Vase spherical squeezed top with smooth cuts and extruded edg... 3D print model

Vase spherical squeezed top with smooth cuts and extruded edg... 3D print model

cgtrader

The 3D model is tailored for immersive VR experiences, real-time applications, intricate architectural interior scenes, stunning visualizations, and high-quality animations in any computer-generated project. Built with meticulous attention to detail, this 3D model can be easily printed using any available 3D printing technology, offering a correct and precise real-world scale. The model was initially crafted with the advanced features of 3ds Max 2016 and seamlessly exported into various formats. For further refinement, the model can be broken down into smaller components to significantly boost its resolution. Constructed as one single, unified geometry object, it is optimally ready for subdivision. Notably, a Turbosmooth modifier is strategically placed atop the mesh geometry, undergoing two iterative processes to ensure the highest level of realism. The 3D model rests conveniently at the scene's origin. When rendered using the industry-standard Vray 3.0 and a straightforward Vray standard material, it appears with a minimal texture-based setup. Importantly, please note that no illumination setup is included within the 3ds Max scene. To accommodate any future requirements for large-scale 3D printing, this model measures 7,716 cm in width, length, and height. In the event you need any alterations or modifications to suit your specific needs, do not hesitate to reach out – we can readily make necessary changes, tailoring it precisely according to your specifications.

Download Model from cgtrader

With this file you will be able to print Vase spherical squeezed top with smooth cuts and extruded edg... 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 spherical squeezed top with smooth cuts and extruded edg... 3D print model.