
Narrow top vase helix with curved horizontal sections 3D print model
cgtrader
The 3D model is ideal for high-fidelity VR, real-time applications, architectural interior scenes, and a variety of computer-generated visualizations. It was specifically designed to excel in 3D printing and any other project requiring cutting-edge CGI capabilities. With correct real-world scale measurements, the model can be easily adjusted and printed at home using any standard 3D printer. The original 3D model was created with Autodesk's professional software, 3ds Max 2016, allowing for seamless exportation to multiple formats. For maximum customization, this complex 3D object has been subdivided to offer enhanced detail. As a single solid geometry entity, it is prepared and ready to be further divided. In terms of optimization, the 3D model comes with a high level of subdivision potential using TurboSmooth modifier with up to two iterations on top of its geometric mesh. The origin point is centered at the very heart of the scene itself. When rendering images or animations using the latest version of V-Ray software, 3.0, a standard material is utilized with basic lighting effects, minus any added texture or visual distortion. For accurate illumination and proper exposure setup in future productions, you will need to independently source this lighting component. For easy importation into your current project scene, it includes a non-textured, plain 3D object model without V-Ray illumination setup incorporated within the main 3ds Max file provided. Regarding physical dimensions, 3D printed versions will accurately replicate the model's real-world measurements of precisely: 9.453 cm x 9.446 cm x 23.052 cm
With this file you will be able to print Narrow top vase helix with curved horizontal sections 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 Narrow top vase helix with curved horizontal sections 3D print model.