
Russell helmet 2020 Low-poly 3D model
cgtrader
This is a 3D high-fidelity model, designed to deliver top-tier definition on low poly. Multi-UV UDIM capabilities for professionals. Standard low-poly mesh with customized poly count. Rigged in Maya, while other versions include only geometry, materials, and textures. It's the most precise and realistic model available in the market. This is a recreation of a helmet 3D model that can be modified seasonally. The model is fully prepared for visualization use in Maya. To access low poly, press 1; for high resolution, press 3. In Cinema4d, navigate to Function > Subdivide. In 3ds Max, select MeshSmooth. In the low poly version: Poly count = 5963; Vertex count = 6314. In the smooth version: Poly count = 23848; Vertex count = 24538. Textures are included, each in JPG format with a 4K texture resolution for high-quality visuals. The textures feature Base color, roughness, metallic, normal, and height maps. Due to differences in disk topology across computers, it may be necessary to adjust the textures path on the destination computer. This 3D model was created based on real-world references, with accuracy, precision, and close attention to detail. It's built using real units of measurement for maximum authenticity. Animation is not included in this package. The files are provided in OBJ, FBX, MB, C4D, and 3DS formats. In C4D, 3DS, OBJ, and FBX formats, the model is exported with standard materials (textures), excluding Mental Ray shaders. The files do not contain any extraneous or hidden objects (lights, cameras, etc.). Included rigging and constraints are limited to Maya format, along with blend shapes and driven keys. Note: The original file format may be rendered in linear sRGB for optimal results.
With this file you will be able to print Russell helmet 2020 Low-poly 3D model with your 3D printer. Click on the button and save the file on your computer to work, edit or customize your design. You can also find more 3D designs for printers on Russell helmet 2020 Low-poly 3D model.