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5 modelos etiquetados

#motor

Descubre modelos 3D etiquetados como motor y revisa sus datos de impresión, archivos y condiciones de uso antes de descargarlos.Open all filters →
Vista de Brazo de recambio para servomotor MG995

Replacement arm for MG995 servomotor

Printable arm or horn to replace the output attachment of an MG995 servomotor. It is a coupling piece between the servo shaft and the mechanism to be moved; it does not include the servomotor or the control rod. The compatibility indicated by the source is limited to the MG995 and must be verified with the specific unit, especially regarding the central splining and the fastening. Preparation, compatibility, and printing The author suggests a 50% infill. This data does not certify the strength of a particular print. Before assembling, check that the splining fits without force, that the screw holds the piece, and that the arm does not rub during the entire range of motion. Prepare a fit test first and avoid compensating for an incorrect fit by tightening the screw further.

Technology
Sin probar
material
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Difficulty
Sin especificar
Vista de Protector de cables de motor para dron FPV

Motor cable protector for FPV drone

Part intended to cover the motor cables of an FPV drone along their path over the chassis arm. The source describes this function, but does not identify a compatible frame nor specify length, width, or fastening system. It is not presented as a universal protector nor as certified electrical insulation. Preparation, compatibility and printing Compare the part's channel with the cable bundle and the width of the arm. Check that the fastening does not compress conductors, rub against solder joints, or intrude into the path of the propellers. Prepare a fit test with the equipment turned off. No material or print profile is documented; flexibility and retention must be verified during actual assembly.

Technology
Sin probar
material
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Difficulty
Sin especificar
Vista de Tapón de escape para motor DLE de 120 cc

Exhaust plug for 120 cc DLE engine

Flexible plug intended for the exhaust of a 120 cc DLE model aviation engine. The source identifies it as a closure for the exhausts and documents a print in TPU with a 10% infill. It does not specify the exact diameter of the exhaust nor does it certify resistance to operating temperature. Preparation, compatibility, and printing Check the fit with the engine stopped and completely cool. When preparing the print, check that the slicer reproduces the walls and the closure without gaps. The TPU and the percentage mentioned come from the author and must be adapted to the filament and the printer. Remove any storage plug before starting the engine; it is not presented as a component to obstruct an exhaust in operation.

Technology
Sin probar
material
TPU
Difficulty
Sin especificar
Vista de Soporte de motorreductor N20 con fijaciones de 3 mm

N20 gear motor mount with 3 mm fastenings

Mount to house an N20 gear motor and fasten it to a chassis using two 3 mm screw holes. The source suggests its use in small RC cars, rovers, and robotics projects. The part is a mechanical mount; it does not include the motor, screws, or controller. Preparation, compatibility, and printing Compare the outline of the actual motor and the position of its terminals with the housing. Check that the fastening to the chassis does not deform the mount or block the shaft. The slicer must keep the walls around the drill holes continuous. The source does not provide specific materials or parameters; a first test print helps check tolerances before installing the assembly.

Technology
Sin probar
material
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Difficulty
Sin especificar
Vista de Soporte modular de motor FPV para tubo de 16 mm

Modular FPV motor mount for 16 mm tube

This assembly brings together three printable files to secure a small motor to a 16 mm structural tube within an experimental FPV project. It includes two alternative variants of the main body—one standard and one with a different fillet finish—and an independent top cover to close the tube clamp in the fully printed configuration. Each body combines a vertical semicircular cradle for the tube with a lightweight, perforated circular plate for the motor. The three STLs are independent, standalone, and reproducible pieces; they do not include the motor, carbon tube, propeller, inserts, screws, or metal clamps. The source describes two possible configurations. The first uses the printed body and the printed cover, secured by four screws. The second employs one of the bodies with external aluminum top clamps. It also mentions M3 heat-set inserts at the bottom. These indications identify the design intent, but the dimensions of the holes, the motor pattern, the length of the screws, and the fit over the tube must be measured and verified during actual assembly. Universal compatibility and structural strength are not guaranteed. To prepare for printing, check each STL separately and maintain the millimeter scale. The two bases measure approximately 39.92 × 26.15 × 70.36 mm; the cover measures 28.30 × 33.32 × 11 mm. Orient the pieces seeking a stable base and minimizing supports inside the holes and the cradle. As a starting point, a layer height of 0.16–0.20 mm, four or more perimeters, and moderate-to-high infill can be used. The source recommends PA6 or carbon fiber-reinforced PLA, but any loaded material requires a wear-resistant nozzle and proper drying. A test print in a simple material is preferred before committing hardware. This design is an experimental component, not a certified aeronautical part. Before installing the motor or propeller, check the tightness, alignment, tube retention, layer integrity, inserts, and the absence of interference. Perform static tests at low power first, with eye protection and no people nearby. Do not use the part in manned systems, critical loads, or operations over people or property. Replace any component with cracks, delamination, looseness, or thermal deformation.

Technology
Sin probar
material
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Difficulty
Sin especificar