
Vase squeezed and bent rectangle with organic lattice and twi... 3D print model
cgtrader
3D Model Features and Technical Details -------------------------------------------------------- This high-quality 3D model is perfect for Virtual Reality (VR), real-time applications, architectural interior scenes, visualizations, animations, and any other Computer-Generated project. Key Model Attributes ---------------------- * The model has been created to scale, making it ideal for 3D printing. * Its correct real-world measurements enable precise replication and manipulation. * Originating from a 2016 3ds Max environment, the model can be easily exported to various formats. Mesh and Resolution Options ----------------------------- * The model can be subdivided further to enhance its resolution and level of detail. * Currently, it exists as a single solid geometry object, ready for subdivision and increased complexity. Technical Specifications ------------------------ * This 3D model includes a Turbosmooth modifier on top of the mesh geometry with two iterations, ensuring smoothness and refinement. * The scene is centered at the origin, allowing for precise placement and alignment. * Rendering was accomplished using Vray 3.0 and a basic Vray standard material, featuring no textures to enhance performance. Illumination and Scene Configuration ------------------------------------- * Please note that the illumination setup is not included in the original 3ds Max scene. * However, all other necessary files and specifications are available for your use. Model Dimensions for 3D Printing -------------------------------- The model measures: 8.211 cm in height, 8.192 cm in width, and 22.74 cm in depth.
With this file you will be able to print Vase squeezed and bent rectangle with organic lattice and twi... 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 squeezed and bent rectangle with organic lattice and twi... 3D print model.