Multi-scale space-variant FRep cellular structures

Authors: Fryazinov, O., Vilbrandt, T. and Pasko, A.

Journal: CAD Computer Aided Design

ISSN: 0010-4485

https://eprints.bournemouth.ac.uk/18559/

Source: Scopus

Multi-scale space-variant FRep cellular structures

Authors: Fryazinov, O., Vilbrandt, T. and Pasko, A.

Journal: COMPUTER-AIDED DESIGN

Volume: 45

Issue: 1

Pages: 26-34

eISSN: 1879-2685

ISSN: 0010-4485

DOI: 10.1016/j.cad.2011.09.007

https://eprints.bournemouth.ac.uk/18559/

Source: Web of Science (Lite)

Multi-scale space-variant FRep cellular structures

Authors: Fryazinov, O., Vilbrandt, T. and Pasko, A.

Journal: Computer-Aided Design

ISSN: 0010-4485

Abstract:

Existing mesh and voxel based modeling methods encounter difficulties when dealing with objects containing cellular structures on several scale levels and varying their parameters in space. We describe an alternative approach based on using real functions evaluated procedurally at any given point. This allows for modeling fully parameterized, nested and multi-scale cellular structures with dynamic variations in geometric and cellular properties. The geometry of a base unit cell is defined using Function Representation (FRep) based primitives and operations. The unit cell is then replicated in space using periodic space mappings such as sawtooth and triangle waves. While being replicated, the unit cell can vary its geometry and topology due to the use of dynamic parameterization. We illustrate this approach by several examples of microstructure generation within a given volume or along a given surface. We also outline some methods for direct rendering and fabrication not involving auxiliary mesh and voxel representations.

https://eprints.bournemouth.ac.uk/18559/

Source: Manual

Preferred by: Oleg Fryazinov

Multi-scale space-variant FRep cellular structures.

Authors: Fryazinov, O., Vilbrandt, T. and Pasko, A.A.

Journal: Comput. Aided Des.

Volume: 45

Pages: 26-34

DOI: 10.1016/j.cad.2011.09.007

https://eprints.bournemouth.ac.uk/18559/

Source: DBLP

Multi-scale space-variant FRep cellular structures

Authors: Fryazinov, O., Vilbrandt, T. and Pasko, A.

Journal: Computer-Aided Design

Volume: 45

Issue: 1

Pages: 26-34

ISSN: 0010-4485

Abstract:

Existing mesh and voxel based modeling methods encounter difficulties when dealing with objects containing cellular structures on several scale levels and varying their parameters in space. We describe an alternative approach based on using real functions evaluated procedurally at any given point. This allows for modeling fully parameterized, nested and multi-scale cellular structures with dynamic variations in geometric and cellular properties. The geometry of a base unit cell is defined using Function Representation (FRep) based primitives and operations. The unit cell is then replicated in space using periodic space mappings such as sawtooth and triangle waves. While being replicated, the unit cell can vary its geometry and topology due to the use of dynamic parameterization. We illustrate this approach by several examples of microstructure generation within a given volume or along a given surface. We also outline some methods for direct rendering and fabrication not involving auxiliary mesh and voxel representations.

https://eprints.bournemouth.ac.uk/18559/

Source: BURO EPrints