Vase wide on top part with interlacing lattice and extruded l... 3D print model

Vase wide on top part with interlacing lattice and extruded l... 3D print model

cgtrader

This 3D model is specifically designed for VR, real-time applications, architectural interior scenes, visualizations, animations, and any other computer-generated project. The model features correct real-world dimensions and is ready for 3D printing. Originally created using 3ds Max 2016 software, it can be easily exported into other formats to accommodate different needs. To increase resolution further, the model can be subdivided seamlessly. The design has been crafted as a single solid geometry object, ensuring smooth subdivision. It's currently equipped with Turbosmooth modifier, adding a total of 2 iterations for a polished finish. Located at the scene origin, this model offers unparalleled flexibility and is primed for various visual styles and rendering options. Utilizing Vray 3.0 technology and standard materials ensures precise renderings, albeit without any textures to streamline your workflow. To clarify, our 3ds Max scene is tailored exclusively for scene creation and setup; illumination settings are not included within the scene. However, you can modify or adjust it to suit your project requirements – we're always here to assist with that! If a customized version of this model would better fit your needs, please feel free to contact us directly to discuss potential modifications. Model Dimensions: Length: 14.547cm Width: 14.547cm Height: 9.231cm With the capacity to make adjustments and tailor our work to meet specific needs, let's get creative together!

Download Model from cgtrader

With this file you will be able to print Vase wide on top part with interlacing lattice and extruded l... 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 wide on top part with interlacing lattice and extruded l... 3D print model.