
Vase twisted squeezed and bent rectangle 2 with bent extruded... 3D print model
cgtrader
Here is the output. 3D Model Suitable for Virtual Reality, Real Time Applications and Much More The model in question is ideal for various uses such as real-time applications, virtual reality, 3D printing, interior architectural scenes, visualizations, animations, and other types of computer-generated projects. This particular model is 3D printable and it is accurate when it comes to real-world scale. Originally, the model was created with the use of 3ds Max in the year 2016 after which it was successfully exported into various other formats. In order to increase its resolution, this model can be subdivided further. It was initially designed as a single solid geometric object that is ready for subdivision purposes. Furthermore, the model has a Turbosmooth modifier on top of its mesh geometry with two iterations added. To begin with, this model's origin is located at the very center of the scene. During the rendering process, the 3ds Max software and Vray version 3.0 were utilized. As it happens, simple materials from the Vray standard collection are in use for this particular model, but these materials do not have any textures. Unfortunately, it is worth mentioning that illumination setup in the related scene does not exist, although modifications can still be applied if desired. When we discuss 3D printing, its respective dimensions come out to be 9.359cm by 9.353cm and then further to 23.359cm. For your reference, note that any necessary modifications to this particular model are absolutely welcome at our end; please don't hesitate to get in touch with us for making a few desired changes to it!
With this file you will be able to print Vase twisted squeezed and bent rectangle 2 with bent extruded... 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 squeezed and bent rectangle 2 with bent extruded... 3D print model.