
Bowl compressed 2 with fine diagonal grid lattice 3D print model
cgtrader
The 3D model is perfectly suited for various purposes such as VR applications, real-time projects, architectural scenes, visualizations, animations and any other type of Computer Graphics (CG) project that requires high quality geometry. This versatile model can be easily 3D printed in its original scale or modified according to your requirements. It was originally created using 3ds Max 2016 and later exported to other popular formats for compatibility purposes. One of the best features of this model is its ability to be subdivided further, allowing you to increase its resolution and level of detail as needed. The model comes in a single solid geometry object that's ready to be subdivided, making it easy to manipulate and refine its mesh geometry. For added realism, the model has been equipped with a TurboSmooth modifier on top of its mesh geometry, featuring two iterations for smooth results. By default, the model is centered at the origin of the scene, providing you with flexibility in terms of camera positioning and composition. The rendering process utilized V-Ray 3.0, which combined with simple VRay Standard material delivers outstanding visual quality without any complex textures involved. Keep in mind that this model does not include any illumination setup; therefore, users are required to provide their own lighting solution when utilizing the model in a scene. Dimensions of this 3D print-friendly model are quite massive, measuring an impressive 18,957cm x 15,466cm x 13,118cm. For customizations or modifications to the original model, simply get in touch with us for more information on available options.
With this file you will be able to print Bowl compressed 2 with fine diagonal grid 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 Bowl compressed 2 with fine diagonal grid lattice 3D print model.