• 제목/요약/키워드: thermal stress distributions

검색결과 188건 처리시간 0.031초

유한요소법에 의한 대전력 IGBT 모듈의 열.응력해석 (Thermal and Stress Analysis of Power IGBT Module Package by Finite Element Method)

  • 김남균;최영택;김상철;박종문;김은동
    • 마이크로전자및패키징학회지
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    • 제6권4호
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    • pp.23-33
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    • 1999
  • 유한요소법을 이용한 IGBT 3상 풀브릿지 모듈의 열.응력 해석을 수행하였다. 패키지 재료에 의한 영향을 살피고자 AIN과 $A1_2O_3$절연기판을 사용한 경우를 비교하였으며, 적층구조의 규격을 변화시켜 열해석 및 열응력 해석결과를 비교하였다. 열해석 경계조건 설정에 따른 차이를 비교하기 위하여 등가열전달계수 경계조건(FHTCC)과 일정온도 경계조건(CTC)으로 나누어 해석하였다. 절연기판 면적의 증가는 열저항 감소에 거의 기여하지 못하였으나 열응력 감소에는 상당한 효과를 보였는데, 기판면적이 3배 넓어지면 열저항 감소분은 $A1_2O_3$ 절연기판 모듈에서 8.9%정도, AIN 절연기판 모듈에선 1.5% 정도 감소하는데 그쳤으나 열응력은 최고 60%의 감소를 보였다. 또한 솔더의 두께가 증가할수록 열저항은 증가하였으나, 열응력은 감소 또는 일정하게 유지함을 확인하였다. 각 모듈에서 최대응력값은 모두 절연기판과 접촉된 상, 하부 Cu pad에서 발생하였으며 모듈 패키지 가장자리 부분보다는 중앙부의 응력값이 높았다.

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Effect of Melting Pool on the Residual Stress of Welded Structures in Finite Element Analysis

  • Lee, Jang-Hyun;Hwang, Se-Yun;Yang, Yong-Sik
    • Journal of Ship and Ocean Technology
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    • 제11권3호
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    • pp.14-23
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    • 2007
  • Welding processes cause undesirable problems, such as residual stresses and deformations due to the thermal loads imposed by local heating, melting, and cooling processes. This paper presents a computational modeling technique to simulate the Gas Metal Arc Welding (GMAW) process, emphasizing the effect of the melting bead on the residual stress distribution. Both a three-bar analogy and a three-dimensional thermo-mechanical finite element analysis are carried out in order to explain the effect. Element (de)activation, enthalpy, and adjustment of the reference temperature of thermal strain are considered with respect to the effect of the weld filler metal added to the base metal during a thermo-elastic-plastic analysis. Stress distributions obtained by the present study are compared with measured values and available data from other studies. The effect of the melting bead on the residual stress distribution is discussed and demonstrated.

PDP 제조 공정시 유리의 열충격 파손 예측 (Prediction of thermal shock failure of glass during PDP manufacturing process)

  • 김재현;최병익;이학주
    • 한국정밀공학회지
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    • 제21권2호
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    • pp.122-129
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    • 2004
  • There is an increasing need for large flat panel display devices. PDP (Plasma Display Panel) is one of the most promising candidates for this need. Thermal shock failure of PDP glass during manufacturing process is a critical issue in PDP industry since it is closely related to the product yield and the production speed. In this study, thermal shock resistance of PDP glass is measured by water quenching test and an analysis scheme is described for estimating transient temperature and stress distributions during thermal shock. Based on the experimental data and the analysis results, a simple procedure for predicting the thermal shock failure of PDP glass is proposed. The fast cooling process for heated glass plates can accelerate the speed of PDP production, but often leads to thermal shock failure of the glass plates. Therefore, a design guideline for preventing the failure is presented from a viewpoint of high speed PDP manufacturing process. This design guideline can be used for PDP process design and thermal -shock failure prevention.

3 차원 유한요소해석을 이용한 Stellite21 초합금으로 하드페이싱된 STD 61 열간금형강의 열응력제어층 재료조합 및 두께 예측 (Estimation of the Thickness and the Material Combination of the Thermal Stress Control Layer (TSCL) for the Stellite21 Hardfaced STD61 Hot Working Tool Steel Using Three-Dimensional Finite Element Analysis)

  • 박나라;안동규;오진우
    • 대한기계학회논문집A
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    • 제38권8호
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    • pp.857-862
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    • 2014
  • 하드페이싱층과 기저부의 결합부에서 발생하는 잔류 응력/변형률을 감소시키기 위하여 열응력제어층에 대한 연구가 시작되고 있다. 이 연구에서는 3 차원 유한요소해석을 이용하여 Stellite21 초합금으로 하드페이싱된 STD61 열간금형강의 중간층으로 형성된 열응력제어층의 재료조합과 두께를 예측하고자 한다. 열응력제어층은 Stellite21 과 STD61 의 조합으로 생성하였다. 열응력제어층의 두께범위는 0.5-1.5 mm 로 선정하였다. 유한요소해석 결과를 이용하여 열응력제어층을 구성하는 Stellite21과 STD61의 혼합율 및 열응력제어층 두께에 따른 시편 내부 온도/열응력/열변형률분포를 정량적으로 분석하였다. 이 결과로부터 적합한 열응력제어층의 재료혼합비는 Stellite21 50 % 와 STD61 50 % 이며, 적절한 열응력제 어층의 두께는 1.0 mm 임을 알 수 있었다.

액체질소 냉각 시 임의의 홀을 가진 초전도체의 열응력 해석 (Transient Thermal Behaviors of Melt Processed Superconductors with Artificial Holes During the Cooling in Liquid Nitrogen)

  • 장건익;이호진;김찬중;한영희;성태현
    • Progress in Superconductivity
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    • 제11권1호
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    • pp.52-56
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    • 2009
  • Temperature distributions and thermal stresses were calculated and analyzed to investigate the effect of the artificial holes to the transient behaviors of the superconductors which was cooled in liquid nitrogen. Three dimensional finite element method was used to calculated the transient temperature and thermal stresses in the superconductors. The cooling speed of the superconductors with holes is faster than those without holes. Because the thermal stresses calculated in the superconductors can be relaxed by the distributed holes, the volume of the peak tensile stress decreases during the cooling in liquid nitrogen. If optimal metal, which can maintain the relaxation of thermal stresses, is used to fill and reinforce the artificial holes, the probability of failure of the superconductors may be decreased by the decrease of volume of peak tensile stress.

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FEM을 이용한 벤틸레이티드 브레이크 디스크의 열균열 현상에 관한 연구 (A Study on Thermal Cracking of Ventilated Brake Disk of a Car Using FEM Analysis)

  • 김호경;정진성;최명일;이영인
    • Tribology and Lubricants
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    • 제21권2호
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    • pp.63-70
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    • 2005
  • This study presents the thermal cracking on a commercial vehicle ventilated brake disk. Distributions of temperature and thermal stress of the disk were analysed, using FEM analysis, under the several driving conditions with actual vehicle specifications. The results from the fatigue tests on the disk material were compared with those from FEM analysis. In case of deceleration of 0.6 g with initial vehicle speed of 97, 140, and 160 km/h, the maximum compressive stress at the disk surface of disk due to braking was 224, 318, and 362 MPa, respectively. It was estimated that each damage fraction of 0.00005, 0.00050, 0.00136 per full stop was imposed on the brake disk in case of deceleration of 0.6 g with initial vehicle speed of 97, 140, and 160 km/h, respectively.

ASSESSMENT OF THERMAL FATIGUE IN MIXING TEE BY FSI ANALYSIS

  • Jhung, Myung Jo
    • Nuclear Engineering and Technology
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    • 제45권1호
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    • pp.99-106
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    • 2013
  • Thermal fatigue is a significant long-term degradation mechanism in nuclear power plants. In particular, as operating plants become older and life time extension activities are initiated, operators and regulators need screening criteria to exclude risks of thermal fatigue and methods to determine significant fatigue relevance. In general, the common thermal fatigue issues are well understood and controlled by plant instrumentation at fatigue susceptible locations. However, incidents indicate that certain piping system Tee connections are susceptible to turbulent temperature mixing effects that cannot be adequately monitored by common thermocouple instrumentations. Therefore, in this study thermal fatigue evaluation of piping system Tee-connections is performed using the fluid-structure interaction (FSI) analysis. From the thermal hydraulic analysis, the temperature distributions are determined and their results are applied to the structural model of the piping system to determine the thermal stress. Using the rain-flow method the fatigue analysis is performed to generate fatigue usage factors. The procedure for improved load thermal fatigue assessment using FSI analysis shown in this study will supply valuable information for establishing a methodology on thermal fatigue.

열수축을 하는 필라멘트 와인딩 복합재료 관의 설계 (Design of Filament Wound Composite Tubes under Thermal Contraction)

  • 정태은;신효철
    • 대한기계학회논문집
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    • 제17권10호
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    • pp.2407-2417
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    • 1993
  • Thermal deformations and stresses due to temperature changes are the serious problems in cryogenic structures such as the torque tube in a superconducting generator, In this paper, the equations of thermal expansion coefficients expressed only by material properties and winding angles are derived for the filament wound composite tubes. The experimental results of thermal contraction of CFRP tubes are compared with those from theoretical approach. Composite tubes with optimally regulated thermal expansion coefficient are designed on the basis of the study for the torque tube in the superconducting generator with temperature distributions varying from 300K to 4.2 K. The filament winding angle of composites resisting thermal stresses properly is sought by the finite element method using layered shell elements. The results show that the composite tubes designed for the requirements in cryogenic environments can effectively cope with the thermal stress problem.

Geometrical imperfection and thermal effects on nonlinear stability of microbeams made of graphene-reinforced nano-composites

  • Fenjan, Raad M.;Faleh, Nadhim M.;Ahmed, Ridha A.
    • Advances in nano research
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    • 제9권3호
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    • pp.147-156
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    • 2020
  • This research is related to nonlinear stability analysis of advanced microbeams reinforced by Graphene Platelets (GPLs) considering generic geometrical imperfections and thermal loading effect. Uniform, linear and nonlinear distributions of GPLs in transverse direction have been considered. Imperfection sensitivity of post-bucking behaviors of the microbeam to different kinds of geometric imperfections have been examined. Geometric imperfection is first considered to be identical as the first buckling mode, then a generic function is employed to consider sine-type, local-type and global-type imperfectness. Modified couple stress theory is adopted to incorporate size-dependent behaviors of the beam at micro scale. The post-buckling problem is solved analytically to derive load-amplitude curves. It is shown that post-buckling behavior of microbeam is dependent on the type geometric imperfection and its magnitude. Also, post-buckling load can be enhanced by adding more GPLs or selecting a suitable distribution for GPLs.

열탄소성 해석에 의한 잔류응력의 계산 (Calculation of residual stresses by thermal elasto-plastic analysis)

  • 장창두;서승일
    • Journal of Welding and Joining
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    • 제6권4호
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    • pp.35-43
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    • 1988
  • Welding residual stresses were calculated by two dimensional thermal elasto-plastic analysis using element method. Complicated plastic behavior during heat transfer was simulated with time. Fist, temperature distributions. To consider time varying behavior of material properties and loading and unloading processes, iterative calculation based on initial stiffness method was carried out. The method proposed by Yamata was used in time increment control which determined the accuracy of claculation. comparison with other caculated and experimental results shows fairly good agreement.

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