
Vase Bullet with fine twisted organic cells 3D print model
cgtrader
The 3D model is expertly crafted to thrive in various applications such as real-time simulations, architectural interior scenes, and cutting-edge computer-generated imagery projects like animations. It's highly suitable for virtual reality experiences. Designed to print seamlessly with the latest 3D printing technologies, this precision model boasts realistic scale and dimensions, providing accuracy down to the smallest detail. Its architecture is solid, consisting of a single geometric unit that can be refined further for improved resolution through subdivision. The original file was created using powerful software called 3ds Max 2016 and expertly translated into compatible formats for a wide range of digital tools. As it stands now, the model benefits from Turbosmooth technology integrated with 2 smooth iterations on its base mesh structure. For optimal usage, the object has been strategically positioned at the scene's origin point to maximize versatility in further adjustments. All visualizations have been conducted utilizing Vray 3.0 rendering and basic materials with simple Vray standard configurations – all devoid of complex textures. A crucial note: This particular version does not include an illumination setup, but if required it can be readily included by making a separate request for customized changes. Dimensions tailored specifically for efficient 3D printing operations reach as large as 796.4cm, 800.27cm, and up to 198.37cm in total measurements. If a unique adaptation of this model is desired or modifications are required, feel free to initiate contact for personal adjustments according to specific project demands.
With this file you will be able to print Vase Bullet with fine twisted organic cells 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 Bullet with fine twisted organic cells 3D print model.