Quoted message said:Quoted message said:Never mind why, but I recently tortured some spokes.
I bent them at their midspans, stuck them in a vise with their free
ends pointing straight up, and applied a propane torch to the bends.
None of the spokes stood up to torture.
Old, used, 2 mm carbon spokes curled up when heated.
This bend _| became _\ when an old used spoke was heated.
But a new, unused, 1.8 mm stainless steel spoke uncurled when heated.
This bend _| became _/ when an unused ss spoke was heated.
Is torture unreliable where spokes are concerned? Why does the same
90-degree bend respond differently to heat in the different spokes?
Someone on RBT ought to know what's going on.
Is it carbon plated versus stainless steel? Different thicknesses?
Used versus unused? Something else that I'm too ignorant to think of?
Here are some before and after diagrams and pictures.
On the left is the used, plated, carbon 2 mm spoke.
On the right is the unused stainless steel 1.8 mm spoke.
bent heated
c s c s
| | \ /
carbon | | carbon \ /
________| | ________\ /
vise| | vise| /
____|_____| ____|_____/
stainless stainless
The bent spokes stick up || like this:
http://server5.theimagehosting.com/image.php?img=256acarbonstainlessb...
After heating, they splay apart \/ like this:
http://server5.theimagehosting.com/image.php?img=257acarbonstainlessh...
It's not an optical illusion. The pegboard and ruler are about a foot
past the yellow hammer handle, and the yellow hammer handle is about a
foot past the spokes in the vise:
camera spokes hammer ruler-on-pegboard
Cheers,
Carl Fogel
Dear Carl,
Too many variables. To possibly eliminate some of these you should
test (if you have them):
New carbon spokes, 2.0mm and 1.8mm
Used stainless spokes, 2.0mm and 1.8mm
Not sure I understand why you wouldn't similarly test the bends at the
spoke head.
No offence, but do you have a day job?
Best wishes,
Nigel Grinter
www.wellspokenwheels.com
Dear Nigel,
I was hoping that someone in our pack of well-educated engineers would
know why used carbon 2 mm spokes curl up when their bends are heated,
but unused 1.8 mm stainless steel spokes uncurl.
Testing more spokes of different dimensions, brands, and history might
show some other patterns, but it wouldn't tell me why the patterns are
different.
The reason that I tested giant 90 degree bends that I made myself with
half a foot of spoke sticking out is that it's easy to see that much
spoke actually moving right in front of your eyes and there's no
question that the spoke has just been bent and not treated in any
other way.
Think about how disconcerting it would have been if two elbows curled
and uncurled only as much as the angles in that picture. One "needle"
is about 150 mm long. The other is about 3 mm long. Would you believe
your measurements on a tiny spoke elbow? Or would you wonder if it was
just too hard to measure?
Your browser seems to truncate the picture links, so here they are
again:
http://server5.theimagehosting.com/image.php?img=256acarbonstainlessbent.jpg
or http://tinyurl.com/y8lodt
http://server5.theimagehosting.com/image.php?img=257acarbonstainlessheated.jpg
or http://tinyurl.com/tnrhw
A quick check with a protractor program indicates that the carbon
spoke curls up less than 2 degrees.
In other words, I was checking first to see if anything at all
happened on a large scale before I wasted any time trying to see if I
could measure extremely small changes in tiny spoke elbows.
And I'm not sure if the bending is caused by stresses being relieved
or by some weird expansion that overwhelms any stress relief.
Yes, I've got a day (and night) job. Luckily, it allows me enough time
to bend two spokes with my forepaws, clamp them in a vise, wave a
propane torch at them for less than ten seconds, and wonder what the
hell is going on.
No offence, but I take it that you haven't a clue, either. Maybe
someone else on this technical newsgroup does. If not, I'll enjoy the
vision of puzzled engineers trying to figure it out by toasting
spokes.
Cheers,
Carl Fogel