
Spacious vase with scattered diagonal grid plates 3D print model
cgtrader
High-quality 3D models designed specifically for real-time applications like Virtual Reality and 3D printing, as well as architectural interior scenes, visualizations, animations, or other computer-generated projects require the model be fully functional with correct real-world dimensions that allow subdivision for increased detail without compromising quality. Originally created using powerful software like 3ds Max 2016 before exporting into a versatile format accessible to multiple applications. Further enhancement can be made by dividing it further and the object remains as one cohesive piece of geometry waiting for additional detailing, which will only boost its definition when applied through subdivision. Its main feature is a solid structure composed from smooth surface with Turbosmooth modifier placed on top adding that much needed level to define each detail. This entire project can easily be situated anywhere in a digital setting due to its fixed position at the origin of the scene where anything within reach. To generate accurate results rendering requires powerful software like Vray 3.0 along with Vray standard materials which lack any added texture to ensure all features are as natural and original as possible. On top, there's an essential fact about the provided setup for 3ds Max is totally empty regarding any setting or lighting configuration for the model making it perfectly open to your ideas on how you'd want to handle the scene. Dimensions measured specifically for print requirements stands at exactly: 15152cm in width, and 15151cm and finally ending with 26348cm as its height in depth of length.
With this file you will be able to print Spacious vase with scattered diagonal grid 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 Spacious vase with scattered diagonal grid plates 3D print model.