3D Men's Work Boots

Regular price
€ 17.00
Regular price
Sale price
€ 17.00
Shipping calculated at checkout.

3D Model of Men's Work Boots crafted through Photogrammetry Scan

This 3D model of Men's Work Boots, crafted through an advanced Photogrammetry Scan, is perfect for creating high-quality footwear assets for games and films. The model captures the rugged texture, scuffs, and fine details of the boots, making them ideal for outfitting 3D characters in realistic settings. Whether for a construction site, a warehouse, or any other demanding work environment, these work boots add authenticity and depth to your digital project. Designed for a wide range of applications, from game development to VFX and virtual production, this model is perfect for bringing tough, functional footwear to life in any scene.

Realistic 3D Men's Work Boots rigged as a 3D Footwear for Metahuman in Unreal Engine

These Men's Work Boots are customized to the Metahuman skeleton in Unreal Engine. These 3d boots are designed for game development, VFX for film, VR, AR, XR, virtual production, and architectural visualization. Ideal for realistic 3D rendering, they are perfectly suited for Metaverse characters.

Categorization of 3D clothing:

    Designed for:
    • Unreal Engine developers, Metahuman Clothing designers, Unity 3D developers, Game developers, VFX Artists, VR, AR and XR developers, Visualizers of architecture, Metaverse creators, Virtual production creators
    Note:
    • In addition to UE5 package this product contains FBX files and 4k textures.
    Technical specification of the 3D model:
    Size 2.1 GB
    Unreal Engine 5.0+
    PBR Yes
    Texture size 4k
    Topology triangle
    Polycount 38.460  triangles 
    55.220  triangles 
    79.184  triangles 
    113.640  triangles 
    162.992  triangles 
    Rigged Yes
    Animated No
    Delivery:

    After payment, you will receive a downloadable link containing a package. This package includes a 3D model and various types of texture maps: Albedo, Roughness, Metallic, Normal, and Ambient Occlusion.

    3D Model of Men&
    3D Men&
    3D Men&
    3D Men&
    3D Men&
    3D Men&
    3D Men&
    3D Men&