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disk caliper redux

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Cycling Equipment
Published
16 February 2007
Last activity
19 February 2007
Original author
jim beam
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  1. On Fri, 16 Feb 2007 23:30:28 -0600, A Muzi <[email hidden]>

    Quoted message said:
    Quoted message said:
    Quoted message said:

    > <[email hidden]> wrote:
    > [snip]

    Quoted message said:
    Quoted message said:

    > jim beam wrote
    >> 2. that the stress/strain graph quoted for deformation theory is for a
    >> different material to that from spokes are actually made - as shown in
    >> different subsequent actual tensile samples graphs?
    > [snip]

    Quoted message said:
    Quoted message said:

    [email hidden] wrote:
    > For the benefit of puzzled readers . . .
    > In Jobst's book "The Bicycle Wheel," there's a stress-strain graph
    > showing a yield step or notch, meaning a section in the upward curve
    > where things behave oddly:
    > ^ x
    > | x
    > stress- x
    > tension x
    > x
    > x x
    > x x x
    > x
    > strain-elongation -->
    > But no such notch appears on the stress-strain graphs of various
    > spokes being pulled apart in the back of the book in any edition (the
    > first edition includes carbon spokes, as well as modern stainless
    > steel spokes).

    Quoted message said:
    Quoted message said:

    Unless jim has zero knowledge of metallurgy (which I doubt) he's doing
    his usual: raising red herrings and false representations in a
    compulsive attempt to look smarter than Jobst.
    Jobst's stress-strain curve on p.32 - the one with the notch - is not
    presented as representing any particular alloy. In fact, it's a
    standard "first introduction" curve, used to explain the concepts to a
    beginner, and it contains that yield notch because the notch is a
    feature of mild steel, which is the most common metal used in
    manufacturing. For web examples, see http://en.wikipedia.org/wiki/Stress-strain_curve
    or http://tinyurl.com/2qhxut
    or http://tinyurl.com/35th8a

    In almost any engineering book on material properties, that curve is
    printed in the first couple chapters, and almost every author chooses
    to show the notch just as Jobst has done. But again, the curve is
    printed as a general example and introduction to concepts - exactly
    what Jobst has done. If it matters, the author might point out that
    (most) other metals don't have the notch. My guess is that Jobst
    didn't mention it because it has no importance in bicycle wheels.

    In the back of _The Bicycle Wheel_ Jobst gives specific curves for
    spoke alloys. Those curves are not intended to be general, but
    specific to those test results. Those metals don't display the notch,
    so of course the notch is not shown. His curves appear to be
    accurate.

    I'm not surprised that Carl doesn't know this. It's the kind of thing
    one learns in metallurgy and/or engineering classes, not English
    classes.

    But jim beam obviously should know this. As usual, his portrayal of
    this as a mistake on Jobst's part is dishonest and cowardly.

    Quoted message said:

    "Those alloys don't display the notch, so of course the notch is not
    shown."

    In other words, the stainless steel spokes tested in the appendix
    don't match the generalized example for a different material?

    If so, the generalized example hardly illustrates what's happening
    with the stainless steel spokes, which is what it's supposed to be
    doing.

    I'm surprised that you're not following what seems to be an obvious
    problem in the text, so forgive me for repeating it--a yield-notch
    graph is apparently intended to illustrate the behavior of stainless
    steel spokes that don't apparently exhibit such behavior.

    As for the accuracy of the curves from the actual testing, I assume
    that they're reasonably accurate, but probably not terribly detailed.

    After all, the carbon-steel spokes tested and graphed in the first
    edition show no signs of any yield notch, which would be expected.


    -snip-

    Huh? Why would you expect a high carbon steel to behave like mild steel?

    Dear Andrew,

    Er, because (as Jim Beam was too soft-hearted to say) I'm dim-witted
    and didn't pay enough attention to what he's said over the years?

    I may still be wrong, but I think that Jim just corrected me.

    If I understand things now, his point is that stainless steel doesn't
    exhibit the yield notch behavior (I had that right) and that neither
    do carbon steel spokes (I had that wrong).

    Only lower carbon (or maybe unworked carbon) steel shows the yield
    notch, not the higher carbon steel used in the spokes tested in the
    1981 edition (they vanished in the later editions, since stainless
    steel pretty much replaced them).

    I mistakenly thought that the lack of a notch in the carbon spoke
    stress-strain graphs was due to the testing not being done in fine
    enough detail (after all, it was intended to show the ultimate
    strength of the spokes, not fine detail).

    But I now think that Jim Beam's point is that no yield notch showed up
    because there simply was none--the higher carbon steel spokes, as you
    point out, behave differently.

    In short, none of the spokes tested, carbon or stainless, exhibited
    the yield-notch behavior shown in the idealized graph in the text of
    "The Bicycle Wheel."

    (Stand by for further corrections. What ultimately interests me is
    whether the graph with the yield notch is showing us how spokes
    behave. It could an outright mistake, just a poorly chosen example, or
    somehow correct.)

    Cheers,

    Carl Fogel

  2. Tim McNamara said:

    In article <[email hidden]>,

    jim beam said:
    Tim McNamara said:

    In article <[email hidden]>,
    jim beam <[email hidden]> wrote:

    > Tim McNamara wrote: <snip [censored]>
    >> Apparently the same problems apply to metallurgical education.
    > really? so why is it poor old jimmy beam, the uneducated one,
    > that has to ask questions about a long time "peer reviewed" bible
    > - "the bicycle wheel"? if y'all are so damned educated, smart and
    > engineering professorial, how come y'all didn't figure out:
    >
    > 1. that the tensiometer math doesn't take account of spoke gauge?

    Given that Jobst has commented on this in the newsgroup when
    discussing the shortcomings in tensiometer design and usage, it
    seems that you are not in fact the only one.

    after i brought it up. but that's not the point. the point is, the
    other so-called "engineers" here haven't bothered to read or think
    about this stuff. nor did other self-appointed "experts". either
    they read it and decided it wasn't worth the hassle since jobst is
    always /so/ hostile to comment. or it was missed. did /you/ spot
    it? [rhetorical]

    Don't break your arm patting yourself on the back, jim.

    Don't give him too much credit. The page you linked to shows that Jobst was
    discussing this before "jim beam" graced our presence.

  3. Tim McNamara said:

    In article <[email hidden]>,

    jim beam said:
    Tim McNamara said:

    In article <[email hidden]>,
    jim beam <[email hidden]> wrote:

    > Tim McNamara wrote: <snip [censored]>
    >> Apparently the same problems apply to metallurgical education.
    > really? so why is it poor old jimmy beam, the uneducated one,
    > that has to ask questions about a long time "peer reviewed" bible
    > - "the bicycle wheel"? if y'all are so damned educated, smart and
    > engineering professorial, how come y'all didn't figure out:
    >
    > 1. that the tensiometer math doesn't take account of spoke gauge?

    Given that Jobst has commented on this in the newsgroup when
    discussing the shortcomings in tensiometer design and usage, it
    seems that you are not in fact the only one.

    after i brought it up. but that's not the point. the point is, the
    other so-called "engineers" here haven't bothered to read or think
    about this stuff. nor did other self-appointed "experts". either
    they read it and decided it wasn't worth the hassle since jobst is
    always /so/ hostile to comment. or it was missed. did /you/ spot
    it? [rhetorical]

    Don't break your arm patting yourself on the back, jim. As for whether
    I would have spotted it, the answer is actually "yes." See, back when I
    was in school, I was taught to zero out measurement tools whenever
    possible. I zero out my tensiometer before use to reduce the
    measurement error as much as possible. Been doing it for years before
    you started posting here, because it was so bloody obvious.

    [snip]

    Dear Tim,

    Again, you've misunderstood the point.

    Even after you zero the measuring device, the thickness of the spoke
    affects the tension reading.

    In a small span, the greater bending resistance of the thicker spoke
    means that the same deflection requires more force against greater
    tension than with a thinner spoke.

    The same thing is true when the spoke is made of different materials.

    That's why the DT Swiss tables show different tensions for the same
    deflection for spokes of different thickness and material. See the
    chart at the bottom of this pdf:

    http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    As you can see, when the zeroed DT Swiss micrometer is used, a spoke
    witht 1000 newtons of tension will deflect 1.77, 2.19, or 3.00 mm,
    depending on whether it is a 1.8, 2.0, or 2.34 mm thick straight steel
    spoke.

    If it is a 2.0 mm straight titanium spoke, it will deflect 2.10 mm
    instead of the 2.19 mm of the 2.0 mm straight steel spoke at the same
    tension.

    Cheers,

    Carl Fogel

  4. Quoted message said:
    Tim McNamara said:

    In article <[email hidden]>,

    jim beam said:

    Tim McNamara wrote:
    > In article <[email hidden]>,
    > jim beam <[email hidden]> wrote:
    >
    >> Tim McNamara wrote: <snip [censored]>
    >>> Apparently the same problems apply to metallurgical education.
    >> really? so why is it poor old jimmy beam, the uneducated one,
    >> that has to ask questions about a long time "peer reviewed" bible
    >> - "the bicycle wheel"? if y'all are so damned educated, smart and
    >> engineering professorial, how come y'all didn't figure out:
    >>
    >> 1. that the tensiometer math doesn't take account of spoke gauge?
    >
    > Given that Jobst has commented on this in the newsgroup when
    > discussing the shortcomings in tensiometer design and usage, it
    > seems that you are not in fact the only one.

    after i brought it up. but that's not the point. the point is, the
    other so-called "engineers" here haven't bothered to read or think
    about this stuff. nor did other self-appointed "experts". either
    they read it and decided it wasn't worth the hassle since jobst is
    always /so/ hostile to comment. or it was missed. did /you/ spot
    it? [rhetorical]

    Don't break your arm patting yourself on the back, jim. As for whether
    I would have spotted it, the answer is actually "yes." See, back when I
    was in school, I was taught to zero out measurement tools whenever
    possible. I zero out my tensiometer before use to reduce the
    measurement error as much as possible. Been doing it for years before
    you started posting here, because it was so bloody obvious.

    [snip]

    Dear Tim,

    Again, you've misunderstood the point.

    Even after you zero the measuring device, the thickness of the spoke
    affects the tension reading.

    In a small span, the greater bending resistance of the thicker spoke
    means that the same deflection requires more force against greater
    tension than with a thinner spoke.

    The same thing is true when the spoke is made of different materials.

    That's why the DT Swiss tables show different tensions for the same
    deflection for spokes of different thickness and material. See the
    chart at the bottom of this pdf:

    http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    As you can see, when the zeroed DT Swiss micrometer is used, a spoke
    witht 1000 newtons of tension will deflect 1.77, 2.19, or 3.00 mm,
    depending on whether it is a 1.8, 2.0, or 2.34 mm thick straight steel
    spoke.

    If it is a 2.0 mm straight titanium spoke, it will deflect 2.10 mm
    instead of the 2.19 mm of the 2.0 mm straight steel spoke at the same
    tension.

    Cheers,

    Carl Fogel

    It belatedly occurs to me that many readers may not be familiar with
    various spoke tension gauges, so it's necessary to explain that the DT
    Swiss method of measuring reverses the expected pattern:

    "The higher the spoke tension, the smaller the deflection of the
    spoke. The deflection of the spoke is measured indirectly and
    reflected on the dial gauge (3). The smaller the deflection, the
    higher the measuring value. In other words, the higher spoke tension
    the greater the measured value."

    http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    That's why the "deflection" measurements appear to go the wrong way in
    the table and the examples that I gave. Instead of measuring how far
    the spoke moves from its original unbent position, the tool measures
    how near the bending spoke comes to reference point far beyond the
    bend:

    | \
    | \A____3.0mm for stiffer 2.34 spoke________Z
    | /
    | /

    | \
    | \A____2.19mm for less stiff 2.00 spoke___Z
    | /
    | /

    The distance from bend-point A to fixed-point Z in the tool is greater
    for the thicker spoke at the same tension.

    CF

  5. On Fri, 16 Feb 2007 21:09:26 -0700, carlfogel wrote:

    <snip>

    Quoted message said:

    Dear Frank,

    "Those alloys don't display the notch, so of course the notch is not
    shown."

    In other words, the stainless steel spokes tested in the appendix
    don't match the generalized example for a different material?

    If so, the generalized example hardly illustrates what's happening
    with the stainless steel spokes, which is what it's supposed to be
    doing.

    I'm surprised that you're not following what seems to be an obvious
    problem in the text, so forgive me for repeating it--a yield-notch
    graph is apparently intended to illustrate the behavior of stainless
    steel spokes that don't apparently exhibit such behavior.

    As for the accuracy of the curves from the actual testing, I assume
    that they're reasonably accurate, but probably not terribly detailed.

    After all, the carbon-steel spokes tested and graphed in the first
    edition show no signs of any yield notch, which would be expected.

    The tests, as far as I know, were intended primarily to show how
    strong various spokes were--that is, the 2 mm straight spokes all fail
    at about the load, regardless of how far they stretch before doing so,

    Cheers,

    Carl Fogel

    Carl,
    I agree that the chart, while not technically incorrect, can be confusing to
    a newcomer to the topic. However, it's not clear to me what about this makes
    you think that it's worthwhile to ask the opinion of another expert.

    "jim beam" sometimes suggests that Jobst improperly relies on the idea that
    steel has no endurance limit (if that's the term), but I don't see it. He
    characterizes fatigue limit and fatigue life in terms of the number of
    cycles the material is subjected to.

    For instance, on page 30:

    "The fatigue limit is how often the metal can be stretched or bent back and
    forth in the elastic stress zone before it develops a crack and breaks. For
    most applications fatigue life is measured in millions of cycles."

    And in the caption to Figure 15:

    "The fatigue life curve shown is for an ideal metal under stress. A material
    whose stress changes lie within this curve can withstand a nearly infinite
    number (millions) of stress cycles." Is that inaccurate? I thought there was
    a consensus in the thread about Sapim's fatigue testing that spokes
    subjected to normal stresses do last millions of cycles.

  6. In article
    <[email hidden]>,

    Quoted message said:
    Tim McNamara said:

    In article <[email hidden]>,

    jim beam said:

    since the previous thread is now too deep for me to follow on a
    threaded newsreader, here's a summary of the debate so far:

    Indeed, it was. "Snipping" extraneous material is the standard way to
    manage this, but you and a couple of others don't do it.

    [snip]

    Dear Tim,

    You've misunderstood the problem, which has nothing to do with
    snipping.

    When there are so many replies to replies, the thread tree becomes
    unwieldy. Many threaded newsreaders have a limit to how they display
    the tree and stop indenting at some point.

    For example, my older version of Forte Free Agent just stops indenting
    after some limit--I think that it's 32 replies-to-replies.

    Instead of this, where C is the 32nd reply to a reply

    A
    B
    C
    L
    M
    N
    X
    Y
    Z

    It shows this:

    A
    B
    C
    L
    M
    N
    X
    Y
    Z

    You can no longer tell at a glance that Y and Z reply to X.

    If you look at the original thread in Google Groups, you can see
    another way of handling an excessively deep thread tree:

    http://groups.google.com/group/rec.bicycles.tech/browse_frm/thread/879729f063acfce8/9b0543f5ab444ce6#9b0543f5ab444ce6

    Page down to posts 272/273, and you'll see a section where there are
    lots of huge indentations. My post 273 is a reply to post 272 above
    it, from dabac, but the indentation doesn't show this.

    Instead, dabac's post has been indented as far to the right as
    Google's display allows, so my reply to his post is shoved all the way
    back to the left side of the tree (with no explanation).

    Google turns what should be this:

    A
    B
    C
    D
    E

    into this:

    A
    B
    C
    D
    E

    You can no longer tell that E replies to D.

    Again, it has nothing to do with snipping, just with how to indent to
    show which post the next post replies to. Snipping doesn't affect the
    thread-tree/message-list display.

    I think that Jim Beam's suggestion to start a new thread is one good
    solution to problem of a thread that's gotten so deeply indented on a
    tree display that following it becomes difficult.

    Broken news reader is not a sufficient reason to break
    off a thread and start a new one. News readers are out
    there that can handle unbounded trees without there
    brain exploding. A program module for this purpose is
    an undergraduate homework assignment.

    --
    Michael Press

  7. Michael Press said:

    In article
    <[email hidden]>,

    Don't forget to top post!

    Quoted message said:
    Quoted message said:

    On Fri, 16 Feb 2007 10:19:12 -0600, Tim McNamara
    <[email hidden]> wrote:

    Quoted message said:
    Quoted message said:

    In article <[email hidden]>,
    jim beam <[email hidden]> wrote:

    Quoted message said:
    Quoted message said:

    > since the previous thread is now too deep for me to follow on a
    > threaded newsreader, here's a summary of the debate so far:

    Quoted message said:
    Quoted message said:

    Indeed, it was. "Snipping" extraneous material is the standard way to
    manage this, but you and a couple of others don't do it.

    Quoted message said:

    [snip]

    Quoted message said:

    Dear Tim,

    Quoted message said:

    You've misunderstood the problem, which has nothing to do with
    snipping.

    Quoted message said:

    When there are so many replies to replies, the thread tree becomes
    unwieldy. Many threaded newsreaders have a limit to how they display
    the tree and stop indenting at some point.

    Quoted message said:

    For example, my older version of Forte Free Agent just stops indenting
    after some limit--I think that it's 32 replies-to-replies.

    Quoted message said:

    Instead of this, where C is the 32nd reply to a reply

    Quoted message said:

    A
    B
    C
    L
    M
    N
    X
    Y
    Z

    Quoted message said:

    It shows this:

    Quoted message said:

    A
    B
    C
    L
    M
    N
    X
    Y
    Z

    Quoted message said:

    You can no longer tell at a glance that Y and Z reply to X.

    Quoted message said:

    If you look at the original thread in Google Groups, you can see
    another way of handling an excessively deep thread tree:

    Quoted message said:

    http://groups.google.com/group/rec.bicycles.tech/browse_frm/thread/87...

    Quoted message said:

    Page down to posts 272/273, and you'll see a section where there are
    lots of huge indentations. My post 273 is a reply to post 272 above
    it, from dabac, but the indentation doesn't show this.

    Quoted message said:

    Instead, dabac's post has been indented as far to the right as
    Google's display allows, so my reply to his post is shoved all the way
    back to the left side of the tree (with no explanation).

    Quoted message said:

    Google turns what should be this:

    Quoted message said:

    A
    B
    C
    D
    E

    Quoted message said:

    into this:

    Quoted message said:

    A
    B
    C
    D
    E

    Quoted message said:

    You can no longer tell that E replies to D.

    Quoted message said:

    Again, it has nothing to do with snipping, just with how to indent to
    show which post the next post replies to. Snipping doesn't affect the
    thread-tree/message-list display.

    Quoted message said:

    I think that Jim Beam's suggestion to start a new thread is one good
    solution to problem of a thread that's gotten so deeply indented on a
    tree display that following it becomes difficult.

    Broken news reader is not a sufficient reason to break
    off a thread and start a new one. News readers are out
    there that can handle unbounded trees without there
    brain exploding. A program module for this purpose is
    an undergraduate homework assignment.

    --
    Michael Press- Hide quoted text -

    - Show quoted text -

  8. On Sat, 17 Feb 2007 11:44:32 -0700, carlfogel wrote:

    <snip>

    Quoted message said:

    Dear Tim,

    Again, you've misunderstood the point.

    Even after you zero the measuring device, the thickness of the spoke
    affects the tension reading.

    In a small span, the greater bending resistance of the thicker spoke
    means that the same deflection requires more force against greater
    tension than with a thinner spoke.

    The same thing is true when the spoke is made of different materials.

    That's why the DT Swiss tables show different tensions for the same
    deflection for spokes of different thickness and material. See the
    chart at the bottom of this pdf:

    http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    As you can see, when the zeroed DT Swiss micrometer is used, a spoke
    witht 1000 newtons of tension will deflect 1.77, 2.19, or 3.00 mm,
    depending on whether it is a 1.8, 2.0, or 2.34 mm thick straight steel
    spoke.

    If it is a 2.0 mm straight titanium spoke, it will deflect 2.10 mm
    instead of the 2.19 mm of the 2.0 mm straight steel spoke at the same
    tension.


    That may be true for the DT-Swiss tensiometer, but Jobst's tensiometer is of
    a different design. It's not clear to me why you or "jim beam" think that
    Jobst's equations should accommodate the results taken from a tensiometer
    that he considers to be an inferior design.

    See the first post on this page:

    http://yarchive.net/bike/tensiometer.html

    Jobst says:

    "For this reason I designed a precision gauge that measures from the
    support side and uses a dial micrometer so that small deflections can
    be used. It also zeroes on the spoke and, because it uses such a
    small deflection, bending stiffness over a 100mm span is small enough
    to make the difference between 1.6 and 2.0mm diameter spokes
    insignificant."

    It seems to me that the implication of that is that the spoke diameter can
    be left out of his equations because they are insignificant when the
    measurements are taken with his instrument. Do you have some reason to
    disagree with that?

  9. In article <[email hidden]>,

    Gary Young said:
    Tim McNamara said:

    In article <[email hidden]>,

    jim beam said:

    Tim McNamara wrote:
    > In article <[email hidden]>,
    > jim beam <[email hidden]> wrote:
    >
    >> Tim McNamara wrote: <snip [censored]>
    >>> Apparently the same problems apply to metallurgical education.
    >> really? so why is it poor old jimmy beam, the uneducated one,
    >> that has to ask questions about a long time "peer reviewed"
    >> bible - "the bicycle wheel"? if y'all are so damned educated,
    >> smart and engineering professorial, how come y'all didn't
    >> figure out:
    >>
    >> 1. that the tensiometer math doesn't take account of spoke
    >> gauge?
    >
    > Given that Jobst has commented on this in the newsgroup when
    > discussing the shortcomings in tensiometer design and usage, it
    > seems that you are not in fact the only one.

    after i brought it up. but that's not the point. the point is,
    the other so-called "engineers" here haven't bothered to read or
    think about this stuff. nor did other self-appointed "experts".
    either they read it and decided it wasn't worth the hassle since
    jobst is always /so/ hostile to comment. or it was missed. did
    /you/ spot it? [rhetorical]

    Don't break your arm patting yourself on the back, jim.

    Don't give him too much credit. The page you linked to shows that
    Jobst was discussing this before "jim beam" graced our presence.

    Yup.

  10. In article <[email hidden]>,

    Quoted message said:
    Tim McNamara said:

    In article <[email hidden]>,

    jim beam said:

    Tim McNamara wrote:
    > In article <[email hidden]>,
    > jim beam <[email hidden]> wrote:
    >
    >> Tim McNamara wrote: <snip [censored]>
    >>> Apparently the same problems apply to metallurgical education.
    >> really? so why is it poor old jimmy beam, the uneducated one,
    >> that has to ask questions about a long time "peer reviewed"
    >> bible - "the bicycle wheel"? if y'all are so damned educated,
    >> smart and engineering professorial, how come y'all didn't
    >> figure out:
    >>
    >> 1. that the tensiometer math doesn't take account of spoke
    >> gauge?
    >
    > Given that Jobst has commented on this in the newsgroup when
    > discussing the shortcomings in tensiometer design and usage, it
    > seems that you are not in fact the only one.

    after i brought it up. but that's not the point. the point is,
    the other so-called "engineers" here haven't bothered to read or
    think about this stuff. nor did other self-appointed "experts".
    either they read it and decided it wasn't worth the hassle since
    jobst is always /so/ hostile to comment. or it was missed. did
    /you/ spot it? [rhetorical]

    Don't break your arm patting yourself on the back, jim. As for
    whether I would have spotted it, the answer is actually "yes." See,
    back when I was in school, I was taught to zero out measurement
    tools whenever possible. I zero out my tensiometer before use to
    reduce the measurement error as much as possible. Been doing it for
    years before you started posting here, because it was so bloody
    obvious.

    [snip]

    Dear Tim,

    Again, you've misunderstood the point.

    Carl, I did understand the point. But thank you for your concern.

    Quoted message said:

    Even after you zero the measuring device, the thickness of the spoke
    affects the tension reading.

    The bending stiffness of the spoke under no tension affects the reading
    as does the diameter of the spoke. And the force used by the
    tensiometer also affects the tension reading, since by bending the spoke
    into a curve the measurement raises the spoke tension. Friction and
    binding can also play a part depending on the design.

    Quoted message said:

    In a small span, the greater bending resistance of the thicker spoke
    means that the same deflection requires more force against greater
    tension than with a thinner spoke.

    The same thing is true when the spoke is made of different materials.

    That's why the DT Swiss tables show different tensions for the same
    deflection for spokes of different thickness and material.

    <snip> Umm, Carl? Duh.

    Let's go back to what I wrote: "I zero out my tensiometer before use to
    reduce the measurement error as much as possible." Let's emphasize that
    "as much as possible" part. As a person professionally devoted to the
    use of the English language, I am sure you understand the meaning "as
    much as possible." I have long understood that zeroing out my
    tensiometer only reduces the error of measurement, it does not eliminate
    it.

  11. Tim McNamara said:

    In article <[email hidden]>,

    Quoted message said:
    Tim McNamara said:

    In article <[email hidden]>,
    jim beam <[email hidden]> wrote:

    > Tim McNamara wrote:
    > > In article <[email hidden]>,
    > > jim beam <[email hidden]> wrote:
    > >
    > >> Tim McNamara wrote: <snip [censored]>
    > >>> Apparently the same problems apply to metallurgical education.
    > >> really? so why is it poor old jimmy beam, the uneducated one,
    > >> that has to ask questions about a long time "peer reviewed"
    > >> bible - "the bicycle wheel"? if y'all are so damned educated,
    > >> smart and engineering professorial, how come y'all didn't
    > >> figure out:
    > >>
    > >> 1. that the tensiometer math doesn't take account of spoke
    > >> gauge?
    > >
    > > Given that Jobst has commented on this in the newsgroup when
    > > discussing the shortcomings in tensiometer design and usage, it
    > > seems that you are not in fact the only one.
    >
    > after i brought it up. but that's not the point. the point is,
    > the other so-called "engineers" here haven't bothered to read or
    > think about this stuff. nor did other self-appointed "experts".
    > either they read it and decided it wasn't worth the hassle since
    > jobst is always /so/ hostile to comment. or it was missed. did
    > /you/ spot it? [rhetorical]

    Don't break your arm patting yourself on the back, jim. As for
    whether I would have spotted it, the answer is actually "yes." See,
    back when I was in school, I was taught to zero out measurement
    tools whenever possible. I zero out my tensiometer before use to
    reduce the measurement error as much as possible. Been doing it for
    years before you started posting here, because it was so bloody
    obvious.

    [snip]

    Dear Tim,

    Again, you've misunderstood the point.

    Carl, I did understand the point. But thank you for your concern.

    Quoted message said:

    Even after you zero the measuring device, the thickness of the spoke
    affects the tension reading.

    The bending stiffness of the spoke under no tension affects the reading
    as does the diameter of the spoke. And the force used by the
    tensiometer also affects the tension reading, since by bending the spoke
    into a curve the measurement raises the spoke tension. Friction and
    binding can also play a part depending on the design.

    Quoted message said:

    In a small span, the greater bending resistance of the thicker spoke
    means that the same deflection requires more force against greater
    tension than with a thinner spoke.

    The same thing is true when the spoke is made of different materials.

    That's why the DT Swiss tables show different tensions for the same
    deflection for spokes of different thickness and material.

    <snip> Umm, Carl? Duh.

    Let's go back to what I wrote: "I zero out my tensiometer before use to
    reduce the measurement error as much as possible." Let's emphasize that
    "as much as possible" part. As a person professionally devoted to the
    use of the English language, I am sure you understand the meaning "as
    much as possible." I have long understood that zeroing out my
    tensiometer only reduces the error of measurement, it does not eliminate
    it.

    Dear Tim,

    I think that you missed the point again because you were too busy
    explaining how you didn't.

    Jim Beam's point, easily confirmed by reference to tables for any
    major micrometer-style spoke tension gauge, is that a 2mm spoke will
    deflect a different distance than a 1.8 mm spoke under the same
    deflection force because the different bending stiffness of the two
    spokes.

    The same is true of spokes with the same dimensions made of similar
    materials because the different materials have different bending
    strengths.

    Consider a straight-gauge 2.0 mm spoke.

    If it's made of stainless steel, the second column of the DT Swiss
    table shows that a deflection of 1.76 mm means a spoke tension of 600
    newtons.

    If it's made of titanium, the last column of the DT Swiss table shows
    that a deflection of 1.75 mm means a spoke tension of 700 newtons.

    Read across the table at the bottom at any level, and you'll see that
    the same spoke tension produces different deflection, according to the
    spoke material and cross-section.

    http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    Before explaining again how right you are, see if you can summarize
    the point that I'm saying you've missed.

    Cheers,

    Carl Fogel

  12. In article <[email hidden]>,

    Quoted message said:
    Quoted message said:

    Note that the final factor in the expression, F/h, doesn't actually
    depend on F. That is, reducing the applied F also reduces h
    proportionally (for given setup). The rest of the terms depend only
    on spoke parameters. The point being, reducing the applied force
    (which Jobst's device does) doesn't reduce the effect of a change in
    spoke diameter.

    Quoted message said:

    How does this end up under the disk brake heading? Anyway, you may be
    right. I visualized the shape of the bend at the inflection points
    changing with force (displacement). Are you sure the radius of
    curvature remains the same and is small in comparison to the test
    span?

    The shape of the bend scales linearly with test force, down to a
    flat line for a force of zero. Any radii go inversely with this.

    Quoted message said:

    I may have been relying on false impressions in that respect.
    In any event, the calibration curves for 1.8 and 2.0mm diameter spokes
    with this instrument are close enough to ignore the difference.

    Around the tensions of interest (~100kgF), it's about a 12kgF
    difference between 2.0mm and 1.8mm spokes with the same measured
    displacement. The difference between 1.8mm and 1.6mm spokes is about
    another 10kgF.

    -Luns

  13. Luns Tee said:
    Quoted message said:
    Quoted message said:

    Note that the final factor in the expression, F/h, doesn't
    actually depend on F. That is, reducing the applied F also
    reduces h proportionally (for given setup). The rest of the terms
    depend only on spoke parameters. The point being, reducing the
    applied force (which Jobst's device does) doesn't reduce the
    effect of a change in spoke diameter.

    Quoted message said:
    Quoted message said:

    How does this end up under the disk brake heading? Anyway, you may
    be right. I visualized the shape of the bend at the inflection
    points changing with force (displacement). Are you sure the radius
    of curvature remains the same and is small in comparison to the
    test span?

    Quoted message said:

    The shape of the bend scales linearly with test force, down to a
    flat line for a force of zero. Any radii go inversely with this.

    Quoted message said:
    Quoted message said:

    I may have been relying on false impressions in that respect. In
    any event, the calibration curves for 1.8 and 2.0mm diameter spokes
    with this instrument are close enough to ignore the difference.

    Quoted message said:

    Around the tensions of interest (~100kgF), it's about a 12kgF
    difference between 2.0mm and 1.8mm spokes with the same measured
    displacement. The difference between 1.8mm and 1.6mm spokes is
    about another 10kgF.

    Not to overlook the effect of added spoke tension from a large test
    force, such as the one by Hozan that sees tension in slack spokes of a
    20" wheel.

    Jobst Brandt

  14. In article <[email hidden]>,

    Quoted message said:
    Tim McNamara said:

    In article <[email hidden]>,

    Quoted message said:

    On Sat, 17 Feb 2007 09:38:24 -0600, Tim McNamara
    <[email hidden]> wrote:

    >In article <[email hidden]>,
    > jim beam <[email hidden]> wrote:
    >
    >> Tim McNamara wrote:
    >> > In article <[email hidden]>,
    >> > jim beam <[email hidden]> wrote:
    >> >
    >> >> Tim McNamara wrote: <snip [censored]>
    >> >>> Apparently the same problems apply to metallurgical
    >> >>> education.
    >> >> really? so why is it poor old jimmy beam, the uneducated
    >> >> one, that has to ask questions about a long time "peer
    >> >> reviewed" bible - "the bicycle wheel"? if y'all are so
    >> >> damned educated, smart and engineering professorial, how
    >> >> come y'all didn't figure out:
    >> >>
    >> >> 1. that the tensiometer math doesn't take account of spoke
    >> >> gauge?
    >> >
    >> > Given that Jobst has commented on this in the newsgroup when
    >> > discussing the shortcomings in tensiometer design and usage,
    >> > it seems that you are not in fact the only one.
    >>
    >> after i brought it up. but that's not the point. the point
    >> is, the other so-called "engineers" here haven't bothered to
    >> read or think about this stuff. nor did other self-appointed
    >> "experts". either they read it and decided it wasn't worth the
    >> hassle since jobst is always /so/ hostile to comment. or it
    >> was missed. did /you/ spot it? [rhetorical]
    >
    >Don't break your arm patting yourself on the back, jim. As for
    >whether I would have spotted it, the answer is actually "yes."
    >See, back when I was in school, I was taught to zero out
    >measurement tools whenever possible. I zero out my tensiometer
    >before use to reduce the measurement error as much as possible.
    >Been doing it for years before you started posting here, because
    >it was so bloody obvious.

    [snip]

    Dear Tim,

    Again, you've misunderstood the point.

    Carl, I did understand the point. But thank you for your concern.

    Quoted message said:

    Even after you zero the measuring device, the thickness of the
    spoke affects the tension reading.

    The bending stiffness of the spoke under no tension affects the
    reading as does the diameter of the spoke. And the force used by
    the tensiometer also affects the tension reading, since by bending
    the spoke into a curve the measurement raises the spoke tension.
    Friction and binding can also play a part depending on the design.

    Quoted message said:

    In a small span, the greater bending resistance of the thicker
    spoke means that the same deflection requires more force against
    greater tension than with a thinner spoke.

    The same thing is true when the spoke is made of different
    materials.

    That's why the DT Swiss tables show different tensions for the
    same deflection for spokes of different thickness and material.

    <snip> Umm, Carl? Duh.

    Let's go back to what I wrote: "I zero out my tensiometer before
    use to reduce the measurement error as much as possible." Let's
    emphasize that "as much as possible" part. As a person
    professionally devoted to the use of the English language, I am sure
    you understand the meaning "as much as possible." I have long
    understood that zeroing out my tensiometer only reduces the error of
    measurement, it does not eliminate it.

    Dear Tim,

    I think that you missed the point again because you were too busy
    explaining how you didn't.

    OK, Carl, have it your way.

    Quoted message said:

    Jim Beam's point, easily confirmed by reference to tables for any
    major micrometer-style spoke tension gauge, is that a 2mm spoke will
    deflect a different distance than a 1.8 mm spoke under the same
    deflection force because the different bending stiffness of the two
    spokes.

    Yes.

    Quoted message said:

    The same is true of spokes with the same dimensions made of similar
    materials because the different materials have different bending
    strengths.

    Yes.

    Quoted message said:

    Consider a straight-gauge 2.0 mm spoke.

    OK.

    Quoted message said:

    If it's made of stainless steel, the second column of the DT Swiss
    table shows that a deflection of 1.76 mm means a spoke tension of 600
    newtons.

    OK.

    Quoted message said:

    If it's made of titanium, the last column of the DT Swiss table shows
    that a deflection of 1.75 mm means a spoke tension of 700 newtons.

    OK.

    Quoted message said:

    Read across the table at the bottom at any level, and you'll see that
    the same spoke tension produces different deflection, according to
    the spoke material and cross-section.

    http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    Is there something in this that you think is mysterious?

    Quoted message said:

    Before explaining again how right you are, see if you can summarize
    the point that I'm saying you've missed.

    No, thanks, Carl. I'm not really interested in passing an English test
    at this stage of my life, nor do I need your passing grade for my life
    to be complete. Feel free to believe that I understand, or to
    disbelieve.

  15. (Luns Tee) said:

    In article <[email hidden]>,

    Quoted message said:
    Quoted message said:

    Note that the final factor in the expression, F/h, doesn't actually
    depend on F. That is, reducing the applied F also reduces h
    proportionally (for given setup). The rest of the terms depend only
    on spoke parameters. The point being, reducing the applied force
    (which Jobst's device does) doesn't reduce the effect of a change in
    spoke diameter.

    Quoted message said:

    How does this end up under the disk brake heading? Anyway, you may be
    right. I visualized the shape of the bend at the inflection points
    changing with force (displacement). Are you sure the radius of
    curvature remains the same and is small in comparison to the test
    span?

    The shape of the bend scales linearly with test force, down to a
    flat line for a force of zero. Any radii go inversely with this.

    Quoted message said:

    I may have been relying on false impressions in that respect.
    In any event, the calibration curves for 1.8 and 2.0mm diameter spokes
    with this instrument are close enough to ignore the difference.

    Around the tensions of interest (~100kgF), it's about a 12kgF
    difference between 2.0mm and 1.8mm spokes with the same measured
    displacement. The difference between 1.8mm and 1.6mm spokes is about
    another 10kgF.

    Note that reducing the applied force, which Jobst's device can do
    because of the higher precision measurement he makes, does improve the
    situation because it reduces the actual change in spoke tension due to
    the applied load. That is seen in the equation I posted elsewhere in
    this thread, though it didn't include F (the force) but the measured
    spoke deflection (which is approximately proportional to the force).

    --
    Joe Riel

  16. Tim McNamara said:

    In article <[email hidden]>,

    Quoted message said:
    Tim McNamara said:

    In article <[email hidden]>,
    [email hidden] wrote:

    > On Sat, 17 Feb 2007 09:38:24 -0600, Tim McNamara
    > <[email hidden]> wrote:
    >
    > >In article <[email hidden]>,
    > > jim beam <[email hidden]> wrote:
    > >
    > >> Tim McNamara wrote:
    > >> > In article <[email hidden]>,
    > >> > jim beam <[email hidden]> wrote:
    > >> >
    > >> >> Tim McNamara wrote: <snip [censored]>
    > >> >>> Apparently the same problems apply to metallurgical
    > >> >>> education.
    > >> >> really? so why is it poor old jimmy beam, the uneducated
    > >> >> one, that has to ask questions about a long time "peer
    > >> >> reviewed" bible - "the bicycle wheel"? if y'all are so
    > >> >> damned educated, smart and engineering professorial, how
    > >> >> come y'all didn't figure out:
    > >> >>
    > >> >> 1. that the tensiometer math doesn't take account of spoke
    > >> >> gauge?
    > >> >
    > >> > Given that Jobst has commented on this in the newsgroup when
    > >> > discussing the shortcomings in tensiometer design and usage,
    > >> > it seems that you are not in fact the only one.
    > >>
    > >> after i brought it up. but that's not the point. the point
    > >> is, the other so-called "engineers" here haven't bothered to
    > >> read or think about this stuff. nor did other self-appointed
    > >> "experts". either they read it and decided it wasn't worth the
    > >> hassle since jobst is always /so/ hostile to comment. or it
    > >> was missed. did /you/ spot it? [rhetorical]
    > >
    > >Don't break your arm patting yourself on the back, jim. As for
    > >whether I would have spotted it, the answer is actually "yes."
    > >See, back when I was in school, I was taught to zero out
    > >measurement tools whenever possible. I zero out my tensiometer
    > >before use to reduce the measurement error as much as possible.
    > >Been doing it for years before you started posting here, because
    > >it was so bloody obvious.
    >
    > [snip]
    >
    > Dear Tim,
    >
    > Again, you've misunderstood the point.

    Carl, I did understand the point. But thank you for your concern.

    > Even after you zero the measuring device, the thickness of the
    > spoke affects the tension reading.

    The bending stiffness of the spoke under no tension affects the
    reading as does the diameter of the spoke. And the force used by
    the tensiometer also affects the tension reading, since by bending
    the spoke into a curve the measurement raises the spoke tension.
    Friction and binding can also play a part depending on the design.

    > In a small span, the greater bending resistance of the thicker
    > spoke means that the same deflection requires more force against
    > greater tension than with a thinner spoke.
    >
    > The same thing is true when the spoke is made of different
    > materials.
    >
    > That's why the DT Swiss tables show different tensions for the
    > same deflection for spokes of different thickness and material.

    <snip> Umm, Carl? Duh.

    Let's go back to what I wrote: "I zero out my tensiometer before
    use to reduce the measurement error as much as possible." Let's
    emphasize that "as much as possible" part. As a person
    professionally devoted to the use of the English language, I am sure
    you understand the meaning "as much as possible." I have long
    understood that zeroing out my tensiometer only reduces the error of
    measurement, it does not eliminate it.

    Dear Tim,

    I think that you missed the point again because you were too busy
    explaining how you didn't.

    OK, Carl, have it your way.

    Quoted message said:

    Jim Beam's point, easily confirmed by reference to tables for any
    major micrometer-style spoke tension gauge, is that a 2mm spoke will
    deflect a different distance than a 1.8 mm spoke under the same
    deflection force because the different bending stiffness of the two
    spokes.

    Yes.

    Quoted message said:

    The same is true of spokes with the same dimensions made of similar
    materials because the different materials have different bending
    strengths.

    Yes.

    Quoted message said:

    Consider a straight-gauge 2.0 mm spoke.

    OK.

    Quoted message said:

    If it's made of stainless steel, the second column of the DT Swiss
    table shows that a deflection of 1.76 mm means a spoke tension of 600
    newtons.

    OK.

    Quoted message said:

    If it's made of titanium, the last column of the DT Swiss table shows
    that a deflection of 1.75 mm means a spoke tension of 700 newtons.

    OK.

    Quoted message said:

    Read across the table at the bottom at any level, and you'll see that
    the same spoke tension produces different deflection, according to
    the spoke material and cross-section.

    http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    Is there something in this that you think is mysterious?

    Quoted message said:

    Before explaining again how right you are, see if you can summarize
    the point that I'm saying you've missed.

    No, thanks, Carl. I'm not really interested in passing an English test
    at this stage of my life, nor do I need your passing grade for my life
    to be complete. Feel free to believe that I understand, or to
    disbelieve.

    Dear Tim,

    I think that you may understand now.

    You didn't seem to understand before.

    Cheers,

    Carl Fogel

  17. In article <[email hidden]>,

    Quoted message said:
    Tim McNamara said:

    In article <[email hidden]>,

    Quoted message said:

    On Sat, 17 Feb 2007 17:09:03 -0600, Tim McNamara
    <[email hidden]> wrote:

    >In article <[email hidden]>,
    > [email hidden] wrote:
    >
    >> On Sat, 17 Feb 2007 09:38:24 -0600, Tim McNamara
    >> <[email hidden]> wrote:
    >>
    >> >In article <[email hidden]>,
    >> > jim beam <[email hidden]> wrote:
    >> >
    >> >> Tim McNamara wrote:
    >> >> > In article <[email hidden]>,
    >> >> > jim beam <[email hidden]> wrote:
    >> >> >
    >> >> >> Tim McNamara wrote: <snip [censored]>
    >> >> >>> Apparently the same problems apply to metallurgical
    >> >> >>> education.
    >> >> >> really? so why is it poor old jimmy beam, the uneducated
    >> >> >> one, that has to ask questions about a long time "peer
    >> >> >> reviewed" bible - "the bicycle wheel"? if y'all are so
    >> >> >> damned educated, smart and engineering professorial, how
    >> >> >> come y'all didn't figure out:
    >> >> >>
    >> >> >> 1. that the tensiometer math doesn't take account of spoke
    >> >> >> gauge?
    >> >> >
    >> >> > Given that Jobst has commented on this in the newsgroup when
    >> >> > discussing the shortcomings in tensiometer design and usage,
    >> >> > it seems that you are not in fact the only one.
    >> >>
    >> >> after i brought it up. but that's not the point. the point
    >> >> is, the other so-called "engineers" here haven't bothered to
    >> >> read or think about this stuff. nor did other self-appointed
    >> >> "experts". either they read it and decided it wasn't worth the
    >> >> hassle since jobst is always /so/ hostile to comment. or it
    >> >> was missed. did /you/ spot it? [rhetorical]
    >> >
    >> >Don't break your arm patting yourself on the back, jim. As for
    >> >whether I would have spotted it, the answer is actually "yes."
    >> >See, back when I was in school, I was taught to zero out
    >> >measurement tools whenever possible. I zero out my tensiometer
    >> >before use to reduce the measurement error as much as possible.
    >> >Been doing it for years before you started posting here, because
    >> >it was so bloody obvious.
    >>
    >> [snip]
    >>
    >> Dear Tim,
    >>
    >> Again, you've misunderstood the point.
    >
    >Carl, I did understand the point. But thank you for your concern.
    >
    >> Even after you zero the measuring device, the thickness of the
    >> spoke affects the tension reading.
    >
    >The bending stiffness of the spoke under no tension affects the
    >reading as does the diameter of the spoke. And the force used by
    >the tensiometer also affects the tension reading, since by bending
    >the spoke into a curve the measurement raises the spoke tension.
    >Friction and binding can also play a part depending on the design.
    >
    >> In a small span, the greater bending resistance of the thicker
    >> spoke means that the same deflection requires more force against
    >> greater tension than with a thinner spoke.
    >>
    >> The same thing is true when the spoke is made of different
    >> materials.
    >>
    >> That's why the DT Swiss tables show different tensions for the
    >> same deflection for spokes of different thickness and material.
    >
    ><snip> Umm, Carl? Duh.
    >
    >Let's go back to what I wrote: "I zero out my tensiometer before
    >use to reduce the measurement error as much as possible." Let's
    >emphasize that "as much as possible" part. As a person
    >professionally devoted to the use of the English language, I am sure
    >you understand the meaning "as much as possible." I have long
    >understood that zeroing out my tensiometer only reduces the error of
    >measurement, it does not eliminate it.

    Dear Tim,

    I think that you missed the point again because you were too busy
    explaining how you didn't.

    OK, Carl, have it your way.

    Quoted message said:

    Jim Beam's point, easily confirmed by reference to tables for any
    major micrometer-style spoke tension gauge, is that a 2mm spoke will
    deflect a different distance than a 1.8 mm spoke under the same
    deflection force because the different bending stiffness of the two
    spokes.

    Yes.

    Quoted message said:

    The same is true of spokes with the same dimensions made of similar
    materials because the different materials have different bending
    strengths.

    Yes.

    Quoted message said:

    Consider a straight-gauge 2.0 mm spoke.

    OK.

    Quoted message said:

    If it's made of stainless steel, the second column of the DT Swiss
    table shows that a deflection of 1.76 mm means a spoke tension of 600
    newtons.

    OK.

    Quoted message said:

    If it's made of titanium, the last column of the DT Swiss table shows
    that a deflection of 1.75 mm means a spoke tension of 700 newtons.

    OK.

    Quoted message said:

    Read across the table at the bottom at any level, and you'll see that
    the same spoke tension produces different deflection, according to
    the spoke material and cross-section.

    http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    Is there something in this that you think is mysterious?

    Quoted message said:

    Before explaining again how right you are, see if you can summarize
    the point that I'm saying you've missed.

    No, thanks, Carl. I'm not really interested in passing an English test
    at this stage of my life, nor do I need your passing grade for my life
    to be complete. Feel free to believe that I understand, or to
    disbelieve.

    Dear Tim,

    I think that you may understand now.

    You didn't seem to understand before.

    My understanding has not changed.

  18. Tim McNamara said:

    In article <[email hidden]>,

    Quoted message said:
    Tim McNamara said:

    In article <[email hidden]>,
    [email hidden] wrote:

    > On Sat, 17 Feb 2007 17:09:03 -0600, Tim McNamara
    > <[email hidden]> wrote:
    >
    > >In article <[email hidden]>,
    > > [email hidden] wrote:
    > >
    > >> On Sat, 17 Feb 2007 09:38:24 -0600, Tim McNamara
    > >> <[email hidden]> wrote:
    > >>
    > >> >In article <[email hidden]>,
    > >> > jim beam <[email hidden]> wrote:
    > >> >
    > >> >> Tim McNamara wrote:
    > >> >> > In article <[email hidden]>,
    > >> >> > jim beam <[email hidden]> wrote:
    > >> >> >
    > >> >> >> Tim McNamara wrote: <snip [censored]>
    > >> >> >>> Apparently the same problems apply to metallurgical
    > >> >> >>> education.
    > >> >> >> really? so why is it poor old jimmy beam, the uneducated
    > >> >> >> one, that has to ask questions about a long time "peer
    > >> >> >> reviewed" bible - "the bicycle wheel"? if y'all are so
    > >> >> >> damned educated, smart and engineering professorial, how
    > >> >> >> come y'all didn't figure out:
    > >> >> >>
    > >> >> >> 1. that the tensiometer math doesn't take account of spoke
    > >> >> >> gauge?
    > >> >> >
    > >> >> > Given that Jobst has commented on this in the newsgroup when
    > >> >> > discussing the shortcomings in tensiometer design and usage,
    > >> >> > it seems that you are not in fact the only one.
    > >> >>
    > >> >> after i brought it up. but that's not the point. the point
    > >> >> is, the other so-called "engineers" here haven't bothered to
    > >> >> read or think about this stuff. nor did other self-appointed
    > >> >> "experts". either they read it and decided it wasn't worth the
    > >> >> hassle since jobst is always /so/ hostile to comment. or it
    > >> >> was missed. did /you/ spot it? [rhetorical]
    > >> >
    > >> >Don't break your arm patting yourself on the back, jim. As for
    > >> >whether I would have spotted it, the answer is actually "yes."
    > >> >See, back when I was in school, I was taught to zero out
    > >> >measurement tools whenever possible. I zero out my tensiometer
    > >> >before use to reduce the measurement error as much as possible.
    > >> >Been doing it for years before you started posting here, because
    > >> >it was so bloody obvious.
    > >>
    > >> [snip]
    > >>
    > >> Dear Tim,
    > >>
    > >> Again, you've misunderstood the point.
    > >
    > >Carl, I did understand the point. But thank you for your concern.
    > >
    > >> Even after you zero the measuring device, the thickness of the
    > >> spoke affects the tension reading.
    > >
    > >The bending stiffness of the spoke under no tension affects the
    > >reading as does the diameter of the spoke. And the force used by
    > >the tensiometer also affects the tension reading, since by bending
    > >the spoke into a curve the measurement raises the spoke tension.
    > >Friction and binding can also play a part depending on the design.
    > >
    > >> In a small span, the greater bending resistance of the thicker
    > >> spoke means that the same deflection requires more force against
    > >> greater tension than with a thinner spoke.
    > >>
    > >> The same thing is true when the spoke is made of different
    > >> materials.
    > >>
    > >> That's why the DT Swiss tables show different tensions for the
    > >> same deflection for spokes of different thickness and material.
    > >
    > ><snip> Umm, Carl? Duh.
    > >
    > >Let's go back to what I wrote: "I zero out my tensiometer before
    > >use to reduce the measurement error as much as possible." Let's
    > >emphasize that "as much as possible" part. As a person
    > >professionally devoted to the use of the English language, I am sure
    > >you understand the meaning "as much as possible." I have long
    > >understood that zeroing out my tensiometer only reduces the error of
    > >measurement, it does not eliminate it.
    >
    > Dear Tim,
    >
    > I think that you missed the point again because you were too busy
    > explaining how you didn't.

    OK, Carl, have it your way.

    > Jim Beam's point, easily confirmed by reference to tables for any
    > major micrometer-style spoke tension gauge, is that a 2mm spoke will
    > deflect a different distance than a 1.8 mm spoke under the same
    > deflection force because the different bending stiffness of the two
    > spokes.

    Yes.

    > The same is true of spokes with the same dimensions made of similar
    > materials because the different materials have different bending
    > strengths.

    Yes.

    > Consider a straight-gauge 2.0 mm spoke.

    OK.

    > If it's made of stainless steel, the second column of the DT Swiss
    > table shows that a deflection of 1.76 mm means a spoke tension of 600
    > newtons.

    OK.

    > If it's made of titanium, the last column of the DT Swiss table shows
    > that a deflection of 1.75 mm means a spoke tension of 700 newtons.

    OK.

    > Read across the table at the bottom at any level, and you'll see that
    > the same spoke tension produces different deflection, according to
    > the spoke material and cross-section.
    >
    > http://www.dtswiss.com/data/files/MAN_EN_51202133804.pdf

    Is there something in this that you think is mysterious?

    > Before explaining again how right you are, see if you can summarize
    > the point that I'm saying you've missed.

    No, thanks, Carl. I'm not really interested in passing an English test
    at this stage of my life, nor do I need your passing grade for my life
    to be complete. Feel free to believe that I understand, or to
    disbelieve.

    Dear Tim,

    I think that you may understand now.

    You didn't seem to understand before.

    My understanding has not changed.

    Dear Tim,

    Which of these comments in the current thread best describes your
    understanding?

    "In any event, the calibration curves for 1.8 and 2.0mm diameter
    spokes with this instrument are close enough to ignore the
    difference."

    --Jobst Brandt

    "Around the tensions of interest (~100kgF), it's about a 12kgF
    difference between 2.0mm and 1.8mm spokes with the same measured
    displacement. The difference between 1.8mm and 1.6mm spokes is about
    another 10kgF."

    --Luns Tee

    http://groups.google.com/group/rec.bicycles.tech/msg/8ceb0ad42888be7c

    Cheers,

    Carl Fogel

  19. In article said:

    Joe Riel <[email hidden]> writes:

    (1) T = 1/4*(F/h)*(L - 3*L0) where LO=sqrt(EI/T)

    Quoted message said:

    Solving (1) for T is a pain, since its a cubic.

    My napkin from lunch tells me:

    T = FL/(6h)*(1+cos(x))

    where x=2/3*acos(-9/L*sqrt(3*h*EI/(FL)))

    -G. Cardano (as subtle as it is useless)

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