CVCGGRNov 20, 2025

PartUV: Part-Based UV Unwrapping of 3D Meshes

arXiv:2511.16659v16 citationsh-index: 20SIGGRAPH Asia
Originality Incremental advance
AI Analysis

This addresses UV unwrapping challenges for 3D modeling and AI-generated meshes, offering improved efficiency and quality for downstream tasks, though it is incremental as it builds on prior part decomposition methods.

The paper tackles UV unwrapping for 3D meshes, particularly AI-generated ones that are noisy and poorly conditioned, by introducing PartUV, a part-based pipeline that reduces chart count and seam length while maintaining low distortion, outperforming existing methods across diverse datasets.

UV unwrapping flattens 3D surfaces to 2D with minimal distortion, often requiring the complex surface to be decomposed into multiple charts. Although extensively studied, existing UV unwrapping methods frequently struggle with AI-generated meshes, which are typically noisy, bumpy, and poorly conditioned. These methods often produce highly fragmented charts and suboptimal boundaries, introducing artifacts and hindering downstream tasks. We introduce PartUV, a part-based UV unwrapping pipeline that generates significantly fewer, part-aligned charts while maintaining low distortion. Built on top of a recent learning-based part decomposition method PartField, PartUV combines high-level semantic part decomposition with novel geometric heuristics in a top-down recursive framework. It ensures each chart's distortion remains below a user-specified threshold while minimizing the total number of charts. The pipeline integrates and extends parameterization and packing algorithms, incorporates dedicated handling of non-manifold and degenerate meshes, and is extensively parallelized for efficiency. Evaluated across four diverse datasets, including man-made, CAD, AI-generated, and Common Shapes, PartUV outperforms existing tools and recent neural methods in chart count and seam length, achieves comparable distortion, exhibits high success rates on challenging meshes, and enables new applications like part-specific multi-tiles packing. Our project page is at https://www.zhaoningwang.com/PartUV.

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