
Vase rose spikes with intersection through cuts twisted and s... 3D print model
cgtrader
3D model perfect for virtual reality experiences, real-time applications, architectural interior scenes, and visualizations - it's also suitable for any other computer-generated project that requires stunning visuals. The 3D model is meticulously designed to be printable in real-world scale, ensuring a highly realistic outcome. Originally created using the industry-leading software, 3ds Max 2016, and subsequently exported into multiple formats, this model is fully adaptable to your specific needs. For optimal results, the model can be further subdivided to achieve enhanced resolution - a testament to its robust design. Constructed as a single solid geometry object, it's primed for subdivision and subsequent refinement. Key features of this 3D model include a Turbosmooth modifier applied on top of the mesh geometry, which undergoes two iterations to create an ultra-realistic texture. Located at the center of the scene's origin point, it's optimized for easy handling. Rendering was executed using Vray 3.0 with simple standard materials, ensuring a sleek and polished appearance without unnecessary textures. Note that this scene is lacking in illumination settings - however, our expert team is available to modify or customize the model according to your unique requirements. For further details regarding 3D print specifications, please refer to the attached file which lists the exact dimensions: height at 8,925cm width of 8,917cm and length of 14,021cm. Keep in mind that this model is completely customizable - our expert team will be more than happy to work with you on a revised version if needed.
With this file you will be able to print Vase rose spikes with intersection through cuts twisted and s... 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 with intersection through cuts twisted and s... 3D print model.