
Vase twist puffy tappered triangle with dense organic lattice 2 3D print model
cgtrader
This 3D model is specifically designed to suit various VR applications, as well as real-time scenarios, and it is highly adaptable for 3D printing projects. It perfectly captures architectural interior scenes and provides versatile visualization capabilities. Its detailed geometry can also be used for animations or other computer-generated visuals. As for technical specifications, this model is a true marvel, created using 3ds Max 2016 and carefully exported to suit multiple file formats. If needed, it can easily be subdivided further to significantly boost its resolution levels. One major highlight of this 3D model is that it was built from the ground up as a single, solid geometry object - ideal for subdivision-based techniques. Furthermore, this remarkable model comes with the powerful Turbosmooth modifier placed strategically atop the mesh geometry and refined through two iterations. Its origin point lies conveniently at the very center of its parent scene. For rendering purposes, this 3D model was painstakingly handled with Vray 3.0 while making use of a simplified standard material. Please note that no complex textures have been added to the mix. Although a thorough illumination setup is not provided in the given scene file, rest assured that it can be adjusted according to specific needs or requests. Now let's get down to measurements - this 3D print has got some fantastic dimensions: - Length: approximately 10.735 cm - Width: around 10.064 cm - Height: measuring a robust 22.05 cm So, don't hesitate if you wish to request minor tweaks or adjustments - feel free to get in touch for that extra customized model.
With this file you will be able to print Vase twist puffy tappered triangle with dense organic lattice 2 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 twist puffy tappered triangle with dense organic lattice 2 3D print model.