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Cross-sectional structural analysis for 3d printing optimization.
| Content Provider | CiteSeerX |
|---|---|
| Author | Umetani, Nobuyuki Schmidt, Ryan |
| Abstract | We propose a novel cross-sectional structural analysis technique that efficiently detects critical stress inside a 3D object. We slice the object into cross-sections and compute stress based on bending momentum equilibrium. Unlike traditional approaches based on finite element methods, our method does not require a volumetric mesh or solution of linear systems, enabling interactive analysis speed. Based on the stress analysis, the orientation of an object is optimized to increase mechanical strength when manufactured with 3D printing. |
| File Format | |
| Access Restriction | Open |
| Subject Keyword | Printing Optimization Cross-sectional Structural Analysis Volumetric Mesh Mechanical Strength Critical Stress Traditional Approach Stress Analysis Momentum Equilibrium Compute Stress Finite Element Method Linear System Interactive Analysis Speed Novel Cross-sectional Structural Analysis Technique |
| Content Type | Text |