
Bowl two layered flower with soft tips squeezed 3D print model
cgtrader
Here is a high-resolution, ultra-realistic 3D model designed specifically for real-time applications in Virtual Reality, stunning architectural interior scenes, engaging visualizations, and awe-inspiring animations in any Computer Generated project. This outstanding model is optimized for 3D printing with correct, realistic world scale measurements. Initially crafted with the latest version of 3ds Max, this versatile model can be easily exported to various formats for seamless integration into diverse projects. To take its impressive resolution to the next level, users can further subdivide the model without any complications. One single solid geometry object makes up the 3D model, allowing it to be easily subdivided and ready for advanced subdivision techniques. Additionally, this remarkable model is adorned with a Turbosmooth modifier atop its robust mesh geometry, boasting an impressive two iterations of optimization. Positioned perfectly at the origin of the scene, this 3D marvel can be rendered flawlessly with Vray 3.0, paired with simple yet effective Vray standard materials. Don't worry - there are no textures to clutter the design! However, it's worth noting that the provided 3ds Max scene does not come with any pre-built illumination setup, allowing users complete creative freedom when crafting their perfect lighting solution. The dimensions for this magnificent model specifically designed for 3D printing are: 74.684 cm x 74.683 cm x 16.639 cm. Whether you need modifications or wish to alter its current form, feel free to reach out - we'd be more than happy to assist you in creating the perfect version tailored exactly to your needs!
With this file you will be able to print Bowl two layered flower with soft tips squeezed 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 two layered flower with soft tips squeezed 3D print model.