Vase oval squeezed neck with muscle structure squeezed with s... 3D print model

Vase oval squeezed neck with muscle structure squeezed with s... 3D print model

cgtrader

3D Model Optimized for Real-Time VR Applications, 3D Printing, Architectural Visualizations, and Other Computer-Generated Projects. This high-quality 3D model is perfect for virtual reality, real-time rendering, architectural interior scenes, and any other CG project requiring precision and accuracy. The model has a realistic scale, making it suitable for real-world applications. The 3D printable model was originally created using Autodesk's industry-leading 3ds Max software version 2016, and can be exported to various formats as needed. Additionally, the model can be subdivided further to increase its resolution, providing greater detail and accuracy. Created as a single solid geometry object, this 3D model is ready for subdivision, allowing users to tailor it to their specific needs. The mesh geometry has been enhanced with the Turbosmooth modifier on top, applied with two iterations to achieve a smooth finish. Positioned at the scene's origin point, the model can be easily manipulated and adjusted as needed. Rendering was achieved using V-Ray 3.0 software, featuring a simple Vray standard material without textures, resulting in a clean and crisp appearance. Note that this 3D scene does not include an illumination setup, requiring users to create their own or adjust existing settings to suit their specific needs. For custom requests or modifications, please contact us directly to explore your options. Dimensions for 3D printing are as follows: Height: 8.54 cm, Width: 8.539 cm, Depth: 8.068 cm

Download Model from cgtrader

With this file you will be able to print Vase oval squeezed neck with muscle structure squeezed with 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 oval squeezed neck with muscle structure squeezed with s... 3D print model.