
Vase twisted bent hexagon with curved horizontal sections 3D print model
cgtrader
The 3D model is perfectly suited for real-time applications and can be utilized in VR, 3D printing, architectural interior scenes, visualizations, animations, or any other computer-generated project. It features the correct real-world scale and is completely compatible with various formats, including those exported from 3ds Max 2016. This versatile model can easily be subdivided to further increase its level of detail. Additionally, it was initially created as a single solid geometry object that can instantly adapt to subdivision, resulting in more defined forms and textures. Moreover, the 3D model has undergone a rigorous process using Turbosmooth modifier with 2 iterations on top of the existing mesh structure. The precise positioning of the 3D model at the origin of the scene facilitates easier navigation and manipulation during rendering and visualization tasks. Vray 3.0 rendering software was utilized to generate the 3D image, using a simple yet effective Vray standard material with no added textures. Please note that all elements within the provided 3ds Max scene remain unaltered for consistent performance, ensuring precise results in terms of appearance and quality. In respect to its dimensions for practical use, it's necessary to mention the precise model measurements which include 906.5cm (Height), 881.2cm (Width) & 2469.5cm (Depth). The client is invited to communicate any necessary modifications directly; changes are entirely welcome in this dynamic and versatile world of design where versatility meets customization, always focusing on providing exceptional output to match unique demands.
With this file you will be able to print Vase twisted bent hexagon with curved horizontal sections 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 bent hexagon with curved horizontal sections 3D print model.