박은수 교수
Park, Eun Soo
서울대학교 재료공학부 · 공학
연구실 소개
박은수 교수의 연구실은 고엔트로피 합금, 복합 농도 합금, 금속 유리 및 생체모방 세라믹스 등 첨단 금속 및 세라믹 재료의 원자 구조와 거시적 거동 간의 상관관계를 밀도함수이론과 실험 기법을 융합하여 연구합니다. 특히, 원자적 압력 근사법과 전자구조 분석을 기반으로 한 정량적 합금 설계 기법을 개발하여 고강도, 고내열성 재료의 설계 원리를 제시하고 있습니다. 또한, 유리 형성 능력과 연성 간의 상관관계를 규명하고, 금속과 세라믹스 간의 융합 공정 기술을 통해 고강도·고 toughness 재료의 실현 가능성을 탐색하고 있습니다.
연구 현황
연구 성과 추이
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주요 논문
15Quantitative and well-targeted design of modern alloys is extremely challenging due to their immense compositional space. When considering only 50 elements for compositional blending the number of possible alloys is practically infinite, as is the associated unexplored property realm. In this paper, we present a simple property-targeted quantitative design approach for atomic-level complexity in complex concentrated and high-entropy alloys, based on quantum-mechanically derived atomic-level pres
Lattice distortions constitute one of the main features characterizing high entropy alloys. Local lattice distortions have, however, only rarely been investigated in these multi-component alloys. We, therefore, employ a combined theoretical electronic structure and experimental approach to study the atomistic distortions in the FeCoNiCrMn high entropy (Cantor) alloy by means of density-functional theory and extended X-ray absorption fine structure spectroscopy. Particular attention is paid to el
Abstract Bioinspired ceramics with micron-scale ceramic “bricks” bonded by a metallic “mortar” are projected to result in higher strength and toughness ceramics, but their processing is challenging as metals do not typically wet ceramics. To resolve this issue, we made alumina structures using rapid pressureless infiltration of a zirconium-based bulk-metallic glass mortar that reactively wets the surface of freeze-cast alumina preforms. The mechanical properties of the resulting Al 2 O 3 with a
In the present study, the authors draw attention to the relationship among fragility index (m), glass-forming ability (GFA), and plasticity in various metallic glass-forming alloys (MGAs), and show that the m value is closely related to both characteristics. In particular, m can be formulated with ν (Poisson’s ratio): ν=−0.179+0.312logm, which means that high m as well as large ν values might be regarded as indicators of the MGAs ductility. As an example, it can be rationalized that the lowest m
The microstructure of high-entropy alloys with refractory elements and Al as constituents can be considered to be analogous to superalloys. These so-termed refractory high-entropy superalloys (RHSAs) can show remarkable compressive strength up to temperatures exceeding 1200 °C. Here, we examine the microstructure and properties - compressive, tensile, and fracture toughness - of a precipitation-hardened, body-centered cubic, RHSA, Al0.5Nb1.25Ta1.25TiZr, at ambient temperature (RT) to 1200 °C. Tw
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