선박 구조용 알루미늄 서브프레임의 유한요소 기반 고유진동 해석 및 진동 특성 분석
Finite Element-Based Modal Analysis and Vibration Characteristic Evaluation of an Aluminum Subframe for Ship Structures
This study investigates the vibration characteristics of an aluminum subframe for small and high-speed vessels through modal and resonance analysis using the finite element method (FEM). Due to the low stiffness and damping of aluminum, concerns arise over structural resonance and fatigue. A 3D model based on actual design drawings was analyzed to extract six natural frequencies and corresponding mode shapes. Significant deformation was observed in the first and second modes (90.65 Hz, 110.60 Hz), which may overlap with operational frequencies. The fifth mode (263.70 Hz) showed high amplitude with Y-axis concentration, indicating lateral resonance vulnerability. Deformation ratios were used to identify dominant vibrational directions. Based on the findings, design strategies such as structural reinforcement, RPM adjustment, and damping device application were proposed to improve vibration safety in the early design stage.
목차
Abstract 1. 서론 2. 연구 절차 및 해석 방법 2.1 서브프레임 모 델 2.2 해석 절차 2.3 지배방정식 3. 진동 특성 분석 3.1 해석결과 3.2 변형비 및 진동회피 방안 4. 결론 후기 References
키워드
고유진동해석알루미늄 서브프레임유한요소해석진동특성평가Modal AnalysisAluminum SubframeFinite Element MethodVibration Characteristic Evaluation
저자
김지선 [ Ji-sun Kim | Korea Institute of Industrial Technology, Senior Researcher ]
Corresponding Author
박민호 [ Min-Ho Park | Research Institute of Medium&Small Shipbuilding ]