
Vase spherical with smooth cuts and high neck squeezed with s... 3D print model
cgtrader
The 3D model is perfect for high-tech projects like VR and real-time applications, plus it's a breeze to print using any 3D printing method. Whether it's an architectural scene inside a building, or some elaborate visualization or animation project, this CG masterpiece is just what you need. What's more, it comes in accurate real-world scale, so everything looks incredibly realistic. Initially built with the cutting-edge software 3ds Max 2016 and then expertly converted to other file formats, the model boasts seamless versatility. You can refine its precision by breaking down its geometry further - a feature that adds immense detail to this incredible design without sacrificing overall efficiency. The 3D model was initially created as one standalone solid geometry object ready for subdivision into more intricate pieces. It comes with a Turbosmooth modifier and has gone through two iterations, resulting in an unparalleled level of smoothness. What's more, the center of the scene is exactly where it should be: right at the origin. Rendering was carried out using the highly reliable Vray 3.0 along with the simple yet effective Vray standard material - all without relying on any textures whatsoever! Just so you know, though, there isn't an illumination setup included in the provided 3ds Max scene. Lastly, if printing this stunning design is what you're after, here are the key dimensions: 9,294 cm wide, 9,294 cm long, and 7,881 cm high - quite a structure indeed! By the way, it's super easy to customize or tweak our designs if need be. Simply hit us up with your request for any adjustments you might need!
With this file you will be able to print Vase spherical with smooth cuts and high neck squeezed with s... 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 with smooth cuts and high neck squeezed with s... 3D print model.