• 제목/요약/키워드: The Velocity of Dislocation

검색결과 31건 처리시간 0.025초

체심입방격자 단결정의 소성스핀에 관한 연구 (A Study on the Plastic Spin of Body Centered Crystal)

  • 남용윤;김사수
    • 한국해양공학회지
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    • 제10권2호
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    • pp.53-60
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    • 1996
  • Many studies on the plastic spin have been done, but it is still an opened subject. It is essential for the modelling of plastic spin to understand its origin and governing parameters. For the task, it is helpful to know the hehavior of sigle crystal. This study gives the interpretations for the plastic spin of a B.C.C(body centered cubic crystal) by numerical simulation. It is discussed that the different levels of shear stresses induced on each slip pair in crystallographic slip systems and the nonlinear relationship between shear stress and slip velocity are the fundamental mechanisms of plastic spins. Finally some comments are provided on the plastic spin of polycrystal.

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슬립모델을 이용한 변형률의존 유한변형 탄소성재료의 구성방정식 개발 (A Rate-Dependent Elastic Plastic Constitutive Equation in Finite Deformation Based on a Slip Model)

  • 남용윤;김사수;이상갑
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1994년도 봄 학술발표회 논문집
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    • pp.181-188
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    • 1994
  • Generally, the structural material shows rate dependent behaviors, which require to constitute different strain-stress relations according to strain rates. Conventional rate- independent constitutive equations used in general purpose finite analysis programs are inadequate for dynamic finite strain problems. In this paper, a rate dependent constitutive equation for elastic-plastic material was developed. The plastic stretch rate was modeled based on slip model with dislocation velocity and density so that there is no yielding condition, and no loading conditions. Non-linear hardening rule was also introduced for finite strain. Material constants of present constitutive equation were determined by experimental data of mild steel. The constitutive equation was applied to uniaxile tension. It was appeared that the present constitutive equation well simulates rate dependent behaviors of mild steel.

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Line-Focus-Beam 초음파 현미경을 이용한 금속복합재료의 피로손상에 관한 연구 (Evaluation of Fatigue Damage of Metal Matrix Composite by LFB Acoustic Microscopy)

  • 이준현
    • 비파괴검사학회지
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    • 제13권2호
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    • pp.40-47
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    • 1993
  • 분말 야금법에 의해 제조된 SiC휘스커 강화 2124알루미늄 복합재료(SiCw/2124 Al)에 피로하중이 작용할 경우 복합재료의 계면에 있어서의 전위의 집적현상으로 인해 피로손상에 매우 민감하다. 그러나 이와같은 계면에 있어서의 전위의 집적현상으로 발생하는 피로미소균열의 검출 및 그 특성 평가에 대해서는 종래의 초음파 기술로서는 많은 문제점이 지적되고 있다. 본 논문은 SiC 휘스커 강화 알루미늄 복합재료에 있어서의 초기 피로손상을 평가하기 위하여 최근 새로운 비파괴 기법인 선집속 빔초음파 현미경의 적용 가능성에 대하여 연구하였다. 이를 위해 SiCw/2124 Al 복합재료 시험편에 대해 하중제어하에서 누설표면파와 누설유사표면파의 속도를 V(z)곡선으로 부터 FFT해석으로 구해 그 특성에 대하여 검토하였다. 또 주파수 5MHz에 대한 종래의 표면파 기법에 의하여 얻어진 결과와 고주파 초음파 현미경에 의하여 구해진 결과를 비교 검토 하였다.

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등속성 검사를 통한 견관절 전방 불안정 환자와 정상인의 회전력 비교 (Comparison of Rotational Strength in Shoulders with Anterior Instability and Normal Shoulders Using Isokinetic Testing)

  • 이동기;김태권;이진혁;이대희;정웅교
    • Clinics in Shoulder and Elbow
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    • 제15권2호
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    • pp.79-85
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    • 2012
  • 목적: 견관절 전방불안정 환자는 탈구에 대한 불안감 및 탈구시의 통증 등 다양한 원인으로 정상적인 운동 및 활동을 하지 못할 것으로 예상할 수 있으나 이에 대한 연구는 미미한 실정이다. 본 연구에서는 견관절 전방불안정 환자와 정상인 사이의 내회전 및 외회전력에 대해 등속성 근력 검사를 시행하여 전방불안정 환자에서 나타나는 회전력의 변화를 살펴보고자 하였다. 대상 및 방법: 2009년 3월부터 2010년 2월까지 우측 우세수의 견관절 전방 불안정 진단 하에 수술적 치료를 시행한 환자 중 수술 전 등속성 근력 검사를 시행한 환자 13명을 대상으로 하였고, 견관절의 전방불안정 증상이 없는 정상 성인 15명을 대조군으로 설정하였다. 대상군 및 대조군 모두 남성이었으며 두 군간의 평균 연령, 신장, 체중, 체질량 등의 차이는 없었다. 등속성 근력 검사는 Biodex system (Biodex Medical Systems, Shirley, NY, USA)을 사용하여 60 deg/sec, 180 deg/sec 의 각속도로 견관절의 외회전력 및 내회전력의 체중보정 최대우력 (peak torque)과 총 일량을 측정하였고, 외회전, 내회전 최대우력비율 및 운동피로도를 계산하였다. 두 군간에 각 측정치를 비교하여 전방 불안정 환자의 회전력의 특징을 분석하였다. 결과: 불안정증이 없는 좌측 견관절의 등속성 회전근력은 양군 사이에 모든 측정치에서 차이가 없었다. 우측 견관절의 등속성 근력 검사결과 내회전력은 전방 불안정환자와 정상 대조군 간 모든 각속도에서 최대우력 및 총 일량 사이에 유의한 차이가 없었다. 외회전력의 체중보정 최대우력과 총 일량은 전방불안정 환자에서 60 deg/sec 및 180 deg/sec 두 각속도에서 모두 정상 대조군에 비하여 감소되었고, 외회전력/내회전력의 최대우력비율 역시 통계적 차이가 있었다. 운동피로도는 외회전력, 내회전력 모두 양 군간에 의미 있는 차이는 없었다. 결론: 견관절 전방불안정 환자는 견관절의 외회전력이 감소되어 있고 내회전-외회전력의 균형이 소실되어 있으나 근피로도는 정상으로 판단되며 이는 견관절 탈구 환자의 보존적 치료나 재활에 있어 고려해야 할 것으로 생각된다.

Slip Movement Simulations of Major Faults Under Very Low Strength

  • Park, Moo-Choon;Han, Uk
    • 자원환경지질
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    • 제33권1호
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    • pp.61-75
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    • 2000
  • Through modeling fault network using thin plate finite element technique in the San Andreas Fault system with slip rate over 1mm/year, as well as elevation, heat flow, earthquakes, geodetic data and crustal thickness, we compare the results with velocity boundary conditions of plate based on the NUVEL-1 plate model and the approximation of deformation in the Great Basin region. The frictional and dislocation creep constants of the crust are calculated to reproduce the observed variations in the maximum depth of seismicity which corresponds to the temperature ranging from $350^{\circ}C$ to $410^{\circ}C$. The rheologic constants are defined by the coefficient of friction on faults, and the apparent activation energy for creep in the lower crust. Two parameters above represent systematic variations in three experiments. The pattern of model indicates that the friction coefficient of major faults is 0.17~0.25. we test whether the weakness of faults is uniform or proportional to net slip. The geologic data show a good agreement when fault weakness is a trend of an additional 30% slip dependent weakening of the San Andreas. The results of study suggest that all weakening is slip dependent. The best models can be explained by the available data with RMS mismatch of as little as 3mm/year, so their predictions can be closely related with seismic hazard estimation, at least along faults where no data are available.

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Wake dynamics of a 3D curved cylinder in oblique flows

  • Lee, Soonhyun;Paik, Kwang-Jun;Srinil, Narakorn
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제12권1호
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    • pp.501-517
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    • 2020
  • Three-dimensional numerical simulations were performed to study the effects of flow direction and flow velocity on the flow regime behind a curved pipe represented by a curved circular cylinder. The cylinder is based on a previous study and consists of a quarter segment of a ring and a horizontal part at the end of the ring. The cylinder was rotated in the computational domain to examine five incident flow angles of 0-180° with 45° intervals at Reynolds numbers of 100 and 500. The detailed wake topologies represented by λ2 criterion were captured using a Large Eddy Simulation (LES). The curved cylinder leads to different flow regimes along the span, which shows the three-dimensionality of the wake field. At a Reynolds number of 100, the shedding was suppressed after flow angle of 135°, and oblique flow was observed at 90°. At a Reynolds number of 500, vortex dislocation was detected at 90° and 135°. These observations are in good agreement with the three-dimensionality of the wake field that arose due to the curved shape.

Improvement of wear resistance of Zircaloy-4 by nitrogen implantation

  • Han, Jeon G.;Lee, jae S.;Kim, Hyung J.;Kim, W.;Choi, B.Y.;Tang, Guoy
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 1995년도 제9회 학술발표회 논문개요집
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    • pp.151-151
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    • 1995
  • Nitrogen implantation process has been applied for improvement of wear resistance of Z Zircaloy-4 fuel cladding materials. Nitrogen was implanted at 120 ke V to a total do range of 1xHP ions/cm2 to 8xlO17 ions/cm2 at various temperatures of 298"C to 676"C. The m microstructure changes by nitrogen implantation were analyzed by using TEM, XRD 뻐d A AES, cmd then wear behavior was evaluated by ball-on-disc wear testings at various loads a and sliding velocity under unlubricated condition. Nitrogen implantation produced ZrNx nitride above 4.37x1017 ions!cm2 as well as heavy d dislocations, which enhanced microhardness of the implanted surface of up to 900 Hk from 2 200 Hk of unimplanted substrate. Hardness was also found to be increased with increasing i implantation temperature and enhanced up to OOOHk at 620 "C. the wear resistance was g greatly improved with increasing total ion do않 as well as implantation temperature. The effective enhancement of wear resistance at high dose and tem야ratures is believed d due to significant hardening associated with high degree of precipitation of Zr nitrides and g generation of prismatic dislocation I$\infty$ps.infty$ps.

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크롬 및 구리로 치환한 L12 Titanium Trialuminides합금의 고온변형거동 (High Temperature Deformation Behavior of L12 Modified Titanium Trialuminides Doped with Chromium and Copper)

  • 한창석;진성윤;방효인
    • 한국재료학회지
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    • 제28권6호
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    • pp.317-323
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    • 2018
  • Crystal structure of the $L1_2$ type $(Al,X)_3Ti$ alloy (X = Cr,Cu) is analyzed by X-ray diffractometry and the nonuniform strain behavior at high temperature is investigated. The lattice constants for the $L1_2$ type $(Al,X)_3Ti$ alloys decrease in the order of the atomic number of the substituted atom X, and the hardness tends to increase. In a compressive test at around 473K for $Al_{67.5}Ti_{25}Cr_{7.5}$, $Al_{65}Ti_{25}Cr_{10}$ and $Al_{62.5}Ti_{25}Cu_{12.5}$ alloys, it is found that the stress-strain curves showed serration, and deformation rate dependence appeared. It is assumed that the generation of serration is due to dynamic strain aging caused by the diffusion of solute atoms. As a result, activation energy of 60-95 kJ/mol is obtained. This process does not require direct involvement. In order to investigate the generation of serrations in detail, compression tests are carried out under various conditions. As a result, in the strain rate range of this experiment, serration is found to occur after 470K at a certain critical strain. The critical strain increases as the strain rate increases at constant temperature, and the critical strain tends to decrease as temperature rises under constant strain rate. This tendency is common to all alloys produced. In the case of this alloy system, the serration at around 473K corresponds to the case in which the dislocation velocity is faster than the diffusion rate of interstitial solute atoms at low temperature.

잉곳 슬라이싱용 Saw Wire의 연삭마모에 미치는 인장특성과 미세조직의 영향 (Effects of Tensile Properties and Microstructure on Abrasive Wear for Ingot-Slicing Saw Wire)

  • 황빈;김동용;김회봉;임승호;임재덕;조영래
    • 한국재료학회지
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    • 제21권6호
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    • pp.334-340
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    • 2011
  • Saw wires have been widely used in industries to slice silicon (Si) ingots into thin wafers for semiconductor fabrication. This study investigated the microstructural and mechanical properties, such as abrasive wear and tensile properties, of a saw wire sample of 0.84 wt.% carbon steel with a 120 ${\mu}M$ diameter. The samples were subjected to heat treatment at different linear velocities of the wire during the patenting process and two different wear tests were performed, 2-body abrasive wear (grinding) and 3-body abrasive wear (rolling wear) tests. With an increasing linear velocity of the wire, the tensile strength and microhardness of the samples increased, whereas the interlamellar spacing in a pearlite structure decreased. The wear properties from the grinding and rolling wear tests exhibited an opposite tendency. The weight loss resulting from grinding was mainly affected by the tensile strength and microhardness, while the diameter loss obtained from rolling wear was affected by elongation or ductility of the samples. This result demonstrates that the wear mechanism in the 3-body wear test is much different from that for the 2-body abrasive wear test. The ultra-high tensile strength of the saw wire produced by the drawing process was attributed to the pearlite microstructure with very small interlamellar spacing as well as the high density of dislocation.

슬립모델을 이용한 변형률의존 유한변형 탄소성재료의 구성방정식 개발 (A Rate-Dependent Elastic Plastic Constitutive Equation in Finite Deformation Based on a Slip Model)

  • 남용윤;김사수;이상갑
    • 대한조선학회논문집
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    • 제34권1호
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    • pp.77-86
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    • 1997
  • 최근들어 안전하고 합리적인 구조를 설계하기 위하여 구조물의 내충돌 또는 내충격에 대한 요구와 관심이 높아지고 있는데, 이러한 문제들은 아주 짧은 시간동안에 대변형이 일어나는 비선형문제라는 특징이 있다. 구조재료는 변형속도가 빨라짐에 따라 정적인 범주에서 보이는 거동과는 달리 변형률 의존적인 거동을 보인다. 따라서 대변형 소성문제인 충돌해석 등에는 종래 사용하여 온 변형률 비의존 재료구성방정식으로는 한계가 있다. 이 논문에서는 이러한 점을 개선하기 위하여 연강의 소성거동을 잘 나타낼 수 있는 소성슬립모델을 채용하고, 비선형경화를 도입하여 변형도 적용범위를 확장한 대변형 탄소성 변형률의존 재료구성방정식을 제시하였다. 본 구성방정식의 특징으로 항복조건과 하중조건이 필요없기 때문에 계산이 간편하며, 전위밀도와 속도로써 소성을 표현하기 때문에 보다 물리적인 의미를 가지고 금속재료의 소성현상을 나타낼 수 있다.

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