
Vase twisted bulky helix with dense organic lattice 3D print model
cgtrader
This highly detailed 3D model is specifically designed to work seamlessly with Virtual Reality applications and real-time simulations. It also proves to be an ideal choice for 3D printing, architectural interior designs, and creating stunning visualizations and animations in any computer-generated project. The 3D model's compatibility is ensured as it has the correct scale of a real-world object. Initially, this precise digital model was created with the latest version of 3ds Max in 2016. Since then, it can easily be exported into various formats without encountering any problems. To further increase its resolution, the 3D model can simply be divided into smaller parts as required by your project. With the single solid geometry object design, you can readily proceed to subdivision. This digital creation comes pre-loaded with the Turbosmooth modifier positioned right on top of the mesh geometry with a moderate level of 2 iterations applied. Conveniently placed at the center of the scene's origin, this model makes for an ideal addition to your 3D world creations. When rendering this precise model, only Vray 3.0 has been used in combination with the uncomplicated Vray standard material featuring no textures whatsoever. Although the associated 3ds Max scene doesn't have the setup of illumination integrated within it, this versatile digital asset offers a great deal of creative possibilities that are simply waiting to be tapped into. When looking at the technical details for your specific 3D print requirements, this highly detailed model presents an expansive range, featuring dimensions measured in cm as follows: 871.2cm 877.8cm 2134.6cm
With this file you will be able to print Vase twisted bulky helix with dense organic lattice 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 dense organic lattice 3D print model.