
Kung Fu Martial Artists Pack 4 Low-poly 3D model
cgtrader
Kung Fu Martial Artists Pack 4 brings 8 cutting-edge, low-poly static 3D models that ignite fierce action on any project. These models feature triangle-based geometry, a minimalist design philosophy and UV maps without overlap to provide versatility for every creator. Featuring 8 powerful kung-fu warriors crafted in 100% triangle geometry with low-poly designs. These non-overlapping UVs are a masterclass in workflow efficiency. Each warrior stands alone as an untextured, sleek and highly customizable asset. The perfect companion for minimal design projects that thrive on visual flow, or cutting-edge AR/VR scenes. Harness their full potential in the next hit app or game - their 3D awesomeness shines bright with stunning impact. Ready to unleash Kung Fu in VR/AR scenes? To unlock the models for your future 3D printing adventure: please be aware that this model has a corresponding .stl file; but to fully bring these warrior assets into the real world of tangible form they will require additional effort from you - rechecking the geometry, rescaling them accurately, and so forth. However some kung fu warriors are still waiting on your input to become flawless in seamless design, but surface normals align perfectly as expected. All models stand solid as hollowed figures devoid of thickness with clear .stl measurements based upon centimeters. Every warrior stands apart - points average 769 for a total 6148 across all assets and polygon counts top off at an impressive 12264 for the entire collection - these models await you. Get ready to conquer with the might of 3D creation! This collection is available in six formats: - C4d - FBX - DAE - DAE 1.5 format only - Obj and many others
With this file you will be able to print Kung Fu Martial Artists Pack 4 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 Kung Fu Martial Artists Pack 4 Low-poly 3D model.