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Gobi Air Defense UAV Rigged is a sleek, modern unmanned aerial vehicle designed for tactical reconnaissance and defense applications.
This model features a quad-rotor configuration with aerodynamic arms, high-efficiency motors, and precision propellers. Its underside shows air intake vents and mounting points for sensors or payloads. The rigged structure allows for realistic animation of rotors and moving parts, making it suitable for flight simulations and cinematic sequences. The matte black finish gives it a stealthy, tactical look ideal for defense scenarios.
For military UAV simulations, air defense system demonstrations, tactical reconnaissance training, security and surveillance concept art, unmanned systems engineering projects, and futuristic aerial combat scene creation.
Gobi Air Defense UAV Rigged for Maya is fully rigged and is ready to be animated in Maya. You can easily position it the way you need or animate it the way your project requires. See the screenshots to get an idea of how rigging works. The pose of the model on the render images is an example and can be recreated using rig, it is not initially included into the product.
Hope you like it!
Features:
- High quality polygonal model, correctly scaled for an accurate representation of the original object.
- Models resolutions are optimized for polygon efficiency. (In Maya, the Smooth Mesh function can be used to increase mesh resolution if necessary)
- All colors can be easily modified.
- Model is fully textured with all materials applied.
- Maya models are grouped for easy selection, and objects are logically named for ease of scene management.
- No part-name confusion when importing several models into a scene.
- No cleaning up necessary just drop your models into the scene and start rendering.
- No special plugin needed to open scene.
- Model does not include any backgrounds or scenes used in preview images.
- Units: cm
Textures Formats:
- 5 png (4096x4096)
- Dimensions 38,0 x 24,57 x H28,44cm.info
(c) 3d_molier International
REVIEWS & COMMENTS
accuracy, and usability.
