
Vase twisted bulky helix with fine mosaic plates 3D print model
cgtrader
The 3D model is highly suitable for real-time applications in Virtual Reality and can be easily 3D printed with precise scale to create authentic architectural interior scenes. It is also perfect for detailed visualizations, engaging animations, or any other complex computer-generated project. Originally created with powerful software like 3ds Max 2016, this high-quality model can be effortlessly exported to various formats. Furthermore, it allows users to break it down into finer elements and boost its resolution for exceptional clarity. One key feature of the model is that it is created as a unified, single solid geometry object ready for more precise subdivisions, allowing you to delve deeper into the level of detail. The 3D model boasts the added benefit of Turbosmooth modifier placed right atop the mesh, having gone through two iterations, which enhances its appearance. Positioned perfectly at the scene's origin, the model awaits your command to begin work on a comprehensive visual presentation. It can also be rendered with ease using Vray 3.0 and utilizing a basic Vray standard material that has no complicated textures involved. Just keep in mind that it is without any pre-built illumination settings found within the 3ds Max scene. The model dimensions suitable for 3D printing measure an impressive: 8,829cm in height, 8,949cm wide, and a whopping 21,647cm long. Important to note is that if any adjustments are necessary or you wish to request modifications to suit your specific needs, we would be more than happy to oblige. Just reach out with your requirements, and we'll take care of making those changes for you!
With this file you will be able to print Vase twisted bulky helix with fine mosaic plates 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 bulky helix with fine mosaic plates 3D print model.