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Perz1val 1 hours ago [-]
That center pin looks fragile, especially if it's printed along Z axis. How about printing teeth that'd mesh with the belt?
tonyarkles 48 minutes ago [-]
I agree that it looks fragile, but my experience with a similar kind of design in practice has shown that it’s not actually as big of an issue as it seems it would be.
A few other things that can help:
- for the “it can work itself out” problem, I’ve had pretty good luck on other projects by making a standardized “dual dovetail” (bowtie) male/female slot with clearance tuned so that the male piece fits tight into the slot. Printing the male part flat on the bed means that the filament is oriented correctly for strength
- integrated zip tie slots. One design I worked on that was similar to what OP did but needed better grip… I made the slot where the folded over timing belt meshes longer, removed the printed centre pin, and put two integrated zip-tie slots: one near where the centre pin was, so I can use the zip-tie ratchet to actually pull the belt backwards and put tension on it; the other was near the mouth of the jaws, so that after tensioning it I could use a second zip-tie to “lock” the jaws onto the belt
- a third one: you make a little block with dovetails that looks like the “circle plus mouth” piece from this post, but also include a pocket for a nylok that you can use to add tension to the belt after getting the belt secured inside the clamp.
I have tried printing teeth that would mesh with the belt but didn’t get particularly good results from that. Possible that newer printers have better resolution and could print the teeth better, but my test with that just ended up with a little bit of a rougher surface and the teeth couldn’t actually mesh.
1e1a 41 minutes ago [-]
I have printed GT2 teeth on a prusa mk3s+ that mesh perfectly
tonyarkles 30 minutes ago [-]
Awesome! I’ll have to try it again. Last time I tried was on some Wanhao i3 clone like a decade ago and it was not great, but the printer itself was not great all around other than the price :).
CarVac 48 minutes ago [-]
Printed teeth are weaker than the belt's own teeth.
Conversely, with this design the center pin could break loose and the belt would still hold, because the pin just has to stop the loop from fitting through the slot.
altcognito 37 minutes ago [-]
Timing belts are crazy strong. From my FRC work the amount of abuse and weight they will deal with is handy.
Belts will burn through polycarb if it isn't tracking properly. They are strong enough to deform any pulley mount on a tight fit.
Only minor complaint is that the teeth will slip if you don't have a ton of them engaged but otherwise they are amazingly useful.
tonyarkles 46 minutes ago [-]
That’s exactly it… if you tolerance the mouth reasonably tight, the centre pin doesn’t actually carry much, if any, of the load. Friction in the mouth carries a bunch of it, especially if you add the zip-tie clamp from my sibling post.
deepsun 36 minutes ago [-]
Prusa Core One uses that technique, or I miss something.
A few other things that can help:
- for the “it can work itself out” problem, I’ve had pretty good luck on other projects by making a standardized “dual dovetail” (bowtie) male/female slot with clearance tuned so that the male piece fits tight into the slot. Printing the male part flat on the bed means that the filament is oriented correctly for strength
- integrated zip tie slots. One design I worked on that was similar to what OP did but needed better grip… I made the slot where the folded over timing belt meshes longer, removed the printed centre pin, and put two integrated zip-tie slots: one near where the centre pin was, so I can use the zip-tie ratchet to actually pull the belt backwards and put tension on it; the other was near the mouth of the jaws, so that after tensioning it I could use a second zip-tie to “lock” the jaws onto the belt
- a third one: you make a little block with dovetails that looks like the “circle plus mouth” piece from this post, but also include a pocket for a nylok that you can use to add tension to the belt after getting the belt secured inside the clamp.
I have tried printing teeth that would mesh with the belt but didn’t get particularly good results from that. Possible that newer printers have better resolution and could print the teeth better, but my test with that just ended up with a little bit of a rougher surface and the teeth couldn’t actually mesh.
Conversely, with this design the center pin could break loose and the belt would still hold, because the pin just has to stop the loop from fitting through the slot.
Belts will burn through polycarb if it isn't tracking properly. They are strong enough to deform any pulley mount on a tight fit.
Only minor complaint is that the teeth will slip if you don't have a ton of them engaged but otherwise they are amazingly useful.
https://help.prusa3d.com/guide/5-corexy-assembly_835522#8648...
I wouldn't be surprised if the designer of that CNC machine borrowed it from the popular Prusa MK2 3D printer, which uses a very similar design for its Y-axis belt: https://help.prusa3d.com/guide/2-y-axis-assembly_79992#81120