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| pretty_name: UniPhys-Bench | |
| license: cc-by-nc-4.0 | |
| language: | |
| - en | |
| tags: | |
| - 3d | |
| - physical-grounding | |
| - articulation | |
| - robotics | |
| - simulation | |
| - benchmark | |
| size_categories: | |
| - 1K<n<10K | |
| # UniPhys-Bench | |
| UniPhys-Bench is a human-verified benchmark comprising 1,927 heterogeneous | |
| articulated 3D objects across two releases. It jointly evaluates articulation | |
| semantics, articulation structure, part-level intrinsic physical properties, | |
| and object-level scale and mass. | |
| This repository is the **primary UniPhys-Bench release**. It contains 1,473 | |
| articulated 3D objects provided by [Manycore Tech](https://www.manycoretech.com/) | |
| (群核科技), with part decompositions created by professional designers. | |
| The remaining 454 evaluation-only articulated 3D objects are released separately | |
| as [UniPhys-Bench Part 2](https://huggingface.co/datasets/breezexian/UniPhys-Bench-Part2), | |
| completing the 1,927-object benchmark. | |
| - **Primary release (this repository):** [spatialverse/UniPhys-Bench](https://huggingface.co/datasets/spatialverse/UniPhys-Bench) | |
| - **Companion release (Part 2):** [breezexian/UniPhys-Bench-Part2](https://huggingface.co/datasets/breezexian/UniPhys-Bench-Part2) | |
| - **Code:** [breezexian/UniPhysGen](https://github.com/breezexian/UniPhysGen) | |
| - **Paper:** [UniPhysGen: Unified Physical Grounding for Simulation-Ready 3D Assets](https://arxiv.org/abs/2607.13586) | |
| - **Training dataset:** [breezexian/UniPhys-40K](https://huggingface.co/datasets/breezexian/UniPhys-40K) | |
| ## Dataset summary | |
| | Articulated 3D Objects | Parts | Motion-Relevant Components | | |
| | :---: | :---: | :---: | | |
| | **1,927** | **~16K** | **~5.5K** | | |
| | 1,473 in this primary release<br>+ 454 in Part 2 | Across both releases | Across both releases | | |
| ## Dataset showcase | |
| The following benchmark-level examples visualize 3D assets and selected | |
| physical-grounding results across the complete UniPhys-Bench. Each row follows | |
| one articulated object from its original textured mesh through part | |
| decomposition and affordance grounding to the motion of all articulated parts. | |
| In the affordance view, **redder parts indicate higher interactivity**. | |
| | Original Mesh | Part Decomposition | Affordance | Articulated Motion | | |
| | :---: | :---: | :---: | :---: | | |
| | Raw textured geometry | Part-level segmentation | <img src="./assets/bar.png" alt="Affordance color scale from less to more interaction" width="120" height="26"><br>**Redder = more interactive** | All articulated parts in motion | | |
| | <img src="./assets/1_original_360.gif" alt="Example 1 original mesh" width="240" height="135"> | <img src="./assets/1_multicolor_360.gif" alt="Example 1 part decomposition" width="240" height="135"> | <img src="./assets/1_affordance_360.gif" alt="Example 1 affordance visualization" width="240" height="135"> | <img src="./assets/1_all_joints_motion.gif" alt="Example 1 articulated motion" width="240" height="135"> | | |
| | <img src="./assets/2_original_360.gif" alt="Example 2 original mesh" width="240" height="135"> | <img src="./assets/2_multicolor_360.gif" alt="Example 2 part decomposition" width="240" height="135"> | <img src="./assets/2_affordance_360.gif" alt="Example 2 affordance visualization" width="240" height="135"> | <img src="./assets/2_all_joints_motion.gif" alt="Example 2 articulated motion" width="240" height="135"> | | |
| | <img src="./assets/3_original_360.gif" alt="Example 3 original mesh" width="240" height="135"> | <img src="./assets/3_multicolor_360.gif" alt="Example 3 part decomposition" width="240" height="135"> | <img src="./assets/3_affordance_360.gif" alt="Example 3 affordance visualization" width="240" height="135"> | <img src="./assets/3_all_joints_motion.gif" alt="Example 3 articulated motion" width="240" height="135"> | | |
| ## Simulation-based embodied interaction | |
| The following benchmark-level demonstrations illustrate downstream embodied | |
| interaction with assets from the complete UniPhys-Bench. | |
| **1. Drawer Pulling** | |
| | Initial State → | Physical Contact → | Actuated State | | |
| | :---: | :---: | :---: | | |
| | <img src="./assets/simulation_1_initial_placeholder.png" alt="Drawer pulling initial state" width="300" height="169"> | <img src="./assets/simulation_1_contact_placeholder.png" alt="Drawer pulling physical contact" width="300" height="169"> | <img src="./assets/simulation_1_actuated_placeholder.png" alt="Drawer pulling actuated state" width="300" height="169"> | | |
| **2. Faucet Turning** | |
| | Initial State → | Physical Contact → | Actuated State | | |
| | :---: | :---: | :---: | | |
| | <img src="./assets/simulation_2_initial_placeholder.png" alt="Faucet turning initial state" width="300" height="169"> | <img src="./assets/simulation_2_contact_placeholder.png" alt="Faucet turning physical contact" width="300" height="169"> | <img src="./assets/simulation_2_actuated_placeholder.png" alt="Faucet turning actuated state" width="300" height="169"> | | |
| **3. Laptop Closing** | |
| | Initial State → | Physical Contact → | Actuated State | | |
| | :---: | :---: | :---: | | |
| | <img src="./assets/simulation_3_initial_placeholder.png" alt="Laptop closing initial state" width="300" height="169"> | <img src="./assets/simulation_3_contact_placeholder.png" alt="Laptop closing physical contact" width="300" height="169"> | <img src="./assets/simulation_3_actuated_placeholder.png" alt="Laptop closing actuated state" width="300" height="169"> | | |
| ## Release scope | |
| | Statistic | Value | | |
| | --- | ---: | | |
| | Articulated objects in this repository | 1,473 | | |
| | Entity ID range | `UPB_00000454`–`UPB_00001926` | | |
| | Role | Primary release | | |
| The complete benchmark used in the paper contains 1,927 articulated 3D objects | |
| and is hosted as two independent releases: | |
| | Release | Contents | Objects | Entity IDs | | |
| | --- | --- | ---: | --- | | |
| | [UniPhys-Bench](https://huggingface.co/datasets/spatialverse/UniPhys-Bench) | Manycore-provided assets | 1,473 | `UPB_00000454`–`UPB_00001926` | | |
| | [UniPhys-Bench Part 2](https://huggingface.co/datasets/breezexian/UniPhys-Bench-Part2) | Evaluation-only assets held out from the UniPhys-40K source distribution | 454 | `UPB_00000000`–`UPB_00000453` | | |
| The two releases use the same annotation schema and evaluation protocol. They | |
| are hosted separately so that each repository can state the provenance and | |
| terms applicable to the assets it contains. Entity IDs are globally unique | |
| across the two releases and should not be renumbered. | |
| The benchmark covers diverse object categories, structural complexities, part | |
| granularities, modeling styles, scales, masses, materials, and articulation | |
| patterns. | |
| ## Benchmark construction | |
| The assets in this repository were provided by Manycore Tech, and their part | |
| decompositions were created by professional designers. The UniPhys pipeline | |
| first produces articulation and physical-property annotations. Human annotators | |
| then inspect and correct joint type, axis, pivot, motion range, | |
| motion-dependent part groupings, and intrinsic physical-property plausibility | |
| for motion-relevant components. | |
| UniPhys-Bench Part 2 provides the complementary source-distribution split used | |
| by the complete benchmark. It is distributed separately and is not contained | |
| in this repository. | |
| ## Annotation scope | |
| | Task | Inputs | Ground truth | | |
| | --- | --- | --- | | |
| | Part-level intrinsic physical grounding | object and target-part geometry | part identity, semantic descriptions, material, density, Young's modulus, hardness, Poisson's ratio, friction, graspability, and affordance | | |
| | Kinematic parameter grounding | object and target-part geometry | prismatic/revolute joint type, axis, pivot, and motion range | | |
| | Articulation structure grounding | object and target-part geometry plus candidate-part metadata | IDs of parts that move together with the target part | | |
| | Object-level physical grounding | complete-object geometry | object identity, category, dimensions, and mass | | |
| Part-property units follow the paper: density is in `g/cm^3`, Young's modulus | |
| in `GPa`, hardness in `HV`, and Poisson's ratio and friction are unitless. | |
| Object dimensions are `[L, W, H]` in centimeters and mass is in kilograms. | |
| Affordance is scored from 1 to 10, with smaller values indicating higher | |
| affordance. | |
| Motion labels use `B` for prismatic translation and `C` for revolute rotation. | |
| The broader part-level annotations additionally use `A` for contact-only and | |
| `D` for rigid or fixed parts. | |
| ## Dataset structure | |
| Each benchmark object is stored in one `UPB_<id>` directory. For example: | |
| ```text | |
| UPB_00000454/ | |
| ├── annotations/ | |
| │ ├── object.json | |
| │ ├── part_1.json | |
| │ ├── part_2.json | |
| │ └── ... | |
| ├── full_model/ | |
| │ ├── model.obj | |
| │ ├── material.mtl | |
| │ └── texture files | |
| ├── meta_data.json | |
| ├── model.urdf | |
| ├── parts/ | |
| │ ├── part_1.obj | |
| │ ├── part_2.obj | |
| │ ├── material and texture files | |
| │ └── ... | |
| └── plys/ | |
| ├── model.ply | |
| ├── 1.ply | |
| ├── 2.ply | |
| └── ... | |
| ``` | |
| | Path | Description | | |
| | --- | --- | | |
| | `parts/part_<id>.obj` | Decomposed part mesh, with its available MTL and texture assets. | | |
| | `full_model/model.obj` | Complete object OBJ produced by concatenating all released part meshes. | | |
| | `plys/model.ply` | Point cloud for the complete object. | | |
| | `plys/<id>.ply` | Part point cloud aligned with `parts/part_<id>.obj`. | | |
| | `annotations/object.json` | Object identity, category, real-world dimensions, and mass. | | |
| | `annotations/part_<id>.json` | Part semantics, intrinsic physical properties, articulation parameters, and dependency group. | | |
| | `meta_data.json` | Entity provenance, object summary, geometry metadata, and annotation version. | | |
| | `model.urdf` | Articulated assembly of all released parts using the annotated joints and motion parameters. | | |
| The same numeric part ID is used by `part_<id>.obj`, `<id>.ply`, and | |
| `part_<id>.json`, so geometry and annotations can be joined without an | |
| additional mapping file. | |
| ### Simulation-ready URDF | |
| `model.urdf` assembles all parts and encodes the annotated joint types and | |
| motion parameters. During export, the mesh is rescaled using the annotated | |
| object dimensions so that the assembled asset has a real physical size. URDF | |
| geometry uses **meters**, while `annotations/object.json` stores dimensions in | |
| centimeters. | |
| > [!IMPORTANT] | |
| > The released URDF provides the articulated geometry and kinematic assembly, | |
| > but intrinsic physical properties are not written into the URDF. Density, | |
| > friction, mass, and other physical values should be read from the JSON | |
| > annotations and assigned as needed for the target simulator and experiment. | |
| ### Metadata | |
| `meta_data.json` stores the dataset origin and released entity summary. A | |
| Manycore entity uses metadata of the following form: | |
| ```json | |
| { | |
| "id": "UPB_00000454", | |
| "source": [ | |
| { | |
| "dataset": "UniPhys-Bench", | |
| "organization": "Manycore Tech Inc.", | |
| "license_ref": "UniPhys-Bench" | |
| } | |
| ], | |
| "object": { | |
| "category": "Furniture/StorageFurniture", | |
| "object_name": "Corner Display Cabinet with Drawer" | |
| }, | |
| "geometry": { | |
| "asset_type": "decomposed_parts", | |
| "num_parts": 6, | |
| "format": "obj" | |
| }, | |
| "annotation": { | |
| "version": "v1.0" | |
| } | |
| } | |
| ``` | |
| ### Part-level annotations | |
| Each `annotations/part_<id>.json` contains the part description, intrinsic | |
| physical properties, motion type, joint parameters, and motion dependency: | |
| ```json | |
| { | |
| "index": { | |
| "type_name": "default", | |
| "entity": "UPB_00000000", | |
| "label": "3" | |
| }, | |
| "part_level": { | |
| "part_name": "Front Seat Trim Bar", | |
| "affordance": 2, | |
| "graspable": false, | |
| "basic_description": "Slim ABS trim piece at the front edge of the seat.", | |
| "functional_description": "Covers a seam and provides a finished edge.", | |
| "movement_description": "Revolute; attached to the seat base.", | |
| "grasp_description": "Grasp the handle of the bar." | |
| }, | |
| "basic_info": { | |
| "material": "metal/Steel", | |
| "density": 7.85, | |
| "young": 200.0, | |
| "hardness": 180.0, | |
| "poisson": 0.3, | |
| "friction": 0.45 | |
| }, | |
| "kinematic_info": { | |
| "motion_types": ["C"], | |
| "motion_info": { | |
| "dependency": [3], | |
| "C": { | |
| "axis": [-1.0, 0.0, 0.0], | |
| "pos": [-0.02277967, 0.38144422, -0.02326505], | |
| "range": [0.0, 0.785], | |
| "damping": 0.03 | |
| } | |
| } | |
| } | |
| } | |
| ``` | |
| `kinematic_info.motion_info.dependency` lists the part IDs that move together. | |
| For movable parts, `B` contains prismatic parameters and `C` contains revolute | |
| parameters; `axis`, `pos`, `range`, and `damping` describe the corresponding | |
| joint. | |
| `range` is the `[lower, upper]` motion interval; for a revolute (`C`) joint, | |
| both limits are rotation angles expressed in radians. | |
| ### Object-level annotations | |
| `annotations/object.json` contains the object identity and global physical | |
| properties: | |
| ```json | |
| { | |
| "object_name": "Example Object", | |
| "category": "Furniture/StorageFurniture", | |
| "volume": [70.0, 68.0, 110.0], | |
| "mass": 15.5 | |
| } | |
| ``` | |
| `volume` is `[length, width, height]` in centimeters and `mass` is in | |
| kilograms. The values above illustrate the schema; released files contain the | |
| verified values for each entity. | |
| ## Download and prepare | |
| Download this primary release: | |
| ```bash | |
| hf download \ | |
| spatialverse/UniPhys-Bench \ | |
| --repo-type dataset \ | |
| --local-dir data/UniPhys-Bench | |
| ``` | |
| Generate model-ready point clouds: | |
| ```bash | |
| python pre_process/generate_npzs.py \ | |
| --data_root data/UniPhys-Bench \ | |
| --output_dir data/UniPhys-Bench-processed/npzs | |
| ``` | |
| Generate one inference manifest for each evaluation task: | |
| ```bash | |
| python pre_process/generate_jsons_for_inference.py \ | |
| --data_root data/UniPhys-Bench \ | |
| --npz_dir data/UniPhys-Bench-processed/npzs \ | |
| --output_dir data/UniPhys-Bench-processed/manifests | |
| ``` | |
| The command writes: | |
| ```text | |
| manifests/ | |
| ├── intrinsic_physics_part.json | |
| ├── intrinsic_physics_object.json | |
| ├── kinematic_parameters.json | |
| └── articulation_structure.json | |
| ``` | |
| Each sample keeps its complete benchmark annotation. UniPhysGen inference | |
| embeds that record as `source_sample`, which the evaluation package reads as | |
| ground truth. | |
| To reproduce results on the complete benchmark of 1,927 articulated objects, | |
| also download [UniPhys-Bench Part 2](https://huggingface.co/datasets/breezexian/UniPhys-Bench-Part2) | |
| and evaluate both releases with the same protocol. Keep the original entity IDs | |
| when preparing a combined data root. | |
| ## Evaluation protocol | |
| The paper reports the following metrics: | |
| | Category | Metrics | | |
| | --- | --- | | |
| | Kinematic parameters | joint-type accuracy, axis angular error in degrees, pivot-to-ground-truth-axis distance, and motion-range mIoU | | |
| | Articulation structure | set mIoU and micro-F1 over motion-coupled part IDs | | |
| | Material properties | material-category accuracy, density ALDE, and friction MAE | | |
| | Object scale and mass | ALDE and MnRE for dimensions and mass | | |
| | Affordance | MAE over the 1-10 affordance score | | |
| Kinematic parameters are evaluated on ground-truth movable parts, separating | |
| parameter estimation from movable-part identification. Axis directions `a` and | |
| `-a` are treated as the same articulation axis. Pivot error is measured in a | |
| shared AABB-normalized object frame as point-to-ground-truth-axis distance. | |
| Motion ranges are canonicalized to unsigned intervals before computing IoU. | |
| Run the four evaluators on prediction JSON files or directories of per-sample | |
| records: | |
| ```bash | |
| python -m eval intrinsic_physics_part PREDICTIONS \ | |
| --output intrinsic_physics_part_metrics.json | |
| python -m eval intrinsic_physics_object PREDICTIONS \ | |
| --output intrinsic_physics_object_metrics.json | |
| python -m eval kinematic_parameters PREDICTIONS \ | |
| --output kinematic_parameters_metrics.json | |
| python -m eval articulation_structure PREDICTIONS \ | |
| --output articulation_structure_metrics.json | |
| ``` | |
| See the [UniPhysGen README](https://github.com/breezexian/UniPhysGen#reproducing-uniphys-bench-results) | |
| for the complete inference workflow and checkpoint commands. | |
| ## Intended use | |
| UniPhys-Bench is intended for research evaluation of unified physical | |
| grounding, including articulation reasoning, physical-property estimation, | |
| simulation-ready asset construction, embodied AI, and robotics simulation. It | |
| is an evaluation benchmark and should not be mixed into UniPhysGen training or | |
| model-selection data. | |
| ## Scope and usage considerations | |
| - Human annotators verify and correct articulation annotations and assess | |
| physical-property plausibility to support consistent research evaluation. | |
| Physical values are reference estimates for the depicted objects. | |
| - The benchmark cannot cover every object category, material, mechanism, part | |
| granularity, or mesh failure mode. | |
| - Results can depend on geometric completeness, scale correctness, texture | |
| quality, and candidate part decomposition. | |
| ## Licensing and provenance | |
| The complete contents of this release—including assets, annotations, metadata, | |
| derived representations, and dataset organization—are licensed under | |
| [CC BY-NC 4.0](https://creativecommons.org/licenses/by-nc/4.0/). Commercial | |
| use is not permitted. See | |
| [LICENSE_UNIPHYS_BENCH](https://huggingface.co/datasets/spatialverse/UniPhys-Bench/blob/main/LICENSE_UNIPHYS_BENCH) | |
| for the release-specific license notice and attribution information. | |
| Use the `source` field in each entity's `meta_data.json` to retain the supplied | |
| organization and license reference. Retain all required attribution, license, | |
| and modification notices when sharing the data. | |
| ## Citation | |
| ```bibtex | |
| @article{li2026uniphysgen, | |
| title = {UniPhysGen: Unified Physical Grounding for Simulation-Ready 3D Assets}, | |
| author = {Li, Xian and Wei, Rong and Yang, Lujie and Huang, Haolin and Fang, Junyuan and Tang, Siliang and Xiao, Jun and Tang, Rui and Li, Juncheng}, | |
| journal = {arXiv preprint arXiv:2607.13586}, | |
| year = {2026} | |
| } | |
| ``` | |