
Vase twisted squeezed mid section with interlacing lattice an... 3D print model
cgtrader
3D Model Ready for VR, Real Time Apps, Printing & More Suitable for high-performance use in virtual reality, real-time applications, and cutting-edge 3D printing projects, as well as sophisticated architectural interior scenes, mesmerizing visualizations, dynamic animations, or any other complex computer-generated project. The 3D model is fully printable at life-sized scale with precise dimensions for exact replication. Initially crafted using industry-leading software 3ds Max 2016 and easily convertible to other file formats for seamless collaboration. Its versatile design allows further subdivision for even higher resolution and more intricate details. This solid geometry object is expertly created, primed for effortless subdivision and modification to meet specific needs. Innovative features include the TurboSmooth modifier layered on top of the robust mesh geometry, delivering stunning visual effects after 2 iterations. Additionally, this high-performance model is perfectly centered at the scene's origin for flawless positioning. High-contrast rendering showcases exceptional clarity with Vray 3.0, while a simple yet effective Vray Standard material brings forth vivid details without relying on elaborate textures. Although lighting and illumination settings are absent from the provided 3ds Max scene, creative flexibility allows artists to craft their unique aesthetic vision. Model Specifications: Dimensions: 10714 cm (4.26 ft) in height and width Height: 13,954 cm Need adjustments or refinements? Don't hesitate to reach out - a tailored version is just a message away!
With this file you will be able to print Vase twisted squeezed mid section with interlacing lattice an... 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 an... 3D print model.