Created 2 days ago
Description
A heavy-duty, flex-to-fit poultry leg band designed for easy application on turkeys.
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This modular arm mounts a Logitech K235 wireless keyboard to a tubular sim racing chassis, allowing you to swing the keyboard into your lap for typing and fold it away while driving. The mechanism relies on structural box-section arm segments and heavy-duty M6 bolted joints to prevent sagging and resist vibration. A split-clamp base mounts to the frame without drilling, and the central keyboard tray uses recessed neodymium magnets to keep the keyboard anchored during intense force-feedback moments. Hardware Required Cockpit Mount: 2× M5x50mm bolts & hex nuts. Articulated Pivots: 3× M6x40mm bolts, washers, & nylon lock nuts. Keyboard Retention: 4× 10x3mm circular neodymium magnets (press-fit or glued into the tray). Printing Advice Material: PETG, ABS, or ASA for rigidity and impact resistance. Orientation: Print all parts flat on the bed as laid out. The tray is designed compactly to fit comfortably on a 220x220mm print surface. Settings: Use a minimum of 4 perimeters/walls and 30%+ gyroid infill for the arm segments to ensure lateral strength.

A rigid frame is useless when half the wheels are off the ground. This replaces the solid chassis problem with the exact kinematic linkage used on the Mars rovers, ensuring all six wheels maintain contact over uneven terrain. The kit is laid out for flat printing without supports and assembles via flanged friction pegs. Assembly Clearances Holes: 8.0 mm Pegs: 7.6 mm (0.4 mm clearance for smooth rotation) Short Pegs: Connect the chassis to the long rocker arms, and the rocker arms to the smaller bogie arms. Long Pegs: Mount the six wheels to the ends of the arms. The flange acts as a built-in washer to keep the wheels from rubbing the linkage.
Wagon door runner to replace 3 off 15208 bricks Version with slightly too large slope
Custom transition ferrule designed to mate golf shafts with an adapting taper. Before printing, verify your shaft tip standard. This part spans from a 0.355-inch taper dimension to a 0.370-inch parallel dimension. Critical Measurements: Inner Bore (Bottom): 9.0 mm (0.355") Inner Bore (Top): 9.4 mm (0.370") Outer Diameter: 13.5 mm (0.530") constant Length: 22.0 mm (0.875") Does not fit standard parallel-only 0.370" shafts at the base without binding.
What it's for A custom 16-tooth spur gear designed for tight tolerances and specific meshing requirements. Built with a modified pressure angle for a sharper tooth profile, and zero standard clearance to strictly match the requested root and outer diameters. Dimensions Outer Diameter: 9.00 mm Root Diameter: 7.00 mm Bore Diameter: 1.55 mm Thickness: 2.00 mm Module: 0.5 (with 28° pressure angle) Print notes Given the small 1.55 mm bore and fine module 0.5 teeth, a resin printer or an FDM machine with a 0.2 mm nozzle and highly calibrated flow is recommended. If printing on standard 0.4 mm FDM, horizontal expansion (XY compensation) may be needed to keep the bore true to size.
A rigid drive adapter connecting a standard D-shaft motor to a hexagonal RC wheel hub. The base features a keyed socket to prevent slip under torque, while the driven end seats into the tire's existing recess. Overall Length: 25 mm Motor Socket: 6 mm diameter with a 3 mm flat profile, 10 mm depth Wheel Drive: 5.2 mm flat-to-flat hexagonal peg, 10 mm length Base Diameter: 12 mm for structural wall thickness around the socket