![Vase slim with smooth cuts and shapr edges streched top corner 3D print model](https://img2.cgtrader.com/items/567737/b0d9c54190/vase-slim-with-smooth-cuts-and-shapr-edges-streched-top-corner-3d-model-max.png)
Vase slim with smooth cuts and shapr edges streched top corner 3D print model
cgtrader
Highly detailed 3D models are ideal for Virtual Reality, real-time applications, architectural interior scenes, animations and other complex computer graphics projects. The precise digital representations have accurate measurements matching their real-world counterparts. Originally designed in 3ds Max 2016 before exporting to a range of formats. This advanced 3D model is prepared for further refinement, capable of being subdivided multiple times to increase its detailed appearance. As one unified object with uniform geometry, it is perfectly ready for subdivision without requiring significant rework. This highly optimized digital representation has undergone Turbosmooth modifier optimization, enhancing its overall mesh geometry. Its origin point is conveniently located at the scene's center. Rendered using Vray 3.0, this precise 3D model comes equipped with simple, no-frills Vray standard materials, completely free of any complex textures. Vray rendering was used for high-quality output and precision accuracy in visual representations. Please note that the associated illumination setup is not included within the original scene file. Its exact dimensions are: 12,129cm width, 12,134cm depth, 14,114cm height For all modifications, including requests to alter certain elements of the existing design, please feel free to get in touch and we'll be happy to make these changes for you.
With this file you will be able to print Vase slim with smooth cuts and shapr edges streched top corner 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 slim with smooth cuts and shapr edges streched top corner 3D print model.