Hi, I am Song Wang, R&D Director and co-founder at VoxelDance.
I build robust geometry algorithms that turn complex triangle meshes into manufacturable data for additive manufacturing. My work sits at the intersection of computer-graphics geometry processing, computational geometry, 3D model nesting, tetrahedral conversion, and implicit modeling.
Geometry algorithms for production additive manufacturing.
Triangle-mesh simplification, subdivision, remeshing/reconstruction, Boolean operations, model repair, mesh offsetting, thickening, and plane cutting.
3D model nesting workflows for SLS and industrial printing, with build-height optimization, slice-area balancing, and part classification.
Removable Partial Denture (RPD) framework orientation optimization and lattice prop generation, dental crown orientation optimization, and dental crown labeling algorithms.
Implicit-to-triangle-mesh conversion, direct slicing on implicit models, implicit Boolean operations, implicit offsetting, and other geometry operation algorithms.
Geometry representations beyond surface meshes.
I am currently exploring implicit modeling and representation conversion: SDF-style modeling, implicit Boolean and blending operations, implicit-to-triangle-mesh extraction, and workflows that move between triangle meshes, tetrahedral meshes, and volumetric fields.
Representative projects across 3D model nesting, implicit modeling, and production geometry processing.

Convert implicit models into high-quality triangular meshes while preserving geometric detail, sharp features, and topology suitable for downstream engineering workflows.

Fast lattice prop generation for Removable Partial Denture (RPD) framework build preparation, helping control distortion while keeping supports easy to remove.

Orientation optimization for Removable Partial Denture (RPD) frameworks during dental build preparation.

Build-preparation algorithms for dense, reliable SLS 3D model nesting with height reduction, slice-area balancing, and part classification.
Lightweight interactive experiments.