Cycling Equipment · Public discussion

correction for jobst

Started by jim beam · · Last activity · 10 posts · 542 views

This thread is locked and is currently read-only.

Thread navigation

Jump through the discussion

Go to the original post, the replies on this page, or the latest preserved contribution.

Thread details

What we know about this thread

Original section
Cycling Equipment
Published
24 December 2006
Last activity
25 December 2006
Original author
jim beam
Posts
10
Discussion status
Public discussion
Total views
542
Views / 30 days
0

The navigation and discussion metadata provide context. Posts remain in their original chronological order.

Showing posts 1–10 of 10
Posts remain in their original chronological order.

Text size
  1. while reluctant to start an epic journey i have no intention of trying
    to finish [that of correcting the whole jobstian catalog of errors] the
    following is commentary on a topic recently debated, but which remains
    uncorrected in the "faq's" and which continues to mislead casual readers.

    from:
    http://sheldonbrown.com/brandt/stress-relieving.html

    Quoted message said:

    From: Jobst Brandt Date: November 29, 1999

    It appears that the process of stress relieving is obscure to many if
    not most people, because after seeming to have made it clear,
    comments like the above surface. Spokes are cold formed from wire
    that is (at least DT) as hard and work hardened as it can become.

    not true. spoke wire, when fully hardened, is in the range 1,500Nmm^-2.
    spoke wire when actually used in spokes is in the range 900/1,000Nmm^-2
    in 2mm sections, and 1,100/1,300Nmm^-2 in the butted sections.

    Quoted message said:

    Tensioning does not further harden spokes, there being no plastic
    deformation. Besides, wire ductility is important in both forming
    spokes and in use.

    that is true, but note that plastic deformation is required by
    definition if there is to be "stress relief".

    Quoted message said:


    The coiled wire from which spokes are made is straightened by running
    it first between rollers staggered in X and then in Y, the wire
    moving in the Z direction.

    true. it straightens the wire.

    Quoted message said:

    Reverse bending acts as a degausser,

    "like", not "as". [something of a red herring.]

    Quoted message said:

    having ever diminishing excursions that affect ever shallower depths
    of the wire. This stress relieves the wire while removing the curl of
    being shipped in a coil.

    can't say that. it straightens it for sure. whether any residual
    stress is relieved is not shown.

    Quoted message said:

    If it had no curl, releasing its free end on
    the spool would allow it to uncoil explosively into a huge birds
    nest.

    true, but irrelevant.

    Quoted message said:


    Wire is cut into suitable lengths, the first operation being to cold
    form a spoke head onto one end with one axial blow of a die, after
    which the spoke is cut to a specific length before rolling the thread
    and bending a 100 degree elbow.

    well, 95 degree, but let's not quibble.

    Quoted message said:


    Threads, head, and elbow, contain metal that was plastically deformed
    (beyond yield) as well as metal that was elastically deformed, each
    having elastic memory.

    no, there is no "memory". there is elastic deformation and plastic
    deformation.

    Quoted message said:

    In these transitions, parts that yielded and
    ones that did not conflict, each wanting to return to or stay in a
    different shape.

    that's elasticity, not memory.

    Quoted message said:

    This is why a spoke bent by hand springs back only
    partially when released.

    that's because it was only partially deformed. the springback is due to
    elasticity.

    Quoted message said:


    On lacing spokes into a wheel, elbows are often additionally bent
    (brought to yield),

    on the recommendation of that author...

    Quoted message said:

    thus remaining at or exceeding yield stress
    during tensioning.

    which is something spoke manufacturers recommend against.

    Quoted message said:

    Threads also have internal tensile stress besides
    local compressive stress at the threads.

    that would be residual stress from cold rolling the threads.

    Quoted message said:

    The thread core is already
    in tension from the lengthening effect of thread rolling

    thread rolling doesn't lengthen. if it did, threads would not "rise" to
    greater diameter than the feed wire - which is precisely what happens.

    Quoted message said:

    and its
    stress only increases with tensioning.

    to some extent, but which is benign in practice. no statistically
    significant number of fatigue cracks /ever/ initiate internally, so
    increasing internal tension has no bearing on fatigue.

    Quoted message said:


    Therefore, spokes in a newly built wheel have locations where stress
    is near yield, some more so than others.

    if there's residual stress. but that is not shown, only presumed.

    Quoted message said:

    Because fatigue endurance of
    a metal at or near the yield stress is short, cyclic loads in such
    spokes will cause failures at high stress points.

    in a simplistic level, that's true. however, fatigue cracks only
    initiate at surface features like blemishes, "orange peel" and tiny
    inclusions. regions where there maybe high residual stress are not the
    regions of the spoke where fatigue initiates, therefore this simplistic
    assumption does not hold.

    Quoted message said:

    In normal use, a
    wheel only unloads spokes,

    if you include "normal use" to mean *never* getting out of the saddle on
    a hill. /that/ action means lateral loading on wheels which can
    significantly /increase/ spoke tension, not just decrease it.

    Quoted message said:

    but with spokes near yield, even these
    stress cycles readily cause fatigue failures.

    true that higher stress cycling increases fatigue.

    Quoted message said:

    Only the lightest
    riders on smooth roads might be spared failures with a wheel whose
    spokes have not been stress relieved.

    translation: "here be dragons." truth is, use of a name brand high
    quality spoke will do more for fatigue life than any form of weight loss
    program.

    Quoted message said:


    Stress relieving to relax these high stress points is accomplished by
    over-stressing them in order to erase their memory.

    there is no "memory". if there is residual stress, it's a local elastic
    strain field. that is not a memory effect.

    Quoted message said:

    It is not done to
    bed the spokes into the hub, as is often stated.

    except that if it's not done, spokes continue to bed into the hub while
    the wheel is first being ridden and the wheel quickly goes significantly
    out of true.

    Quoted message said:

    Bedding-in occurs
    sufficiently from tension.

    incorrect. tension in spokes increases as well as decreases. it is
    essential therefore to ensure that during the build, spokes are bedded
    in at tension at or above that seen in service to prevent further
    bedding in sending the wheel out of true.

    Quoted message said:

    However, stretching spoke pairs with a
    strong grasp at midspan, can momentarily increased tension by 50% to
    100%.

    untrue due to rim distortion. actual measurements [carl fogel] show
    spoke tension increase to be of the same magnitude as the force of
    squeeze. a 110N [50lb] squeeze on a spoke tensioned to 1,000N will
    increase tension in the order of 10%, not 100%.

    [this is because the rim is not perfectly rigid. tension increase
    causes the rim to distort thus bringing the two ends of the wire closer
    together and so reducing the theoretical tension increase that could be
    achieved.]

    Quoted message said:

    Because spokes are usually tensioned no higher than 1/3 their
    yield stress, this operation has no effect on the spoke as a whole,
    affecting only the small high stress zones where spokes are near
    yield. By stretching them, these zones relax below yield by as much
    as the overload.

    incorrect. plastic deformation is only that which occurs above the
    hookes law region of the stress/strain graph. a material fundamentally
    cannot relax below yield from yield alone - only relaxation of the
    applied stress can achieve that.

    Quoted message said:


    Stress relieving with a light grasp of spoke pairs is worthless,

    which may be true, but it's unproven, as is squeezing with a stronger grasp!

    Quoted message said:

    as
    is bouncing the wheel or bending it in a partially opened drawer.
    Pressing axially on the hub, while supporting the rim, requires a
    force larger than is manually possible but is effective for spoking
    machines (except the left side rear spokes that would collapse the
    rim).

    this operation does /not/ collapse the rim. [this touches on the
    misconception that wheels collapse when spokes go slack - they don't,
    only when local loading in the rim goes above yield. spoke slackness
    alone can't achieve that.]

    Quoted message said:

    Another not recommend method, is laying the wheel on the floor
    and walking on it with tennis shoes, carefully stepping on each pair
    of crossed spokes. The method works but bends the rim and is
    difficult to control.

    it only bends the rim if excess force is used, or the rim is close to
    buckling due to spoke tension being too high.

    the best method is to press the axle of the hub against a block of wood
    while grasping two opposite sides of the rim, rotating a little, then
    repeating until all spokes have been seated. repeat as necessary as the
    wheel is progressively tensioned to manufacturer spec and trued.

    Quoted message said:


    It is STRESS RELIEVING! Even though people insist on calling it
    pre-stressing or seating-in.

    the only demonstrated effect is seating in - it's visible on wheel
    disassembly. testing to prove any assertion about residual stress or
    its relief has not been performed. indeed, recent testing [carl fogel]
    indicates that any residual stress in a spoke is relieved at tension
    levels significantly below that of the initial wheel build. the process
    called "stress relief" therefore /cannot/ be achieving anything more
    than spoke seating.

    Quoted message said:

    The wheel is already prestressed when
    tensioned.

    yes, but that's a red herring - it's applied stress, not residual stress.

  2. Howdy Mr beam!

    jim beam said:

    while reluctant to start an epic journey i have no intention of trying
    to finish [that of correcting the whole jobstian catalog of errors] the
    following is commentary on a topic recently debated, but which remains
    uncorrected in the "faq's" and which continues to mislead casual readers.

    I don't think this explanation of Brandt's why the stress relieving
    process works is useful, but your criticism is quite acute. I suppose
    the article criticized is intended to explain why the stress relieving
    procedure works, but would not be much surprised to learn otherwise. I
    think the process of stress relieving is well enough explained in Mr
    Brandt's book and elsewhere, relating to the construction of bicycle
    wheels.

    Quoted message said:

    from:
    http://sheldonbrown.com/brandt/stress-relieving.html

    Quoted message said:

    From: Jobst Brandt Date: November 29, 1999

    It appears that the process of stress relieving is obscure to many if
    not most people, because after seeming to have made it clear,
    comments like the above surface. Spokes are cold formed from wire
    that is (at least DT) as hard and work hardened as it can become.

    What comment?

    Quoted message said:

    not true. spoke wire, when fully hardened, is in the range 1,500Nmm^-2.
    spoke wire when actually used in spokes is in the range 900/1,000Nmm^-2
    in 2mm sections, and 1,100/1,300Nmm^-2 in the butted sections.

    Are you saying that it's commercially feasible to produce harder
    spokes, or that the wire softens a bit as it is processed? If the
    latter, it's mox nix. If the former, that's interesting, could you
    provide information on sources and prices?

    Why does stress relieving work? Surfaces, including metal, are
    irregular unless a crystal surface. Metals are crystalline, composed
    of many tiny crystals. So they are irregular. The metal forming
    process smoothes out to a large extent these irregularities, the layman
    calls them smooth; but closer observation with a microscope reveals
    irregularities, holes and projections. Particularlly near the elbow
    bend, it's very difficult to polish these irregularities out. And the
    holes in the hub and rim are going to be fun to remove irregularities
    from.

    So, as the wheel is brought near final tension and true, in some cases
    these irregularities on the spoke and rim or hub catch each other, and
    instead of the nipple rotating another eighth of a turn around the
    spoke, the spoke twists. While this may to some extent produce the
    desired shortening of the distance from hub to rim, it will shortly be
    undone by the next sharp increase/decrease of tension upon that
    particular spoke. The stress relieving procedure provides the tension
    spike, the spoke returns to the untwisted state, a trifle longer, and
    the wheel goes out of true. Another round of truing and stress
    relieving seems indicated, and another, until satisfied.

    Don't be evil. Eschew obfuscation.

    Dale Benjamin

  3. jim beam said:

    while reluctant to start an epic journey i have no intention of trying
    to finish [that of correcting the whole jobstian catalog of errors] the
    following is commentary on a topic recently debated, but which remains
    uncorrected in the "faq's" and which continues to mislead casual readers.

    from:
    http://sheldonbrown.com/brandt/stress-relieving.html

    Quoted message said:

    From: Jobst Brandt Date: November 29, 1999

    It appears that the process of stress relieving is obscure to many if
    not most people, because after seeming to have made it clear,
    comments like the above surface. Spokes are cold formed from wire
    that is (at least DT) as hard and work hardened as it can become.

    not true. spoke wire, when fully hardened, is in the range 1,500Nmm^-2.
    spoke wire when actually used in spokes is in the range 900/1,000Nmm^-2
    in 2mm sections, and 1,100/1,300Nmm^-2 in the butted sections.

    Quoted message said:

    Tensioning does not further harden spokes, there being no plastic
    deformation. Besides, wire ductility is important in both forming
    spokes and in use.

    that is true, but note that plastic deformation is required by
    definition if there is to be "stress relief".

    Quoted message said:


    The coiled wire from which spokes are made is straightened by running
    it first between rollers staggered in X and then in Y, the wire
    moving in the Z direction.

    true. it straightens the wire.

    Quoted message said:

    Reverse bending acts as a degausser,

    "like", not "as". [something of a red herring.]

    Quoted message said:

    having ever diminishing excursions that affect ever shallower depths
    of the wire. This stress relieves the wire while removing the curl of
    being shipped in a coil.

    can't say that. it straightens it for sure. whether any residual
    stress is relieved is not shown.

    Quoted message said:

    If it had no curl, releasing its free end on
    the spool would allow it to uncoil explosively into a huge birds
    nest.

    true, but irrelevant.

    Quoted message said:


    Wire is cut into suitable lengths, the first operation being to cold
    form a spoke head onto one end with one axial blow of a die, after
    which the spoke is cut to a specific length before rolling the thread
    and bending a 100 degree elbow.

    well, 95 degree, but let's not quibble.

    Quoted message said:


    Threads, head, and elbow, contain metal that was plastically deformed
    (beyond yield) as well as metal that was elastically deformed, each
    having elastic memory.

    no, there is no "memory". there is elastic deformation and plastic
    deformation.

    Quoted message said:

    In these transitions, parts that yielded and
    ones that did not conflict, each wanting to return to or stay in a
    different shape.

    that's elasticity, not memory.

    Quoted message said:

    This is why a spoke bent by hand springs back only
    partially when released.

    that's because it was only partially deformed. the springback is due to
    elasticity.

    Quoted message said:


    On lacing spokes into a wheel, elbows are often additionally bent
    (brought to yield),

    on the recommendation of that author...

    Quoted message said:

    thus remaining at or exceeding yield stress
    during tensioning.

    which is something spoke manufacturers recommend against.

    Quoted message said:

    Threads also have internal tensile stress besides
    local compressive stress at the threads.

    that would be residual stress from cold rolling the threads.

    Quoted message said:

    The thread core is already
    in tension from the lengthening effect of thread rolling

    thread rolling doesn't lengthen. if it did, threads would not "rise" to
    greater diameter than the feed wire - which is precisely what happens.

    Quoted message said:

    and its
    stress only increases with tensioning.

    to some extent, but which is benign in practice. no statistically
    significant number of fatigue cracks /ever/ initiate internally, so
    increasing internal tension has no bearing on fatigue.

    Quoted message said:


    Therefore, spokes in a newly built wheel have locations where stress
    is near yield, some more so than others.

    if there's residual stress. but that is not shown, only presumed.

    Quoted message said:

    Because fatigue endurance of
    a metal at or near the yield stress is short, cyclic loads in such
    spokes will cause failures at high stress points.

    in a simplistic level, that's true. however, fatigue cracks only
    initiate at surface features like blemishes, "orange peel" and tiny
    inclusions. regions where there maybe high residual stress are not the
    regions of the spoke where fatigue initiates, therefore this simplistic
    assumption does not hold.

    Quoted message said:

    In normal use, a
    wheel only unloads spokes,

    if you include "normal use" to mean *never* getting out of the saddle on
    a hill. /that/ action means lateral loading on wheels which can
    significantly /increase/ spoke tension, not just decrease it.

    Quoted message said:

    but with spokes near yield, even these
    stress cycles readily cause fatigue failures.

    true that higher stress cycling increases fatigue.

    Quoted message said:

    Only the lightest
    riders on smooth roads might be spared failures with a wheel whose
    spokes have not been stress relieved.

    translation: "here be dragons." truth is, use of a name brand high
    quality spoke will do more for fatigue life than any form of weight loss
    program.

    Quoted message said:


    Stress relieving to relax these high stress points is accomplished by
    over-stressing them in order to erase their memory.

    there is no "memory". if there is residual stress, it's a local elastic
    strain field. that is not a memory effect.

    Quoted message said:

    It is not done to
    bed the spokes into the hub, as is often stated.

    except that if it's not done, spokes continue to bed into the hub while
    the wheel is first being ridden and the wheel quickly goes significantly
    out of true.

    Quoted message said:

    Bedding-in occurs
    sufficiently from tension.

    incorrect. tension in spokes increases as well as decreases. it is
    essential therefore to ensure that during the build, spokes are bedded
    in at tension at or above that seen in service to prevent further
    bedding in sending the wheel out of true.

    Quoted message said:

    However, stretching spoke pairs with a
    strong grasp at midspan, can momentarily increased tension by 50% to
    100%.

    untrue due to rim distortion. actual measurements [carl fogel] show
    spoke tension increase to be of the same magnitude as the force of
    squeeze. a 110N [50lb] squeeze on a spoke tensioned to 1,000N will
    increase tension in the order of 10%, not 100%.

    [this is because the rim is not perfectly rigid. tension increase
    causes the rim to distort thus bringing the two ends of the wire closer
    together and so reducing the theoretical tension increase that could be
    achieved.]

    Quoted message said:

    Because spokes are usually tensioned no higher than 1/3 their
    yield stress, this operation has no effect on the spoke as a whole,
    affecting only the small high stress zones where spokes are near
    yield. By stretching them, these zones relax below yield by as much
    as the overload.

    incorrect. plastic deformation is only that which occurs above the
    hookes law region of the stress/strain graph. a material fundamentally
    cannot relax below yield from yield alone - only relaxation of the
    applied stress can achieve that.

    Quoted message said:


    Stress relieving with a light grasp of spoke pairs is worthless,

    which may be true, but it's unproven, as is squeezing with a stronger grasp!

    Quoted message said:

    as
    is bouncing the wheel or bending it in a partially opened drawer.
    Pressing axially on the hub, while supporting the rim, requires a
    force larger than is manually possible but is effective for spoking
    machines (except the left side rear spokes that would collapse the
    rim).

    this operation does /not/ collapse the rim. [this touches on the
    misconception that wheels collapse when spokes go slack - they don't,
    only when local loading in the rim goes above yield. spoke slackness
    alone can't achieve that.]

    Quoted message said:

    Another not recommend method, is laying the wheel on the floor
    and walking on it with tennis shoes, carefully stepping on each pair
    of crossed spokes. The method works but bends the rim and is
    difficult to control.

    it only bends the rim if excess force is used, or the rim is close to
    buckling due to spoke tension being too high.

    the best method is to press the axle of the hub against a block of wood
    while grasping two opposite sides of the rim, rotating a little, then
    repeating until all spokes have been seated. repeat as necessary as the
    wheel is progressively tensioned to manufacturer spec and trued.

    Quoted message said:


    It is STRESS RELIEVING! Even though people insist on calling it
    pre-stressing or seating-in.

    the only demonstrated effect is seating in - it's visible on wheel
    disassembly. testing to prove any assertion about residual stress or
    its relief has not been performed. indeed, recent testing [carl fogel]
    indicates that any residual stress in a spoke is relieved at tension
    levels significantly below that of the initial wheel build. the process
    called "stress relief" therefore /cannot/ be achieving anything more
    than spoke seating.

    Quoted message said:

    The wheel is already prestressed when
    tensioned.

    yes, but that's a red herring - it's applied stress, not residual stress.

    Hey, Bro-

    Do you realize, with every new message, how closely you associate
    yourself with Jobst?

    If you have something independent to say, go write yourself a book.

    Nicholas

  4. Nicholas Grieco said:
    jim beam said:

    while reluctant to start an epic journey i have no intention of trying
    to finish [that of correcting the whole jobstian catalog of errors] the
    following is commentary on a topic recently debated, but which remains
    uncorrected in the "faq's" and which continues to mislead casual readers.

    from:
    http://sheldonbrown.com/brandt/stress-relieving.html

    Quoted message said:

    From: Jobst Brandt Date: November 29, 1999

    It appears that the process of stress relieving is obscure to many if
    not most people, because after seeming to have made it clear,
    comments like the above surface. Spokes are cold formed from wire
    that is (at least DT) as hard and work hardened as it can become.

    not true. spoke wire, when fully hardened, is in the range 1,500Nmm^-2.
    spoke wire when actually used in spokes is in the range 900/1,000Nmm^-2
    in 2mm sections, and 1,100/1,300Nmm^-2 in the butted sections.

    Quoted message said:

    Tensioning does not further harden spokes, there being no plastic
    deformation. Besides, wire ductility is important in both forming
    spokes and in use.

    that is true, but note that plastic deformation is required by
    definition if there is to be "stress relief".

    Quoted message said:


    The coiled wire from which spokes are made is straightened by running
    it first between rollers staggered in X and then in Y, the wire
    moving in the Z direction.

    true. it straightens the wire.

    Quoted message said:

    Reverse bending acts as a degausser,

    "like", not "as". [something of a red herring.]

    Quoted message said:

    having ever diminishing excursions that affect ever shallower depths
    of the wire. This stress relieves the wire while removing the curl of
    being shipped in a coil.

    can't say that. it straightens it for sure. whether any residual
    stress is relieved is not shown.

    Quoted message said:

    If it had no curl, releasing its free end on
    the spool would allow it to uncoil explosively into a huge birds
    nest.

    true, but irrelevant.

    Quoted message said:


    Wire is cut into suitable lengths, the first operation being to cold
    form a spoke head onto one end with one axial blow of a die, after
    which the spoke is cut to a specific length before rolling the thread
    and bending a 100 degree elbow.

    well, 95 degree, but let's not quibble.

    Quoted message said:


    Threads, head, and elbow, contain metal that was plastically deformed
    (beyond yield) as well as metal that was elastically deformed, each
    having elastic memory.

    no, there is no "memory". there is elastic deformation and plastic
    deformation.

    Quoted message said:

    In these transitions, parts that yielded and
    ones that did not conflict, each wanting to return to or stay in a
    different shape.

    that's elasticity, not memory.

    Quoted message said:

    This is why a spoke bent by hand springs back only
    partially when released.

    that's because it was only partially deformed. the springback is due to
    elasticity.

    Quoted message said:


    On lacing spokes into a wheel, elbows are often additionally bent
    (brought to yield),

    on the recommendation of that author...

    Quoted message said:

    thus remaining at or exceeding yield stress
    during tensioning.

    which is something spoke manufacturers recommend against.

    Quoted message said:

    Threads also have internal tensile stress besides
    local compressive stress at the threads.

    that would be residual stress from cold rolling the threads.

    Quoted message said:

    The thread core is already
    in tension from the lengthening effect of thread rolling

    thread rolling doesn't lengthen. if it did, threads would not "rise" to
    greater diameter than the feed wire - which is precisely what happens.

    Quoted message said:

    and its
    stress only increases with tensioning.

    to some extent, but which is benign in practice. no statistically
    significant number of fatigue cracks /ever/ initiate internally, so
    increasing internal tension has no bearing on fatigue.

    Quoted message said:


    Therefore, spokes in a newly built wheel have locations where stress
    is near yield, some more so than others.

    if there's residual stress. but that is not shown, only presumed.

    Quoted message said:

    Because fatigue endurance of
    a metal at or near the yield stress is short, cyclic loads in such
    spokes will cause failures at high stress points.

    in a simplistic level, that's true. however, fatigue cracks only
    initiate at surface features like blemishes, "orange peel" and tiny
    inclusions. regions where there maybe high residual stress are not the
    regions of the spoke where fatigue initiates, therefore this simplistic
    assumption does not hold.

    Quoted message said:

    In normal use, a
    wheel only unloads spokes,

    if you include "normal use" to mean *never* getting out of the saddle on
    a hill. /that/ action means lateral loading on wheels which can
    significantly /increase/ spoke tension, not just decrease it.

    Quoted message said:

    but with spokes near yield, even these
    stress cycles readily cause fatigue failures.

    true that higher stress cycling increases fatigue.

    Quoted message said:

    Only the lightest
    riders on smooth roads might be spared failures with a wheel whose
    spokes have not been stress relieved.

    translation: "here be dragons." truth is, use of a name brand high
    quality spoke will do more for fatigue life than any form of weight loss
    program.

    Quoted message said:


    Stress relieving to relax these high stress points is accomplished by
    over-stressing them in order to erase their memory.

    there is no "memory". if there is residual stress, it's a local elastic
    strain field. that is not a memory effect.

    Quoted message said:

    It is not done to
    bed the spokes into the hub, as is often stated.

    except that if it's not done, spokes continue to bed into the hub while
    the wheel is first being ridden and the wheel quickly goes significantly
    out of true.

    Quoted message said:

    Bedding-in occurs
    sufficiently from tension.

    incorrect. tension in spokes increases as well as decreases. it is
    essential therefore to ensure that during the build, spokes are bedded
    in at tension at or above that seen in service to prevent further
    bedding in sending the wheel out of true.

    Quoted message said:

    However, stretching spoke pairs with a
    strong grasp at midspan, can momentarily increased tension by 50% to
    100%.

    untrue due to rim distortion. actual measurements [carl fogel] show
    spoke tension increase to be of the same magnitude as the force of
    squeeze. a 110N [50lb] squeeze on a spoke tensioned to 1,000N will
    increase tension in the order of 10%, not 100%.

    [this is because the rim is not perfectly rigid. tension increase
    causes the rim to distort thus bringing the two ends of the wire closer
    together and so reducing the theoretical tension increase that could be
    achieved.]

    Quoted message said:

    Because spokes are usually tensioned no higher than 1/3 their
    yield stress, this operation has no effect on the spoke as a whole,
    affecting only the small high stress zones where spokes are near
    yield. By stretching them, these zones relax below yield by as much
    as the overload.

    incorrect. plastic deformation is only that which occurs above the
    hookes law region of the stress/strain graph. a material fundamentally
    cannot relax below yield from yield alone - only relaxation of the
    applied stress can achieve that.

    Quoted message said:


    Stress relieving with a light grasp of spoke pairs is worthless,

    which may be true, but it's unproven, as is squeezing with a stronger grasp!

    Quoted message said:

    as
    is bouncing the wheel or bending it in a partially opened drawer.
    Pressing axially on the hub, while supporting the rim, requires a
    force larger than is manually possible but is effective for spoking
    machines (except the left side rear spokes that would collapse the
    rim).

    this operation does /not/ collapse the rim. [this touches on the
    misconception that wheels collapse when spokes go slack - they don't,
    only when local loading in the rim goes above yield. spoke slackness
    alone can't achieve that.]

    Quoted message said:

    Another not recommend method, is laying the wheel on the floor
    and walking on it with tennis shoes, carefully stepping on each pair
    of crossed spokes. The method works but bends the rim and is
    difficult to control.

    it only bends the rim if excess force is used, or the rim is close to
    buckling due to spoke tension being too high.

    the best method is to press the axle of the hub against a block of wood
    while grasping two opposite sides of the rim, rotating a little, then
    repeating until all spokes have been seated. repeat as necessary as the
    wheel is progressively tensioned to manufacturer spec and trued.

    Quoted message said:


    It is STRESS RELIEVING! Even though people insist on calling it
    pre-stressing or seating-in.

    the only demonstrated effect is seating in - it's visible on wheel
    disassembly. testing to prove any assertion about residual stress or
    its relief has not been performed. indeed, recent testing [carl fogel]
    indicates that any residual stress in a spoke is relieved at tension
    levels significantly below that of the initial wheel build. the process
    called "stress relief" therefore /cannot/ be achieving anything more
    than spoke seating.

    Quoted message said:

    The wheel is already prestressed when
    tensioned.

    yes, but that's a red herring - it's applied stress, not residual stress.

    Hey, Bro-

    Do you realize, with every new message, how closely you associate
    yourself with Jobst?

    If you have something independent to say, go write yourself a book.

    Nicholas

    Why should he write a book? He's relying on well-established
    principles that any anonymous engineer with a broken shift key can
    understand.

    -Vee

  5. dalebenjamin said:

    Howdy Mr beam!

    jim beam said:

    while reluctant to start an epic journey i have no intention of trying
    to finish [that of correcting the whole jobstian catalog of errors] the
    following is commentary on a topic recently debated, but which remains
    uncorrected in the "faq's" and which continues to mislead casual readers.

    I don't think this explanation of Brandt's why the stress relieving
    process works is useful, but your criticism is quite acute. I suppose
    the article criticized is intended to explain why the stress relieving
    procedure works, but would not be much surprised to learn otherwise. I
    think the process of stress relieving is well enough explained in Mr
    Brandt's book and elsewhere, relating to the construction of bicycle
    wheels.

    the physical procedure is described, but the theory proposed is based on
    a number of gross misconceptions.

    Quoted message said:


    Quoted message said:

    from:
    http://sheldonbrown.com/brandt/stress-relieving.html

    Quoted message said:

    From: Jobst Brandt Date: November 29, 1999

    It appears that the process of stress relieving is obscure to many if
    not most people, because after seeming to have made it clear,
    comments like the above surface. Spokes are cold formed from wire
    that is (at least DT) as hard and work hardened as it can become.

    What comment?

    Quoted message said:

    not true. spoke wire, when fully hardened, is in the range 1,500Nmm^-2.
    spoke wire when actually used in spokes is in the range 900/1,000Nmm^-2
    in 2mm sections, and 1,100/1,300Nmm^-2 in the butted sections.

    Are you saying that it's commercially feasible to produce harder
    spokes, or that the wire softens a bit as it is processed? If the
    latter, it's mox nix. If the former, that's interesting, could you
    provide information on sources and prices?

    no dude, metal becomes harder as it gets cold worked, including spoke
    wire. it is not "as hard and work hardened as it can become" as the
    numbers indicate. if the wire were fully hardened, then subject to
    processing, it would not have sufficient ductility to sustain any
    additional work and would effectively be brittle in use.

    Quoted message said:

    Why does stress relieving work? Surfaces, including metal, are
    irregular unless a crystal surface. Metals are crystalline, composed
    of many tiny crystals. So they are irregular. The metal forming
    process smoothes out to a large extent these irregularities, the layman
    calls them smooth; but closer observation with a microscope reveals
    irregularities, holes and projections. Particularlly near the elbow
    bend, it's very difficult to polish these irregularities out. And the
    holes in the hub and rim are going to be fun to remove irregularities
    from.

    eh?

    Quoted message said:


    So, as the wheel is brought near final tension and true, in some cases
    these irregularities on the spoke and rim or hub catch each other, and
    instead of the nipple rotating another eighth of a turn around the
    spoke, the spoke twists. While this may to some extent produce the
    desired shortening of the distance from hub to rim, it will shortly be
    undone by the next sharp increase/decrease of tension upon that
    particular spoke. The stress relieving procedure provides the tension
    spike, the spoke returns to the untwisted state, a trifle longer, and
    the wheel goes out of true. Another round of truing and stress
    relieving seems indicated, and another, until satisfied.

    you're confused.

    Quoted message said:


    Don't be evil. Eschew obfuscation.

    Dale Benjamin

  6. In article <[email hidden]>,

    jim beam said:

    while reluctant to start an epic journey i have no intention of
    trying to finish [that of correcting the whole jobstian catalog of
    errors]

    [censored], jim. You have dedicated your existence in this newsgroup for
    years to being Jobst's gadfly.

  7. Tim McNamara said:

    In article <[email hidden]>,

    jim beam said:

    while reluctant to start an epic journey i have no intention of
    trying to finish [that of correcting the whole jobstian catalog of
    errors]

    [censored], jim. You have dedicated your existence in this newsgroup for
    years to being Jobst's gadfly.

    don't tell me, let me guess the contents of your library:

    1. the earth is flat - roger meinsensible
    2. my mind is closed - i. r. ignorant
    3. i love smoke up my kilt - gill t. perv
    4. er, that's it.

  8. "dalebenjamin" <[email hidden]> wrote in message
    news:[email hidden]...

    (snip)
    ....

    Quoted message said:

    latter, it's mox nix


    ....

    Quoted message said:

    Dale Benjamin

    Es macht nichts!

    Cal

  9. jim beam said:
    dalebenjamin said:

    Howdy Mr beam!

    jim beam said:

    while reluctant to start an epic journey i have no intention of trying
    to finish [that of correcting the whole jobstian catalog of errors] the
    following is commentary on a topic recently debated, but which remains
    uncorrected in the "faq's" and which continues to mislead casual readers.

    I don't think this explanation of Brandt's why the stress relieving
    process works is useful, but your criticism is quite acute. I suppose
    the article criticized is intended to explain why the stress relieving
    procedure works, but would not be much surprised to learn otherwise. I
    think the process of stress relieving is well enough explained in Mr
    Brandt's book and elsewhere, relating to the construction of bicycle
    wheels.

    the physical procedure is described, but the theory proposed is based on
    a number of gross misconceptions.

    I thnk the theory is based upon a number of somethings better left
    unmentioned. Theory, hypothesis, better left unmentioned.

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

    from:
    http://sheldonbrown.com/brandt/stress-relieving.html

    > From: Jobst Brandt Date: November 29, 1999
    >
    > It appears that the process of stress relieving is obscure to many if
    > not most people, because after seeming to have made it clear,
    > comments like the above surface. Spokes are cold formed from wire
    > that is (at least DT) as hard and work hardened as it can become.

    What comment?

    Is any comment to be regarded as doubt of a supposed revealed truth?
    While it's clear enough to me that Mr. Brandt anguished over every word
    and letter of the book, that is far from sufficient grounds to imagine
    the book already perfect.

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

    not true. spoke wire, when fully hardened, is in the range 1,500Nmm^-2.
    spoke wire when actually used in spokes is in the range 900/1,000Nmm^-2
    in 2mm sections, and 1,100/1,300Nmm^-2 in the butted sections.

    Are you saying that it's commercially feasible to produce harder
    spokes, or that the wire softens a bit as it is processed? If the
    latter, it's mox nix. If the former, that's interesting, could you
    provide information on sources and prices?

    no dude, metal becomes harder as it gets cold worked, including spoke
    wire. it is not "as hard and work hardened as it can become" as the
    numbers indicate. if the wire were fully hardened, then subject to
    processing, it would not have sufficient ductility to sustain any
    additional work and would effectively be brittle in use.

    So it es macht nichts, not practical to produce harder spokes that
    would be workable. Pardon my less than engineering school use of terms
    like 'hardness'.

    Quoted message said:
    Quoted message said:

    Why does stress relieving work? Surfaces, including metal, are
    irregular unless a crystal surface. Metals are crystalline, composed
    of many tiny crystals. So they are irregular. The metal forming
    process smoothes out to a large extent these irregularities, the layman
    calls them smooth; but closer observation with a microscope reveals
    irregularities, holes and projections. Particularlly near the elbow
    bend, it's very difficult to polish these irregularities out. And the
    holes in the hub and rim are going to be fun to remove irregularities
    from.

    eh?

    The reason the stress relieving procedure is effective is that metal
    surfaces, although appearing smooth to the unaided eye, are not
    perfectly smooth, as the surface of a crystal is. Metals are
    crystalline, composed of many tiny crystals. So they are irregular.
    The metal forming processes smoothes out to a large extent these
    irregularities, the layman calls them smooth; but closer observation
    with a microscope reveals irregularities, holes and projections.

    The nipple and spoke are subject to catch, the spoke twists with the
    nipple, rather than remaining straight.

    Quoted message said:
    Quoted message said:

    So, as the wheel is brought near final tension and true, in some cases
    these irregularities on the spoke and rim or hub catch each other, and
    instead of the nipple rotating another eighth of a turn around the
    spoke, the spoke twists. While this may to some extent produce the
    desired shortening of the distance from hub to rim, it will shortly be
    undone by the next sharp increase/decrease of tension upon that
    particular spoke. The stress relieving procedure provides the tension
    spike, the spoke returns to the untwisted state, a trifle longer, and
    the wheel goes out of true. Another round of truing and stress
    relieving seems indicated, and another, until satisfied.

    you're confused.

    Yes, we're all confused, mad to some extent. The comment does little
    to clarify areas of disagreement. An instant of entire clarity of mind
    is more often regarded as pathological than the contrary.

    Dale Benjamin

  10. In article <[email hidden]>,

    dalebenjamin said:

    I thnk the theory is based upon a number of somethings better left
    unmentioned. Theory, hypothesis, better left unmentioned.

    I think that you had better do some more research into the debates
    before you plunge into this and plow old ground all over again. This has
    been discussed to death hundreds of times in this newsgroup. jim beam
    is more bulldog like than most, having an unhealthy obsession with
    bringing Jobst down a peg or two, but as of yet he has failed to prove
    his criticisms. It's always interesting to me that the other mechanical
    engineers in this newsgroup don't agree with jim, but he never notices.

Active in the last 60 minutes

Active in this thread

0 users · 0 guests ·0 bots ·0 total

No signed-in users are active right now.

No known search crawlers active right now.