Jeongrak Lee
Papers
1
Total Citations
10
H-Index
1
About
Jeongrak Lee investigates the structural stability of thin-walled shells, focusing on the interplay between geometry, imperfections, and loading conditions. His work addresses critical challenges in aerospace, civil, and mechanical engineering, where shell structures are prone to buckling under compression. Lee’s most-cited paper, “Combined influence of shallowness and geometric imperfection on the buckling of clamped spherical shells” (2024, 10 citations), provides a nuanced analysis of how slight deviations from ideal shape—combined with shell curvature—dramatically reduce buckling strength. By systematically quantifying these coupled effects, he offers predictive models that improve design safety margins for domes, pressure vessels, and storage tanks. Though early in his career, Lee’s research has already attracted attention for its practical relevance, offering engineers clearer guidelines for imperfection-sensitive structures. His work bridges theoretical mechanics and real-world application, promising to influence future codes for shell stability.
Research Focus
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Top Papers
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