
Bottom wide vase helix with organic lattice and twisted thick... 3D print model
cgtrader
The model is perfect for high-fidelity VR experiences, fast-paced real-time applications, and stunning 3D printed projects. Its exceptional level of detail makes it ideal for architects who need accurate interior scenes, as well as visualizers looking to bring their animations to life in spectacular fashion. This 3D masterpiece was carefully crafted using the latest version of 3ds Max and then effortlessly exported into other popular formats, ensuring seamless compatibility across various software platforms. The model can be expertly subdivided to boost its resolution, giving you even more freedom to experiment with its possibilities. Its foundation as a single solid geometry object makes it easy to customize or refine at any stage. For added realism, the model features TurboSmooth modifier applied twice to enhance its mesh geometry. You'll also find that this 3D wonder is conveniently centered at the origin of the scene, streamlining your workflow and making it easy to position and align. When it comes to rendering, Vray 3.0 is used with a simple yet effective standard material that showcases the model's intricate details without any textures. For maximum convenience, illumination settings are not included in the 3ds Max scene file, allowing you complete control over lighting during your creative process. With dimensions measuring 9,977cm by 9,908cm by 19,459cm, this incredible model is ready for precision 3D printing projects that demand absolute accuracy. If any adjustments or modifications are required to fit your specific needs, simply get in touch with our team – we're more than happy to help!
With this file you will be able to print Bottom wide vase helix with organic lattice and twisted thick... 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 Bottom wide vase helix with organic lattice and twisted thick... 3D print model.