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Squirrels again

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Cycling Equipment
Published
17 December 2005
Last activity
20 December 2005
Original author
Andrew Lee
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  1. http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his friend on
    Mark's bike in last month's thread (except the bike is not a Habanero).

    I wonder what that fork is aluminum or carbon?

  2. Andrew Lee said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his friend on
    Mark's bike in last month's thread (except the bike is not a Habanero).

    I wonder what that fork is aluminum or carbon?

    They're back, they're bad, and they're fuzzy!

    Shoulda titled this thread "squirrels vs. forks!"

    Mark

  3. In article <[email hidden]>, Mark Janeba

    Quoted message said:
    Andrew Lee said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his friend on
    Mark's bike in last month's thread (except the bike is not a Habanero).

    I wonder what that fork is aluminum or carbon?

    They're back, they're bad, and they're fuzzy!

    Shoulda titled this thread "squirrels vs. forks!"

    Mark

    Aha, another reason to avoid boutique wheelsets! Would the squirrel
    have become lodged if the bike was rolling along on 3x 36 spoke hoops
    (stress relieved and tensioned as per The Bicycle Wheel by Jobst
    Brandt, of course)?

    Take care, if the PETA zealots catch wind of this then a phalanx of
    protesters decrying the inhumanity of paired spoke Bontragers will
    surely picket your LBS!

    What a fool I've been! All these years, stuffing my face with Vitamin M
    in the vain hope that Pammy Anderson, picketing the local McDonald's,
    would throw herself at me and possess herself of my Quarter Pounder. If
    I'd only known a Bontrager wheelset would do the trick.

  4. "Andrew Lee" <whatsupandrewathotmaildotcom> wrote in message
    news:[email hidden]...

    Quoted message said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his friend on
    Mark's bike in last month's thread (except the bike is not a Habanero).

    I wonder what that fork is aluminum or carbon?

    In the earlier thread some opined that a soft squirrel was not capable of
    causing this type of accident. I still think that there is enough substance
    to a squirrel to stop the front wheel. These photos look authentic enough
    and I would love to learn the details.

    For me, the really cool thing in these pictures is the broken fork. Since
    the tire will skid when the friction coefficient is exceeded, there must be
    a vertical force in excess of the combined rider and bike weight. I can't
    tell if it is carbon or not. If it is carbon, carbon forks often take 800
    lbs or so to break when loaded at the dropout. If the force is applied to
    the tire contact patch, the moment arm is roughly doubled and it requires a
    force on the order of 400 lbs to break the fork (some forks may be stronger
    or weaker). John Forester proposes how this might happen here:
    http://www.johnforester.com/Articles/BicycleEng/forkbend.htm
    I have looked at this type of failure before and tried to figure out the
    dynamics. I think it can occur but is very rare. I am not sure but a ductile
    (e.g steel) fork may perform better in this scenario than a more brittle
    (e.g carbon fiber) fork.

  5. Dan said:

    "Andrew Lee" <whatsupandrewathotmaildotcom> wrote in message
    news:[email hidden]...

    Quoted message said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his
    friend on Mark's bike in last month's thread (except the bike is not
    a Habanero). I wonder what that fork is aluminum or carbon?

    In the earlier thread some opined that a soft squirrel was not
    capable of causing this type of accident. I still think that there is
    enough substance to a squirrel to stop the front wheel. These photos
    look authentic enough and I would love to learn the details.

    For me, the really cool thing in these pictures is the broken fork. Since
    the tire will skid when the friction coefficient is exceeded,
    there must be a vertical force in excess of the combined rider and
    bike weight. I can't tell if it is carbon or not. If it is carbon,
    carbon forks often take 800 lbs or so to break when loaded at the
    dropout. If the force is applied to the tire contact patch, the
    moment arm is roughly doubled and it requires a force on the order of
    400 lbs to break the fork (some forks may be stronger or weaker).
    John Forester proposes how this might happen here:
    http://www.johnforester.com/Articles/BicycleEng/forkbend.htm I have looked
    at this type of failure before and tried to figure out
    the dynamics. I think it can occur but is very rare. I am not sure
    but a ductile (e.g steel) fork may perform better in this scenario
    than a more brittle (e.g carbon fiber) fork.

    It's very likely that it's a bonded aluminum fork.

    Part of the assumption about the squirrel was that the squirrel was a rigid
    body. As it passes between the fork legs and the spokes, the body is
    contorted such that it undergoes tension and not shear forces. The body is
    likely far stronger in that respect.

    The squirrel is also near the rim. If it were close to the hub, the chances
    of it being cut/torn/ripped rather than breaking the fork are higher.

    --
    Phil, Squid-in-Training

  6. Dan said:

    "Andrew Lee" <whatsupandrewathotmaildotcom> wrote in message
    news:[email hidden]...

    Quoted message said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his
    friend on Mark's bike in last month's thread (except the bike is not
    a Habanero). I wonder what that fork is aluminum or carbon?

    In the earlier thread some opined that a soft squirrel was not
    capable of causing this type of accident. I still think that there is
    enough substance to a squirrel to stop the front wheel. These photos
    look authentic enough and I would love to learn the details.

    For me, the really cool thing in these pictures is the broken fork. Since
    the tire will skid when the friction coefficient is exceeded,
    there must be a vertical force in excess of the combined rider and
    bike weight. I can't tell if it is carbon or not. If it is carbon,
    carbon forks often take 800 lbs or so to break when loaded at the
    dropout. If the force is applied to the tire contact patch, the
    moment arm is roughly doubled and it requires a force on the order of
    400 lbs to break the fork (some forks may be stronger or weaker).
    John Forester proposes how this might happen here:
    http://www.johnforester.com/Articles/BicycleEng/forkbend.htm I have looked
    at this type of failure before and tried to figure out
    the dynamics. I think it can occur but is very rare. I am not sure
    but a ductile (e.g steel) fork may perform better in this scenario
    than a more brittle (e.g carbon fiber) fork.

    Oh, and long live 32+ spoke count, squirrel-free wheels!
    --
    Phil, Squid-in-Training

  7. Dan said:

    In the earlier thread some opined that a soft squirrel was not capable of
    causing this type of accident. I still think that there is enough substance
    to a squirrel to stop the front wheel. These photos look authentic enough
    and I would love to learn the details.


    Cripes even a thick sock could stop a wheel dead if it got wedged in the right (or more appropriately very wrong place). The spokes holding are a lot more amazing to me than the rodent being strong enough!!

    Dan said:


    For me, the really cool thing in these pictures is the broken fork. Since
    the tire will skid when the friction coefficient is exceeded, there must be
    a vertical force in excess of the combined rider and bike weight. I can't
    tell if it is carbon or not. If it is carbon, carbon forks often take 800
    lbs or so to break when loaded at the dropout. If the force is applied to
    the tire contact patch, the moment arm is roughly doubled and it requires a
    force on the order of 400 lbs to break the fork (some forks may be stronger
    or weaker). John Forester proposes how this might happen here:
    http://www.johnforester.com/Articles/BicycleEng/forkbend.htm
    I have looked at this type of failure before and tried to figure out the
    dynamics. I think it can occur but is very rare. I am not sure but a ductile
    (e.g steel) fork may perform better in this scenario than a more brittle
    (e.g carbon fiber) fork.


    Oddly enough, to me it looks like the fork may have failed under tension at the bond between the fork arms and the fork crown (possibly CF epoxied into an alloy crown? )from the way the little critter rotated into it.

  8. It's times like this that I can't help but wonder if a Spinergy wheel
    wouldn't have resulted in a better (if more gory) outcome...

    - -
    These comments compliments of,
    Your Friendly Neighborhood Wheelman

    My web Site:
    http://geocities.com/czcorner

    To E-mail me:
    ChrisZCorner "at" webtv "dot" net

  9. Andrew Lee' whatsupandrewathotmaildotcom said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his friend on
    Mark's bike in last month's thread (except the bike is not a Habanero).

    If it was, I swear I'd move somewhere where there are no squirrels.
    Hey wait.. I already did! ;-)

    Quoted message said:

    I wonder what that fork is aluminum or carbon?

    It appears to be aluminum (seems like it "tore" rather than "broke"😉.
    Perhaps Mike J could fill us in (being the guru of all things Trek).

    I appreciate you posting that link - there were those who doubted the
    veracity of me and/or my buddy when I/he said that a large squirrel
    broke both legs on his Kestrel EMS fork.

    Mark Hickey
    Habanero Cycles
    http://www.habcycles.com
    Home of the $795 ti frame

  10. Mark Hickey said:

    I appreciate you posting that link - there were those who doubted the
    veracity of me and/or my buddy when I/he said that a large squirrel
    broke both legs on his Kestrel EMS fork.

    You're welcome. I was debating whether or not to bring up the subject
    again, but I did remember people doubting you on that...

    Andrew

  11. It did not for Dan Leikvold
    http://www.spfldcycling.org/QR/dec04-jan05.pdf
    He was using spinergy wheels when a squirrel ran into his front wheel
    14 months ago..
    He just went back to work last month, in a wheel chair.

    Chris Z The Wheelman said:

    It's times like this that I can't help but wonder if a Spinergy wheel
    wouldn't have resulted in a better (if more gory) outcome...

  12. Luke said:

    In article <[email hidden]>, Dan

    Quoted message said:

    For me, the really cool thing in these pictures is the broken fork. Since
    the tire will skid when the friction coefficient is exceeded, there must be
    a vertical force in excess of the combined rider and bike weight. I can't
    tell if it is carbon or not. If it is carbon, carbon forks often take 800
    lbs or so to break when loaded at the dropout. If the force is applied to
    the tire contact patch, the moment arm is roughly doubled and it requires a
    force on the order of 400 lbs to break the fork (some forks may be stronger
    or weaker).

    <snip>

    Add to your equations the impact of the recently deceased's
    deliverence: a kilo(?) travelling at nearly the speed of the bike/rider

    Closer to *twice* the speed of the bike and rider, if the squirrel is
    near the (top of the) rim.

    Quoted message said:

    applied in such a way as to leverage the force exerted by
    deacceleration.

    Yup, this is the nastiest sort of destructive force that forks *weren't*
    designed for.

    Mark

  13. "Mark Janeba" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Luke said:

    In article <[email hidden]>, Dan

    Quoted message said:

    For me, the really cool thing in these pictures is the broken fork.
    Since the tire will skid when the friction coefficient is exceeded, there
    must be a vertical force in excess of the combined rider and bike weight.
    I can't tell if it is carbon or not. If it is carbon, carbon forks often
    take 800 lbs or so to break when loaded at the dropout. If the force is
    applied to the tire contact patch, the moment arm is roughly doubled and
    it requires a force on the order of 400 lbs to break the fork (some forks
    may be stronger or weaker).

    <snip>

    Add to your equations the impact of the recently deceased's
    deliverence: a kilo(?) travelling at nearly the speed of the bike/rider

    Closer to *twice* the speed of the bike and rider, if the squirrel is near
    the (top of the) rim.

    Quoted message said:

    applied in such a way as to leverage the force exerted by
    deacceleration.

    Yup, this is the nastiest sort of destructive force that forks *weren't*
    designed for.

    An aero fork totally would have taken care of that squirrel 😉

    --
    Phil, Squid-in-Training

  14. Mark Janeba said:

    Luke wrote:

    Quoted message said:
    Quoted message said:

    Add to your equations the impact of the recently deceased's
    deliverence: a kilo(?) travelling at nearly the speed of the bike/rider

    Closer to *twice* the speed of the bike and rider, if the squirrel is
    near the (top of the) rim.

    But the squirrel is only moving a bit less than the forward speed of
    the bike relative to the fork (which is what matters).

    Quoted message said:
    Quoted message said:

    applied in such a way as to leverage the force exerted by
    deacceleration.

    Yup, this is the nastiest sort of destructive force that forks *weren't*
    designed for.

    Exactly - when you think about it, it's pretty much the "perfect
    storm" when it comes to destructive forces you can apply to a fork
    (full-on decelleration, with a "karate chop" to the back of the fork
    below the crown in the opposite direction).

    Mark Hickey
    Habanero Cycles
    http://www.habcycles.com
    Home of the $795 ti frame

  15. Phil said:

    "Mark Janeba" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Luke said:

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

    >For me, the really cool thing in these pictures is the broken fork.
    >Since the tire will skid when the friction coefficient is exceeded, there
    >must be a vertical force in excess of the combined rider and bike weight.
    >I can't tell if it is carbon or not. If it is carbon, carbon forks often
    >take 800 lbs or so to break when loaded at the dropout. If the force is
    >applied to the tire contact patch, the moment arm is roughly doubled and
    >it requires a force on the order of 400 lbs to break the fork (some forks
    >may be stronger or weaker).

    <snip>

    Add to your equations the impact of the recently deceased's
    deliverence: a kilo(?) travelling at nearly the speed of the bike/rider

    Closer to *twice* the speed of the bike and rider, if the squirrel is near
    the (top of the) rim.

    Quoted message said:

    applied in such a way as to leverage the force exerted by
    deacceleration.

    Yup, this is the nastiest sort of destructive force that forks *weren't*
    designed for.

    An aero fork totally would have taken care of that squirrel 😉

    Hah! Finally a use for the old Schwinn Varsity flatbladed forks - you
    could sharpen their trailing edges and never worry about squirrel
    destruction again!

    Mark

  16. Mark Hickey said:
    Mark Janeba said:

    Luke wrote:

    Quoted message said:
    Quoted message said:

    Add to your equations the impact of the recently deceased's
    deliverence: a kilo(?) travelling at nearly the speed of the bike/rider

    Closer to *twice* the speed of the bike and rider, if the squirrel is
    near the (top of the) rim.

    But the squirrel is only moving a bit less than the forward speed of
    the bike relative to the fork (which is what matters).

    Oops - quite right.

    Mark

  17. On Sat, 17 Dec 2005 13:31:59 -0900, "Andrew Lee"

    whatsupandrewathotmaildotcom said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his friend on
    Mark's bike in last month's thread (except the bike is not a Habanero).

    I wonder what that fork is aluminum or carbon?

    Given that one photo makes it pretty clear that the left leg went
    S-shaped and stayed that way, I'd have to say that carbon is ruled
    out. The Trek 1000 is, according to their website, equipped with a
    carbon fork for 2005 and 2006, but had a light-alloy fork in 2003 and
    2004...however it did not have the paired-spoke rims in 2004 and
    prior, so the equipment is a mismatch if I'm reading the photo
    evidence correctly.

    --
    Typoes are a feature, not a bug.
    Some gardening required to reply via email.
    Words processed in a facility that contains nuts.

  18. Werehatrack said:

    On Sat, 17 Dec 2005 13:31:59 -0900, "Andrew Lee"

    whatsupandrewathotmaildotcom said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his friend on
    Mark's bike in last month's thread (except the bike is not a Habanero).

    I wonder what that fork is aluminum or carbon?

    Given that one photo makes it pretty clear that the left leg went
    S-shaped and stayed that way, I'd have to say that carbon is ruled
    out. The Trek 1000 is, according to their website, equipped with a
    carbon fork for 2005 and 2006, but had a light-alloy fork in 2003 and
    2004...however it did not have the paired-spoke rims in 2004 and
    prior, so the equipment is a mismatch if I'm reading the photo
    evidence correctly.

    And on further consideration, I begin to wonder if this isn't yet
    another (admittedly tenuous) reason to avoid the low-count
    paired-spoke wheels, since the space between each of the 36 spokes on
    a more conventional wheel should presumably act to prevent the
    squirrel from having such an easy time getting itself into this
    predicament...
    --
    Typoes are a feature, not a bug.
    Some gardening required to reply via email.
    Words processed in a facility that contains nuts.

  19. Dan said:


    "Andrew Lee" <whatsupandrewathotmaildotcom> wrote in message
    news:[email hidden]...

    Quoted message said:

    http://www.bikeforums.net/showthread.php?t=160488

    It looks a lot like what Mark Hickey described happened to his friend on
    Mark's bike in last month's thread (except the bike is not a Habanero).

    I wonder what that fork is aluminum or carbon?

    In the earlier thread some opined that a soft squirrel was not capable of
    causing this type of accident. I still think that there is enough substance
    to a squirrel to stop the front wheel. These photos look authentic enough
    and I would love to learn the details.

    For me, the really cool thing in these pictures is the broken fork. Since
    the tire will skid when the friction coefficient is exceeded, there must be
    a vertical force in excess of the combined rider and bike weight. I can't
    tell if it is carbon or not. If it is carbon, carbon forks often take 800
    lbs or so to break when loaded at the dropout. If the force is applied to
    the tire contact patch, the moment arm is roughly doubled and it requires a
    force on the order of 400 lbs to break the fork (some forks may be stronger
    or weaker). John Forester proposes how this might happen here:
    http://www.johnforester.com/Articles/BicycleEng/forkbend.htm
    I have looked at this type of failure before and tried to figure out the
    dynamics. I think it can occur but is very rare. I am not sure but a ductile
    (e.g steel) fork may perform better in this scenario than a more brittle
    (e.g carbon fiber) fork.

    Check me here
    Centrifugal force flings squirrel to the rim and as he goes limp, beyond the rim
    on either side. Carcass wedges between the tire and side of the rim and the
    crown of the fork. That would cause a jam far more severe than something as soft
    as a dead or dying squirrel being caught between spoke and fork blade.

    Ron

  20. ran into a squirrel yesterday. was holding a nut he was and headed
    toward the trees when i hove too and lo! if the criiter didn't stop
    turn around and run straight under the front
    and expletiuve deleted stop there: amazing

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