
Vase low bulky helix with cracked organic lattice 3D print model
cgtrader
The 3D model is perfect for use in VR environments as well as real-time applications that require detailed graphics. Its suitability also makes it an excellent choice for architectural interior scenes, visualizations, animations and any other computer-generated project. This model can be easily scaled up to achieve accurate real-world measurements, making it ideal for detailed representations of spaces. It's 3D printable with precise scale, providing a clear understanding of its proportions in the real world. Initially designed using 3ds Max 2016 and exported in various formats to cater to diverse requirements. The model is fully customizable, allowing further subdivision for increased detail. A single, solid geometry object serves as the foundation, ready to be divided as needed. With Turbosmooth modifier on top of the mesh geometry applied after just two iterations, the model showcases impressive detail without being overly complex. Centered at the scene's origin, it offers flexibility and versatility in rendering scenarios. When rendered using Vray 3.0 and standard Vray material with no textures applied, its simplicity shines through while still showcasing remarkable realism. While this 3D scene is designed primarily for visualizing architectural spaces and details of building elements in various scales, the included render is solely created with basic Vray standard material. Therefore, there's no elaborate lighting setup within the 3ds Max scene. To accurately gauge its print dimensions for detailed physical representation: 14,675cm by 14,684cm wide and a depth of 15,955cm tall, ensure you carefully review these precise measurements when working with this 3D printable model.
With this file you will be able to print Vase low bulky helix with cracked 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 low bulky helix with cracked organic lattice 3D print model.