Hanyang University · 工学
Professor Seungjae Min's research lab specializes in advanced design optimization and structural mechanics, focusing on lightweight and high-performance engineering systems. The lab develops innovative methods in multiobjective optimization, topology optimization, and reliability-based design to enhance structural stability, dynamic performance, and robustness in mechanical systems. Key research directions include hydro-pneumatic suspension systems for heavy-duty vehicles, compliant mechanisms with geometric precision, and buckling-resistant topologies for lightweight structures under uncertainty. The lab emphasizes practical applicability through adaptive optimization schemes and uncertainty-aware design methodologies.
Figures are computed from collected data and may differ slightly.
In the development of heavy-duty vehicles, the design of hydro-pneumatic suspension (HPS) is important for improving various aspects of vehicle performance, such as comfort and stability. An HPS with gas–oil emulsion is advantageous with respect to cost and design compared to that with a separated chamber, because it shares a chamber with gas and oil. This paper presents an optimisation procedure for obtaining the optimal design of HPS with gas–oil emulsion for heavy-duty vehicles. The HPS model
Summary Finding an optimum design that satisfies all performances in a design problem is very challenging. To overcome this problem, multiobjective optimization methods have been researched to obtain Pareto optimum solutions. Among the different methods, the weighted sum method is widely used for its convenience. However, since the different weights do not always guarantee evenly distributed solutions on the Pareto front, the weights need to be determined systematically. Therefore, this paper pr
The material-based homogenization design method generates arbitrary topologies of initial structural design as well as reinforcement structural design by controlling the amount of material available. However, if a small volume constraint is specified in the design of Lightweight structures, thin and slender structures are usually obtained. For these structures stability becomes one of the most important requirements. Thus, to prevent overall buckling (that is, to increase stability), the objecti
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