Large Gorilla Eating Fur Animated Rigged for Blender
Q: What is included with this product?
A: This product includes an animated and rigged large gorilla model with fur for Blender, featuring an Eating animation suitable for wildlife scenes, jungle environments, games, simulations, cinematic renders, and primate behavior projects.
Q: Is this a real gorilla or a 3D model?
A: This is a digital 3D model for Blender, not a real physical animal.
Q: Is the model animated and rigged?
A: Yes, the gorilla model is jointed, rigged, and animated, making it suitable for posing, animation, and motion-based primate scenes in Blender.
Q: Does the model include fur?
A: Yes, this model includes a fur setup designed to support a realistic large gorilla appearance.
Q: What animation is included?
A: This product includes an Eating animation. The gorilla performs calm feeding behavior with hand-to-mouth motion, chewing, and subtle body shifts.
Q: What are the technical details of the animation?
A: The animation runs at 30 FPS and has a duration of up to 8 seconds. Eating is a looped, in-place animation, meaning the model stays at the origin point while performing natural feeding behavior. The animation includes realistic timing and secondary motion.
Q: What are the technical details of the model?
A: The model has 4,222 polygons and 4,645 vertices. It uses polygonal quads/tris geometry, has non-overlapping unwrapped UVs, and includes 7 PNG textures at 4096x4096 resolution.
Q: Is the model ready to use in Blender?
A: Yes, the model is prepared for Blender and can be added to your scene for rendering, animation, posing, or visualization.
Q: Can I use this model in commercial projects?
A: Yes, you can use it according to the license selected on Superhive. Please review the license terms before purchasing.
Q: What types of projects is this model suitable for?
A: This model is suitable for jungle scenes, wildlife animations, gorilla feeding shots, games, simulations, cinematic projects, documentaries, educational renders, and realistic primate visualizations.