Adjustable Threaded Spacer – Custom Parametric Mounting Standoff
Source: Thingiverse by Rapid3d4service
The Adjustable Threaded Spacer – Custom Parametric Mounting Standoff is a free printable 3D model from Thingiverse by Rapid3d4service. Need a mounting gap that standard spacers cannot match? This adjustable threaded standoff lets you fine-tune the distance by turning the sleeve, instead of stacking washers or. You can download the STL file from the original listing below and print it at home.
About this model
Need a mounting gap that standard spacers cannot match? This adjustable threaded standoff lets you fine-tune the distance by turning the sleeve, instead of stacking washers or replacing fixed spacers. The two-part design combines a round flanged base with an external thread and a matching internally threaded sleeve. The sleeve has a solid mounting cap with a central through-hole for a fastening screw. Useful for positioning lightweight panels, creating mounting clearance and adjusting spacing in workshop and DIY projects. YOUR PROJECT. YOUR DIMENSIONS. YOUR PART. Customize the model directly in your browser — no software installation or CAD experience required. Adjust the parameters and inspect your design in the interactive 3D preview. Customizable features: • Thread diameter and pitch • …
Frequently asked questions
- Is this 3D model free to download?
- Yes. Adjustable Threaded Spacer – Custom Parametric Mounting Standoff 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 Rapid3d4service.
- Who made this model?
- Designed by Rapid3d4service, 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.