TriBooli P-Rail Pistol Brace
thingiverse
Due to the license choice for the Trident I could not link this remix to Mussy's original design. This remix is posted with Mussy's permission and the original design can be found here: https://www.thingiverse.com/thing:4767176 ## Description This is a remix of the TRIDENT Folding Stock that fits the new MOD22x new P-rail endcap and is compatible with most P-rail stock adaptors out there, its a lightweight and very strong pistol brace by Mussy and the BooliBrace rail mounted, side folding brace design for use with pistols by Booligan. Special thanks to Mussy and Booligan ## WARNING! The designer, and any affiliated or non-affiliated groups, cannot be held responsible or liable for any injuries or damages that occur with your use of this model. It is imperative you read this entire document before beginning this project. ## Materials Required 6mm OD x 18MM L COMPRESSION SPRING M4 X 45MM L HINGE PIN (clevis pin, bolt & stop nut, etc **I drilled the hole larger, and used a 1/4" x 2" binding post) M3 X 40MM L LOCK RETAINING PIN (roll pin or similar) VELCRO CINCH STRAP ## Instructions 1. Print brace "arm" upside down with the fin facing up. You will likely need to angle the blade on the bed to fit. Use supports. 2. Print the hinge in your desired orientation. I had good luck printing mount side down with supports. This caused The Picatinny areas to need a little cleaning (depends on your support settings), but a super smooth interface with the arm. 3. Print lock hole side down with supports. 3. Test fit hinge, lock, and brace cleaning up any support material or spots where it's binding up. 4. Drill out pin holes if needed (**a larger hinge pin can be used but will require drilling the hole larger). 5. Assemble all together, sanding as needed for smooth folding. ## Printing Tips * eSUN PLA+ is the _recommended_ filament, or SUNLU Carbon fiber PLA. * Print HOT and SLOW for maximum bonding and strength. (50 mm/s and 230 C is recommended.) If Using CF PLA, Bed @ 40 C, Nozzle @ 198 C. * It is strongly recommended that your x-axis, y-axis, and z-axis stepper motors are calibrated 100%. Use your printer's magic # for layer height (Don't know what it is, YouTube time...)
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