Vase curved 2 with horizontal dents and twisted diagonal lines 3D print model
cgtrader
This highly detailed and visually stunning 3D model is suitable for a wide range of applications, including Virtual Reality experiences, real-time projects, architectural interior scenes, and Computer-Generated imagery (CG) animations. The model is not only perfectly suited for 3D printing but also boasts accurate real-world proportions, allowing you to reproduce it in exact scale. Originally designed with the industry-standard 3ds Max 2016 software, this 3D model has been expertly exported to a variety of formats, making it compatible with most platforms and applications. Its highly detailed design can be further refined by subdividing it, thereby increasing its resolution to suit even the most demanding visual requirements. Built as a single, cohesive geometry object, the 3D model is optimized for subdivision and is ready to use right out of the box. To take full advantage of this complex design, it features the TurboSmooth modifier atop its mesh geometry with a total of two iterations. Centered at the origin of the scene, the 3D model provides effortless integration into any environment. Utilizing V-Ray 3.0 rendering technology, combined with a simple yet effective V-Ray standard material, this model shines without relying on textures. Furthermore, the accompanying 3ds Max scene is free from illumination setup, leaving you to focus solely on enhancing its visuals. Dimensions for 3D printing purposes are as follows: 928 cm in length, width and height of 9228cm by 22088 cm. Feel free to reach out if any adjustments need to be made or modifications are required; our team is here to help.
With this file you will be able to print Vase curved 2 with horizontal dents and twisted diagonal lines 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 curved 2 with horizontal dents and twisted diagonal lines 3D print model.