• 제목/요약/키워드: Lattice deformation

검색결과 104건 처리시간 0.02초

Ll2-규칙 Ni3(Al,Cr) 중에 M23C6형 carbide의 석출 (Precipitation of M23C6 type carbide in Ll2-Ordered Ni3(Al,Cr))

  • 한창석;김윤채
    • 열처리공학회지
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    • 제9권3호
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    • pp.205-211
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    • 1996
  • Structural studies have been performed on precipitation hardening discovered in $Ll_2$-ordered $Ni_3$(Al,Cr) containing 0.2 and 0.5 mol% of carbon in terms of transmission electron microscopy(TEM). By aging at temperatures around 1073 K after solution treatment at 1423 K, fine polyhedral precipitates appear firstly on the dislocations and then in the matrix. The selected area electron diffraction (SAED) studies revealed that these particles are a $M_{23}C_6$ type carbide which has the cube-cube orientation relationship with the matrix lattice. Weak-beam electron microscopy observations of deformation induced dislocations suggested that the dislocations bypass the carbide particles during deformation.

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다결정재의 이방성 탄.점소성 유한요소해석 (Anisotropic Elasto-Viscoplastic Finite Element Analysis for Polycrystalline Materials)

  • 이용신;김응주
    • 한국CDE학회논문집
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    • 제2권2호
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    • pp.71-76
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    • 1997
  • The deformations of polycrystalline materials are modelled by linking a constitutive equation for the crystallographic slip of a single crystal to the macroscopic behavior of the aggregate. In this study, anisotropic elasticity (lattice stretching) of a cubic crystal is incoporated into the anisotropic plasticity from crystallographic slip. The constitutive description for the aggregate, derived from a crystal plasticity theory, is used to formulate a Consistent Penalty Finite Element Method for the anisotropic elasto-viscoplastic deformation of polycrystalline materials. As an application, a plane-strain forging process is simulated and the effects of the initial textures on the deformation behavior of the workpiece are examined.

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석출 강화된 단결정의 소성변형에 관한 모델링 (Modeling the Plastic Deformation of Crystals with Thin Precipitates)

  • 김준형;한정석;강태진;정관수
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2005년도 춘계학술대회 논문집
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    • pp.155-158
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    • 2005
  • Precipitates, present in most commercial alloys, can have a strong influence on strength and hardening behavior of a single crystal. The effect of thin precipitates on the anisotropy of initial slip resistance and hardening behavior of crystals is modeled in this article. For the convenience of the computational derivation and implementation, the material formulation is given in the unrelated intermediate configuration mapped by the plastic part of the deformation gradient. Material descriptions for the considered two phased aggregates consisting in lattice hardening as well as isotropic hardening and kinematic hardening are suggested. Numerical simulations of various loading cases are presented to discuss and assess the performance of the suggested model.

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가공열처리에 의한 Fe-30% Ni-0.1%C 합금의 기계적성질 변화 (The Variation of Mechanical Properties by Thermomechanical Treatment in Fe-30%Ni-0.1 %C Alloy)

  • 안행근;김학신
    • 열처리공학회지
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    • 제7권2호
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    • pp.88-95
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    • 1994
  • In order to compare mechanical properties of ausformed martensite with those of marformed martemsite in Fe-30%Ni-0.1%C alloy and to investigate their strengthening mechanisms, ausformed martensite and marformed martensite were prepared by ausforming treatment and marforming treatment respectively. The microstructures were observed and the quantities of retained austenite, hardness, yield strength, ultimate tensile strength and elongation were examined. The strength of ausformed martensite was mainly increased because of the lattice defects inherited from austenite. The ductility of ausformed martensite was constant at the rate of 7-8% by ductile matrix formation of the retained austenite in spite of the increase in strength. The strength of marformed martensite was increased by the increment in dislocation density, the crossing of transformation twin with deformation twin and the mutual crossing of deformation twin. The ductility of mar formed martensite was slightly lower than that of ausformed martensite, but the strength of mar formed martensite was prominently higher.

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초음파 비선형파라미터를 이용한 무산소동 저주기피로와 2.25Cr 페라이트강의 등온열화 평가 (Characterization of Low-cycle Fatigue of Copper and Isothermal Aging of 2.25Cr Ferritic Steel by Ultrasonic Nonlinearity Parameter)

  • 김정석
    • 열처리공학회지
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    • 제35권5호
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    • pp.239-245
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    • 2022
  • The purpose of this study is to evaluate the degree of microstructural change of materials using ultrasonic nonlinear parameters. For microstructure change, isothermal heat-treated ferritic 2.25Cr steel and low-cycle fatigue-damage copper alloy were prepared. The variation in ultrasonic nonlinearity was analyzed and evaluated through changes in hardness, ductile-brittle transition temperature, electron microscopy, and X-ray diffraction tests. Ultrasonic nonlinearity of 2.25Cr steel increased rapidly during the first 1,000 hours of deterioration and then gradually increased thereafter. The variation in non-linear parameters was shown to be coarsening of carbides and an increase in the volume fraction of stable M6C carbides during heat treatment. Due to the low-cycle fatigue deformation of oxygen-free copper, the dislocation that causes lattice deformation developed in the material, distorting the propagating ultrasonic waves, and causing an increase in the ultrasonic nonlinear parameters.

Nodal method for handling irregularly deformed geometries in hexagonal lattice cores

  • Seongchan Kim;Han Gyu Joo;Hyun Chul Lee
    • Nuclear Engineering and Technology
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    • 제56권3호
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    • pp.772-784
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    • 2024
  • The hexagonal nodal code RENUS has been enhanced to handle irregularly deformed hexagonal assemblies. The underlying RENUS methods involving triangle-based polynomial expansion nodal (T-PEN) and corner point balance (CPB) were extended in a way to use line and surface integrals of polynomials in a deformed hexagonal geometry. The nodal calculation is accelerated by the coarse mesh finite difference (CMFD) formulation extended to unstructured geometry. The accuracy of the unstructured nodal solution was evaluated for a group of 2D SFR core problems in which the assembly corner points are arbitrarily displaced. The RENUS results for the change in nuclear characteristics resulting from fuel deformation were compared with those of the reference McCARD Monte Carlo code. It turned out that the two solutions agree within 18 pcm in reactivity change and 0.46% in assembly power distribution change. These results demonstrate that the proposed unstructured nodal method can accurately model heterogeneous thermal expansion in hexagonal fueled cores.

유한요소 다결정 모델을 이용한 마그네슘 합금 AZ31B 판재의 압연 집합 조직 예측 (Prediction of Rolling Texture for Mg Alloy AZ31B Sheet using Finite Element Polycrystal Model)

  • 원성연;김영석;나경환
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2004년도 제5회 압연심포지엄 신 시장 개척을 위한 압연기술
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    • pp.72-82
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    • 2004
  • The deformation mechanism of hexagonal close-packed materials is quite complicate including slips and twins. A deformation mechanism, which accounts for both slip and twinning, was investigated for polycrystalline hop materials. The model was developed in a finite element polycrystal model formulated with initial strain method where the stiffness matrix in FEM is based on the elastic modulus. We predicted numerically the texture of Mg alloy(AZ31B) sheet by using FEM based on crystal plasticity theory. Also, we introduced the recrystallized texture employed the maximum energy release theory after rolling. From the numerical study, it was clarified that the shrink twin could not be the main mechanism for shortening of c-axis, because the lattice rotation due to twin rejects fur c-axis to become parallel to ND(normal direction of plate). It was showed that the deformation texture with the pyramidal slip gives the ring type pole figure having hole in the center.

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길이방향으로 연속된 래티스를 가지는 철선 트러스데크의 구조 거동 (Structural Behavior of Steel Wire Truss Deck with Continuous Lattices to the Longitudinal Direction)

  • 이성호;박형철;오보환;조순보
    • 한국강구조학회 논문집
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    • 제21권1호
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    • pp.37-44
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    • 2009
  • 철선 트러스데크는 기존의 재래식 슬래브 거푸집이나 일반 데크플레이트 공법을 대체하여 철골조는 물론 철근콘크리트 구조물에도 사용이 점차 증가하고 있다. 현재 사용되고 있는 기존의 트러스 데크는 래티스 철선과 하부 철선의 비연속적인 절점간격에 의한 트러스의 비렌딜거동에 의해 완전한 트러스형상에 비해 처짐이 커지는 문제점이 있다. 본 연구는 이러한 문제점을 해결하기 위해 래티스 철선과 상하부 철선이 연속적으로 연결되어 비렌딜거동이 없는 순수 트러스형태를 구현함으로써 처짐성능이 우수한 새로운 형태의 데크를 고안하였다. 개발된 시스템의 구조적 거동을 평가하고자, 해석 및 성능평가 실험을 수행하였다. 처짐에 영향을 주는 요소를 중심으로 래티스 철선의 길이방향 연결형태, 간격을 해석과 실험의 주요 변수로 설정하였다. 해석과 실험은 실제 시공 시 타설되는 콘크리트 하중이 아연도 철판을 통해 철선에 작용하는 것을 고려하여 아연도 철판에 직접 등분포 하중을 가력하였다. 구조해석 및 실험을 통한 분석결과 철선 트러스데크의 길이방향 형태, 즉 래티스 철선의 길이방향 연결 형태가 구조적 거동에 영향을 주는 주요한 인자로서 작용했으며, 래티스 철선을 길이방향으로 연속적으로 연결함으로써 비렌딜거동에 의한 영향을 감소시킬 수 있었다. 또한 래티스 철선의 연결간격을 증가 시킬 경우에도, 상, 하부 철선에 큰 응력증가 없이 우수한 처짐 성능을 발현 할 수 있었다.

압축-비틀림이 결합된 격자구조의 아이소-지오메트릭 해석 (Isogeometric Analysis of Lattice Structures Having Compression-Twist Coupled Deformation)

  • 강세현;최명진;오명훈;윤민호;조선호
    • 한국전산구조공학회논문집
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    • 제34권5호
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    • pp.287-292
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    • 2021
  • 본 논문에서는 CAD 시스템에서 사용하는 NURBS 기저함수를 사용하는 아이소-지오메트릭 해석(Isogeometric analysis) 방법과 기하학적으로 엄밀한 빔 모델링(geometrically exact beam model)을 활용하여 회전과 병진 운동이 결합된 새로운 형태의 메타물질(metamaterial)에 대한 해석을 진행하였다. 이차원 셀 구조는 자유형상변환(Free-form deformation) 법과 적절한 내삽법(Interpolation)을 통해 원통 위에 입혀졌다. 원통의 치수와 셀 개수가 비틀림 각도에 미치는 영향이 매개변수 연구(parametric study)를 통해 확인되었다. 비틀림과 병진 운동이 결합된 구조의 메커니즘에 대해 수치 예제를 통해 알아보았다.

변형률 속도에 따른 탄소강의 재결정 거동에 미치는 미량 합금 원소의 영향 (Effect of Micro-Alloying Elements on Recrystallization Behavior of Carbon Steels at Different Strain Rates)

  • 이상인;임현석;황병철
    • 한국재료학회지
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    • 제26권10호
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    • pp.535-541
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    • 2016
  • The present study deals with the effects of micro-alloying elements such as Ni, V, and Ti on the recrystallization behavior of carbon steels at different strain rates. Eight steel specimens were fabricated by varying the chemical composition and reheating temperature; then, a high-temperature compressive deformation test was conducted in order to investigate the relationship of the microstructure and the recrystallization behavior. The specimens containing micro-alloying elements had smaller prior austenite grain sizes than those of the other specimens, presumably due to the pinning effect of the formation of carbonitrides and AlN precipitates at the austenite grain boundaries. The high-temperature compressive deformation test results indicate that dynamic recrystallization behavior was suppressed in the specimens with micro-alloying elements, particularly at increased strain rate, because of the pinning effect of precipitates, grain boundary dragging and lattice misfit effects of solute atoms, although the strength increased with increasing strain rate.