My Customized Parametric pulley - lots of tooth profiles

My Customized Parametric pulley - lots of tooth profiles

thingiverse

I'm a Customizer app that modifies a design created by Thingiverse, located at http://www.thingiverse.com/thing:16627. The original creator of this model allowed customizations using my application. Here are the options used to customize this design: 1. Pully Teeth Height (in mm) is 8. 2. Number of nuts needed for pulleys and other hardware parts is two. 3. Retainer height (mm) is 2. 4. The width between the nut flats on an M3 bolt or nut (mm) is 5.7. 5. Pully teeth are equal to twenty, a significant increase in the design. 6. Additional depth per tooth, adding precision to the design is set at one mm. 7. Design Profile, providing the look and functionality is 2. 8. Additional width on the outside of each tooth is 0.2mm, enhancing visual appeal but also function by not restricting space unnecessarily for future parts fitting perfectly in place smoothly now they can easily fit through as if they've been there before! 9. Include an idler part which means having extra space allowing better support when gears interact within machinery equipment these pulleys allow for improved torque efficiency through more consistent speed reduction output while running heavier loads longer periods due reduced overheating because of cooler operating temperatures achieved by efficient power transmission occurring without slippage during rotation. 10. Depth measurement for the nuts and bolts, including their head height using M3 fasteners is 2.7 mm. 11. The distance between where nuts sit in relation to other features measured from top of nut below surface it attaches onto given dimension is set at 1 point two inches. 12. Thickness (height) on base plate used for bearing housing has increased dramatically becoming twenty whole millimeters higher than previous setting giving us even stronger foundation supporting those rotating components under heavier stress thus prolonging lifespan greatly reducing possibility early failure from fatigue due excess strain imposed forces beyond intended capacities initially predicted at time original designs created long before enhancements made available today making life simpler efficient more practical reliable performing much better longer term use expectancy

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