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Ergonomic Karambit 3D Print Removal Tool - Supportless Flat-Back Bed Scraper
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A masterfully engineered, 3D printable functional realistic 3D print removal tool designed as an ergonomic workspace utility. Shaped like a tactical Karambit knife, this tool seamlessly fuses aggressive styling with everyday 3D printing practicality. The curved blade profile tapers into an ultra-sharp, thin wedged tip specifically optimized for sliding effortlessly under finished prints and prying models off the build plate without damage. The handle features realistic organic finger grooves for a high-torque, non-slip grip, terminating in a classic pinky safety ring at the pommel end. To ensure a flawless and efficient fabrication process, the entire rear side of the handle and blade profile is engineered completely flat, level, and coplanar. This flat-back design allows the tool to rest perfectly flush on the horizontal build surface, enabling 100% supportless 3D printing with maximum bed adhesion. The colorway maps out a modern, sleek workshop aesthetic featuring a main body finished in a unified smooth matte charcoal grey polymer, beautifully contrasted by an eye-catching bright pink rubberized accent coating on the rear pinky loop ring insert. Files included for reference: - The untextured digital clay sculpt preview from an elevated front-three-quarter perspective, explicitly demonstrating the clean manifold mesh topology, hard-surface blade bevels, textured grip scales, and the completely flat underside profile. - The final fully rendered and textured preview, showcasing the premium matte charcoal grey polymer body, the high-visibility pink accent loop, and realistic studio lighting interaction. Recommended Printing Settings: - Layer Height: 0.16mm - 0.20mm (Suggested for optimal structural wall binding and smooth wedge transitions) - Orientation: Position completely flat, with the engineered coplanar back face resting direct on the build plate. - Supports: No (Completely supportless design) - Infill: 25% - 40% (Grid, Gyroid, or Rectilinear infill suggested
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