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G37 Motor Model Dummy

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0.2mm layer, 4 walls, 15% infill
0.2mm layer, 4 walls, 15% infill
Designer
1.1 h
1 plate

PLA Version 0.2mm layer, 4 walls, 15% infill
PLA Version 0.2mm layer, 4 walls, 15% infill
Designer
54 min
1 plate

Open in Bambu Studio
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Professional Trimming Tool Kit
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Reflex Blue(30603) / Filament with spool / 1kg
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Black (31100) / Filament with spool / 1 kg
Blue Hawaii (13904) / Filament with spool / 1 kg
Neon City (13903) / Filament with spool / 1 kg
Gilded Rose (13901) / Filament with spool / 1 kg

Description

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Welcome to my MakerWorld page!


Here you will find high-quality, cleanly designed, and everyday 3D models – developed with a focus on function, reliability, and straightforward printing.

 

 

⚙️ G37 Geared Motor – Precise 3D Model (Scale True)

This project provides a highly detailed and scale-true 3D model of a standardized G37 geared motor. It was specifically developed for designers and engineers who want to integrate this component into their designs before the physical hardware arrives, or to create custom-fit mounts and enclosures.

🛠️ Technical Specifications (Based on Datasheet)

The model precisely matches the following mechanical dimensions:

  • Housing Diameter (Gearbox): $37.0$ mm
  • Housing Diameter (Motor): $36.0$ mm
  • Overall Length (without shaft): $33.3$ mm + Variable $L$ (depending on gear reduction)
  • Shaft Details:
    • Diameter: $6.0$ mm (D-Shape shaft for non-slip fit)
    • Length: $19.5$ mm (Total from gearbox plate)
    • Visible shaft length up to D-cut: $10.0$ mm
  • Mounting: 6x M3 threaded holes on a bolt circle of $31.0$ mm ($\text{P.C.D. } \varnothing 31$)
  • Shaft Axis Offset: $7.0$ mm to the center axis (Eccentric)

🖨️ Print Recommendations

Although this model primarily serves as a placeholder (dummy) for CAD designs, it can be printed for prototypes:

  • Material: PLA, PETG, or ABS (for better heat resistance near actual motors).
  • Layer Height: $0.12$ mm to $0.2$ mm for precise shaft and hole dimensions.
  • Walls: At least 3 wall lines to ensure shaft stability.
  • Support: Only minimal support needed on the underside of the housing if printed horizontally.

💡 Application Notes

Use this model to:

  1. Design mounts without constantly measuring the real motor.
  2. Perform space checks in complex robotics projects.
  3. Create animations and renderings of your finished assemblies.

 

Danke fürs Vorbeischauen!


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– Viel Spaß beim Drucken :)

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This user content is licensed under a Standard Digital File License.

You shall not share, sub-license, sell, rent, host, transfer, or distribute in any way the digital or 3D printed versions of this object, nor any other derivative work of this object in its digital or physical format (including - but not limited to - remixes of this object, and hosting on other digital platforms). The objects may not be used without permission in any way whatsoever in which you charge money, or collect fees.