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Thread: 1898 Headpsace Out of Whack

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  1. #11
    Advisory Panel browningautorifle's Avatar
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    Let us know how this works out...
    Regards, Jim

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    As alluded to in earlier posts, the Go and NoGo gauges are used when installing a barrel. To check if rifle is still "within spec", then one uses a Field gauge, which is longer than the NoGo gauge. I have no experience with the Krags, but I believe the "Field" gauge, either pass or fail, is the "test" for whether a rifle's headspace is "safe" for continued use or not. Britishicon, American, Russianicon, Germanicon, etc. If it fails, then investigate why (Receiver lugs set back? Bolt lugs worn? Chamber worn or stretched) and respond accordingly. Several of these issues mean the receiver, bolt, or barrel, or all of them, are trash.

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    Legacy Member butlersrangers's Avatar
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    It use to be a practice among some professional and amateur gunsmiths to 'Lap' the rear of the single lug on the U.S. Kragicon Bolt.

    The intention was to allow the rear of the Bolt's 'Safety/Guide Rib' to make contact with the receiver, when the Bolt was closed.

    (Danishicon and Norwegianicon Krag rifles were manufactured to have this 'rib' contact. U.S. Krag Bolts had a few 1/1000" clearance).

    IMHO - This 'Lapping' may have made the U.S. action slightly stronger, but, it also likely introduced more 'head-space' or 'free-travel'.

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    Quote Originally Posted by butlersrangers View Post
    This 'Lapping' may have made the U.S. action slightly stronger, but, it also likely introduced more 'head-space' or 'free-travel'.
    Agreed, opens up the headspace.
    Regards, Jim

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    Legacy Member butlersrangers's Avatar
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    IMHO - A U.S. Kragicon bolt should show some clearance, (approximately .001" to .004"), between the rear of the Bolt's 'guide rib/ safety-lug' and the receiver. This appears to be how Springfield Armory built them.

    If the rear of the 'Safety Lug' bears against the receiver, it is likely there is locking-lug wear, 'lapping' of locking-lug, or 'movement of metal'.
    Head-space should be checked with a Field Gauge.

    Attachment 102891

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    If you are a handloader you could always load some fire forming rounds by loading a bullet in the lands of the rifling to hold the case against the bolt face and then fire form. These cases would then be for this rifle only and would require neck sizing only.

    Ken

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    Advisory Panel browningautorifle's Avatar
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    Quote Originally Posted by skeet1 View Post
    to hold the case against the bolt face
    Can also be achieved the way .303 guys do it...use a tiny rubber "O" ring around the case at the base. Holds the base against the bolt face and then neck size...
    Regards, Jim

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    Jim,
    I had forgotten about the "O" ring trick. You are right , that would work very well!

    Ken

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    Advisory Panel browningautorifle's Avatar
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    "Last On 10-10-2019 @ 03:36 PM"

    He didn't tell us if all worked out or not...
    Regards, Jim

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    Article on enfield head space

    Headspace 101 for .303's

    Several generations of American shooters have been convinced by bad information that something mysterious and scary called "headspace" should be checked and re-checked on almost any surplus rifle, especially Lee-Enfields. The truth is less interesting but still worth knowing.

    Stripped to its essentials, with a rimmed cartridge like the .303, headspace is simply the distance between the front of the bolt and the back of the barrel. It's the space where the "head" (rim) of the cartridge fits when the rifle is loaded.



    Since there has to be some room to allow for varying rim thickness, the headspace is normally a bit more than necessary - giving what I call "head clearance", a little extra space so the bolt can close easily, even on the thickest rim allowed.

    In addition, Lee-Enfields and their ammo were often made with a fair amount of space for dirt, mud, snow and other battlefield debris between the chamber and the cartridge's body and shoulder ("Body/shoulder clearance"). Since the cartridge is controlled by its rim, this clearance doesn't do any harm (except to handloaders who insist on full-length sizing).

    When a full-power .303 cartridge is fired, a whole string of events occurs.



    1. The firing pin shoves the case forward, rim against the breech. 2. The primer detonates. If it's not heavily crimped in place, it backs out, shoving the bolt and barrel as far apart as it can. 3. The thin, forward part of the case expands to fill and grip the chamber while the bullet moves out of the case and down the barrel. 4. The solid case head can't expand and grip the chamber, so it moves rearward, re-seating the primer, stretching the case walls just forward of the head, and stopping when it hits the bolt face. (In rear-locking actions like the Lee, the bolt and receiver also compress/stretch to add a little more movement. The higher the pressure, the more they move.) 5. If (and only if) the amount of head movement exceeds the elastic limits of the case, the cartridge separates into two pieces.

    New cartridge cases can normally stretch a lot before breaking. Even with a minimum rim .054" thick and maximum "field" headspace of .074", the resultant .020" head clearance is well within the limits of new brass and it's very unlikely a new case will separate even if the headspace is somewhat more than the field maximum (which is pretty rare).

    OK, but if one does separate I'm in deep trouble, right? Not really. It seems the short "cup" left behind the break is pretty good at keeping most of the gas where it belongs. Here's a demonstration -

    First I took a case that had been reloaded with heavy loads enough times so it was stretched near breaking.



    I loaded it with a 180-grain bullet and 40 grains of 4895 - a reasonably stiff charge about 2 grains under "maximum" - and fired it in a much-abused Savage No.4 with a clean sheet of typing paper wrapped around the receiver.



    When I opened the bolt, the separated head extracted. (The front piece of the case fell out when I happened to turn the rifle muzzle-up while removing the paper.)



    The sooty paper shows where some gas escaped. No rips or holes, just a little soot - and only where the bolt meets the barrel. Had I been shooting from the shoulder and wearing glasses, I probably wouldn't have noticed the leak at all.

    The point of all this is that excess headspace, even a bit beyond normal limits, isn't the terrible danger we've heard so much about. It's not a good thing for consistent ignition or long case life (although handloaders who neck-size or adjust F.L. dies carefully can control this) - but it's not a disaster waiting to happen.

    Unless you're consistently getting broken cases when firing new ammo or brass, there's not much reason to be worried about headspace in these sturdy old Lee-Enfields. Relax and enjoy!

    Handloading

    If you handload, there's no need to mess with bolt heads - changing the rifle's clearances to yield longer case life. You can control head clearance simply by changing technique.

    When you fire a new case for the first time, use a moderate powder charge and put a thin film of sizing lube on the case. This inhibits the case walls from gripping the chamber and eliminates or reduces stretch even if head clearance is significant. Another way of accomplishing the same end is to use a bullet seated out far enough to jam into the lands, "headspacing" on the bullet instead of the case.

    After you've fire-formed your new cases they will fill the chamber fully, headspacing on the shoulder just like a rimless cartridge. If you neck size, you'll have zero "headspace". If you have to full length size, adjust the die so the cases chamber with just a bit of resistance in the last few degrees of bolt rotation.

    Finally, don't try to turn a .303 into a magnum. Keep the pressures below the limit and you reduce the small amount the bolt and receiver compress/stretch on firing in a rear-locking action.

    With these techniques you can make your .303 cases last for dozens of loading cycles, even if your "gauge headspace" is well beyond the .074" field spec.
    Observations:

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