sign.

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