Vase double twisted large with wide collapsed top and squeeze... 3D print model

Vase double twisted large with wide collapsed top and squeeze... 3D print model

cgtrader

This 3D model is specifically designed for use in virtual reality, real-time applications, 3D printing, architectural interior scenes, visualizations, animations and any other type of computer-generated project. The model can be easily printed with 3D printers because it has been made to a realistic scale and includes precise dimensions. It was originally created using 3ds Max software from 2016 and then converted into various file formats. To improve its level of detail, the 3D model can be broken down further by subdividing its existing parts. One unified geometry object was created, making it ready to have more detail added. The 3D model features a TurboSmooth modifier that refines its mesh with 2 extra steps of precision. This 3D model is centered at the origin point in the scene, allowing for easier adjustments as needed. Using V-Ray version 3.0 rendering engine and standard materials results in clean visual outputs without textures. Please note that no lighting setups are included within the Max file format because they can easily be managed separately according to specific needs. When it comes to preparing the model for a print, its overall size comes out to around 8,558 cm long by 8,557 cm wide and is 18,672 cm in height. Keep in mind that we would love to revise or change anything on this design at any time! All modifications requests will receive priority and immediate consideration upon being received - so simply just reach out if you need any revisions!

Download Model from cgtrader

With this file you will be able to print Vase double twisted large with wide collapsed top and squeeze... 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 double twisted large with wide collapsed top and squeeze... 3D print model.