Perfume Daisy Dream 50 Low-poly  3D model

Perfume Daisy Dream 50 Low-poly 3D model

cgtrader

Human: 3D Model of Perfume Daisy Dream by Marc Jacobs - A 50ml Bottle. Product Dimensions: 10.7 x 10.7 x 19.4 cm (4.2 x 4.2 x 7.6 in). MODEL The perfume bottle is crafted from eight polygonal objects, showcasing an intricate design. Polycount: Tris - 4368 Verts - 2319 MATERIALS Pre-assigned materials are set within the Marmoset Toolbag scene for immediate rendering. However, basic FBX models may not yield identical results when compared to preview images. OBJ files contain no assigned materials but preserve UVW coordinates. TEXTURES High-quality PBR textures complement each material with detailed mappings. Maps encompass colour, roughness, normals, metallic, and opacity values, reaching 16 x 16 resolution at 1024 x 1024 pixels in PNG format. Separate texture files are packaged for easy access. SCENE Accurate real-world dimensions define the model's scale. Object names mirror their assigned functions while meaningful and consistent. Reset transformations locate the scene origin at [0, 0, 0] XYZ coordinates. FILE FORMATS Supported formats include FBX, OBJ, and TBSCENE (Marmoset Toolbag 3). GENERAL Creation occurred in 3ds Max software. Preview images emerged directly from Marmoset Toolbag rendering with no added processing. A complete scene is provided for seamless rendering. NOTES VR/AR-capable model features, glass walls are designed without depth while refraction-enabled materials in Marmoset Toolbag deviate from Marmoset Viewer visuals. If raytracing offline software, such as V-Ray or Corona, is your goal, a custom solution is available; please visit the profile for an alternative model, Perfume Daisy Dream.

Download Model from cgtrader

With this file you will be able to print Perfume Daisy Dream 50 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 Perfume Daisy Dream 50 Low-poly 3D model.