Print Profile(1)

Description
DO NOT PRINT THIS!!! DO NOT, and I repeat DO NOT PRINT THIS!!
After about 2 months of testing the clamping base that secures the whole contraption to the desk snapped. It really did not like the extra weight in the long run, I will redesign it but until that time I will leave this project public so maybe someone else can have a go. If your monitor is on the lighter side, it should be fine, should be… In theory. I am not a structural engineer
DESCRIPTION:
This remix features several custom-designed parts to enhance both functionality and stability:
- A redesigned VESA mount that supports pan, tilt, and rotation, while being much slimmer than the original.
- A dense arm coupler that links two sets of arms per span (instead of two, then one). This significantly reduces wobble, improves stability, and allows for a higher load capacity.
PLEASE NOTE:
This monitor stand was tested with a YODOIT 15.6" Portable Monitor, which weighs 800g. I’ve also stress-tested it with a 1kg weight, and it held up well. However, to err on the side of caution, I recommend keeping the total load under 900g for optimal safety and stability.
Important Printing Instructions:
Do not change the orientation of the screws when slicing. They must be printed horizontally to maintain structural integrity. While vertical printing can save time and filament, it significantly weakens the parts along the layer lines and may cause them to split under tension.
I used four M4 metal hex screws in my build, but I’ve included printable screw files as well. The printed screws should work fine for most applications, though they remain untested.
Remixed from: https://makerworld.com/en/models/996426-vesa-desk-stand-for-portable-monitors#profileId-972872
Base model: https://makerworld.com/en/models/578783#profileId-499520
Extra arms and screws: https://makerworld.com/en/models/1001327-mech-arm-arms#profileId-978787
PRINT INFO:
This model was printed using Sunlu PLA+. At standard print speeds, the full mount takes approximately 14.6 hours to complete and uses around 319g of filament. Your print time and material usage may vary slightly depending on your specific slicer settings and printer.







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