
Bowl spheric squeezed widewavy sparse extruded lines 3D print model
cgtrader
The 3D model is perfectly suited for virtual reality, real-time applications, 3D printing, and architectural interior scenes. It can also be used to create impressive visualizations and animations in any computer-generated project. This model can be printed in three dimensions with precision and has a correct real-world scale that accurately reflects the size of actual objects. It was initially created using the latest version of 3ds Max software in 2016, and it's now available for use in other formats. To take this model to the next level, its resolution can be increased further by subdividing it multiple times. As a single solid geometry object, it's already optimized for subdivision, making it ready for use in high-end applications. The model has undergone Turbosmooth processing with 2 iterations on top of its mesh geometry, resulting in smooth and polished curves that make it ideal for various tasks. It's positioned perfectly at the origin of any scene, ensuring seamless integration with other objects. For rendering purposes, Vray software version 3.0 was used to produce high-quality images with simple Vray standard material applied, featuring no textures or additional details. Please note that illumination setup in 3ds Max scene is not included with this model. As for the model's physical dimensions, it measures 20.436cm in width, 20.525cm in height, and 9.667cm in depth - perfect for 3D printing with precision accuracy. This model can be easily customized or modified if you need any changes or adjustments. Just let us know what kind of modification you have in mind, and we'll make it happen for you.
With this file you will be able to print Bowl spheric squeezed widewavy sparse extruded lines 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 Bowl spheric squeezed widewavy sparse extruded lines 3D print model.