I have a Rohloff 500/14 wheel, around which I am building a FWD machine.
My question is, on the side where the shifter cables go in, there is a long arm that attaches to the chainstay. Is this arm so long for any particular reason?
I have a Rohloff 500/14 wheel, around which I am building a FWD machine.
My question is, on the side where the shifter cables go in, there is a long arm that attaches to the chainstay. Is this arm so long for any particular reason?
IIANM, if it was substantially shorter, the force it generates in reaction could bend the stay. -- Typoes are a feature, not a bug. Some gardening required to reply via email. Words processed in a facility that contains nuts.
My question is, on the side where the shifter cables go in, there is a long arm that attaches to the chainstay. Is this arm so long for any particular reason?
It's usually attached to the chainstay, although I have it attached to the seatstay on my bike.
It's long because the Rohloff hub steps the drive torque up substantially (by a factor of about 3.6) in its lowest gear, more so than other internal-gear hubs do.
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I've only ridden that wheel around the block a couple of times, about 3 years ago and, at that time, I'm not even sure if I secured that arm at all.
If you only use gears near gear 11 (direct drive) and don't pedal hard, not much torque support is required, and the axle nuts (or QR, whichever you have) might suffice to hold the axle in place--but that's not good practice.
If there was a brake there, such as a coaster brake, I could understand it but what could create a substantial force there.
I've only ridden that wheel around the block a couple of times, about 3 years ago and, at that time, I'm not even sure if I secured that arm at all.
The internal gears use a sun-and-planet gear system for the various ratios.Since the sun gear must stay in a fixed position, and the axle holds the sun gear in place, the axle must be prevented from spinning. On the Rohloff, it's prevented from spinning by the torque arm since the axle uses a conventional quick release. As an alternative, Rohloff offers a fitting that uses the dropout slot to take the torque. It looks something like this: http://www.antbikemike.com/images/Bikes/Rohloff/dropoutbig.jpg
If you'd ridden the wheel for more than a couple blocks, particularly up some steep hills (where the gears would exert a lot of leverage on the axle), you'd find out how much that axle wants to spin.
If there was a brake there, such as a coaster brake, I could understand it but what could create a substantial force there.
I've only ridden that wheel around the block a couple of times, about 3 years ago and, at that time, I'm not even sure if I secured that arm at all.
It is undoubtedly an anti-rotation arm, since on an internal gear hub in low gears, there is a substantial bit of torsion twisting the hub backwards. It's not enough to really bend the stay, though.
--
David L. Johnson
__o | Let's be straight here. If we find something we can't _`\(,_ | understand we like to call it something you can't understand, or (_)/ (_) | indeed even pronounce. -- Douglas Adams
My question is, on the side where the shifter cables go in, there is a long arm that attaches to the chainstay. Is this arm so long for any particular reason?
Dunno, but look closely at the dingus that arm attaches to on the Rohloff end.
It's a metal plate attached to the hub by five (?) Torx screws. I think Rohloff calls it an "axle plate".
That plate can be replaced by a slightly-different plate and the new plate can be interfaced with a little thing about 3 inches long that bolts to your bike's disk caliper mounts - and the long arm can be done away with while retaining use of the disc caliper.
Rohloff calls the three-inch thingie a "SpeedBone".
Also, I've heard (but wouldn't want to be the guinea pig...) that the indentation on the axle plate that's already there conveniently lines up with an extra long screw with a bunch of nuts on the protruding portion run through one of the unused disc brake mounts. Maybe somebody who knows can comment on the safety of that arrangement. -- PeteCresswell
The geometry might *look* a little funny (yep, it's got "reverse" rake), but I was able to ride that machine with only one false start. Impressive, considering that I was pedaling with the sides of my feet since I'm about 8 inches taller than the rider the bike was adjusted for. My knees ended up outside the ends of the handlebars.
If there was a brake there, such as a coaster brake, I could understand it but what could create a substantial force there.
Just earlier this week, I tore the flats out of an anti-rotation axle washer on a Sachs Spectro 7 hub. I was using the top gear at that time. There is definitely some significant reaction force at the axle when there is a large difference between input and output ratios.
I machined a much more substantial anti-rotation washer from a solid steel bar, and then I hardened it. With any luck, that's all the retrofitting I'll need to do to keep from spinning the axle again.
If there was a brake there, such as a coaster brake, I could understand it but what could create a substantial force there.
Just earlier this week, I tore the flats out of an anti-rotation axle washer on a Sachs Spectro 7 hub. I was using the top gear at that time. There is definitely some significant reaction force at the axle when there is a large difference between input and output ratios.
I machined a much more substantial anti-rotation washer from a solid steel bar, and then I hardened it. With any luck, that's all the retrofitting I'll need to do to keep from spinning the axle again.
Chalo Colina[/QUOTE]
Chalo. I have the same hub and had precisely the same thing happen. When the axle spun backwards, it screwed up the bearing adjustment as well. I am sure you know to check for that. My bike came with just one anti-rotation washer on the non drive side, and after I tore the flats out of it, I also made a more substantial one. Dan
Just earlier this week, I tore the flats out of an anti-rotation axle washer on a Sachs Spectro 7 hub.
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Quoted message said:
Quoted message said:
I machined a much more substantial anti-rotation washer from a solid steel bar, and then I hardened it.
Chalo. I have the same hub and had precisely the same thing happen. When the axle spun backwards, it screwed up the bearing adjustment as well. I am sure you know to check for that. My bike came with just one anti-rotation washer on the non drive side, and after I tore the flats out of it, I also made a more substantial one.
The bearing adjustment on my hub was completely hosed. I think the axle made about three revolutions in the frame. Even before I machined the new anti-rotation washer, I machined a wrench for the weird slotted adjustment nut on the left side of the axle, so I could reset the bearing preload.
I had enough previous experience with Sachs gearhubs that I knew it would be a good idea to use another anti-rotation washer on the right side. Unfortunately, because of the thick aluminum dropouts on my frame, there was not enough threaded length on that side to mount both a tabbed washer and a clickbox guard. So I opted for the guard.