Fully parametric GENTLY bending circular dust port adaptor PROTOTYPE
Source: Thingiverse by harmo_hammer
The Fully parametric GENTLY bending circular dust port adaptor PROTOTYPE is a free printable 3D model from Thingiverse by harmo_hammer. Are you a DIYer with power tools and/or have an unusual pipe work requirement for your dust extraction? Do you need to EASILY connect two circular ports/pipes together, even if. You can download the STL file from the original listing below and print it at home.
About this model
Are you a DIYer with power tools and/or have an unusual pipe work requirement for your dust extraction? Do you need to EASILY connect two circular ports/pipes together, even if they aren't the same diameter? (or even if they are) Do you KNOW you need a bend in it? Would you like a gentle/constant arc in your bend for the best possible airflow, or to route around certain obstacles? Do you use a CAD app that can read Fusion360 files (or are you willing to sign up for a free Fusion360 account?) ...Then this may be of interest. WHY USE THIS MODEL: In-depth instructions, informative pictures, and near complete flexibility by simply adjusting a few numbers. (Well that's got to help, right?) Connect ANY circular port (regardless of any printable size) to another circular port/pipe/duct work (also…
Frequently asked questions
- Is this 3D model free to download?
- Yes. Fully parametric GENTLY bending circular dust port adaptor PROTOTYPE is free to download from Thingiverse. Open it in the free Thinger app, or use the "Download from Thingiverse" link above to open the original listing.
- Where is the STL hosted?
- The download is hosted by Thingiverse, not by Thinger. We link you directly to the original listing by harmo_hammer.
- Who made this model?
- Designed by harmo_hammer, published on Thingiverse. Please credit the creator when sharing your print online.
- Can I print this at home?
- Yes. This model is intended for home FDM and resin 3D printers. Check the original listing for suggested print settings like layer height and supports.