
Vase curved 2 with diagonal grid bulges 3D print model
cgtrader
This 3D model is perfectly suited for Virtual Reality experiences, real-time applications, 3D printing projects, interior scenes in architecture, detailed visualizations, intricate animations, and any other type of computer-generated project. It can be printed accurately with a 3D printer due to its correct scale in the real world. Initially created using 3ds Max 2016 software, it has been successfully exported into various other formats for convenience. The model's geometry can be further divided to enhance its level of detail and resolution, offering endless possibilities for modification or customization. Constructed as a single, unified geometric object, this 3D model is primed for subdivision at any moment. At its core, the 3D model features Turbosmooth modifier, placed atop the original mesh geometry after completing two iterations. Additionally, it is centered at the scene's origin point for optimal placement and navigation. During rendering, Vray 3.0 was used along with a simple yet effective standard material, eliminating any need for elaborate textures or effects. Unfortunately, this model's associated 3ds Max scene lacks a complete illumination setup, which must be manually implemented for comprehensive visual results. Dimensions of the 3D printed object are carefully recorded as: length = 10.13 cm; width = 10.13 cm; and height = 22.592 cm, offering precise guidance during printing or replication processes. It is also essential to note that this 3D model can be easily modified or altered in any way necessary simply by contacting the creator directly. They will promptly attend to your request for any slight modifications you might require.
With this file you will be able to print Vase curved 2 with diagonal grid bulges 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 diagonal grid bulges 3D print model.