
Bottom wide vase helix with fine mosaic plates 3D print model
cgtrader
The provided 3D model is perfect for a variety of purposes such as Virtual Reality experiences, real-time applications, architectural interior scenes, visualizations, and animations within Computer-Generated (CG) projects. This highly detailed model can be printed in 3D using standard technology due to its accurate scale matching that of the real world. It was initially created with 3ds Max software version 2016 and then easily exported into other formats for added flexibility. The model can further be divided into more manageable sections, increasing its resolution significantly, making it ideal for any high-end project. It was created as one singular solid object ready to be subdivided at a later stage if required. For optimal visual representation, the model features a TurboSmooth modifier applied directly onto its mesh geometry, and this has been set to run with 2 iterations. Additionally, it is perfectly centered on the scene's origin point, allowing for effortless manipulation within any software environment. The V-Ray rendering technology version 3.0 was used to bring the model to life with simple yet effective VR Standard materials in place of complex textures. Please note that illumination setup has not been included within the accompanying 3ds Max scene file. For printing purposes, this model's precise dimensions are as follows: Length = 98,530mm, Width = 98,510mm and Height = 194,820mm. Keep in mind that while modifications to the model can be done if required, these would need to be coordinated directly with us. Simply reach out should you wish for slight adjustments or revisions within your specific project's context.
With this file you will be able to print Bottom wide vase helix with fine mosaic plates 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 Bottom wide vase helix with fine mosaic plates 3D print model.