Printability, the capability of a 3D printer to closely reproduce a 3D model, is a complex decision involving several geometrical attributes like local thickness, shape of the thin regions and their surroundings, and topology with respect to thin regions. We present a method for assessment of 3D shape printability which efficiently and effectively computes such attributes. Our method uses a simple and efficient voxel-based representation and associated computations. Using tools from multi-scale morphology and geodesic analysis, we propose several new metrics for various printability problems. We illustrate our method with results taken from a real-life application
3D printing is a process that has become widely used in recent years, allowing the production of par...
Porous structures are of great importance in tissue engineering. Most scaffolds are 3D printed, but ...
Direct digital manufacturing is a set of rapidly evolving technolo-gies that provide easy ways to ma...
Printability, the capability of a 3D printer to closely reproduce a 3D model, is a complex decision ...
Abstract. Printability, the capability of a 3D printer to closely repro-duce a 3D model, is a comple...
This paper presents a novel voxel-based representation scheme coupled with voxelisation, display and...
An efficient voxel representation scheme coupled with algorithms for voxelisation, display and thick...
Traditionally, 3D models, even so called solid ones, can only represent the object's surface inf...
While Additive Manufacturing (AM) processes provide unparalleled design freedom, they still impose ...
Three-dimensional (3D) printing technologies are increasingly used to convert medical imaging studie...
Metal powder-bed fusion additive manufacturing technologies offer numerous benefits to the manufactu...
We propose displaced signed distance fields, an implicit shape representation to accurately, efficie...
Additive manufacturing (AM) and in particular the application of 3D multi material printing offers c...
We present a multimaterial voxel-printing method that enables the physical visualization of data set...
Quality of 3d model in simple way translates into quality of final product, obtained from 3d printin...
3D printing is a process that has become widely used in recent years, allowing the production of par...
Porous structures are of great importance in tissue engineering. Most scaffolds are 3D printed, but ...
Direct digital manufacturing is a set of rapidly evolving technolo-gies that provide easy ways to ma...
Printability, the capability of a 3D printer to closely reproduce a 3D model, is a complex decision ...
Abstract. Printability, the capability of a 3D printer to closely repro-duce a 3D model, is a comple...
This paper presents a novel voxel-based representation scheme coupled with voxelisation, display and...
An efficient voxel representation scheme coupled with algorithms for voxelisation, display and thick...
Traditionally, 3D models, even so called solid ones, can only represent the object's surface inf...
While Additive Manufacturing (AM) processes provide unparalleled design freedom, they still impose ...
Three-dimensional (3D) printing technologies are increasingly used to convert medical imaging studie...
Metal powder-bed fusion additive manufacturing technologies offer numerous benefits to the manufactu...
We propose displaced signed distance fields, an implicit shape representation to accurately, efficie...
Additive manufacturing (AM) and in particular the application of 3D multi material printing offers c...
We present a multimaterial voxel-printing method that enables the physical visualization of data set...
Quality of 3d model in simple way translates into quality of final product, obtained from 3d printin...
3D printing is a process that has become widely used in recent years, allowing the production of par...
Porous structures are of great importance in tissue engineering. Most scaffolds are 3D printed, but ...
Direct digital manufacturing is a set of rapidly evolving technolo-gies that provide easy ways to ma...