November 27, 2025
Description
A Few Words of Introduction
BOM
Disassembly of A1 Fan
Print Mod Parts
Assembly
Notes
| If you’re happy with the original A1 fan – stop reading 🙂😉. |
But if you want to improve efficiency and boost cooling performance on your A1 / A1 Mini, this A1 AeroFan mod is for you.
A1 AeroFan - Boost cooling performance – quick and easy mod for A1 / A1 Mini!
This project is a fast modification of the stock print cooling fan. It combines a compact case, the powerful A1 fan, and a 360° fanduct inspired by Prusa MK4S. It delivers improved airflow, especially useful for bridges and sloped walls.
And a few more words about the project…
This is my third adaptation of the Prusa 360° fanduct geometry from the MK4S. This is not just a scaled-down MK4S fanduct glued onto the A1 fan housing…
The project was created almost entirely from scratch. At the beginning, I defined several fixed requirements:
Taking these constraints into account, I calculated and designed a completely new volute for the fan. I determined the correct angles in three planes of the outlet channel window, oriented toward the nozzle axis and bottom plane. I then designed the outlet dimensions and shape accordingly, using the Prusa MK4S geometry as a reference.
Designing this was an adventure in physics, geometry, calculations, and an attempt to create something seemingly impossible — a compact fan with a built-in Prusa MK4S fanduct geometry…
I hope you enjoy working with this project!
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To build it you will need:
The new cooling system will require the following parts taken from the original fan:
Additionally, you will need two new 683zz bearings — I recommend FUSHI 683zz ABEC-7.
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Many thanks to @volkov – his feedback helped improve the design and the instructions needed for a stress‑free assembly.
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Now you should have the fan fully disassembled.
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The printed parts must be highly accurate to allow proper installation of new bearings and the motor stator.
If the parts fit together correctly—move on to the next step. If they do not fit, recalibrate your printer so that the newly printed Voron parts match properly. |
I have added a PETG 3D-printable version, but I do not recommend this option. I only included it due to frequent requests. The ASA/ABS printed version is much more temperature resistant – I highly recommend going with ASA or ABS instead!
Printing settings:
First layer height: 0.2 mm
The model is designed for a standard Voron print with a 0.2 mm layer height. If you really want to print with a smaller layer height, choose a value that is a multiple of 0.2 mm, i.e. 0.1 mm (not tested). This way you can avoid potential, unforeseen fitting issues that may occur if the print differs from the standard 0.2 mm setting.
!!! The front part of the housing has a built-in break-out support—remove it gently. !!!
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!!!Before assembly, you should:!!!
If everything works fine, partially disassemble the fan and glue the parts as described in the instructions. If any adjustments are needed, the absence of glue will allow you to calmly reassemble the entire fan correctly and make the necessary corrections. |
Insert the bearings into the lower half of the motor housing:
The bearings must be installed using the Bearing_press_tool. This method prevents damage during installation — as a result, the fan runs more quietly and the bearings have a longer lifespan.
– one from the top:
– one from the bottom:
Slide the stator wire through the hole in the lower housing:
Then push the stator onto the housing sleeve until it stops – the electronic components on the PCB should fit into the proper recesses in the lower housing, and the wire should align with the designated slots (as shown in the photo):
For a more secure fit, you may apply a drop of glue before sliding the stator, just like in the original fan.
Press the lock with a retaining_ring_press_tool until it clicks into place:
Fasten the upper and lower housing parts together using two original screws
!!!Check that the rotor rotates without rubbing against the housing.!!!
Note: When fastening the upper and lower parts with the two screws, make sure that the screw heads are flush with the surface of the upper part. If you tighten these screws too much (the heads sink deeper), it will cause the rotor to hit the shroud — a known issue with stock fans, shown in the video:
https://www.youtube.com/watch?v=dNCGkC3BHe4
When fastening, I recommend using acetone‑based glue – apply it to the surfaces that will contact after assembly. This seals the joints, and the acetone slightly softens the surfaces, allowing the parts to fit together more tightly.
Now install the fan in the extruder using the three original screws, following the Bambulab instructions.
1. Start by tightening the two side screws.
2. Tighten the third screw at the end once the previous two have been correctly installed.
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For the design and visualization, I used the model:
https://grabcad.com/library/bambulab-a1-hotend-1
Want to check out my previous cooling mods:
https://www.printables.com/model/1092122-mk3smk35-360-degree-print-cooling-modeled-after-mk
https://www.printables.com/model/1111556-artillery-360-degree-print-cooling
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CONCLUSION 💚💚💚If you enjoyed the project please like it.💚💚💚 Post your makes and let me know how it works out for you. If anyone has any comments about them - I'd be happy to listen and improve the models. ☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕ Did my project bring you joy, save you time, or solve your problem? Share your experience with me and brighten my day— ☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕☕ Boost MeThank you! I wish cohesion and adhesion of layers on all your prints 😁. |
License:
Standard Digital File License