박준동 교수
June Dong Park
서울대학교 · 의학
연구실 소개
박준동 교수의 연구실은 콜로이드 젤과 같은 연성 거친 물질의 미세구조 변화와 거동 간의 상관관계를 밀도기반 시뮬레이션과 정량적 물리적 과정 분석(SPP) 기법을 통해 규명하고 있습니다. 주로 비선형 점성유변 거동, 구조 복원 메커니즘, 그리고 고·중·소 변형률에서의 거동 전이 현상을 중심으로 연구하며, 특히 점성유변학적 응답과 미세구조의 상호작용을 정량적으로 분석하는 데에 초점을 맞추고 있습니다. 이는 나노소재 설계 및 에너지 저장 소재의 거동 예측에 응용 가능합니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15The rheological manifestation of intra-cycle microstructural change of a model colloidal gel under oscillatory shearing is studied with Brownian dynamics simulation and a fully quantitative sequence of physical process (SPP) technique. The microstructural change of the model colloidal gels is identified with the rigidity concept and correlated with the rheological behavior quantified via the SPP metrics. The model colloidal gel exhibits complex nonlinear stress response in the large amplitude os
The transient structural and rheological behavior of soft glassy materials out of equilibrium is studied under small, medium, and large amplitude oscillatory shearing and interpreted via the fully quantitative sequence of physical processes (SPP) technique. We identify features of the local strain distribution that cause particular rheological responses and show that the SPP metrics accurately reflect the structural transitions. The SPP modulus is shown to reflect how much of the imposed strain
The microstructural evolution of the colloidal gel at intermediate volume fraction (15%) under start-up of shear flow has been studied by using the Brownian dynamics simulation method. The structural change was analyzed from three points of view, on cluster length scale, on local length scale and on anisotropy. Correlating the stress change which showed stress overshoot with the structural change on the cluster length scale, a mismatch between the initiation of the structural rupture and the str
The dynamics and rheological behavior of colloidal gels under oscillatory shear flow have been studied by using the Brownian dynamics simulations. The dynamics is studied under the oscillatory shear of small, medium, and large amplitudes. In the small amplitude oscillatory shear (SAOS) regime, the colloidal gel retains a rigid-chain network structure. The colloidal gel oscillates with small structural fluctuations and the elastic stress shows a linear viscoelastic response. In the medium amplitu
Views Icon Views Article contents Figures & tables Video Audio Supplementary Data Peer Review Share Icon Share Twitter Facebook Reddit LinkedIn Tools Icon Tools Reprints and Permissions Cite Icon Cite Search Site Citation Jun Dong Park, Kyung Hyun Ahn, Norman J. Wagner; Structure-rheology relationship for a homogeneous colloidal gel under shear startup. J. Rheol. 1 January 2017; 61 (1): 117–137. https://doi.org/10.1122/1.4971993 Download citation file: Ris (Zotero) Reference Manager EasyBib Book
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