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Spoke line correction

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20 February 2007
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  1. This post was prompted by the discussion earlier re:Sapim spoke
    fatigue, 9th
    Feb.

    I'm going to give my background information before posing my question.
    I've
    always used Sapim spokes in my mtb wheels with no problems re spoke
    breakages. I build according to "The Bicycle Wheel", in particular
    lace the
    spokes and correct the spoke line by bending a little extra at the
    elbow,
    then stress relieving with a *very* firm grasp of the parallel spokes.

    I built a road wheel for a friend with CX-Ray spokes and after a 1000
    miles
    a spoke broke at the elbow on the rear left side. On closer
    examination
    visible cracks were seen on every outbound spoke and a firm squeeze
    easily
    snapped them. Could be a faulty batch of spokes. I have since obtained
    a
    road bike and built road wheels for myself using 2mm-1.8mm butted,
    Sapim
    spokes (Race) in the rear, DT (Comp) in the front (the LBS did not
    have the
    suitable lengths in stock, hence the DT and Sapim's). After 500 miles
    a
    spoke in the rear left has gone!

    What I did notice when building the two wheels was that the Sapim
    spokes
    seemed stiffer and the DT ones more elastic which was noticeable when
    reaching higher tensions, I got the feeling that I could keep giving
    the
    DT's a bit more whereas the Sapim's firmed up and felt solid.

    Now the question, did the above referenced article suggest that
    correcting
    the spoke line contributes to fatigue, those left outbound spokes
    requiring
    more correction? The Sapim wheelbuilding advice
    (http://www.sapim.be/index.php?st=checklist&taal=uk) says "If material
    is
    forced while lacing the hub, the spokes can be pulled over causing
    material
    weakness. The original bend angle of 95° should remain intact." -
    which I
    take to mean don't correct the spoke line.

    I'd welcome your thoughts on this spoke line correction. Right now I'm
    thinking of rebuilding with DT, perhaps the extra elasticity helps.
    Anyone
    done a tensile strength graph on DT and Sapim to quantify the material
    elongation properties? Or building with no spoke line correction.

    Thanks for input.

  2. Quoted message said:

    I built a road wheel for a friend with CX-Ray spokes and after a 1000
    miles
    a spoke broke at the elbow on the rear left side. On closer
    examination
    visible cracks were seen on every outbound spoke and a firm squeeze
    easily
    snapped them.

    Was it only the outbound spokes on the left side that were cracked...
    no problems with the drive side or left inbound spokes? And I'm
    guessing that all the cracks initiated on the outside of the elbows...
    yes? Did you take pictures?

  3. Another note. Since there were some quite lengthy and recent
    discussions on this topic (spoke line correction, residual stress), I
    did a search... and found nothing. Further investigation revealed that
    google lost 3+ months of posts when they switched their formating. So
    now I guess we can repeat the whole exercise over again... oh joy...

  4. On 20 Feb 2007 09:00:18 -0800, "Ron Ruff" <[email hidden]>

    Quoted message said:

    Another note. Since there were some quite lengthy and recent
    discussions on this topic (spoke line correction, residual stress), I
    did a search... and found nothing. Further investigation revealed that
    google lost 3+ months of posts when they switched their formating. So
    now I guess we can repeat the whole exercise over again... oh joy...

    Dear Ron,

    Is this the thread? "I fixed a broken spoke!" It ran from Dec. 4 2006
    through Jan. 8 2007.

    http://groups.google.com/group/rec.bicycles.tech/browse_frm/thread/80f059cd12620fb5/84480e4dc0600b68?lnk=gst&q=%22spoke+line+correction%22&rnum=4#84480e4dc0600b68

    Cheers,

    Carl Fogel

  5. Quoted message said:

    Is this the thread? "I fixed a broken spoke!" It ran from Dec. 4 2006
    through Jan. 8 2007.

    http://groups.google.com/group/rec.bicycles.tech/browse_frm/thread/80...

    That was the start I think, but there was a "summary" thread
    afterwards that was a little easier to follow.

    So I guess it is there, but I can't search for it. I can't search and
    find any posts between mid Oct and late Jan.

  6. Ron Ruff said:
    Quoted message said:

    Is this the thread? "I fixed a broken spoke!" It ran from Dec. 4 2006
    through Jan. 8 2007.

    http://groups.google.com/group/rec.bicycles.tech/browse_frm/thread/80...

    That was the start I think, but there was a "summary" thread
    afterwards that was a little easier to follow.

    So I guess it is there, but I can't search for it. I can't search and
    find any posts between mid Oct and late Jan.

    I still have the text of the summary on my hard disk, so I shall append
    it below FWIW and with no intention to spread rumours.

    To the OP: the summary of the summary is that your spokes might have
    broken because the elbows were at close to yield stress after the build.
    But in theory that shouldn't have happened, since you were careful to
    stress-relieve. I have no idea why they failed, but it is interesting to
    know the details as broken spokes are not so common these days based on
    what I read in RBT.

    How much weight did you put on the wheels, and did you use a
    tensiometer? If so what was the tension? If you can post pictures of the
    broken spokes, especially closeups, we will enjoy poring over them. With
    any luck someone who actually knows about these things will tell you
    something useful.

    Finally, the advice of Sapim not to correct the spoke line was mentioned
    here before, and considered to lack credibility in the context of other
    remarks from the same source saying things like if one spoke breaks you
    need to replace them all, and you should never reuse hubs. It sounded
    like they were just disclaiming everything.

    ************************************************************************

    A recent thread entitled "I fixed a broken spoke" about various things
    including stresses at spoke elbows got so long it starting disappearing
    off the ends of people's newsreaders. But since some people are still
    interested in it it was suggested I should do a summary.

    I'll try to keep it as short I can. No attributions, but most of the
    material is originally from either Jobst or jim beam. Any
    misrepresentations are unintentional.

    Stress and stress relief
    ------------------------

    This is a picture of a spoke sitting in a hole in a hub flange.

    sHHHHHH <--- Hub
    sssssssssss
    sHHHHHH s
    s
    <-d->s <--- Spoke
    s
    s
    s
    RIM

    If you pull the spoke along its axis towards the rim either the spoke
    bends a bit more at the elbow, or the spoke cuts into the body of the
    hub, or a bit of both.

    We'll consider the first possibility in isolation first, so assume for
    now that the hub hole is not deformable at all (this is pretty much the
    case for a steel hub).

    In the diagram the perpendicular distance from the spoke to the hub
    flange has been labelled <-d->. The longer this distance, the lower the
    force required to bend the spoke. The product of F and d is called a
    "moment".

    As this distance approaches zero, the force required to bend the spoke
    absolutely flush with the flange approaches the force that would be
    required to stretch a spoke plastically-- a force that's significantly
    higher than spoke tension in a finished bicycle wheel.

    In other words, to achieve this situation:

    sHHHHHH
    ssssssss
    sHHHHHHs
    s
    s
    s
    s

    just by pulling on the spoke would take a LOT of force.

    Suppose you pull on the spoke with a force that gradually increases from
    zero up to about normal tension, corresponding with screwing up the
    nipple as you build the wheel. As the spoke bends towards the hub the
    distance "d" gets shorter, and it gets harder to bend the spoke. Soon
    you reach an equilibrium position in which the applied force holds the
    bend where it is, but is unable to make it any tighter.

    This applied force will hold the outside of the bend at just about the
    yield stress of the material-- after all it's just been yielding (i.e.
    bending) and you haven't relaxed the force, so it will be kept at yield.

    So the spoke will not be quite flush with the flange, but some distance
    "d" from it. How big is "d" exactly? I don't know for sure, I should
    work it out, it isn't hard, and it's an important detail.

    If you rode away on the bike like that you would expect rapid fatigue at
    the spoke elbows since steel, like many materials, doesn't last very
    long if it's cycled (repeatedly tensioned and relaxed again) at a high
    mean stress.

    But if you pull on the spoke a bit harder still and let go of it again,
    you can plastically stretch the outside of the elbow a little bit
    further, with the result that when you relax that momentary overload,
    the outside of the elbow is left at a much lower stress.

    This improves the life of the wheel, and is called "mechanical stress
    relief".

    Hub deformation
    ---------------

    We've all seen the indentations around the exit holes of used hubs, and
    we know that hubs are often made of aluminium that is softer than the
    stainless steel used for spokes.

    So what if the elbow doesn't bend at all, but instead just digs itself
    into the hub a bit as it's pulled flush to the flange by normal
    tensioning, and perhaps by some overload applied deliberately during the
    build?

    When you take an old wheel apart, you can often tell which spokes were
    "inbound" and which were "outbound" by the different elbow bends, which
    implies that the elbows _did_ bend as they were pulled towards the rim.
    But the picture is confused because many builders bend the elbows
    manually with their thumb or a crank-arm (which takes relatively little
    force to do because of the position and direction in which the force is
    applied).

    We have seen inbound and outbound spokes from one poster, who advocates
    against premature elbow-thumbing, that showed a barely perceptible
    difference in elbow angle.

    Of course if the elbow doesn't bend, or the hub is too soft to support
    the force required to hold a bend in the elbow, there's no reason to
    believe that the outside of the elbow will remain at yield stress after
    spoke tensioning.

    Both spoke bending and hub deformation
    --------------------------------------

    As tension is gradually applied to the spoke, at first it starts to bend
    a bit, but as the spoke's exit line approaches parallel to the force
    line, the moment becomes too small for it to continue to bend, and the
    spoke elbow is held at yield stress.

    In this scenario, as the tension is increased further, the pressure on
    the inside of the hub starts to deform the exit hole, and the spoke
    continues to pull closer to the flange, not by bending but by cutting
    into the hub slightly.

    This reduces the distance "d" even further, which means that the stress
    at the spoke elbow actually reduces, even though the applied force is
    still growing slowly as we wind the nipple. The moment Fd gets smaller
    because although F is increasing, d is reducing more rapidly. In other
    words, as the pivot around which we're twisting the spoke deforms, the
    spoke unbends a bit.

    We said at the start that to pull the spoke completely flush to the
    flange around a non-deformable pivot would take significantly more spoke
    tension than we ever get in a bicycle wheel.

    So one possibility is that the spoke doesn't end up completely flush.
    Another is that hub-hole deformation allows the spoke to pull flush, and
    a consequence of this is that the spoke elbow does not remain at yield
    after tensioning. There may still be some stress at the elbow though--
    how far the bend gets relaxed depends on the extent of each of these
    effects.

    Spoke Line Correction
    ---------------------

    So far we've been talking about building a wheel by just putting the
    spokes in and tightening them up, followed perhaps by some momentary
    overload process to relieve bending stress at the elbow.

    But many builders push the spokes towards the flange earlier in the
    process with their thumbs or old crank arms. If the elbow angle can be
    made just right before the spoke is tensioned, then it won't need to
    bend during the build, and we can expect the spoke to lie flush to the
    flange when we're finished without requiring either hub-hole deformation
    or yield stress at the elbow.

    But is it possible to get the angle just right? In theory, no, on the
    grounds that you cannot bend the spoke further than flush (the flange is
    in the way), and that after you bend it it's always going to bounce back
    a little bit.

    In practice I'm not so sure. If the spoke is still quite loose, it may
    not be sitting in quite its final position in the hub hole. If you can
    hinge it back a bit before bending it, it seems at least possible that
    you should be able to exceed the angle of the flange.

    Which is right?
    ---------------

    We can be fairly sure that spoke tension cannot hold the bend at yield
    for the small value of "d" implied by flushness, and therefore that if
    the spoke really is truly flush when we've finished, the bend is no
    longer at yield.

    So is the spoke truly flush? How far away does it have to be for it to
    be reasonable for normal spoke tension to hold the elbow at yield?

    It's hard to say. Small differences in angles and lengths is all it
    takes one way or the other. Furthermore the spoke may end up bent into a
    kind of question-mark shape just where it exits the flange, meaning it
    can lie flat a bit further away, requiring less tension to keep it
    there, but making it look flush unless you inspect very carefully around
    where it exits the hole. The tighter the radius of the question-mark's
    hook, the more tension is required, although the geometry gets much more
    complicated at this scale. Do we see hooks? What are their radii? It
    would help to have a close look at a few wheels, especially ones that we
    knew hadn't undergone manual spoke line correction, but even then it
    would be hard to know exactly what to conclude.

    A good argument against hub-hole deformation relaxing yield stress at
    the elbow (or in any way mitigating the bending of the elbow) is that we
    would expect any deformation of the hub to happen sooner rather than
    later in the build process. As the wire first starts to sink into the
    aluminium, the contact patch is a thin line on the surface of the spoke
    which sinks in like a knife blade. But as more of the wire sinks in, the
    size of the contact quickly grows, and the amount of compressed
    aluminium pushing it back increases. By the time the spoke is getting
    near the flange, it's already sunk in enough that the apparently soft
    aluminium hub is effectively no longer deformable.

    My own conclusion is that theory doesn't tell us for sure whether or not
    the spoke elbow is kept at or close to yield by spoke tension. More
    evidence is needed. Carl puts it best: "the spokes do whatever they do
    regardless of our red herrings".

    It also depends on the choice of components used, in particular the
    length of the elbow shanks and the orientation of the hub holes, which
    varies even between different recent hubs from the same manufacturer as
    people have been discussing recently. The situation may be different in
    different wheels.

    We have good ancedotal evidence that temporarily overloading the spokes
    after tensioning produces more durable wheels. We know that this process
    would relieve tensile stress at the elbow if it were there, and that
    that would improve fatigue life.

    On the other hand the temporary overload may have other benefits. It may
    be that it helps seat the spokes into the hub, it may just be that
    temporarily underloading the spokes (a sideeffect of certain
    temporary-overload procedures) takes out windup.

    Or it may have no positive benefits at all. The anecdotal evidence it
    does something useful is good, but as time goes by the components we buy
    from the manufacturers change with quite significant differences in
    materials, geometry and importantly surface finish which is known to be
    highly significant in fatigue failure.

    It's less clear how different processes of stress relieving could do any
    harm, although I think mechanisms may have been suggested by which that
    is possible. As far as I remember I think we're all pretty much agreed
    that the "Mavic Method" is probably beneficial and unlikely to do any
    harm.

    "Residual stress"
    -----------------

    The bend stress that may exist at the spoke elbow after tensioning that
    I've been describing is sometimes called "residual stress". I believe
    this is the term used in Jobst's book _The Bicycle Wheel_.

    This seems a reasonable thing to call it on the plain-English grounds
    that it's residual (left-over after bending) and it's stress.

    But the term has another technical sense to describe stresses inside a
    material that remain after plastic bending and spring-back. When you
    bend a wire, the material near the skin goes through bigger angle
    changes than the stuff nearer the centre. After the wire springs back
    (the bend bounces out a bit), you're left with the unyielded interior
    pushing elastically against the yielded exterior.

    Note that these stresses are compressive on the outside of the bend and
    tensile on the inside, so if present in a spoke would actually mitigate
    the tensile stress on the outside of the elbow that may remain after
    bending.

    The spoke-toasting experiment of Carl Fogel indicated that these
    residual stresses are relieved at tensions below what you expect in a
    normal wheel anyway.

    But these are not the same "residual stresses" as the bend stress
    remaining at the elbow that we've been talking about. However many of us
    didn't realize that that was what we were talking about until quite late
    in the day.

    Is is correct to use the term "residual stress" for this bend stress
    remaining at the elbow? I don't know, but I do know I promised Ed
    Pirrero a 500-post flame war on the subject. So, gentlemen, in your own
    time, start whenever you're ready.

    Residual stress of a similar kind to that remaining after spring-back
    may remain in spokes after fabrication, and here we get into the
    descriptions of the fabrication process. It would seem that the
    spoke-toasting is good evidence that these stresses, if present, are
    relieved anyway by normal tensioning, but there are also arguments
    people have made against that.

    A simple test for presence of residual stress from fabrication is the
    chloride test.

  7. On 20 Feb 2007 10:37:27 -0800, "Ron Ruff" <[email hidden]>

    Quoted message said:
    Quoted message said:

    Is this the thread? "I fixed a broken spoke!" It ran from Dec. 4 2006
    through Jan. 8 2007.

    http://groups.google.com/group/rec.bicycles.tech/browse_frm/thread/80...

    That was the start I think, but there was a "summary" thread
    afterwards that was a little easier to follow.

    So I guess it is there, but I can't search for it. I can't search and
    find any posts between mid Oct and late Jan.

    Dear Ron,

    You might try again. As far as I can tell, there's nothing missing
    from Google Groups.

    Here, for example are 47 threads with your posts from that period:

    http:[email hidden]+&lr=&as_qdr=&as_drrb=b&as_mind=15&as_minm=10&as_miny=2006&as_maxd=31&as_maxm=1&as_maxy=2007&safe=off

    Here's a thread that may be the summary of the longer spoke thread
    that you're thinking of:

    http://groups.google.com/group/rec.bicycles.tech/browse_frm/thread/3135ba860f49effb/0e98e5f187100bb5?lnk=st&q=group%3Arec.bicycles.tech+author%3Arruffrruff%40yahoo.com&rnum=8#0e98e5f187100bb5

    Cheers,

    Carl Fogel

  8. someone said:

    This post was prompted by the discussion earlier re:Sapim spoke
    fatigue, 9th Feb.

    Quoted message said:

    I'm going to give my background information before posing my
    question. I've always used Sapim spokes in my MTB wheels with no
    problems re spoke breakages. I build according to "The Bicycle
    Wheel", in particular lace the spokes and correct the spoke line by
    bending a little extra at the elbow, then stress relieving with a
    *very* firm grasp of the parallel spokes.

    Quoted message said:

    I built a road wheel for a friend with CX-Ray spokes and after a
    1000 miles a spoke broke at the elbow on the rear left side. On
    closer examination visible cracks were seen on every outbound spoke
    and a firm squeeze easily snapped them. Could be a faulty batch of
    spokes. I have since obtained a road bike and built road wheels for
    myself using 2mm-1.8mm butted, Sapim spokes (Race) in the rear, DT
    (Comp) in the front (the LBS did not have the suitable lengths in
    stock, hence the DT and Sapim's). After 500 miles a spoke in the
    rear left has gone!

    Those cracked spokes are bad. Slap them on the wrist and send them
    off to bed. Something seems to be amiss here. How thick are the
    flanges and how tight do the spokes fit?

    Quoted message said:

    What I did notice when building the two wheels was that the Sapim
    spokes seemed stiffer and the DT ones more elastic which was
    noticeable when reaching higher tensions, I got the feeling that I
    could keep giving the DT's a bit more whereas the Sapim's firmed up
    and felt solid.

    Steel is steel, regardless of what brand, so there can't be any
    difference other than wire diameter. They all have the same elastic
    modulus.

    Quoted message said:

    Now the question, did the above referenced article suggest that
    correcting the spoke line contributes to fatigue, those left
    outbound spokes requiring more correction? The Sapim wheelbuilding
    advice

    http://www.sapim.be/index.php?st=checklist&taal=uk)

    Quoted message said:

    says "If material is forced while lacing the hub, the spokes can be
    pulled over causing material weakness. The original bend angle of
    95° should remain intact." - which I take to mean don't correct the
    spoke line.

    Well that's BS. Outbound spokes tale a smaller bend angle, especially
    on the left side while inbound spokes should start out with a 105° or
    greater angle. If they think their spokes cannot with stand
    modification of the elbow angle, there is something wrong with the guy
    who writes their copy.

    Quoted message said:

    I'd welcome your thoughts on this spoke line correction. Right now
    I'm thinking of rebuilding with DT, perhaps the extra elasticity
    helps. Anyone done a tensile strength graph on DT and Sapim to
    quantify the material elongation properties? Or building with no
    spoke line correction.

    I never tried Sapim but they seem to get good reviews in this forum.

    Jobst Brandt

  9. Quoted message said:

    You might try again. As far as I can tell, there's nothing missing
    from Google Groups.
    Here, for example are 47 threads with your posts from that period:

    Well, I still get a big hole for any search from Oct to Jan...
    nothing... by anybody. Very strange. I can access the thread from URL,
    though.

    A little more on topic, I just received some CX-Rays today, and was
    surprised at the elbow shape. It's long compared to the 2.0mm
    Wheelsmith and DT spokes that I have (not a lot but noticable), and
    closer to 90 degrees as well. Consequently the spoke hangs out farther
    from the hub flange (Dura Ace 7700 and Ultegra 6500). I would have
    gotten spoke washers if I'd known. The WS AE15s (1.8mm ends) have a
    short "J", and the inside of the bend hugs the flange quite well...
    seems like the best fit of them all.

  10. On 20 Feb 2007 14:46:31 -0800, "Ron Ruff" <[email hidden]>

    Quoted message said:
    Quoted message said:

    You might try again. As far as I can tell, there's nothing missing
    from Google Groups.
    Here, for example are 47 threads with your posts from that period:

    Well, I still get a big hole for any search from Oct to Jan...
    nothing... by anybody. Very strange. I can access the thread from URL,
    though.

    [snip]

    Dear Ron,

    Maybe I'm just checking when some erratic problem isn't active, but a
    Google Groups search in rec.bicycles.tech for "as opposed to the
    rhetorical questions" brings up a post in December in that thread:

    http://groups.google.com/group/rec.bicycles.tech/search?group=rec.bicycles.tech&q=%22as+opposed+to+the+rhetorical+questions%22

    Clicking on repeat-the-search-with-the-omitted-results-included option
    brings up the original post and the three that quoted it from December
    6th through December 19th.

    If you go to the advanced search:

    http://groups.google.com/advanced_search?q=&

    and look for "spoke" in rec.bicycles.tech for Oct 15 2006 through Jan
    31 2007, you get 1240 hits:

    http://groups.google.com/groups?as_q=spoke&num=10&scoring=r&as_epq=&as_oq=&as_eq=&as_ugroup=rec.bicycles.tech&as_usubject=&as_uauthors=&lr=&as_qdr=&as_drrb=b&as_mind=15&as_minm=10&as_miny=2006&as_maxd=31&as_maxm=1&as_maxy=2007&safe=off

    (The actual displayed links are far fewer than 1,240, since they tend
    to be posts that merely quoted posts that mentioned "spoke".)

    Perhaps you're mis-using some symbol in a search long search command?

    Cheers,

    Carl Fogel

  11. On 20 Feb 2007 14:46:31 -0800, "Ron Ruff" <[email hidden]>

    Quoted message said:
    Quoted message said:

    You might try again. As far as I can tell, there's nothing missing
    from Google Groups.
    Here, for example are 47 threads with your posts from that period:

    Well, I still get a big hole for any search from Oct to Jan...
    nothing... by anybody. Very strange. I can access the thread from URL,
    though.

    [snip]

    Dear Ron,

    Unlikely but possible explanation . . .

    Check to see if your preferences in Google Groups are still set to
    search--for-pages-written-in-any-language.

    For example, if you set your preferences to search only for pages
    written in Bulgarian, a search limited by date in RBT will come up
    empty.

    Cheers,

    Carl Fogel

  12. Quoted message said:

    Those cracked spokes are bad. Slap them on the wrist and send them
    off to bed. Something seems to be amiss here. How thick are the
    flanges and how tight do the spokes fit?

    The hub was a new Shimano Sora which is a low spec hub, which I prefer
    since all hubs these days seem to work. I guess it's made to standard
    Shimano dimensions.

    Quoted message said:

    Steel is steel, regardless of what brand, so there can't be any
    difference other than wire diameter. They all have the same elastic
    modulus.

    Having built with Sapim for many years then with the opportunity to
    build a wheel with DT I did notice a different 'feel'. The DT's did
    seem more elastic. I don't understand how you say they could be the
    same elastic modulus, would different alloying elements make for
    different characteristics?

    I've since found the previous lengthy threads on the stress related
    discussions so would not want to start another. I've spent most of the
    evening reading through them. Good stuff!

    I've just sourced another cheap Shimano hub from ebay because I want
    to explore the spoke line correction a little more. I'll manually
    correct by thumb some spokes and leave the rest un modified then build
    up as normal then disassemble to examine the resulting bend angles to
    see if they are identical and so negate the additional operation of
    manually bending which as you said needs doing carefully.

    I recall temporarily fixing a buddies wheel that required a straight
    pull spoke. I just put an elbowed spoke in and was amazed how little
    tension it took to starighten the elbow when I assumed it would hold
    its shape (it was obvioulsy now too long, so I just restarted again
    with a shorter spoke). So I'm guessing that in a normal hub the spoke
    will find its own spoke line under tension.

    One thing I noticed somewhere in the previous threads was that you
    thought supporting the hub axle and pressing the rim to be a better
    method of overloading the spoke. It's something I've never done since
    it takes time and you need to make sure every spoke gets the
    appropriate load. I've always gone for the tight squeeze of the
    parallel spokes and would hope that this is more than sufficient.

    Thanks JB, JB and all you other guys for some interesting reading in
    previous spoke related topics.

    Ray

  13. Quoted message said:
    Quoted message said:

    Those cracked spokes are bad. Slap them on the wrist and send them
    off to bed. Something seems to be amiss here. How thick are the
    flanges and how tight do the spokes fit?

    The hub was a new Shimano Sora which is a low spec hub, which I prefer
    since all hubs these days seem to work. I guess it's made to standard
    Shimano dimensions.

    Quoted message said:

    Steel is steel, regardless of what brand, so there can't be any
    difference other than wire diameter. They all have the same elastic
    modulus.

    Having built with Sapim for many years then with the opportunity to
    build a wheel with DT I did notice a different 'feel'. The DT's did
    seem more elastic. I don't understand how you say they could be the
    same elastic modulus, would different alloying elements make for
    different characteristics?

    I've since found the previous lengthy threads on the stress related
    discussions so would not want to start another. I've spent most of the
    evening reading through them. Good stuff!

    I've just sourced another cheap Shimano hub from ebay because I want
    to explore the spoke line correction a little more. I'll manually
    correct by thumb some spokes and leave the rest un modified then build
    up as normal then disassemble to examine the resulting bend angles to
    see if they are identical and so negate the additional operation of
    manually bending which as you said needs doing carefully.

    I recall temporarily fixing a buddies wheel that required a straight
    pull spoke. I just put an elbowed spoke in and was amazed how little
    tension it took to starighten the elbow when I assumed it would hold
    its shape (it was obvioulsy now too long, so I just restarted again
    with a shorter spoke). So I'm guessing that in a normal hub the spoke
    will find its own spoke line under tension.

    One thing I noticed somewhere in the previous threads was that you
    thought supporting the hub axle and pressing the rim to be a better
    method of overloading the spoke. It's something I've never done since
    it takes time and you need to make sure every spoke gets the
    appropriate load. I've always gone for the tight squeeze of the
    parallel spokes and would hope that this is more than sufficient.

    Thanks JB, JB and all you other guys for some interesting reading in
    previous spoke related topics.

    Ray

    Dear Ray,

    It could just be a batch of bad Sapim spokes.

    Peter Chisholm, who builds wheels in his Boulder shop, has mentioned
    several times that a batch of Wheelsmith spokes just stretched
    uselessly when he used them:

    http://groups.google.com/group/rec.bicycles.tech/msg/af4ea92a5882a650

    http://groups.google.com/group/rec.bicycles.tech/msg/ebdfe3895dd3d815

    Normally, Wheelsmith spokes don't do this.

    Cheers,

    Carl Fogel

  14. Quoted message said:

    Having built with Sapim for many years then with the opportunity to
    build a wheel with DT I did notice a different 'feel'. The DT's did
    seem more elastic. I don't understand how you say they could be the
    same elastic modulus, would different alloying elements make for
    different characteristics?

    As Jobst said, the elastic modulus would not change appreciably, even
    if things like strength, elongation, toughness, etc did. The only
    reason I can think of is something in the spoke, nipple, or hub is
    yielding... and that is not a good thing.

    BTW Carl... I get the "hole" from Oct 15 to Jan 25... that's from
    looking at all your messages...ie there are zero in that time frame.
    Using my wife's computer gives the same result.

  15. On 20 Feb 2007 17:41:36 -0800, "Ron Ruff" <[email hidden]>

    Quoted message said:
    Quoted message said:

    Having built with Sapim for many years then with the opportunity to
    build a wheel with DT I did notice a different 'feel'. The DT's did
    seem more elastic. I don't understand how you say they could be the
    same elastic modulus, would different alloying elements make for
    different characteristics?

    As Jobst said, the elastic modulus would not change appreciably, even
    if things like strength, elongation, toughness, etc did. The only
    reason I can think of is something in the spoke, nipple, or hub is
    yielding... and that is not a good thing.

    BTW Carl... I get the "hole" from Oct 15 to Jan 25... that's from
    looking at all your messages...ie there are zero in that time frame.
    Using my wife's computer gives the same result.

    Dear Ron,

    For what it's worth, a bad batch of spokes, improperly annealed, can
    yield permanently and could stretch stretch elastically a bit more
    easily.

    Here's an example of exaggerated necking in a tensioned 2 mm Sapim
    stainless steel spoke, caused by just pointing a propane torch at the
    necked area:

    http://i16.tinypic.com/29ws9oz.jpg

    A much fainter mis-heating for the whole length of the spoke during
    the wire drawing process could lead to nearly invisible necking and a
    strange feel.

    A nominally 2 mm spoke might feel a bit like a 1.8 mm spoke to the
    spoke wrench. It might even stretch permanently like Peter Chisholm's
    strange batch of easily and permanently elongated Wheelsmith spokes.

    As for Google Groups posts from Oct 15 to Jan 25, I'm still baffled
    that they don't show up for you.

    When you go here . . .

    http://groups.google.com/group/rec.bicycles.tech/topics?lnk=lr

    . . . what do you get if you fill in the quick-search blank with
    "rhetorical" and sort the results by date?

    Before this post, I got 184 results, with several in early January, in
    December, and in November on the first two pages:

    http://groups.google.com/group/rec.bicycles.tech/search?q=rhetorical&start=0&scoring=d&

    Cheers,

    Carl Fogel

  16. Quoted message said:
    Quoted message said:

    Those cracked spokes are bad. Slap them on the wrist and send them
    off to bed. Something seems to be amiss here. How thick are the
    flanges and how tight do the spokes fit?

    The hub was a new Shimano Sora which is a low spec hub, which I prefer
    since all hubs these days seem to work. I guess it's made to standard
    Shimano dimensions.

    Quoted message said:

    Steel is steel, regardless of what brand, so there can't be any
    difference other than wire diameter. They all have the same elastic
    modulus.

    Having built with Sapim for many years then with the opportunity to
    build a wheel with DT I did notice a different 'feel'. The DT's did
    seem more elastic. I don't understand how you say they could be the
    same elastic modulus, would different alloying elements make for
    different characteristics?

    jobst is right on this - unless the physical dimensions of the spokes
    are different, you'll not notice any difference in stiffness between
    brands. it's barely measurable with instruments, and certainly not by hand.

    Quoted message said:


    I've since found the previous lengthy threads on the stress related
    discussions so would not want to start another. I've spent most of the
    evening reading through them. Good stuff!

    I've just sourced another cheap Shimano hub from ebay because I want
    to explore the spoke line correction a little more. I'll manually
    correct by thumb some spokes and leave the rest un modified then build
    up as normal then disassemble to examine the resulting bend angles to
    see if they are identical and so negate the additional operation of
    manually bending which as you said needs doing carefully.

    I recall temporarily fixing a buddies wheel that required a straight
    pull spoke. I just put an elbowed spoke in and was amazed how little
    tension it took to starighten the elbow when I assumed it would hold
    its shape (it was obvioulsy now too long, so I just restarted again
    with a shorter spoke). So I'm guessing that in a normal hub the spoke
    will find its own spoke line under tension.

    One thing I noticed somewhere in the previous threads was that you
    thought supporting the hub axle and pressing the rim to be a better
    method of overloading the spoke. It's something I've never done since
    it takes time and you need to make sure every spoke gets the
    appropriate load. I've always gone for the tight squeeze of the
    parallel spokes and would hope that this is more than sufficient.

    Thanks JB, JB and all you other guys for some interesting reading in
    previous spoke related topics.

    Ray

  17. Quoted message said:
    someone said:

    This post was prompted by the discussion earlier re:Sapim spoke
    fatigue, 9th Feb.

    Quoted message said:

    I'm going to give my background information before posing my
    question. I've always used Sapim spokes in my MTB wheels with no
    problems re spoke breakages. I build according to "The Bicycle
    Wheel", in particular lace the spokes and correct the spoke line by
    bending a little extra at the elbow, then stress relieving with a
    *very* firm grasp of the parallel spokes.

    Quoted message said:

    I built a road wheel for a friend with CX-Ray spokes and after a
    1000 miles a spoke broke at the elbow on the rear left side. On
    closer examination visible cracks were seen on every outbound spoke
    and a firm squeeze easily snapped them. Could be a faulty batch of
    spokes. I have since obtained a road bike and built road wheels for
    myself using 2mm-1.8mm butted, Sapim spokes (Race) in the rear, DT
    (Comp) in the front (the LBS did not have the suitable lengths in
    stock, hence the DT and Sapim's). After 500 miles a spoke in the
    rear left has gone!

    Those cracked spokes are bad. Slap them on the wrist and send them
    off to bed. Something seems to be amiss here. How thick are the
    flanges and how tight do the spokes fit?

    Quoted message said:

    What I did notice when building the two wheels was that the Sapim
    spokes seemed stiffer and the DT ones more elastic which was
    noticeable when reaching higher tensions, I got the feeling that I
    could keep giving the DT's a bit more whereas the Sapim's firmed up
    and felt solid.

    Steel is steel, regardless of what brand, so there can't be any
    difference other than wire diameter. They all have the same elastic
    modulus.

    Quoted message said:

    Now the question, did the above referenced article suggest that
    correcting the spoke line contributes to fatigue, those left
    outbound spokes requiring more correction? The Sapim wheelbuilding
    advice

    http://www.sapim.be/index.php?st=checklist&taal=uk)

    Quoted message said:

    says "If material is forced while lacing the hub, the spokes can be
    pulled over causing material weakness. The original bend angle of
    95° should remain intact." - which I take to mean don't correct the
    spoke line.

    Well that's BS. Outbound spokes tale a smaller bend angle, especially
    on the left side while inbound spokes should start out with a 105° or
    greater angle. If they think their spokes cannot with stand
    modification of the elbow angle, there is something wrong with the guy
    who writes their copy.

    jobst, you lecture us repeatedly about the evils of residual stress.
    but as you know, residual stress is derived from deformation. deforming
    the spoke can therefore introduce residual stress. assuming you ignore
    the business about prematurely bending the spoke before the hub hole
    gets to deform of course...

    Quoted message said:


    Quoted message said:

    I'd welcome your thoughts on this spoke line correction. Right now
    I'm thinking of rebuilding with DT, perhaps the extra elasticity
    helps. Anyone done a tensile strength graph on DT and Sapim to
    quantify the material elongation properties? Or building with no
    spoke line correction.

    I never tried Sapim but they seem to get good reviews in this forum.

    Jobst Brandt

  18. Quoted message said:

    Before this post, I got 184 results, with several in early January, in
    December, and in November on the first two pages:

    Thanks for helping... but I get 157 posts and nothing from Oct 3 to
    Jan 26.

  19. On 20 Feb 2007 19:29:05 -0800, "Ron Ruff" <[email hidden]>

    Quoted message said:
    Quoted message said:

    Before this post, I got 184 results, with several in early January, in
    December, and in November on the first two pages:

    Thanks for helping... but I get 157 posts and nothing from Oct 3 to
    Jan 26.

    Dear Ron,

    I'm utterly baffled.

    I even tried strict filtering in my Google profile's preferences, but
    ignoring X-rated posts only reduced the hits from 184 to 179, with
    posts still appearing in the Oct-Jan period.

    Maybe someone who knows will take pity on us and reveal whatever
    obvious explanation prevents you from finding November and December
    posts in RBT through Google Groups.

    Cheers,

    Carl Fogel

  20. Ron Ruff said:
    Quoted message said:

    Before this post, I got 184 results, with several in early January, in
    December, and in November on the first two pages:

    Thanks for helping... but I get 157 posts and nothing from Oct 3 to
    Jan 26.

    Try signing out of your google groups posting account
    and repeating the search in case there's some kind of
    persistent cookie.

    Try clicking on the "View profile" link on one of your
    posts and looking at the bottom where it lets you click
    on posts from a given month.

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