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Float Valve Receiver EZ - Version 1

Float Valve Receiver X 2 in an easy-to-print configuration that minimizes curling off the print bed surface

This 3D printable part is provided as-is, without warranty and you are responsible for your own results. By downloading this digital file, you are accepting and agreeing to the terms and conditions of this site and you hold us free of all liability and responsibility for any actions or results or adverse situations created by this printed part.

Version: R4V15 | File Size: 1.35mb | Posted: 3/9/2015
3D Design by Mike Adams, the Health Ranger
Revision Notes | Printing Instructions

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. By downloading this innovation, you agree to abide by the license: Creative Commons Attribution-NonCommercial.

About this Part

This float valve receiver is part of the float valve assembly that controls water levels in the Mini-Farm Grow Box. It requires a hole of 15mm in diameter for mounting, and it mounts to the side wall of the grow container, approximately 2-1/2" above the bottom of the container. The complete float valve also requires the printing of the Float Valve Adapter and the Retention Nut.

Click here for detailed assembly instructions (with photos).

How to Successfully 3D Print This Part

Approximate print time = 18 minutes
Filament: Taulman T-glase, any color
Print temperature: 250C
Bed temperature: 0C - 70C
Nozzle size: 0.5mm - 0.7mm (0.4mm nozzle is too small to print t-glase)
Layer height: 0.35mm (do not go below 0.3mm)
Print speed: 25 - 40 mm/s (use 50% for first layer)
Filament flow rate: 90% - 94%
Infill: 100%

DO NOT use ABS or PLA. The model will be too fragile.

Recommended Slicer: CURA

!! IMPORTANT !! The top nozzle will fail during the print if layers are not allowed to cool during printing. You MUST print in a way that allows adequate layer cooling. There are essentially four ways to accomplish this:

1) Print 3 or more parts at a time so that each part has time to cool before the next layer.

2) Set your slicer to force a layer wait time of 15 seconds or more.

3) Print using a sacrificial cylinder object far away from your primary object, forcing the print head to move a long distance, thereby providing additional cooling time for each layer.

4) Crank up your fan speed to 100% during these layers.

!! IMPORTANT !! If you have printed this object correctly, you will NOT be able to break off the nozzle tip with your bare hands. Not even a strong male can accomplish this because t-glase is very strong when printed correctly. If your nozzle tip breaks off easily, it means you need to review the print specs above and adhere to the recommendations. Too small of a layer size or too small of a nozzle will cause your object to be fragile.

License Information

3D Design by Mike Adams, the Health Ranger

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. By downloading this innovation, you agree to abide by the license: Creative Commons Attribution-NonCommercial.

Permissions beyond the scope of this license may be available at www.FoodRising.org/Permissions

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