
Low Poly Kid Playing Baseball Low-poly 3D model
cgtrader
This is a low-poly 3D kid model actively engaged in playing baseball. A detailed low poly design allows it to thrive in low-poly style renderings for various environments and CG visuals. The 3D kid mesh only features quads, giving users total flexibility with complex scenes and backgrounds. Its versatile design accommodates different styles without restrictions. Its color palette is basic and straightforward, comprising simple diffuse colors. Users have complete creative control to modify colors to suit their project's needs. Key assets, including rings, maps, and UVW mapping, are absent to encourage free-flowing modifications and unlimited customizations. This high-quality model was created in Blender, allowing users to import the original .blend file and work directly with its advanced tools. Four universal formats – 3DS, OBJ, FBX, and STL – are also included for hassle-free rendering. The accompanying preview images showcase how easily this model renders beautifully when utilized in Blender Cycles. Its simplicity empowers anyone to immediately render stunning visuals from any camera angle. Importantly, all product components have been expertly assembled with careful attention to detail, resulting in an immaculately crafted model devoid of clutter or noise. As users begin to integrate this versatile asset into their project's pipeline, they can feel confident knowing the files come equipped with essential attributes such as origin and real-world scale, guaranteeing seamless implementation. Within every file format lies a highly efficient 3D model, primed for successful collaboration, rendering, and post-processing operations in any chosen application or platform.
With this file you will be able to print Low Poly Kid Playing Baseball Low-poly 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 Low Poly Kid Playing Baseball Low-poly 3D model.