
Vase rose spikes squeezed with intersection through cuts sque... 3D print model
cgtrader
This highly detailed 3D model is perfectly suited for any VR, real-time application, and other cutting-edge CG project needs. Built with architectural interior scenes in mind, this visualization tool is ready to enhance your visualizations, animations, or 3D print projects. Originally designed with the latest 3ds Max software, this 3D printable model maintains accurate real-world scale for optimal results. For those requiring a higher resolution, it can be easily subdivided further without sacrificing quality. As one single, seamless solid geometry object, this model is primed for subdivision, allowing artists and designers to focus on bringing their ideas to life with precise detail. Enhanced by the Turbosmooth modifier with 2 iterations on top of its mesh geometry, every edge and surface will be meticulously refined for stunning realism. Centered at the scene's origin, this model provides complete creative control and versatility. With simple yet effective Vray standard material, rendering is effortless using the Vray 3.0 software, allowing artists to concentrate on other aspects of their projects without compromising on visual quality. While our standard rendering settings yield optimal results for 2D use, it can be further optimized or adjusted according to your project requirements if you desire a custom rendering solution. We invite all clients who may need this additional customization to contact us so we can work together to refine your model to meet any specific need or request that exceeds the limits of the current standard setting and achieve perfect accuracy.
With this file you will be able to print Vase rose spikes squeezed with intersection through cuts sque... 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 rose spikes squeezed with intersection through cuts sque... 3D print model.