
Magnussen helmet 2019 Low-poly 3D model
cgtrader
This is a highly detailed 3D low poly model designed to deliver a high definition in a lower poly count environment. It boasts multiple UV UDIMs and comes with standard professional settings. The mesh has a precise poly count, and it's been rigorously tested on different platforms. In Maya version, the model includes rigging for advanced character movements. On other versions, only geometry, materials, and textures are provided. This model is an ultra-realistic recreation of a helmet 3D model, suitable for modifications and refinements as per your needs. The visualization in Maya is effortless; simply press 1 for low poly and 3 for high-resolution display. In Cinema4d, navigate to Function menu and Subdivide; in 3ds Max, use MeshSmooth. The Poly Count in Low Poly: 5963 Vertex Count in Low Poly: 6314 Poly Count in Smooth Version: 23848 Vertex Count in Smooth Version: 24538 Each high-quality texture is included in the package, formatted as JPGs with a resolution of 4K for utmost quality. It includes Base color, Roughness, Metallic, Normal, and Height textures. Be aware that different computers may require adjustment to texture paths due to various disk topologies. This model was carefully crafted on actual bases using precise measurement units. No animations are included in the package. The model is delivered in multiple formats: OBJ, FBX, MB, C4D, and 3DS. Files in C4D, 3DS, OBJ, and FBX formats contain standard materials (textures) and do not utilize mental ray shaders. There are no hidden objects (lights, cameras, etc.) in the files, ensuring clean import processes. Please don't hesitate to reach out if you need any further assistance or clarification; our team is more than happy to help!
With this file you will be able to print Magnussen helmet 2019 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 Magnussen helmet 2019 Low-poly 3D model.