이태식 교수
Tae-Sik Lee
KAIST 전산학부 · 공학
연구실 소개
이태식 교수의 연구실은 용접 공정의 메커니즘 해석과 반도체 소재 개발을 중심으로 한 다학제적 연구를 수행하고 있습니다. GMAW 용접에서의 용접 토금 형상 변화를 에너지 최소화 원리에 기반해 분석하며, 표면장력, 중력, 전자기력 등의 힘을 고려한 정적 형상 예측 기법을 개발하고 있습니다. 또한 SMT 공정에서의 솔더 재료 형상 예측 및 FastSLAM 기반 로컬라이제이션 정밀도 향상 기술에 이르기까지, 유한요소 해석과 입자 기반 알고리즘을 활용한 정밀 시뮬레이션 기법을 응용하고 있습니다. 반도체 소재 분야에선 ZnO 기반 합금을 활용한 광전자 소자 및 UV 영역에서의 응용 가능한 밴드 갭 조절 기술 개발도 진행 중입니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
8In this investigation, a new approach based on the energy minimization method is proposed to analyze the mechanism of the metal transfer (globular and spray modes) in the GMAW process. Energies due to the surface tension, gravity, electromagnetic and drag forces exerted on the pendant drop are minimized and the shape of molten drop in the equilibrium state is calculated without presumed geometry. The energy due to the electromagnetic force is derived using the Maxwell stress. Effects of welding
The precise geometry of the molten drop attached to the electrode has substantial influence on the metal transfer. The geometry of the drop is a function of various parameters including the welding current and voltage, composition of shielding gas, electrode extension and material properties of the electrode. A new approach is proposed to enable an improved description of the molten drop drop in equilibrium. Among various forces which influence the profile of the static pendant drop, the surface
Numerous research efforts have evidenced that the solder joint profile in SMT affects reliability of the joint. In this work, the three-dimensional solder joint profile of the J-lead is predicted by minimizing the energy due to surface tension and gravity. Geometric complexity stemming from the curved shape of the J-lead is resolved by employing a transformed coordinate and corresponding element types with the geometric continuity condition in the finite element formulation. Based on the simulat
ZnBeO and ZnCdSeO alloys have been disclosed as materials for the improvement in performance, function, and capability of semiconductor devices. The alloys can be used alone or in combination to form active photonic layers that can emit over a range of wavelength values. Materials with both larger and smaller band gaps would allow for the fabrication of semiconductor heterostructures that have increased function in the ultraviolet (UV) region of the spectrum. ZnO is a wide band-gap material poss
FastSLAM is a widely-used framework for simultaneous localization and mapping using a Rao-Blackwellized particle filter. However, FastSLAM degenerates over time due to the particle depletion in resampling phase, mainly caused by the loss of particle diversity. In this work, a dispersion technique for recovering the particle diversity is proposed to improve the performance of FastSLAM. First, when particle diversity is lost after resampling phase, a source which helps particles be dispersed is ge
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