• 제목/요약/키워드: Electro-thermal Analysis

검색결과 118건 처리시간 0.012초

자동차용 중공 구동축의 고주파 경화 공정에 대한 수치적 연구 (Numerical Simulation of Induction Hardening Process of Tubular Drive Shaft for Automobile)

  • 강경필;오병기;김용환
    • 소성∙가공
    • /
    • 제25권4호
    • /
    • pp.248-253
    • /
    • 2016
  • Induction hardening process of tubular drive shaft for automobile is simulated by combining the thermal, mechanical, electro-magnetic and metallurgical analysis models. Various material properties for each analysis model are obtained in a consistent way via material properties calculation software, JMatPro®. To consider the scanning process of induction heating, boundary element method is adopted for electro-magnetic field calculation. The distribution of temperature, stress and phase volume fraction are tracked out through the whole process and the effect of scanning velocity is reviewed. The analysis result shows that the critical principal stress is developed at the phase boundary where martensite is formed.

열간단조 금형강의 열충격과 열피로 특성연구 (Analysis of Thermal Shock and Thermal Fatigue in Tool Steels for Hot Forging)

  • 김정운;문영훈;류재화;박형호
    • 소성∙가공
    • /
    • 제11권1호
    • /
    • pp.61-68
    • /
    • 2002
  • The thermal shock and thermal fatigue test has been carried out to analyze the thermal characteristics of tool steels for hot forging and the effects of mechanical properties on this study have been investigated. The resistance to thermal shock is first of all a matter of good toughness and ductility. Therefore, a proper hot-work tool steel should be characterized by high fracture strength and high temperature toughness. Based on these results, some critical temperature($T_{fracture}$) at which fracture occur can be measured to characterize the thermal resistance of the materials. During thermal fatigue tests, the thermal fatigue cracks occur because of the repetitive heating and cooling of the die surface and the thermal fatigue damage was evaluated by analyzing different number of cycles to failure. The results showed that the resistance to thermal shock and thermal fatigue were found to be favoured by high hot tensile strength and high hot hardness, and thermal resistance of SKD61 was superior to that of ESC, SKT4 and this was caused by higher mechanical properties of SKD61.

하이브리드 차량의 엔진 및 배터리 냉각팬 구동용 BLDC모터 개발 (Development of BLDC Motor for HEV Engine Cooling and Battery Cooling System)

  • 이대웅
    • 한국자동차공학회논문집
    • /
    • 제23권2호
    • /
    • pp.153-160
    • /
    • 2015
  • Hybrid Electric Vehicles(HEVs) have seriously come into prevalence recently as car manufacturers and consumers have become more aware of the environmental and economic problems of conventional vehicles. For the alternative power-train and battery cooling systems in HEVs, an effective thermal management system is required, and many automakers are interested in using Brushless DC(BLDC) motors for cooling fans for the overall traction unit's performance and energy saving capability. This paper presents the development status of BLDC motors as major parts of the power-train, i.e. the engine cooling and battery cooling fans of HEVs. A design that uses BLDC motors for the power-train and each battery cooling fan, is successfully implemented through using electro-magnetic analysis, and prototype BLDC motors are examined. As experimental results, the BLDC motors achieved an efficiency of 85% as engine cooling fans and 72% as a battery thermal management fan motor. The electric cogging noise is significantly reduced by changing the skew of the slot pitch angle and optimizing the magnetic shape.

단순화 된 열 저항 해석을 이용한 우주용 FPA 열제어 설계 방안 연구 (Study on Methodology of Trade-Off for Space-borne FPA Thermal Design by Simplified Thermal Node Analysis)

  • 장진수;양승욱;김종운;김이을
    • 한국항공우주학회지
    • /
    • 제43권2호
    • /
    • pp.179-185
    • /
    • 2015
  • 우주용 고해상도 전자광학카메라의 개발에 있어 초점면 배열 장치(Focal Plane Assembly, FPA)의 열제어 설계는 영상품질을 결정하는 중요한 요소이다. FPA 열제어 설계의 목표는 영상 촬영 기간 중 안정적인 열 환경을 제공하는 것으로, 촬영 기간 동안 운용 온도를 주어진 범위 내로 유지해야 하며 후속 촬영에 문제가 없도록 빠른 시간 내에 온도 초기화를 완료해야 한다. 상기의 두 항목인 온도 유지와 온도 초기화 중에서 FPA 구조 설계에 따른 영향을 가장 많이 받으며, 설계 변경의 자유도가 상대적으로 낮은 온도 유지 항목에 대하여 FPA 구조설계 초기 단계부터 검토 및 반영이 가능한 단순화 된 열 저항 해석 기반의 온도 예측 방안을 정의하였다. 또한 열해석 결과와의 비교를 통해 온도 예측 방안을 검증, FPA 설계를 위한 trade-off에 효과적으로 사용할 수 있음을 확인하였다.

두께를 증가시킨 셀룰로오스 Electro-Active Paper 의 제조와 특성평가 (Fabrication and Characterization of Cellulose Electro-Active Paper with Increased Thickness)

  • 김기백;정혜전;김재환
    • 한국정밀공학회지
    • /
    • 제30권2호
    • /
    • pp.241-246
    • /
    • 2013
  • This paper reports fabrication and characterization of cellulose Electro-Active Paper (EAPap) with increased thickness. Usual thickness of cellulose EAPap was $15{\mu}m$. This thickness needs to be increased to enhance the mechanical force output of EAPap. To fabricate thick cellulose EAPap, the fabrication process parameters including casting and drying processes should be investigated. In this paper, the casting thickness is increased from $800{\mu}m$ to $1500{\mu}m$, and heating times on a hot plate before and after curing process are introduced at 40 and $60^{\circ}C$ for 30 and 60 minutes, respectively. Thickness measurement, Thermal Gravitational Analysis (TGA), UV-transmittance, Young's modulus, and piezoelectric charge constant are measured. Heated EAPaps with increased thickness have similar TGA result, higher transmittance, higher Young's modulus and lower piezoelectric charge constant.

자동차 냉각기 고무호스용 재질에 대한 신뢰성 평가 및 고장메커니즘규명 (Reliability Analysis and Feilure Mechanisms of Coolant Rubber Hose Materials for Automotive Radiator)

  • 곽승범;최낙삼;강봉성;신세문
    • 한국자동차공학회논문집
    • /
    • 제13권5호
    • /
    • pp.152-162
    • /
    • 2005
  • Coolant rubber hoses for automobile radiators can be degraded and thus failed due to the influence of contacting stresses of air and coolant liquid under the thermal and mechanical loadings. In this study, test analysis was carried out for evaluating the degradation and failure mechanisms of coolant hose materials. Two kinds of EPDM rubber materials applicable to the hoses were adopted: commonly-used ethylene-propylene diene monomer(EPDM) rubbers and EPDM rubbers with high resistance against electro-chemical degradation (ECD). An increase of surface hardness and a large reduction of failure strain were shown due to the formation of oxidation layer for the specimens which had been kept in a high temperature air chamber. Coolant ageing effects took place only by an amount of pure thermal degradation. The specimens degraded by ECD test showed a swelling behavior and a considerable increase in weight on account of the penetration of coolant liquid into the skin and interior of the rubber specimens. The ECD induced material softening as well as drastic reduction in strength and failure strain. However EPDM rubbers designed for high resistance against ECD revealed a large improvement in reduction of failure strain and weight. This study finally established a procedure for reliability analysis and evaluation of the degradation and failure mechanisms of EPDM rubbers used in coolant hoses for automobile radiators.

Development of an Ultra-Slim System in Package (SiP)

  • Gao, Shan;Hong, Ju-Pyo;Kim, Jin-Su;Yoo, Do-Jae;Jeong, Tae-Sung;Choi, Seog-Moon;Yi, Sung
    • 마이크로전자및패키징학회지
    • /
    • 제15권1호
    • /
    • pp.7-18
    • /
    • 2008
  • This paper reviews the current development of an ultra-slim SiP for Radio Frequency (RF) application, in which three flip chips, additional passive components and Surface Acoustic Wave (SAW) filters are integrated side-by-side. A systematic investigation is carried out for the design optimization, process and reliability improvement of the package, which comprises several aspects: a design study based on the 3D thermo-mechanical finite element analysis of the packaging, the determination of stress, warpage distribution, critical failure zones, and the figuration of the effects of material properties, process conditions on the reliability of package. The optimized material sets for manufacturing process were determined which can reduce the number of testing samples from 75 to 2. In addition the molded underfilling (MUF) process is proposed which not only saves one manufacturing process, but also improves the thermo-mechanical performance of the package compared with conventional epoxy underfilling process. In the end, JEDEC's moisture sensitivity test, thermal cycle test and pressure cooker tests have also been carried out for reliability evaluation. The test results show that the optimized ultra-slim SiP has a good reliability performance.

  • PDF

바크하우젠 노이즈 해석에 의한 재료의 열화도 평가 (Degradation Estimation Of Material by Barkhausen Noise Analysis)

  • 이명호
    • 한국공작기계학회논문집
    • /
    • 제14권3호
    • /
    • pp.38-46
    • /
    • 2005
  • The destructive method is reliable and widely used for the estimation of material degradation but it have time-consuming and a great difficulty in preparing specimens from in-service industrial facilities. Therefore, the estimation of degraded structural materials used at high temperature by nondestructive evaluation such as electric resistance method, replica method, Barkhausen noise method, electro-chemical method and ultrasonic method are strongly desired. In this study, various nondestructive evaluation(NDE) parameters of the Barkhausen noise method, such as MPA(Maximum Peak Amplitude), RMS, IABNS(Internal Area of Barkhausen Noise on Signal) and average amplitude of frequency spectrum are investigated and correlated with thermal damage level of 2.25cr-1.0Mo steel using wavelet analysis. Those parameters tend to increase while thermal degradation proceeds. It also turns out that the wavelet technique can help to reduce experimental false call in data analysis.

이동좌표계를 이용한 3차원 유도가열공정 해석 (Three Dimensional Analysis of Induction Heating Process using a Moving Coordinate)

  • 윤진오;양영수;신희윤
    • Journal of Welding and Joining
    • /
    • 제25권1호
    • /
    • pp.24-29
    • /
    • 2007
  • Finite element analysis for induction heating process including magnetic and thermal situations is presented. Because magnetic and thermal material properties vary with the temperature, material properties depending on temperature are considered. As the inductor moves, the solution domains corresponding to the inductor change into those of the air and the solution domains corresponding to the air change into those of the inductor. For these reasons, modeling of induction heating process is very difficult with a general purpose commercial programs. In this paper, three dimensional analysis of induction heating process for moving inductor is analyzed using moving coordinate. The skin effect is confirmed inside the steel plate in the electro-magnetic analysis. The distribution of heat generation at the initial state is different from that at the quasi-stationary state. Therefore, material properties depending on temperature must be considered. The calculated results of finite element analysis agree well with the experimental temperature results. This approach is suitable to solve magneto-thermal coupled problems.

Thermal and Flow Analysis in a Proton Exchange Membrane Fuel Cell

  • Jung, Hye-Mi;Koo, Ja-Ye
    • Journal of Mechanical Science and Technology
    • /
    • 제17권9호
    • /
    • pp.1358-1370
    • /
    • 2003
  • The effects of anode, cathode, and cooling channels for a Proton Exchange Membrane Fuel Cell (PEMFC) on flow fields have been investigated numerically. Continuous open-faced fluid flow channels formed in the surface of the bipolar plates traverse the central area of the plate surface in a plurality of passes such as a serpentine manner. The pressure distributions and velocity profiles of the hydrogen, air and water channels on bipolar plates of the PEMFC are analyzed using a two-dimensional simulation. The conservation equations of mass, momentum, and energy in the three-dimensional flow solver are modified to include electro-chemical characteristics of the fuel cell. In our three-dimensional numerical simulations, the operation of electro-chemical in Membrane Electrolyte Assembly (MEA) is assumed to be steady-state, involving multi-species. Supplied gases are consumed by chemical reaction. The distributions of oxygen and hydrogen concentration with constant humidity are calculated. The concentration of hydrogen is the highest at the center region of the active area, while the concentration of oxygen is the highest at the inlet region. The flow and thermal profiles are evaluated to determine the flow patterns of gas supplied and cooling plates for an optimal fuel cell stack design.