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Latex and lightweight tubes -- lower RR?

Started by Matt O'Toole · · Last activity · 53 posts · 1,187 views

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Cycling Equipment
Published
10 December 2005
Last activity
19 December 2005
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Matt O'Toole
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  1. Has anyone ever seen a rolling resistance test of latex or lightweight
    tubes? I'm not concerned with track tires or road tubulars with
    latex tubes in them already. I wonder if a latex or lightweight tube
    in a top-notch race clincher gives measurably lower RR than a normal
    one. I can think of reasons why it might, or might actually be worse.

    I've seen snippets from tests of tubeless vs. standard MTB tires, but
    nothing for road tires.

    Before y'all go screaming at me about whether I should care about such
    a thing, it's just curiousity. I'm curious about a lot of things that
    I don't live by.

    Thanks,

    Matt O.

  2. Matt O'Toole said:

    I wonder if a latex or lightweight tube
    in a top-notch race clincher gives measurably lower RR than a normal
    one.

    Maybe measureable, but probably not much of a difference in actual riding.
    And not worth having to pump up more frequently. I'm curious why you think
    it might produce a higher RR.

    Art Harris

  3. Matt O'Toole said:

    Has anyone ever seen a rolling resistance test of latex or lightweight
    tubes? I'm not concerned with track tires or road tubulars with
    latex tubes in them already. I wonder if a latex or lightweight tube
    in a top-notch race clincher gives measurably lower RR than a normal
    one. I can think of reasons why it might, or might actually be worse.


    If you have a power meter and rollers (or know someone who does) then
    you can test it for yourself. I'd be happy to help you with setting up
    the test and interpreting the data.

  4. On Sat, 10 Dec 2005 18:35:17 -0500, "Arthur Harris" <[email hidden]>

    Quoted message said:

    "Matt O'Toole" wrote:

    Quoted message said:
    Quoted message said:

    I wonder if a latex or lightweight tube
    in a top-notch race clincher gives measurably lower RR than a normal
    one.

    Quoted message said:

    Maybe measureable, but probably not much of a difference in actual riding.
    And not worth having to pump up more frequently. I'm curious why you think
    it might produce a higher RR.

    I would imagine the latex has lower hysteresis than butyl rubber, but
    this may not be the case. Also, butyl rubber sticks to the tire and
    becomes one with it, while latex may rub against it, causing some
    friction.

    I agree about having to pump more frequently, I'm just curious.

    Matt O.

  5. On 10 Dec 2005 17:23:26 -0800, "Ron Ruff" <[email hidden]>

    Quoted message said:

    Matt O'Toole wrote:

    Quoted message said:
    Quoted message said:

    Has anyone ever seen a rolling resistance test of latex or lightweight
    tubes? I'm not concerned with track tires or road tubulars with
    latex tubes in them already. I wonder if a latex or lightweight tube
    in a top-notch race clincher gives measurably lower RR than a normal
    one. I can think of reasons why it might, or might actually be worse.

    Quoted message said:

    If you have a power meter and rollers (or know someone who does) then
    you can test it for yourself. I'd be happy to help you with setting up
    the test and interpreting the data.

    I don't have one, but I may be able to find one.

    Matt O.

  6. Matt O'Toole said:
    Quoted message said:
    Quoted message said:

    I wonder if a latex or lightweight tube in a top-notch race
    clincher gives measurably lower RR than a normal one.

    Quoted message said:
    Quoted message said:

    Maybe measurable, but probably not much of a difference in actual
    riding. And not worth having to pump up more frequently. I'm
    curious why you think it might produce a higher RR.

    Quoted message said:

    I would imagine the latex has lower hysteresis than butyl rubber,
    but this may not be the case. Also, butyl rubber sticks to the tire
    and becomes one with it, while latex may rub against it, causing
    some friction.

    It has lower RR for two reasons. First because it contains no carbon
    and butyl rubber is lossier than latex anyway. And second, it is far
    thinner, so there is less bending stress and rubber losses for the
    same tire flex. A third advantage is that latex stretches many times
    more before rupture and that helps prevent pinch flats.

    Quoted message said:

    I agree about having to pump more frequently, I'm just curious.

    That is their great drawback. I recall the days when all we rode were
    tubulars that required daily pumping almost as if the tires were flat
    (down below 50psi). Only in freezing weather did they hold air for
    the second day.

    The difference is not worth the pumping work. If you look at RR
    curves you'll see that the difference is about as much as having the
    zipper up or down on your jersey.

    Jobst Brandt

  7. Matt O'Toole said:
    Quoted message said:
    Quoted message said:

    Has anyone ever seen a rolling resistance test of latex or
    lightweight tubes? I'm not concerned with track tires or road
    tubulars with latex tubes in them already. I wonder if a latex or
    lightweight tube in a top-notch race clincher gives measurably
    lower RR than a normal one. I can think of reasons why it might,
    or might actually be worse.

    Quoted message said:
    Quoted message said:

    If you have a power meter and rollers (or know someone who does)
    then you can test it for yourself. I'd be happy to help you with
    setting up the test and interpreting the data.

    Quoted message said:

    I don't have one, but I may be able to find one.

    Not to worry. You won't be able to see that because rider variation
    is far greater than anything you'll see from the tubes. The way to do
    it is to clock the coast down speed on rollers from 30 to 10 mph or
    so. No feet on the pedals. However you still have to calibrate the
    results to reduce that to power, but it is repeatably accurate if
    you don't get the tire hot.

    Jobst Brandt

  8. Quoted message said:


    Not to worry. You won't be able to see that because rider variation
    is far greater than anything you'll see from the tubes.

    I'm not sure about that. One person (Jens Heycke), claims to be able
    to get excellent repeatability. With power around 300W, even a couple %
    change in Crr should be noticable.

    Quoted message said:

    The way to do
    it is to clock the coast down speed on rollers from 30 to 10 mph or
    so. No feet on the pedals. However you still have to calibrate the
    results to reduce that to power, but it is repeatably accurate if
    you don't get the tire hot.

    I think that would be difficult because it would happen in a couple of
    seconds, since the inertia of the system (wheels and rollers) is so
    small compared to the load... and then there is the speedometer lag,
    too. If there was an easy way of increasing the inertia, it would help.

    Have you ever measured the effects of temperature? I've seen allusions
    to this from others, but not any data.

  9. Quoted message said:

    The difference is not worth the pumping work. If you look at RR
    curves you'll see that the difference is about as much as having the
    zipper up or down on your jersey.

    "Pumping work?" Is it really that much of a chore, or that exhausting, to
    inflate a tire? How much payback would there have to be to make it
    worthwhile?

    As for being the difference between having a zipper up or down, I dunno,
    sounds like a pretty good deal to me, if I can offset whatever downside
    there might be to having a zipper in a position where it allow me to remain
    cooler.

    --Mike Jacoubowsky
    Chain Reaction Bicycles
    www.ChainReaction.com
    Redwood City & Los Altos, CA USA

  10. "Matt O'Toole" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    Has anyone ever seen a rolling resistance test of latex or lightweight
    tubes? I'm not concerned with track tires or road tubulars with
    latex tubes in them already. I wonder if a latex or lightweight tube
    in a top-notch race clincher gives measurably lower RR than a normal
    one. I can think of reasons why it might, or might actually be worse.

    Quoted message said:

    I've seen snippets from tests of tubeless vs. standard MTB tires, but
    nothing for road tires.

    A Cal. State University study quoted in 'High-Tech Cycling' (Burke)
    gives the following figures for the coeff. of rolling resistance of a
    Specialized Turbo S Kevlar 700x19c:

    with latex tube: 0.23
    with butylized latex tube: 0.25
    with butyl tube: 0.28
    with polyurethane tube: 0.29

    I don't have the book to hand: I'm quoting my own rec.bicycles.tech posting
    of five years ago.

    HTH

    James Thomson

  11. Check out Johns Laffords rolling resistance tests of recumbent tires -
    some tests of tires with latex and buytl

    http://www.users.globalnet.co.uk/~hadland/rolrec10a.pdf

  12. Mike Jacoubowsky said:
    Quoted message said:

    The difference is not worth the pumping work. If you look at RR
    curves you'll see that the difference is about as much as having the
    zipper up or down on your jersey.

    "Pumping work?" Is it really that much of a chore, or that exhausting, to
    inflate a tire? How much payback would there have to be to make it
    worthwhile?

    Having to pump tires is like driving a crappy old car that you have to
    let warm up before you can go anywhere, even a few blocks. It's a
    stupid inconvenience, and in this case, totally unnecessary. With
    decent tubes like Michelin Airstop, I can go weeks without pumping.

    Some people like these rituals though. The fussiness makes their gear
    feel more high-tech and special. To each his own.

    The RR issue is just interesting to me in an academic sense.

    Matt O.

  13. Quoted message said:

    Not to worry. You won't be able to see that because rider variation
    is far greater than anything you'll see from the tubes. The way to do
    it is to clock the coast down speed on rollers from 30 to 10 mph or
    so. No feet on the pedals. However you still have to calibrate the
    results to reduce that to power, but it is repeatably accurate if
    you don't get the tire hot.

    Well, if we're goofing with trainers this winter I might give it a
    try, just for fun.

    Matt O.

  14. James Thomson said:

    with latex tube: 0.23
    with butylized latex tube: 0.25
    with butyl tube: 0.28
    with polyurethane tube: 0.29


    A .005 difference (or 20% in this case) between butyl and latex is
    pretty large. If you are racing, this is well worth the pumping hassle.

  15. James Thomson said:
    Quoted message said:

    Has anyone ever seen a rolling resistance test of latex or
    lightweight tubes? I'm not concerned with track tires or road
    tubulars with latex tubes in them already. I wonder if a latex or
    lightweight tube in a top-notch race clincher gives measurably
    lower RR than a normal one. I can think of reasons why it might,
    or might actually be worse.

    Quoted message said:
    Quoted message said:

    I've seen snippets from tests of tubeless vs. standard MTB tires,
    but nothing for road tires.

    Quoted message said:

    A Cal. State University study quoted in 'High-Tech Cycling' (Burke)
    gives the following figures for the coeff. of rolling resistance of
    a Specialized Turbo S Kevlar 700x19c:

    Quoted message said:

    with latex tube: 0.23
    with butylized latex tube: 0.25
    with butyl tube: 0.28
    with polyurethane tube: 0.29

    Quoted message said:

    I don't have the book to hand: I'm quoting my own rec.bicycles.tech
    posting of five years ago.

    Well... as they say, there's lies, damned lies, and statistics, or in
    this case floating numbers. What is the power difference in these
    figures and what percentage is it of and average size rider's effort
    at, let's say, 25mph? It seems like this is comparing the aero drag
    of bar tape, the thick cork type tape having more than twice the drag
    of cloth tape... and who cares?

    Jobst Brandt

  16. James Thomson said:

    A Cal. State University study quoted in 'High-Tech Cycling' (Burke)
    gives the following figures for the coeff. of rolling resistance of a
    Specialized Turbo S Kevlar 700x19c:

    with latex tube: 0.23
    with butylized latex tube: 0.25
    with butyl tube: 0.28
    with polyurethane tube: 0.29

    I don't have the book to hand: I'm quoting my own rec.bicycles.tech posting
    of five years ago.

    Those figures are quite high for coefficient of rolling resistance.

    Joe

  17. Ron Ruff said:
    James Thomson said:

    with latex tube: 0.23
    with butylized latex tube: 0.25
    with butyl tube: 0.28
    with polyurethane tube: 0.29


    A .005 difference (or 20% in this case) between butyl and latex is
    pretty large. If you are racing, this is well worth the pumping hassle.

    But since the coeff of rolling resistance is somewhere between
    0.004 and 0.010 as usually defined (F_rollres = Crr * mass * g,
    where mass = mass of rider+bike), it's not clear what these
    numbers really are.

    See the link posted elsewhere in this thread:
    http://www.users.globalnet.co.uk/~hadland/rolrec10a.pdf

    Quoted message said:

    From this table I don't see any significant difference between


    the same tire with latex and butyl. There are differences between
    tires. To first order I'd expect these to be related to the amount of
    rubber and the suppleness of the casing. Note that the table is for
    20" tires, which should have higher Crr than 700c. The very last
    three entries for 700c tires support this.

  18. Quoted message said:

    Well... as they say, there's lies, damned lies, and statistics, or in
    this case floating numbers. What is the power difference in these
    figures and what percentage is it of and average size rider's effort
    at, let's say, 25mph?

    I'll assume that's a rhetorical question, as I don't believe you care, and
    neither do I.

    Quoted message said:

    It seems like this is comparing the aero drag of bar tape, the thick cork
    type tape having more than twice the drag of cloth tape... and who cares?

    I suggest you read the original post in this thread, to which mine was a
    response.

    James Thomson

  19. Quoted message said:

    But since the coeff of rolling resistance is somewhere between
    0.004 and 0.010 as usually defined (F_rollres = Crr * mass * g,
    where mass = mass of rider+bike), it's not clear what these
    numbers really are.

    I'd overlooked a footnote in the original, which I've now found.

    The rolling resistance coefficient in percentage. To get the resistance
    to motion, multiply the weight on the tire by the coefficient divided
    by 100. The tests were performed from 1984 to 1988 at California
    State University, Long Beach, for the U.S. cycling team, Specialized,
    General Motors, and Tom Petrie of Velimpex Marketing, El Cerrito, CA.

    Apologies for the omission, though the original poster was interested in
    the relative performance of different tubes.

    Quoted message said:

    See the link posted elsewhere in this thread:
    http://www.users.globalnet.co.uk/~hadland/rolrec10a.pdf

    From this table I don't see any significant difference between
    the same tire with latex and butyl. There are differences between
    tires.

    There only appear to be a few examples of tyres tested with latex tubes.
    One is a Continental Grand Prix 28-406 which shows a significantly higher
    rolling resistance at 120psi with a butyl tube (.0082) than at 100 or
    125psi with a latex tube (.0077 and .0069 respectively), though I'd guess
    that this is not the same tyre in each case. The 37-349 "Primo w. ground
    off tread" shows an increase in Crr at lower pressures with a latex tube,
    and a decrease at higher pressures, which I find hard to account for, but
    then there are no hints as to the number of tests performed, and
    repeatability.

    Quoted message said:

    Note that the table is for 20" tires, which should have higher Crr
    than 700c.

    The tyres tested range from 16" up.

    James Thomson

  20. In article <[email hidden]>, [email hidden]
    says...

    Quoted message said:

    Has anyone ever seen a rolling resistance test of latex or lightweight
    tubes? I'm not concerned with track tires or road tubulars with
    latex tubes in them already. I wonder if a latex or lightweight tube
    in a top-notch race clincher gives measurably lower RR than a normal
    one. I can think of reasons why it might, or might actually be worse.

    I've seen snippets from tests of tubeless vs. standard MTB tires, but
    nothing for road tires.

    Before y'all go screaming at me about whether I should care about such
    a thing, it's just curiousity. I'm curious about a lot of things that
    I don't live by.

    Not enough to be noticeable. What is noticeable is that you need to pump
    up the tubes pretty much every day if you want the pressure to stay at a
    reasonable level. That is why I stopped riding them.
    -----------
    Alex

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