
Vase arc hexagon with faceted and twisted organic lattice 3D print model
cgtrader
3D Model Specifications: A highly detailed and realistic 3D model is available for use in VR, real-time applications, architectural interior scenes, visualizations, animations, and other computer-generated projects. The model features accurate real-world dimensions and is designed for 3D printing, ensuring a precise and faithful representation of the object. This model was originally created with 3ds Max 2016 software and has been exported to various other formats to ensure seamless compatibility. With advanced subdivision capabilities, this 3D model can be easily divided further to achieve an increased resolution, making it perfect for applications where high-level detail is required. This complex model consists of a single solid geometry object that can be subdivided, ready for additional modifications. A Turbosmooth modifier has been applied to the mesh geometry with 2 iterations to enhance its overall smoothness and accuracy. Conveniently, the 3D model is centered at the origin of the scene, making it simple to integrate into any project environment. Rendering is performed using Vray 3.0, resulting in a polished appearance that requires minimal effort to produce. A simple Vray standard material with no textures has been used to create this high-quality image. The accompanying 3ds Max scene includes all necessary files and assets required for the model's production. However, please note that it does not contain any illumination setup information, so users must set up lighting as needed. To determine accurate print dimensions for a 3D printer, this model measures: 8.038cm x 8.488cm x 19.662cm.
With this file you will be able to print Vase arc hexagon with faceted and twisted organic lattice 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 arc hexagon with faceted and twisted organic lattice 3D print model.