We investigate the dynamics of bubbles, droplets, and liquid films across a variety of geometries and situations. Our research extends to the study of liquid flow through porous media, encompassing phenomena such as capillary imbibition, filtration, and drying in porous structures.
In an acoustic pressure field, bubbles can induce motion in the surrounding liquid at micro-scales. Our research is dedicated to developing advanced techniques for micro-scale flow control through the use of acoustically driven bubbles.
Gallium-based liquid metals (GBLMs) have both high fluidity and electrical conductivity, making them highly promising candidates for the advancement of soft electronics. Our research aims to elucidate the underlying mechanics governing atypical interfacial motions.
Electrodes for Li-ion batteries are produced by coating a mixture of active materials, conductive additives, and binders onto thin metal foils. Our research is focused on advancing the control mechanisms involved in the handling and processing of this liquid slurry.
Root canal treatment aims to eliminate bacteria proliferating within the root canals of a tooth. Our research focuses on developing a novel device that leverages bubble dynamics at micro-scales to enhance irrigation performance.
출처: 연구실 홈페이지
현재 재학생
14명
최근 5년 졸업
6명
졸업생 진로 분포: 산업체 6명
재학생 출신대학 분포: 기타 국내/해외 14명
본 페이지는 연구실 규모 파악을 위한 집계 통계(구성원 수, 진로 카테고리, 출신대학 카테고리)만 제공하며, 개별 학생의 이름·전적·취업처 등은 표시하지 않습니다. 분포는 k≥5 익명성 조건을 충족할 때만 공개됩니다 (PIPA §58-2·§28-2 + 대법원 2014다235080).
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기계공학 분야 245개 연구실 중
2026벤치마킹: 국제 학술지(IF) 논문 수 0, 상위 100%
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벤치마킹: 평균 Impact Factor 수집 중