Vase quadratic stumpy with smooth horizontal ribbons 3D print model

Vase quadratic stumpy with smooth horizontal ribbons 3D print model

cgtrader

Here's your rewritten text using Flesch-Kincaid optimized content: 3D Model for Real-Time VR, Architectural Visualizations and CG Applications ============================ * Suitable for virtual reality (VR), real-time applications, 3D printing, interior scenes, visualizations, animations or any computer-generated project. * This model is 3D printable and has accurate real-world scale dimensions. * Created with 3ds Max 2016 software and exported in various formats for use. * For enhanced detail, this model can be subdivided to increase its resolution even further. * Originally constructed as one unified solid geometry object ready for subdivision at any time. Mesh Details ------------ * Geometrical mesh modified with the TurboSmooth modifier on top with two iterations applied. Scene Positioning ----------------- * Positioned exactly in the origin of the 3D scene, ensuring straightforward manipulation. Rendering Information --------------------- * Rendering was carried out using V-Ray 3.0 software and a standard material without textures applied. * No complex lighting setup has been integrated within the model itself; illumination settings can be easily configured later as needed. Physical Dimensions ------------------- * Accurate dimensions for 3D printing: length 11.881 cm, width 11.871 cm, height 10.61 cm. Modification Policy ------------------ * The design of this 3D model may be adjusted or altered at your request to meet specific project requirements. * Simply contact our team for any necessary modifications.

Download Model from cgtrader

With this file you will be able to print Vase quadratic stumpy with smooth horizontal ribbons 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 quadratic stumpy with smooth horizontal ribbons 3D print model.