Snapmaker exhaust air conversion for little space 3D model preview
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About this 3D model

I lacked sufficient space on the side of my Snapmaker 2.0 A350T, necessitating the constant relocation of the printer whenever I needed to connect the exhaust hose. Unfortunately, the available space was so constrained that even conventional 90-degree connections proved ineffective. Therefore, I designed this adapter. If you wish to print this model, you will need to divide it into multiple parts using your slicing software. Insert pins to simplify the assembly process. It is recommended to print the housing adapter first. Printing Settings: A minimum of six perimeters; randomized seam position; layer height less than 0.2mm; enable support for the housing adapter depending on the cooling capacity of your printer. Adhere all components using ample glue. Optionally, apply airtight adhesive tape to the connecting parts after assembly. YouTube video about this: https://youtu.be/jOPB-I2Sy-I ________________________________________________________________________________________________________________ I lacked sufficient space on the side of my Snapmaker 2.0 A350T, necessitating the constant relocation of the printer whenever I needed to connect the exhaust hose. Unfortunately, the available space was so constrained that even conventional 90-degree connections proved ineffective. Therefore, I designed this adapter. If you wish to print this model, you will need to divide it into multiple parts using your slicing software. Insert pins to simplify the assembly process. It is recommended to print the housing adapter first. Printing Settings: A minimum of six perimeters; randomized seam position; layer height less than 0.2mm; enable support for the housing adapter depending on the cooling capacity of your printer. Adhere all components using ample glue. Optionally, apply airtight adhesive tape to the connecting parts after assembly. YouTube video about this: https://youtu.be/jOPB-I2Sy-I