Maybe the mathematicians here can help me calculate what I call the
spoke approach angle or, the angle at which the spoke enters the rim.
I've had a problem with a wheel where the angle was way past 90
degrees due to a very big hub. The spokes broke at what I imagine was
the first exposed thread inside the nipple. At the time of the build I
could see that there would be a problem because the bend in the spoke
was clearly visible. I tried to improve the spoke line by squeezing
the Vs in the spokes together and that bent something - the nipples
became oval in the plane of the wheel but obviously it didn't do the
job.
Also, I can't visualise how a bend just before the nipple would help.
Under tension that bend just straightens and bends the nipple like
before. Maybe the answer lies here.
I would like some magic formula where I can plug in the number of
crossings, the length and the hub size. Then at least I could
experimentally determine what natural angle the nipple and rim combo
can handle with a comformable swivel action and see whether it exceeds
it or not.
I've come to believe that some rim and hub combinations make a
reliable build impossible. Someone brought me a deep section Reynolds
rim of the type where the nipple is installed upside down so that no
nipple shaft protrodes beyond the spoke hole. This flat seating
arrangement of the nipple means the spoke has to exit at at right
angle or the spoke will have to bend inside the thread. The only way
to do this is to reduce the hub size, which obviously isn't possible.
I'd like a way of calculating whether or not a particular component
combination will work.
JB