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[ARTICLE · art-111219] src=arxiv.org ↗ pub= topic=artificial-intelligence verified=true sentiment=↑ positive

Gen2Physics: Grounding Generated 3D Meshes in Physics via Multi-View Material Decomposition

Gen2Physics, a new framework from arXiv, grounds generated 3D meshes in physics by decomposing them into material components, achieving 48.3 mIoU on material segmentation benchmarks, more than doubling prior physics-grounding pipelines (15.6 mIoU). The system integrates a fine-tuned Vision Transformer, 2D-to-3D consistency projection, and VLM-guided refinement to produce simulation-ready assets with watertight per-material sub-meshes.

read1 min views1 publishedAug 26, 2026

arXiv:2608.23869v1 Announce Type: new Abstract: While state-of-the-art generative models produce high-fidelity 3D meshes, these outputs lack the physical properties required for interactive simulation, gaming, or robotics. We introduce Gen2Physics, a unified and automated framework that grounds generated meshes in physics by automatically decomposing them into their constituent material components. Unlike prior approaches, which focus on volumetric representations incompatible with standard physics engines, Gen2Physics operates directly on meshes to produce immediately simulation-ready assets. Our pipeline integrates a fine-tuned Vision Transformer for dense material segmentation, a robust 2D-to-3D consistency projection, and a Vision-Language Model (VLM) guided refinement that leverages contextual reasoning to assign physical properties and infer internal geometry (solid vs. hollow). By converting surface patches into volumes with distinct densities, our method enables physically plausible dynamic simulations. Experimental results on the ABO-500 and PartNet-Material benchmarks demonstrate that Gen2Physics more than doubles the material segmentation accuracy of prior physics-grounding pipelines (15.6 to 48.3 mIoU), while matching the mass-estimation accuracy of volumetric methods and being the only approach to output watertight per-material sub-meshes.

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