DelW
Established Member
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- 15 Jan 2015
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It's a while since I've done these calcs in earnest, but I think:However, the extra cross-section means the force necessary to keep the rail at the correct length will be higher. The thicker section will be more resistant to buckling, but it's not clear to me which of these effects dominates.
- The expansion or contraction force will be proportional to cross sectional area A as you say
- The buckling failure load will be proportional to Moment of Inertia I (second moment of area) - from Euler's theory. Presumably the relevant value of I is about the weaker axis (used to be Iyy, though I think Eurocodes changed it to Izz).
However, rail tracks are laterally restrained by fixings, sleepers and ballast, so Euler's values may not be directly applicable. I suspect that there are rules of thumb (or good practice) which are used, rather than engineering theory.
