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Mosquito Trap / Catcher
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Files are in Brazilian Portuguese so I will give a rundown of each below.
This was printed with Voolt Velvet Black PLA and Voolt Purple PLA for the details, at 0.4mm nozzle diameter and 0.2mm layer height.
Electronics where a 120mm 12V computer fan, a 12V 1A power supply, 5 UV 5mm LEDs with 580ohms resistors.
Please note that this is an amateur project, and the FreeCAD file "Pega Mosquito.FCStd" is available if you wish to make any changes.
* Copo.stl is the base. I printed it the way it imports in the slicer, with supports. I had some issues with the corners breaking, but I just superglued them after.
* Funil.stl is the funnel, it is where the 120mm fan is attached and its cord passed through. Printing as-is, with support only for the cable part shouldn't give you trouble.
* Grade.stl is the grid to be glued to the side of the base. If you have other options such as a fabric which allows wind to pass through, that's fine.
* Pés.stl are the stilts to connect the top part with the f
This was printed with Voolt Velvet Black PLA and Voolt Purple PLA for the details, at 0.4mm nozzle diameter and 0.2mm layer height.
Electronics where a 120mm 12V computer fan, a 12V 1A power supply, 5 UV 5mm LEDs with 580ohms resistors.
Please note that this is an amateur project, and the FreeCAD file "Pega Mosquito.FCStd" is available if you wish to make any changes.
* Copo.stl is the base. I printed it the way it imports in the slicer, with supports. I had some issues with the corners breaking, but I just superglued them after.
* Funil.stl is the funnel, it is where the 120mm fan is attached and its cord passed through. Printing as-is, with support only for the cable part shouldn't give you trouble.
* Grade.stl is the grid to be glued to the side of the base. If you have other options such as a fabric which allows wind to pass through, that's fine.
* Pés.stl are the stilts to connect the top part with the f
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