
Vase twisted squeezed mid section with interlacing lattice st... 3D print model
cgtrader
High-quality 3D model designed for use in VR applications, real-time experiences, 3D printing, and architectural interior scene visualizations, animations, or any other CGI project that requires detailed geometry. This 3D model is optimized for 3D printing and has a precise scale that mirrors real-world dimensions. Originally created with the powerful toolset of 3ds Max 2016 and converted into multiple file formats to enhance flexibility. For even greater precision, the 3D model can be subdivided further to increase its level of detail. It was built as one cohesive geometric entity, allowing for seamless subdivision without disrupting its structure. This detailed 3D model includes a Turbosmooth modifier on top of its mesh geometry with two iterations applied, resulting in a smooth and precise surface. By default, the object is centered at the origin of the scene, making it easier to integrate into new projects. Rendered using the advanced rendering capabilities of Vray 3.0, the model boasts simple Vray standard materials that have not been enhanced with textures for a clean and straightforward appearance. Please note that the provided 3ds Max scene does not include any illumination setup, allowing you to tailor the lighting to suit your project's unique requirements. For those planning to 3D print this model, the dimensions are substantial: 11,719cm x 11,719cm x 14,424cm. We welcome inquiries regarding potential modifications or adjustments that may be needed for your specific project. Please don't hesitate to contact us if you require any customized version of this 3D model.
With this file you will be able to print Vase twisted squeezed mid section with interlacing lattice st... 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 twisted squeezed mid section with interlacing lattice st... 3D print model.