
Vase twisted arc rectangle with twisted lattice tiles 3D print model
cgtrader
Here is a 3D model suitable for real-time applications, virtual reality, architectural interior scenes, animations, and any other Computer Generated (CG) project. The model features precise real-world scale dimensions. This high-resolution model can be easily printed in 3D using your preferred method, with accurate scale settings for perfect prints. The model was initially designed using 3ds Max 2016, with further exportation to other formats as needed. For detailed applications, you can divide the model into smaller segments to increase its resolution and achieve precise visual representations. Created as one seamless geometry object, it is optimized for subdivision without the need for additional manipulation. To improve surface smoothness and realism, the model incorporates a TurboSmooth modifier on top of the mesh, applying 2 iterations for superior quality results. For added versatility, the object's origin is centered within the scene, making it simple to place and manage in any virtual environment. When rendering, Vray 3.0 was employed with basic yet effective VRay standard materials applied. These renderings feature a simplistic aesthetic, void of elaborate textures or other distracting details. Keep in mind that no complex lighting setup is present within the included 3ds Max scene. If required for precise print specifications, here are the exact dimensions: Height - 8,726cm | Width - 9.0cm | Depth - 20,947cm We are happy to modify or customize this model according to your needs and requirements. Please do not hesitate to reach out if you need adjustments to any of the features mentioned above.
With this file you will be able to print Vase twisted arc rectangle with twisted lattice tiles 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 arc rectangle with twisted lattice tiles 3D print model.