
Vase skewed and twisted with cracked and twisted organic latt... 3D print model
cgtrader
3D Model Specially Designed for Immersive Virtual Reality, Real-Time Rendering, 3D Printing, Architectural Visualizations and High-Quality Animations. This Highly Detailed 3D Object is Engineered to Accommodate Large-Scale Applications, with Precise Measurements Corresponding to the Real World. Originally Built with Industry-Leading Software 3ds Max 2016 and Easily Exported to a Variety of Formats for Seamless Use Across Different Platforms. One Noteworthy Feature of This Model is its Ability to Be Divided into Even Smaller Sections, Allowing Users to Significantly Increase Its Resolution as Needed. Initially Created as a Single Solid Geometry Entity, the Model Can be Instantly Subdivided for Enhanced Detail and Realism. A Special Note on Performance: this 3D model has undergone a TurboSmooth treatment with 2 iterations to achieve superior surface accuracy without compromising speed. By Centering It Around the Scene's Origin Point, you can Optimize Rendering Time While Preserving Visual Precision. Built in tandem with VRAY 3.0 and V-Ray Standard Material for Simple yet Highly Effective Rendering. As the Model has no Textures Applied, rendering remains incredibly quick while allowing users to Focus on other aspects of their Projects. Unfortunately, since there's no separate Light setup in this provided Scene, illumination should be handled manually by the user to match their desired style. But Do not worry about dimensions as it was already accounted for and specified, ready to use right out of the box! Important Size Information: Height 104 cm Length 105.2 cm Depth 214.5
With this file you will be able to print Vase skewed and twisted with cracked and twisted organic latt... 3D print 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 Vase skewed and twisted with cracked and twisted organic latt... 3D print model.