
Bowl squeezed twisted with checker grid lattice 2 3D print model
cgtrader
The model is highly versatile and suitable for VR experiences, real-time applications, 3D printing projects, architectural interior scenes, visualizations, animations, or any other type of CG project that requires detailed 3D modeling. This model is perfectly scalable and printable in high definition because it maintains a precise, real-world scale. The model was initially created with 3ds Max 2016 and then easily converted to various file formats for maximum compatibility. To achieve incredible detail, the model can be broken down further into even smaller parts for increased resolution. Initially built as a single, cohesive solid geometry object, it's now ready for subdivision. As an added bonus, a Turbosmooth modifier is applied on top of the mesh to give it that extra layer of refinement and texture, resulting from two smooth iterations. To simplify things, the model is carefully centered at the scene's origin point for ease of handling. Rendering the model with Vray 3.0 and applying a basic yet elegant standard Vray material has yielded incredible results without needing any complicated textures or special effects. However, please note that this file does not contain an illumination setup – this is to be determined by you according to your specific needs and preferences. In terms of dimensions for a potential 3D print project, the model's dimensions come out to be 198.35cm, 199.15cm, and 11.4cm. Need modifications or tweaks to suit your exact requirements? No problem at all – just reach out to us if you need some subtle changes, and we'll happily assist in tailoring this model perfectly to your specifications!
With this file you will be able to print Bowl squeezed twisted with checker grid lattice 2 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 Bowl squeezed twisted with checker grid lattice 2 3D print model.