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모달 해석×적층 제조 슬라이싱×
분야제조공학제조공학
계열Process / pipelineProcess / pipeline
기원 연도19751990s
창시자Clough, R. W., Penzien, J.Deckard, C. R. et al.
유형Computational method for structural dynamicsComputational method for additive manufacturing
원전Clough, R. W., & Penzien, J. (1975). Dynamics of Structures. McGraw-Hill. ISBN: 0-07-011394-7Ngo, T. D., Kashani, A., Imbalzano, G., Nguyen, K. T., & Hui, D. (2018). Additive manufacturing (3D printing): A review of materials, methods, applications and challenges. Composites Part B: Engineering, 143, 172-196. DOI ↗
별칭Eigenvalue analysis, Frequency response analysis, Natural frequencies3D printing slicing, Layer generation, Mesh slicing
관련44
요약Modal analysis is a computational and experimental method for determining the natural frequencies and associated mode shapes of a mechanical structure. By decomposing structural vibration into its fundamental modes (natural oscillation patterns), engineers can predict resonance frequencies, assess dynamic response to external forces, and design structures to avoid problematic vibrations. Developed rigorously by Clough and Penzien in their foundational work on structural dynamics, modal analysis is essential for designing robust mechanical systems.Additive manufacturing slicing is the computational process of converting a three-dimensional CAD model into a series of two-dimensional cross-sectional layers that are sequentially built up by 3D printing hardware. Developed during the early maturation of stereolithography and selective laser sintering in the 1990s, this method bridges the gap between digital design and physical fabrication, enabling rapid prototyping and production of complex geometries.
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ScholarGate방법 비교: Modal Analysis · Additive Manufacturing Slicing. 2026-06-18에 다음에서 검색함: https://scholargate.app/ko/compare