Cycling Equipment · Public discussion

Durable Road Wheels

Started by Mike Reed · · Last activity · 19 posts · 670 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
30 January 2006
Last activity
31 January 2006
Original author
Mike Reed
Posts
19
Discussion status
Public discussion
Total views
670
Views / 30 days
0

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

Showing posts 1–19 of 19
Posts remain in their original chronological order.

Text size
  1. An update. I posted originally back in December, asking people's
    opinions on what I should do for a durbable set of road wheels, that
    would still be of reasonable weight.

    I ended up getting ultegra hubs, DT 2.0/1.8/2.0 spokes, and Velocity
    Deep-V rims. 32H up front, and 36H in the rear, with cross-3 all the
    way around.

    I ordered all the parts, plus a park tensiometer from Lickton's online,
    and I really got great service from them (no need to cover it all from
    here, but they are a great supplier, with prices as low as you'll find
    online).

    I got them built up this weekend, with final truing and tensioning
    going quite smoothly. I emailed Velocity to ask about tension, and they
    said 100kgf front and 110kgf drive-side rear. I've gotten really close
    to those numbers, with very little variance. I haven't added them all
    up, but I'm thinking I managed a 5% variance, certainly less than 10%.
    They're also quite round and true. Perfect dish.

    The build went smoothly, as these were probably my 14th and 15th wheels
    over the years, but the first time with a tensiometer. Man, what a
    great tool to have.

    I'm hoping there won't be any more updates, as I'm expecting these
    wheels to last me a looooong time.

    Anyway, thanks to everyone for all the advice.

  2. Mike Reed said:

    I'm hoping there won't be any more updates, as I'm expecting these
    wheels to last me a looooong time.

    Look out for potholes, then!

    Good luck with your wheels...

  3. Quoted message said:

    I got them built up this weekend, with final truing and tensioning
    going quite smoothly. I emailed Velocity to ask about tension, and they
    said 100kgf front and 110kgf drive-side rear. I've gotten really close
    to those numbers, with very little variance. I haven't added them all
    up, but I'm thinking I managed a 5% variance, certainly less than 10%.
    They're also quite round and true. Perfect dish.

    A funny story about getting tension specs from Velocity USA:

    I was building up a wheelset with 36h Aerohead front and 36h Aerohead
    OC rear. I called them up and asked for a tension spec for these. The
    guy I was talking to is the main guy you get when you call there, who's
    also responsible for building many/all of their handbuilt wheelsets. He
    told me 100 kgf front, 110ish kgf drive side on the rear. Aeroheads are
    really light and if you built up a 36h one to that much tension per
    spoke, it would taco it in the stand. I told him as much and he
    disagreed. He also went on to state that the amount of tension per
    spoke you should use doesn't vary with the number of spokes you're
    using. I thanked him and got off the phone.

    I built up that wheel using Jobst's method and it came out at like
    70ish kgf per spoke as it's max tension. 100 would have killed it.

    Later I got an idea, and looked in their catalog. The Aerohead-based
    wheelset they sell, which dude probably builds all the time, uses 32 in
    back, 24 in front.

    24 x 100 = 2400
    (16 x 100) + (16 x whatever average left side tension is on their
    Aerohead OC/Formula wheel) = 2500ish

    So it's pretty clear to me why those numbers work fine for him. I have
    no idea if the same person answers their email.

    It makes sense that a 32h Deep V could handle that, but this is
    something to be aware of with getting tension specs from Velocity.

  4. I built up some 32h OC rear wheel and a 28h Aerohead and the tension is
    about 110 kg and they are doing OK so far. I had it up higher than 130 when
    building them and it was getting very unstable. They didn't taco but were
    not reacting well to any adjustments and was getting way out of wacky when
    stress relieved. I am using a Wheelsmith tensiometer. It could be off in
    the reading. I think one shouldn't trust the absolute number of a cheaper
    tensiometer, but use it to get relative numbers so that you know when the
    tension is balanced and to compare to a know correctly tension wheel. I am
    getting an FSA tensionmeter to compare the numbers. Since Jobst thinks
    highly of the FSA design and his recommendation on the Blackburn Air Tower 5
    was right on target. Pricey toys for men, or boys.

    cel

    "Nate Knutson" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Quoted message said:

    I got them built up this weekend, with final truing and tensioning
    going quite smoothly. I emailed Velocity to ask about tension, and they
    said 100kgf front and 110kgf drive-side rear. I've gotten really close
    to those numbers, with very little variance. I haven't added them all
    up, but I'm thinking I managed a 5% variance, certainly less than 10%.
    They're also quite round and true. Perfect dish.

    A funny story about getting tension specs from Velocity USA:

    I was building up a wheelset with 36h Aerohead front and 36h Aerohead
    OC rear. I called them up and asked for a tension spec for these. The
    guy I was talking to is the main guy you get when you call there, who's
    also responsible for building many/all of their handbuilt wheelsets. He
    told me 100 kgf front, 110ish kgf drive side on the rear. Aeroheads are
    really light and if you built up a 36h one to that much tension per
    spoke, it would taco it in the stand. I told him as much and he
    disagreed. He also went on to state that the amount of tension per
    spoke you should use doesn't vary with the number of spokes you're
    using. I thanked him and got off the phone.

    I built up that wheel using Jobst's method and it came out at like
    70ish kgf per spoke as it's max tension. 100 would have killed it.

    Later I got an idea, and looked in their catalog. The Aerohead-based
    wheelset they sell, which dude probably builds all the time, uses 32 in
    back, 24 in front.

    24 x 100 = 2400
    (16 x 100) + (16 x whatever average left side tension is on their
    Aerohead OC/Formula wheel) = 2500ish

    So it's pretty clear to me why those numbers work fine for him. I have
    no idea if the same person answers their email.

    It makes sense that a 32h Deep V could handle that, but this is
    something to be aware of with getting tension specs from Velocity.

  5. Nate Knutson said:
    Quoted message said:

    I got them built up this weekend, with final truing and tensioning
    going quite smoothly. I emailed Velocity to ask about tension, and they
    said 100kgf front and 110kgf drive-side rear. I've gotten really close
    to those numbers, with very little variance. I haven't added them all
    up, but I'm thinking I managed a 5% variance, certainly less than 10%.
    They're also quite round and true. Perfect dish.

    A funny story about getting tension specs from Velocity USA:

    I was building up a wheelset with 36h Aerohead front and 36h Aerohead
    OC rear. I called them up and asked for a tension spec for these. The
    guy I was talking to is the main guy you get when you call there, who's
    also responsible for building many/all of their handbuilt wheelsets. He
    told me 100 kgf front, 110ish kgf drive side on the rear. Aeroheads are
    really light and if you built up a 36h one to that much tension per
    spoke, it would taco it in the stand. I told him as much and he
    disagreed. He also went on to state that the amount of tension per
    spoke you should use doesn't vary with the number of spokes you're
    using. I thanked him and got off the phone.

    I built up that wheel using Jobst's method and it came out at like
    70ish kgf per spoke as it's max tension. 100 would have killed it.

    We use 100 kgf on Aeroheads w/o any porblems or issues, found on a DT
    dial tensionmeter.

    Quoted message said:


    Later I got an idea, and looked in their catalog. The Aerohead-based
    wheelset they sell, which dude probably builds all the time, uses 32 in
    back, 24 in front.

    24 x 100 = 2400
    (16 x 100) + (16 x whatever average left side tension is on their
    Aerohead OC/Formula wheel) = 2500ish

    So it's pretty clear to me why those numbers work fine for him. I have
    no idea if the same person answers their email.

    It makes sense that a 32h Deep V could handle that, but this is
    something to be aware of with getting tension specs from Velocity.

  6. Ron Ruff said:

    Look out for potholes, then!

    Nah...if a pothole kills a wheel, it was a bad wheel and deserved to die ;-)

  7. Someone anonymously said:
    Quoted message said:

    Look out for potholes, then!

    Quoted message said:

    Nah... if a pothole kills a wheel, it was a bad wheel and deserved
    to die ;-)

    From this I must assume you have no experience with potholes in paved
    roads. Potholes generally break out one lift of asphalt, about 1.5 to
    2.5 inches deep leaving a sharp demarcation (vertical step) at the
    edge. Striking a pothole will put a sharp ding in the rim, whether
    steel or aluminum, and generally cause a snake bite flat. Such an
    event usually permanently damages a rim of any quality wheel build,
    because that has nothing to do with the impact and subsequent rim
    damage.

    Jobst Brandt

  8. Quoted message said:
    Someone anonymously said:
    Quoted message said:

    Look out for potholes, then!

    Quoted message said:

    Nah... if a pothole kills a wheel, it was a bad wheel and deserved
    to die ;-)

    From this I must assume you have no experience with potholes in paved
    roads.

    I think he was kidding.

    --
    Phil, Squid-in-Training

  9. Jobst Brandt said:
    Someone anonymously said:
    Quoted message said:

    Look out for potholes, then!

    Quoted message said:

    Nah... if a pothole kills a wheel, it was a bad wheel and deserved
    to die ;-)

    From this I must assume you have no experience with potholes in paved
    roads. Potholes generally break out one lift of asphalt, about 1.5 to
    2.5 inches deep leaving a sharp demarcation (vertical step) at the
    edge. Striking a pothole will put a sharp ding in the rim, whether
    steel or aluminum, and generally cause a snake bite flat. Such an
    event usually permanently damages a rim of any quality wheel build,
    because that has nothing to do with the impact and subsequent rim
    damage.

    I have bent steel rims and broken tire cords hitting potholes at less
    than 30-mph where I had 185/60 R-14 tires at 35 psi. (OK, so the weight
    applied to the wheel is 10 to 15 times the average bicycle wheel, but
    sidewall height is also that many times greater than a typical bicycle
    tire.)

    --
    Tom Sherman - Fox River Valley

  10. On 29 Jan 2006 18:59:42 -0800, "Mike Reed" <[email hidden]>

    Quoted message said:

    The build went smoothly, as these were probably my 14th and 15th wheels
    over the years, but the first time with a tensiometer. Man, what a
    great tool to have.

    I thought that too about the Tensiometer. Now I pluck the spokes for
    tone and put the guage on the wheel when I think I'm getting close.
    It's still a great tool but I use if much less in the wheel building
    process.

  11. On 29 Jan 2006 21:20:07 -0800, "Nate Knutson" <[email hidden]>

    Quoted message said:

    It makes sense that a 32h Deep V could handle that, but this is
    something to be aware of with getting tension specs from Velocity.

    Doug knows quite a bit about their rims. I've laced the Aerohead OC
    rims, 28, 32, 36 all with 100 kgf drive side. Not a single spoke pull
    through yet.

  12. Paul Kopit said:

    On 29 Jan 2006 21:20:07 -0800, "Nate Knutson" <[email hidden]>

    Quoted message said:

    It makes sense that a 32h Deep V could handle that, but this is
    something to be aware of with getting tension specs from Velocity.

    Doug knows quite a bit about their rims. I've laced the Aerohead OC
    rims, 28, 32, 36 all with 100 kgf drive side. Not a single spoke pull
    through yet.

    I'm talking about his recommendation to build a front 36h Aerohead at
    100 kgf per spoke.

  13. Quoted message said:

    Striking a pothole will put a sharp ding in the rim, whether
    steel or aluminum, and generally cause a snake bite flat. Such an
    event usually permanently damages a rim of any quality wheel build,
    because that has nothing to do with the impact and subsequent rim
    damage.

    Just out of curiosity, what would you expect the effect to be on a
    carbon rim? I've never ridden one and would like to know how relatively
    susceptible they are to damage.

  14. anonymous said:
    Quoted message said:

    Striking a pothole will put a sharp ding in the rim, whether steel
    or aluminum, and generally cause a snake bite flat. Such an event
    usually permanently damages a rim of any quality wheel build,
    because that has nothing to do with the impact and subsequent rim
    damage.

    Quoted message said:

    Just out of curiosity, what would you expect the effect to be on a
    carbon rim? I've never ridden one and would like to know how
    relatively susceptible they are to damage.

    Deformation would occur but it would not be plastic so I can imagine
    that the wheel would crush itself, losing all spoke tension. I don't
    know and don't expect to try it.

    Jobst Brandt

  15. Paul Kopit said:
    Quoted message said:

    The build went smoothly, as these were probably my 14th and 15th
    wheels over the years, but the first time with a tensiometer. Man,
    what a great tool to have.

    Quoted message said:

    I thought that too about the Tensiometer. Now I pluck the spokes
    for tone and put the gauge on the wheel when I think I'm getting
    close. It's still a great tool but I use if much less in the wheel
    building process.

    That's the way it was meant to be used, except for the tone deaf. Use
    it to assess whether the wheel is tight enough, not whether the spokes
    are equally tight.

    Jobst Brandt

  16. Quoted message said:
    Paul Kopit said:

    I thought that too about the Tensiometer. Now I pluck the spokes
    for tone and put the gauge on the wheel when I think I'm getting
    close. It's still a great tool but I use if much less in the wheel
    building process.

    That's the way it was meant to be used, except for the tone deaf. Use
    it to assess whether the wheel is tight enough, not whether the spokes
    are equally tight.

    See, I've built all of my previous wheels (only ~12) with the plucking
    method, and I found it to be much faster this time to just use the
    tensiometer on all the spokes. I have to go back and forth too many
    times to get an idea of how much to adjust a spoke from tone alone.

    Once I got to within 15kgf below final tension, I did three laps of the
    wheel, using the tensiometer on every spoke. I moved each spoke closer
    to where it needed to be, and ended up with a really consistent tension
    after three laps. This took 5 minutes. When I finished, the tones were
    much more consistent than I had ever been able to do with plucking
    alone.

    Plucking was always was too much one way or the other and felt too
    hacky. I'm not entirely tone deaf, but it takes me a few plucks of the
    reference and test spokes to guage how far out I am. Eventually I would
    become impatient and frustrated.

    Is there some problem with using a tensiometer on every spoke, or is it
    just easier for some people to do it by tone instead?

  17. Mike Reed said:
    Quoted message said:
    Paul Kopit said:

    I thought that too about the Tensiometer. Now I pluck the spokes
    for tone and put the gauge on the wheel when I think I'm getting
    close. It's still a great tool but I use if much less in the
    wheel building process.

    That's the way it was meant to be used, except for the tone deaf.
    Use it to assess whether the wheel is tight enough, not whether the
    spokes are equally tight.

    See, I've built all of my previous wheels (only ~12) with the
    plucking method, and I found it to be much faster this time to just
    use the tensiometer on all the spokes. I have to go back and forth
    too many times to get an idea of how much to adjust a spoke from
    tone alone.

    What I do is choose a "master" spoke, in my case the right side spoke
    at the valve hole so that it is easy to find. I use the tensiometer
    to get the desired tension on that spoke, and then compare the other
    spokes to that one by plucking and listening to tone. If the tone is
    lower compared to the "master spoke" then I tighten; if higher, then I
    loosen. Once a rev around I recheck the tension of the master spoke,
    since each spoke affects each other spoke to an extent. It's dead
    simple.

    However, I'm also a guitarist and have a lot of practice listening to
    relative pitch between vibrating wires, and adjusting that pitch to
    match. FWIW, it's easier to match when you're bringing the tone up
    from underneath- e.g., tuning up to rather than tuning down to. I
    also don't obsess about it- close enough is close enough. I don't
    worry if my wheels are within .005" inches of perfectly true. That
    level of precision is just not necessary. I have friends who spend
    hours truing with a dial gauge to get to that level. Yikes! Life is
    just too short to waste time on that!

  18. Mike Reed said:
    Quoted message said:
    Quoted message said:

    I thought that too about the Tensiometer. Now I pluck the spokes
    for tone and put the gauge on the wheel when I think I'm getting
    close. It's still a great tool but I use if much less in the
    wheel building process.

    Quoted message said:
    Quoted message said:

    That's the way it was meant to be used, except for the tone deaf.
    Use it to assess whether the wheel is tight enough, not whether the
    spokes are equally tight.

    Quoted message said:

    See, I've built all of my previous wheels (only ~12) with the
    plucking method, and I found it to be much faster this time to just
    use the tensiometer on all the spokes. I have to go back and forth
    too many times to get an idea of how much to adjust a spoke from
    tone alone.

    Quoted message said:

    Once I got to within 15kgf below final tension, I did three laps of
    the wheel, using the tensiometer on every spoke. I moved each spoke
    closer to where it needed to be, and ended up with a really
    consistent tension after three laps. This took 5 minutes. When I
    finished, the tones were much more consistent than I had ever been
    able to do with plucking alone.

    Quoted message said:

    Plucking was always was too much one way or the other and felt too
    hacky. I'm not entirely tone deaf, but it takes me a few plucks of
    the reference and test spokes to guage how far out I am. Eventually
    I would become impatient and frustrated.

    Quoted message said:

    Is there some problem with using a tensiometer on every spoke, or is
    it just easier for some people to do it by tone instead?

    You must pick up the tensiometer, put it on the spoke, read the gauge
    and either write it down or memorize it. Plucking adjacent spoke in
    question requires about a second because your hands are already at
    that spot in question.

    Absolute values can best be assessed by tensiometer measurement.

    Jobst Brandt

  19. Quoted message said:


    Quoted message said:

    Striking a pothole will put a sharp ding in the rim, whether
    steel or aluminum, and generally cause a snake bite flat. Such an
    event usually permanently damages a rim of any quality wheel build,
    because that has nothing to do with the impact and subsequent rim
    damage.

    Just out of curiosity, what would you expect the effect to be on a
    carbon rim? I've never ridden one and would like to know how relatively
    susceptible they are to damage.

    Brandt has a very specific description of pothole so this may not be
    what you are looking for, but as one data point I went off the road at
    about 30mph high speed a few years. I assume I started braking and was
    slowing downh when I hit a large rock with my front wheel. The rear
    wheel of my bike came about a foot off the ground and then I stopped
    -- got a foot out just in time to not fall over.

    The incident put a large slit completely across the top of my tire --
    like a huge snakebite -- and the tube also had a large hole. The rim,
    a Zipp 330 carbon rim, was undamaged.

    JT

    ****************************
    Remove "remove" to reply
    Visit http://www.jt10000.com
    ****************************

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.