
Vase twist curved tipping triangle 2 with huge plates 3D print model
cgtrader
The provided 3D model is suitable for use in VR, real-time applications, 3D printing, architectural interior scenes, visualizations, animations, and any other computer-generated project. This model is designed to be printable using standard 3D printing techniques. Its correct real-world scale ensures that the final printed product will accurately match the dimensions of a real object. Initially created with 3ds Max 2016, the model has been successfully exported into other formats, making it compatible with various design and rendering tools. The model can be further divided into smaller sections to increase its level of detail. At its core, it is one single, solid geometric entity that is prepared for subdivision and refinement. It possesses a Turbosmooth modifier atop the mesh geometry with two iterations applied, enhancing its surface definition. Strategically placed at the origin point of the scene, this model allows designers and developers to focus on more complex aspects without worrying about spatial adjustments. For visualization and rendering purposes, it is supported by Vray 3.0 software using standard materials, with no textures included to prevent any distortion or discrepancy during the image generation process. The illumination setup within the 3ds Max scene remains absent from this download package. In terms of physical measurements for a potential 3D print, the dimensions are set at 9.743cm by 8.582cm by 21.321cm. We acknowledge that, if desired, minor adjustments or modifications can be made to this model to suit specific needs or preferences. Please do not hesitate to contact us in such cases.
With this file you will be able to print Vase twist curved tipping triangle 2 with huge plates 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 twist curved tipping triangle 2 with huge plates 3D print model.