Vase bent hexagon with twisted bands 3D print model

Vase bent hexagon with twisted bands 3D print model

cgtrader

High-Definition Model: Ideal for Real-Time Applications and Immersive VR Environments. Details: This 3D model is perfectly suited for use in high-definition architectural interior scenes, visually stunning animations, sophisticated visualizations, or any other complex CG project. Key Features: The 3D model can be printed with perfect real-world accuracy using a range of advanced technologies. It was created specifically for seamless use in multiple formats and can be easily adapted to suit diverse projects. Details and Options: Initially built within 3ds Max 2016, the model has undergone extensive testing and is now compatible with a wide array of export formats. With further subdivision possible to significantly boost its resolution, users can refine this stunning visual asset to meet specific project needs. The core geometry has been optimized through a Turbosmooth modifier, enabling crisp lines, and subtle textures in 3 iterations. Location and Context: The 3D model is perfectly positioned at the origin of the scene for immediate integration into any given project. Lighting Requirements: As this exceptional 3D asset does not require specific lighting setup within 3ds Max, users are free to adjust settings to best suit their vision. Details about Printing Scale: The precise dimensions for a realistic 3D printout stand at 84.99cm, 86.58cm and 228.95cm respectively, capturing exceptional accuracy. Our talented team can tailor the model further or even modify its components based on customer requirements. Please get in touch to inquire about your desired custom modifications!

Download Model from cgtrader

With this file you will be able to print Vase bent hexagon with twisted bands 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 bent hexagon with twisted bands 3D print model.