ZSU-23-4 Shilka 3D Model

ZSU-23-4 Shilka 3D artillery model — detailed, accurate representation of the Soviet self-propelled anti-aircraft gun system. Ideal for game assets, visualization, training, and architectural renderings, with correct proportions and clean geometry for smooth integration into 3D scenes.

ZSU-23-4 Shilka 3D Model

Overview

ZSU-23-4 Shilka Artillery 3D model — a detailed, game-ready representation of the famous Soviet self-propelled anti-aircraft weapon. Perfect for use in military visualization, history projects, simulation scenes, and real-time environments. The model is ideal if you’re creating aircraft-defense scenes, armored warfare dioramas, or accurate industrial/mechanical displays.

Usage patterns:

  • Real-time visualization & games: Deploy the Shilka model in interactive scenes for strategy, simulation, and military environments.
  • 3D archviz & scenes: Use it as a centerpiece asset for hangars, museums, outdoor static displays, and armored vehicle exhibitions.
  • Training & educational content: Great for documentaries, presentations, and training simulations about anti-aircraft artillery systems.
  • VFX & cinematics: Suitable for renders, trailers, and cinematic sequences involving ground-to-air defense.
  • Modding & asset libraries: Add the vehicle to custom libraries for Unreal Engine and other pipelines.

File formats: Download the model in popular 3D formats including MAX, OBJ, FBX, C4D, and BLEND.

Supported software: Works across major 3D applications and engines such as Blender, 3ds Max, Maya, Cinema 4D, Unreal Engine, and other compatible 3D tools.

Bring accurate mechanical detail and military realism to your next project with the ZSU-23-4 Shilka artillery 3D model.

Tags

  • shilka
  • zsu234
  • soviet
  • aa
  • tank
  • vehicles
  • zsu
  • 23
  • military

License

  • Royalty-Free License.
  • Commercial and editorial use according to site license terms.
  • Redistribution of source files is not allowed.
  • Please review the full license details before using the model in published work.

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