
Ladle Enameled 3d model
cgstudio
This is a model of Ladle Enameled, originally created with the latest version of 3ds Max software. USAGE: This model was specifically designed to be used as a real-time asset in a video game or simulation project. It can also be effectively utilized in various other applications such as high-definition film production, advertising campaigns, design visualization, forensic presentations, and more. The model is an accurate representation of Ladle Enameled on a scale of 1 unit equaling 1 centimeter. SPECS: This model consists of two distinct objects. It contains polygons with TurboSmooth enabled at one iteration. The total count of quads in the model is 658, while there are no triangles or n-gons present. Standard materials, such as those from V-Ray, have been used exclusively for this model. The product includes separate downloads for both versions of 3ds Max - with and without V-Ray rendering capabilities. PRESENTATION IMAGES: Preview images were rendered using the V-Ray version 3.40.01 renderer. If you choose to render the file using a different version of the same renderer, it may not produce the exact results as seen in the thumbnail images. TEXTURES: The model features two high-resolution textures: one measuring 4096x4096 pixels for main object and detail areas, and another 4096x4096 pixel texture for background elements. All textures were created from original photographs or drawings. GENERAL: This model is built to scale with real-world measurements in centimeters. The total height of the model is 7.5 centimeters. Scene objects are organized into groups for ease of use. No additional third-party renderers or plug-ins are required to utilize this product. Price: $10.00 Date added: November 27, 2017 Product id: 5a1be27ba70248e73b8b4567
With this file you will be able to print Ladle Enameled 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 Ladle Enameled 3d model.