
Vase puffy tipped triangle with twisted half organic lattice 3D print model
cgtrader
This is a highly detailed 3D model designed specifically for various virtual reality, real-time applications, 3D printing, and computer-generated projects such as architectural interior scenes, visualizations, animations. The model's exceptional quality allows it to be printed with high precision in 3D printers. Created with 3ds Max 2016, this versatile model has been exported into numerous other formats for convenience. One of its outstanding features is the ability to be further subdivided, which enables the user to significantly increase its resolution and intricacy. This allows for exceptional flexibility during production. The 3D model has been constructed as a singular geometry object that can be easily subdivided without compromising on performance or complexity. To refine the mesh's precision even more, the Turbosmooth modifier is used in combination with two iterations of this feature. Strategically placed at the origin of the scene, this model facilitates ease of navigation and rendering. All renderings are done using Vray 3.0 in conjunction with simple materials without applying any textures. Regarding the lighting setup, it is worth noting that the 3ds Max scene itself does not include illumination adjustments; however, external settings can be utilized to customize the lighting effects as needed. With precise measurements of 8.353 cm by 8.233 cm by 22.652 cm, this 3D model presents excellent dimensions suitable for printing or using in other real-world applications. Should any changes or modifications be necessary, feel free to reach out, and we will accommodate your requests.
With this file you will be able to print Vase puffy tipped triangle with twisted half 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 puffy tipped triangle with twisted half organic lattice 3D print model.