I'm building some FE models of bicycle wheels. Last night I was
playing around with the rim sections and trying to verify that they
were correct, and I took a look a Gavin's paper:
www.duke.edu/~hpgavin/papers/HPGavin-Wheel-Paper.pdf
Early on, he did some experiments on a rim to determine Izz and Irr,
and the numbers he got seem impossibly low. Izz= 795 mm^4, Irr= 1200
mm^4, J= 1139 mm^4. He doesn't say what the dimensions were for the
rim he used, but if it was a shallow box rim ~20mm wide then Irr seems
about right, but Izz should be much higher... and J as well, unless
the rim is an open channel.
Jobst used an Irr in his 2D model of 1124 N/mm^4, so that one seems
about right. Also, here:
http://www.astounding.org.uk/ian/wheel/
Ian used an Irr of 1187 mm^4, and an Izz of 6847 mm^4 for his 25mm
wide box rim. I'm looking at a 30mm tall, 19mm wide rim that weighs
460g and the calculated values are Irr= 8,000 N/mm^4, and Izz= 4,000.
I know that some of you here have studied this paper, and I'm
wondering if these values from Gavin are incorrect, typos, or... there
is some reason why *calculating* the section modulii doesn't work.
Gavin tested the rim to get his numbers, which makes me wonder...
since this is one of the easier things to just calculate.