Buoyancy Optimization For Computational Fabrication

EG '16: Proceedings of the 37th Annual Conference of the European Association for Computer Graphics(2016)

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摘要
This paper introduces a design and fabrication pipeline for creating floating forms. Our method optimizes for buoyant equilibrium and stability of complex 3D shapes, applying a voxel-carving technique to control the mass distribution. The resulting objects achieve a desired floating pose defined by a user-specified waterline height and orientation. In order to enlarge the feasible design space, we explore novel ways to load the interior of a design using prefabricated components and casting techniques. 3D printing is employed for high-precision fabrication. For larger scale designs we introduce a method for stacking lasercut planar pieces to create 3D objects in a quick and economic manner. We demonstrate fabricated designs of complex shape in a variety of floating poses.
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Categories and Subject Descriptors (according to ACM CCS),I,3,3 [Computer Graphics],Computational Geometry and Object Modeling-Physically based modeling
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