Better Knurled Cap, Better Cap Threads, & Thinner Walled Silica Gel Container
Source: Thingiverse by ironjohnhenry
The Better Knurled Cap, Better Cap Threads, & Thinner Walled Silica Gel Container is a free printable 3D model from Thingiverse by ironjohnhenry. Thank you to everyone in the maker community for liking this design all the way up to the FRONT PAGE OF THINGIVERSE!!! * Please give me a like up top if you think this project is. You can download the STL file from the original listing below and print it at home.
About this model
Thank you to everyone in the maker community for liking this design all the way up to the FRONT PAGE OF THINGIVERSE!!! * Please give me a like up top if you think this project is useful, and I'd love to read your feedback in the comments if it helps you out or needs improvement. * Update: I've made a solid version of this thing that will have it's own remix, after a few more are printed and quality pictures taken. I named it "Just a Jar" & "Just a Lid". Until then, the files are attached here. *** Updated 2 Dec-13-2025 Holes are now smaller on the sides, bottom, and lid. I remade the entire project from scratch with diamonds of 1.5mm x 3mm point to point. Edge to edge distance is under 1.4mm. This should give it a much tighter mesh. I've also removed the diamonds from the neck of the bottl…
Frequently asked questions
- Is this 3D model free to download?
- Yes. Better Knurled Cap, Better Cap Threads, & Thinner Walled Silica Gel Container is free to download from Thingiverse. Click the "Download free STL" button 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 ironjohnhenry.
- Who made this model?
- Designed by ironjohnhenry, 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.