
Vase twisted squeezed and bent rectangle 2 with wavy grid pir... 3D print model
cgtrader
The 3D model is designed for seamless integration with VR technology, ensuring realistic real-time interactions and visuals. It is optimized for rapid creation of detailed interior scenes, visualizations, animations, and architectural designs through Computer Generated (CG) projects. The model's accuracy and scalability are enhanced by its correct real-world scale, allowing for precise 3D printing applications. Created using the latest version of 3ds Max, 2016, the model can be exported in multiple formats to suit various project requirements. One key feature of this 3D model is its subdivision capability, enabling further increase in resolution for exceptional detailing and visual impact. Built as a single solid geometry object, it can easily be subdivided without disrupting its integrity or complexity. To achieve optimal visual representation, the model has been fitted with a Turbosmooth modifier featuring two iterations on top of its mesh geometry. Centered at the scene's origin, the 3D model presents an organized and structured approach to scene management. The rendering is executed using Vray 3.0 with a basic standard material, emphasizing simplicity and realism in visualization without reliance on complex textures. It is essential to note that this scene does not include the illumination setup, focusing purely on modeling capabilities. Key specifications for 3D printing applications are as follows: Length - 943.6 cm, Width - 931.6 cm, Height - 2342.1 cm. For any modifications or alterations, contact us for customization of this model to meet specific project needs.
With this file you will be able to print Vase twisted squeezed and bent rectangle 2 with wavy grid pir... 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 twisted squeezed and bent rectangle 2 with wavy grid pir... 3D print model.