A shy "Greg" asked a good question:
Quoted message said:Does anybody out there know what is the historical origin of the 72 to 74 degree seat tube angle
used on most modern road (not tri) bikes? I believe I understand the reason for the head tube
angle and how it has gotten a bit steeper (now towards 74-75 deg.) over the years due to the
general improvement in roads which has reduced the need for highly raked forks which has in turn
reduced the need for a lot of 'fork trail' which has reduced the need for highly slack head tube
angles (but correct me if I am wrong in any of this).
There's some truth to this, but the trail is not just a function of head angle; wheel radius and
fork rake also enter into it. Even for the same wheel size, you can get any desired amount of trail
with any desired head angle by varying the rake appropriately.
A friend of mine built a recumbent with a head tube angle something over 90 degrees, with reverse
raked fork. It looks very strange (he calls it his "Frankenbike"😉 but rides fine, because the trail
is still in the normal range.
Quoted message said:Other than the aesthetic desire to have the seat tube approximately match the angle of the head
tube, I have not read or heard of any other explanation for the choice of 72 to 74 deg. SEAT TUBE
angle. Do you know of any?
Actually, I think you've got it backward. The seat angle is the more basic one, and head angles are
chosen relative to it.
Quoted message said:Since the American bike craze of the 1890s,
That was not an "American" phenomenon, it happened throughout the industrialized world.
Quoted message said:has someone studied and quantified the effect of the seat tube angle on the human body or on frame
design enough to have made this angle selection for the entire bike industry? Because if one looks
at photos of American "safety bicycles" from the late 1890s, is interesting to note how head tube
angles are quite slack, and that they are typically matched by a very similiar and very slack seat
tube angle. Sometimes these "slack-angled" bikes from the 1890s have a very interesting seatpost:
one that has a FORWARD elbow bend that then clamps the seat rails well forward of the end of the
seat post, like some tri seatposts of today (perhaps to keep the rider's knee over the pedal
spindle when the cranks are 3 and 9 o'clock with such a slack seat tube?). I have read
biomechanical studies on the relationship between seat tube angle (and hip angle) and human power
output, but all the studies that I have seen have been recent (within the last 25 years or so).
But obviously frame makers were deciding on seat tube angles on "safety bicycles" well before
that. What guided their choice?
The upright bicycle as we know it is a very mature design, which has grown by a sort-of evolutionary
process. Over the last century and more, hundreds of thousands of very smart, clever folks have
spent millions of hours riding their bikes and thinking about ways that they might be improved. One
of 'em will make the down tube a little lighter, whaddaya know, the bike is lighter and works well.
Another one will make it a little lighter still, but then it turns out to be to easily damaged, so
they go back to the first guy's improved version. All of the dimensions of the bicycle frame have
been arrived at by similar processes.
The basic saddle position has to do with weight distribution. If the saddle is too far forward, you
put too much weight on your hands (with tri-bars, though how much weight is too much changes, since
it isn't carried by the hands.) If it's too far back, you can't pedal as powerfully.
If the seat tube angle is sub-optimal, riders will move the saddle back or forward to compensate,
even if an oddball seatpost is required to do it.
I personally believe that the optimal seat angle for most folks is around 72 degrees. Bill Farrell
of FitKit fame developed a concept called "Q Factor" which takes into account the rider's femur
length, and this concept states that a rider with proportionally long femurs will want a shallower
seat angle.
In the early '70s, a fad for steeper seat angles developed, first in Italy. This fad was primarily
caused by a desire to shorten the chainstays, which some people believed would make bikes faster or
more maneuverable. This fad has not entirely run its course.
Head angles do and should relate to seat angles...or perhaps more specifically to chainstay length.
If a bike has short chainstays, you also want a relatively short front-center dimension, to maintain
a reasonable weight distribution between the front and rear wheels.
A more vertical head angle makes a bike slightly more maneuverable, but tends to also make it a bit
harsher riding.
The upper limit on how steep the head angle can be depends on top tube length and the issue of
avoiding excessive interference between the rider's toes and the front wheel.
Sheldon "Geometry Was My Favorite School Subject" Brown
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