Royal Artillery Cap Low-poly 3D model
Home Catalog Royal Artillery Cap Low-poly 3D model

Publication date: 2025-06-05

Buy Royal Artillery Cap Low-poly 3D model

$4

License: Royalty Free

Rigged PBR Realtime Animated Free
author:

XYZVault

Renders and source materials belong to the author XYZVault.
Specifications
Platform
cgtrader
Animated
Rigged
3D Print ready
VR / AR / Low-poly
PBR
Textures
Materials
UV Mapping
Polygons
0
Vertices
0
Geometry
No N-gons | No faceted geometry | Manifold geometry |
Usage recommendations
Realtime rendering
PC Game development
Mobile Game Development
VR/AR applications
Visualisation
Cinema
Advertising
3D Printing
CAD Engineering
E-Commerce & Interactive 3D Web
FAQ
Is this a free 3D model?

No, this model costs $4.

How do I download this 3D model?

To purchase this model, click the "Go to purchase" button.

What license applies to this model?

This model is distributed under the Royalty Free license. Click "Go to purchase" for full license details.

Does it include rigging and animation?

This model has no rig or animation. It is a static 3D object.

Does this model have UV mapping?

Yes, this model has UV mapping. Full specs are available in the Specifications block.

What textures and materials does this 3D model include?

This model has textures and materials, including PBR. Full specs are available in the Specifications block.

Can I use it for 3D printing?

No, this model is not intended for 3D printing.

Additional information
Overview:3D model of a Royal Artillery Cap from the Crimean War era, ideal for historical environments, war-themed games, or educational visualizations. Designed to be lightweight and visually accurate with PBR textures.

Includes:

Royal Artillery Cap - Circa: 1853 (2,958 Polygons)

Non-Sandy textures under 'Clean' - Circa: 1853 (2,958 Polygons)

Features:

OBJ, FBX, STL, GLTF

Clean quad-based topology

Ready to smooth

Realistic scale and form

4K textures included (UE format and Arnold/cycles format)

UV unwrapped

Game-ready and low-poly, ready to smooth for higher fidelity
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