Vase puffy tappered triangle with cavities smooth 3D print model

Vase puffy tappered triangle with cavities smooth 3D print model

cgtrader

The model is suitable for various uses such as virtual reality, real-time applications, three-dimensional printing, interior scenes, visualizations, and animations within any computer-generated project. It is also 3D printable and retains correct scale in the real world. Originally designed with 3ds Max 2016 software before being exported into different formats for easier usage. To increase its level of detail further, this model can be divided into smaller sections. Its base form is created as one singular, cohesive object, ready for subdivision or breaking down to a higher resolution if desired. For high-performance visualization and detailed modeling within three-dimensional applications, this model has the Turbosmooth modifier added on top of its basic mesh geometry with two iterative loops to enhance detail level further. Located at the scene's center, ensuring perfect positioning. Using Vray 3.0 rendering engine, along with a simple standard Vray material with no textures attached for easier setup and modifications in any computer-aided project. For clarity and simplicity of handling within the 3ds Max environment, illumination settings are not included within the initial model file download package. To scale accurately for three-dimensional printing or any related real-world use case, dimensions measure approximately 10,897cm by 10,034cm and stand at a total height of 23,503cm when constructed from this precise digital model data. For requests on modification to the current model structure, kindly reach out if desired.

Download Model from cgtrader

With this file you will be able to print Vase puffy tappered triangle with cavities smooth 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 puffy tappered triangle with cavities smooth 3D print model.