Paco Rabanne Olympea Perfume 3D model
cgtrader
Introducing Paco Rabanne Olympea Intense perfume bottle model, meticulously crafted for your rendering needs. The polygonal object consists of 8 parts, divided into two groups for easy handling. All objects are subdivisional and have a Turbosmooth modifier applied, with quads and triangles making up the model. The polycount is 8,753 at level 0, rising to 47,445 at level 1, accompanied by 8,869 vertices. This versatile model is prepared for Corona, Vray, and Scanline renderers, with simplified materials in the FBX file that may need further work post-import. The OBJ file includes no materials but retains UVW coordinates. The high-quality texture measures 1024 x 512 resolution, saved in lossless PNG format and included in a separate archive. Crafted to real-world dimensions in centimeters, the model is scaled appropriately within the scene, which uses cm as its unit of measurement. All objects, materials, and textures are uniquely named, with modifiers collapsed except for Turbosmooth. The transformation has been reset, placing the model at the scene's origin [0, 0, 0 XYZ]. Texture paths are set to relative values for your convenience. Choose from various file formats: 3ds Max - Corona, Scanline, and Vray; FBX; subdivided and not subdivided OBJ files. The model was created in 3ds Max, with preview images rendered using the Corona renderer. Render scenes are not included. A crucial note: to maintain the model's accurate appearance, your application must support refraction rendering. Without this feature, recreating the exact look from the preview images might prove challenging, especially in real-time applications. If you have questions or need assistance with the model, please reach out for help.
With this file you will be able to print Paco Rabanne Olympea Perfume 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 Paco Rabanne Olympea Perfume 3D model.