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Shock Pump Newbie Question

Started by Tony Scilipoti · · Last activity · 6 posts · 580 views

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Cycling Equipment
Published
20 August 2004
Last activity
26 August 2004
Original author
Tony Scilipoti
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  1. I've just gone from a hardtail with a coil fork to a new FS with air
    shocks on both ends, and I must be missing something because I can't
    get air into the shocks. I have a brand new SKS shock pump with a
    screw-on fitting for the Schrader valves on the shocks. I pump up the
    shock to the desired pressure (or a bit over). Then when I go to
    unscrew the pump fitting, most - not just some, but most - of the
    pressure escapes from the shock while I'm unscrewing it. Like, for
    example, it will go down from 8 bar to 2 bar. In the case of the small
    SPV chamber on my Swinger rear shock, it ALL escapes. (I press on the
    pin in the center of the valve and no hiss.) Reminds me of the useless
    tire pumps of my childhood.

    I have read some other posts on this and everyone says "Oh, you're
    just hearing the leftover air in the pump hose escaping." No. When I
    check the pressure using a tire gauge, or by observing sag, I can see
    that there's hardly any air in the shock. So I have two questions:

    1) With a screw-on fitting like this, why WOULDN'T you expect all the
    air to escape as you're unscrewing it, given that there is a
    significant period of time during which the valve is still depressed
    (allowing air out of the shock) but the fitting is already loose
    enough to let air escape around the threads of the valve stem? Isn't
    this precisely why all tire pumps now have the flip-a-lever style of
    seal?

    2) Is there some special technique that I'm supposed to use to keep
    this from happening? What am I missing? What's the secret formula?

    Thanks!
    - Tony

  2. "Tony Scilipoti" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    I've just gone from a hardtail with a coil fork to a new FS with air
    shocks on both ends, and I must be missing something because I can't
    get air into the shocks. I have a brand new SKS shock pump with a
    screw-on fitting for the Schrader valves on the shocks. I pump up the
    shock to the desired pressure (or a bit over). Then when I go to
    unscrew the pump fitting, most - not just some, but most - of the
    pressure escapes from the shock while I'm unscrewing it. Like, for
    example, it will go down from 8 bar to 2 bar. In the case of the small
    SPV chamber on my Swinger rear shock, it ALL escapes. (I press on the
    pin in the center of the valve and no hiss.) Reminds me of the useless
    tire pumps of my childhood.

    I have read some other posts on this and everyone says "Oh, you're
    just hearing the leftover air in the pump hose escaping." No. When I
    check the pressure using a tire gauge, or by observing sag, I can see
    that there's hardly any air in the shock. So I have two questions:

    1) With a screw-on fitting like this, why WOULDN'T you expect all the
    air to escape as you're unscrewing it, given that there is a
    significant period of time during which the valve is still depressed
    (allowing air out of the shock) but the fitting is already loose
    enough to let air escape around the threads of the valve stem? Isn't
    this precisely why all tire pumps now have the flip-a-lever style of
    seal?

    2) Is there some special technique that I'm supposed to use to keep
    this from happening? What am I missing? What's the secret formula?

    Thanks!
    - Tony

    The fitting on a shock pump is designed to close the schrader valve before
    the o-ring breaks it's seal. And true the hissing you hear should only be
    the air escaping from the pump. If this isn't happening either the valve
    core in the schrader isn't screwed in all the way or the o-ring seal is bad
    in the pump. Also on some pumps the part that presses down on the valve is
    adjustable with a small flat bladed screwdriver. You're right that your are
    dealing with such a small volume of air it doesn't take much of a leak to
    let it all out. Take the bike to your LBS and see if they'll let you try
    another pump.

    A tip if you get this working only thread the pump on until the gauge
    registers pressure. This prevents the o-ring in the pump from getting
    damaged. Also if you are using the pump for your fork with a adapter, don't
    leave the adapter in the pump. This will leave the o-ring compressed.

    Mike

  3. Quoted message said:

    example, it will go down from 8 bar to 2 bar. In the case of the small
    SPV chamber on my Swinger rear shock, it ALL escapes. (I press on the
    pin in the center of the valve and no hiss.) Reminds me of the useless

    My shock pump for my Swinger 4-way rear rear always had that problem.

    Quoted message said:

    2) Is there some special technique that I'm supposed to use to keep
    this from happening? What am I missing? What's the secret formula?

    Different shock pump. We have several at the shop so it didn't matter.

    --
    Phil, Squid-in-Training

  4. "ZeeExSixAre" <[email hidden]> wrote in message news:<[email hidden]>...

    Quoted message said:
    Quoted message said:

    example, it will go down from 8 bar to 2 bar. In the case of the small
    SPV chamber on my Swinger rear shock, it ALL escapes. (I press on the
    pin in the center of the valve and no hiss.) Reminds me of the useless

    My shock pump for my Swinger 4-way rear rear always had that problem.

    Quoted message said:

    2) Is there some special technique that I'm supposed to use to keep
    this from happening? What am I missing? What's the secret formula?

    Different shock pump. We have several at the shop so it didn't matter.

    Can you (or anyone) make a specific pump recommendation? Thanks. - Tony

  5. Tony Scilipoti said:

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

    Quoted message said:
    Quoted message said:

    example, it will go down from 8 bar to 2 bar. In the case of the
    small SPV chamber on my Swinger rear shock, it ALL escapes. (I
    press on the pin in the center of the valve and no hiss.) Reminds
    me of the useless

    My shock pump for my Swinger 4-way rear rear always had that problem.

    Quoted message said:

    2) Is there some special technique that I'm supposed to use to keep
    this from happening? What am I missing? What's the secret formula?

    Different shock pump. We have several at the shop so it didn't
    matter.

    Can you (or anyone) make a specific pump recommendation? Thanks. -
    Tony

    The one that screwed up was called the "Pollinator" or something along those
    lines. The one that worked was a generic silver one with no brand name. It
    is likely you can grind down the post in the center of the screw-on part so
    that it doesn't press the valve in when it becomes unsealed. It certainly
    wouldn't hurt, as it seems that you've got the product and all you need is a
    little modification. Plus, you have nothing to lose, since you're just
    going to continue to lose air if you don't do anything 😉

    --
    Phil, Squid-in-Training

  6. [email hidden] (Tony Scilipoti) wrote in message news:<[email hidden]>...

    Quoted message said:

    2) Is there some special technique that I'm supposed to use to keep
    this from happening? What am I missing? What's the secret formula?

    Other shock pump newbies take note: It turns out the "secret formula"
    is to get a pump that has a sensible design. Based on a
    recommendation, I replaced my SKS pump with a house brand "Aftershock"
    pump from Performance. (NOTE: This appears to be identical to house
    brand pumps from several other big mail order bike suppliers.)

    It's got an idiot-proof two-stage process for attaching/detatching the
    pump head without air loss. Step 1: You screw the pump head onto the
    shock's valve stem, essentially creating an airlock between pump and
    valve stem. Step 2: You screw in a second inner piece that actually
    depresses the pin in the shock valve. At that point, you don't lose
    any air (other than what it takes to pressurize the pump itself),
    because of the seal you already created in step 1. When you've got the
    pressure right, you reverse the steps. Magic. Not only that, this pump
    cost 1/2 what the other one cost! As for durability, it's way too
    early to tell, but if a pump that doesn't work lasts forever, who
    cares?

    - Tony

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