DESCRIPTION

Bring cultural authenticity and rustic realism to your scenes with this highly detailed Traditional Grinding Stone 3D Model—a carefully crafted digital representation of a classic hand-operated stone grinder often found in rural and historical settings. This model features a worn, weathered texture that adds a sense of age, utility, and realism. A sturdy wooden handle protrudes from the top, hinting at the manual nature of its use. The surrounding base includes scattered earth for grounded environmental context, making it ideal for outdoor or historical game environments. Perfectly suited for historical reconstructions, rural village simulations, educational visuals, or game assets, this model is fully textured with realistic PBR materials. Clean topology and an optimized polygon count make it suitable for both real-time engines and offline renders. Key Features: High-quality PBR textures (albedo, roughness, normal), Realistic weathered surface detail, Game-ready and low-poly optimized, Suitable for Unity, Unreal Engine, Blender, and other 3D platforms, Includes surrounding dirt mesh for environment grounding. Whether you’re working on a traditional village, an archaeological scene, or a survival game—this grinder adds a powerful cultural and visual touch to your work.

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Traditional Grinding Stone 3D Model Low-poly 3D model

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File formats
OBJ
OBJ | 2 files<br />File Size: 43.7 KB
BLEND
Blender<br />Version: 4.2.1 - Renderer: Default<br />File Size: 1.17 MB
FBX
Autodesk FBX<br />File Size: 37 KB
GLTF
glTF<br />File Size: 2.63 MB
JPG
JPG | 2 files<br />File Size: 10.2 MB
PNG
PNG<br />File Size: 5.08 MB
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FBX
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No unsupported objects
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Geometry
No N-gons
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No faceted geometry
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Manifold geometry
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Textures & material
PBR textures
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- Roughness
- Metalness
- Normal
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No embed textures
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Square textures
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Power of 2 texture sizes
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No UV overlaps
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UV unwrapped model
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3D Features
Animated
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Rigged
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Low-poly
PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
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Polygon mesh
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316 polygons
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/ 337 vertices
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