In article <[email hidden]>,
(Laz) said:Personally, I've long prefered to use the welded chromoly stem from
Cineli- I've always feared a sudden breakage from my stems, and after
finding fracturing developing in my aluminum stems ( Syncros ) I
switched to cromoly and haven't looked back. You don't get the super
light weight of exotic materials but a few extra grams won't kill me
while a sudden failure could. I prefer cromoly because it bends,
twists and tears before failing and the welding process is much
simpler than the tig welding aluminum needs.
Benjamin Weiner is correct about bewaring of CNC parts because you
have to realize those parts are made by removing material from a
single solid block, a process that introduces considerable energies
and forces into the form - those very same energies and forces can
induce fracturing in the very same process. Furthermore, while CNC is
used for areospace components, a bike parts manufacturer will have a
lower margin, meaning lesser quality CNC machines, operators,
tolerances and finally quality control.
I think you'd be surprised to find out that many of the shops that make
CNCed stems and other components also are doing aerospace or semiconductor
work. Some of those shops went looking for work like bike components (among
other things) when there was a turndown in the amount of work in the aero
and semicon fields. As for lesser quality machinery, well, the main
difference that really counts would be that less expensive machines have
lower horsepower ratings, hence can't take as heavy of a cut or go as fast.
Cheaper machines are frequently not as rigid as the expensive stuff, so
that can lead to finish and accuracy problems, but a competent
programmer/set-up guy knows how to work around that limitation. The
accuracy of the movement is all fairly close.
Metal has grain, similar to wood, so when one takes a piece of aluminum
bar stock (the grain runs lengthwise on this) and turn it on a lathe to
make a stem, it cuts through the grain out on the ends where the bars and
steerer tube go. A forging takes a piece of stock and, under massive
pressure, pushes the stock into a shape very close to the finished part.
The advantage is that the grain follows the shape of the part, hence it is
going to be stronger. Making forging dies is not cheap.
--
tanx,
Howard
So far, so good, so what?
remove YOUR SHOES to reply, ok?