Thanksgiving Pilgrim baby cartoon rigged 3D model
cgtrader
Thanksgiving Pilgrim baby is a top-notch, photorealistic model that enhances detail and realism in any rendering project. It features detailed texturing for close-up renders and was originally modeled in 3ds Max 2014 using Mental Ray. This fully rigged biped has been tested by animators and is known for its speed. Scene objects are organized by layers, and no third-party renderer or plug-ins are required. The adorable cartoon baby is ready for close-up and HD renders. The high-quality polygonal model is correctly scaled for an accurate representation of the original object, with optimized resolutions for polygon efficiency. If needed, the Meshsmooth function in 3ds Max can be used to increase mesh resolution. Created using 3DSMax 2014, the model boasts clean mesh edge loops and only quads. Objects, materials, and textures have descriptive and unique names for easy customization. All colors can be modified, and the model comes with applied textures and materials. There's no need to clean up the scene; simply drop your models in and start rendering. The scene doesn't require any special plugins to open and is ready for rendering in Mental Ray and Mental Ray. It's rigged as a biped, includes a Tpose file, and features 7 morphers for the head along with head bones and slides for smooth animation. The low polygonal and symmetrical topology, coupled with rigging using bones and skin, ensures optimal performance. Every model is thoroughly checked to ensure compatibility with the appropriate software. Feel free to explore other models in the gallery by clicking on the user name. If you have any questions or need further assistance, don't hesitate to reach out. Enjoy!
With this file you will be able to print Thanksgiving Pilgrim baby cartoon rigged 3D 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 Thanksgiving Pilgrim baby cartoon rigged 3D model.