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December 8th, 2024

Sunday GunDay: .221 Fireball Winter Hunting Rig from Norway

.221 Fireball remington 700 hunting rifle thomas haugland sunday gunday accurateshooter forum

In our Shooter’s Forum there is a popular thread, Let’s See Those Hunting Rifles. This long-running thread features dozens of interesting hunting rifles of all varieties — from rimfires to big magnums. In that thread we found the focus of today’s story, a .221 Fireball. Now that we are in the thick of winter, with Christmas just two weeks away, we showcase this .221 Rem Fireball rifle from Norway. This rig belong to Thomas Haugland, aka “Roe” on our Forum. An avid backcountry hunter, Thomas also happens to be one of the best gun-content video producers on YouTube — check out Haugland’s THLR.NO YouTube Channel.

We’ll begin with two of Haugland’s remarkable videos — worth watching just for the stunning scenery. Thomas skis through the Norwegian Arctic backcountry, then successfully uses his suppressed, white-camouflaged .221 Fireball rifle to bag a Ptarmigan bird — bringing home a well-earned winter dinner.

NOTE: This is the short preview version. Watch the full hunt in second video.

.221 Fireabell remington 700 hunting rifle sunday gunday accurateshooter forum

.221 Fireabell remington 700 hunting rifle sunday gunday accurateshooter forum

.221 Fireabell remington 700 hunting rifle sunday gunday accurateshooter forum

The 7-minute video below shows the full ski hunt. The Ptarmigans are spotted at 4:30 time mark and Thomas takes the shot at 5:36. Great video — you feel like you are there in Norway’s white wilderness. The images above (including top photo) are pulled from this video.

.221 Fireabell remington 700 hunting rifle sunday gunday accurateshooter forum

About the .221 Fireball Cartridge
The .221 Remington Fireball cartridge was developed by Remington in 1963 for the XP-100 bolt action pistol. Today the cartridge remains popular with hunters/varminters, both in the original version, and with wildcats such as the .20 Vartarg and .17 Fireball. Lapua started making superb .221 Rem Fireball cartridge brass starting in 2014. However, according to Lapua: “This case is no longer in active production.” On 12/8/2024, we checked many leading vendors including Graf’s, MidwayUSA, and Powder Valley, but could not find new .221 Rem Lapua brass. Lapua notes: “Fireball brass has… seen a dramatic surge in popularity, due in large part to the efforts of wildcatters working with this versatile case. Whether used in its original form, or necked into one of the many cases that it serves as a parent for, the Lapua .221 Fireball brass is a sure winner[.]”

.221 Fireball remington 700 hunting rifle sunday gunday accurateshooter forum

Haugland .221 Fireball with New Carbon Stock and Walther Barrel

.221 Fireball remington 700 hunting rifle sunday gunday accurateshooter forum

Shown above is Haugland’s same .221 Rem Fireball from the videos, but with a new camo stock and new barrel. (The previous stock was painted white). Originally a Remington 700 Light Varmint, this was rebarreled to .221 Fireball with Lothar Walther 1:12″ barrel. Thomas admits he “Goofed a little on the barrel profile, so it is a tad heavier than I wanted.” The stock is a carbon-fiber Gunwerks ClymR and on top is a Leupold 3-18x44mm MK5 HD with Gunwerks RH1 reticle. Only the action and the trigger is left from the original rifle.

.221 Fireball remington 700 hunting rifle sunday gunday accurateshooter forum

.221 Fireball remington 700 hunting rifle sunday gunday accurateshooter forum

With the 1:12″ twist, this rifle is restricted to 55gr maximum bullet weight. Thomas posted: “Shoots well with Vihtavuori N130 and Norma N200 powders, not so good with RL7.” Due to lack of light in far-Northern Norway in winter (see photo above), Roe has not hunted with this rifle much since rebarreling, but as you can see, it’s very accurate — look at that group. Thomas says the gun shoots much better with the new barrel: “With the factory barrel (which I believe was 1:14″-twist) it didn’t shoot better than 1 MOA at 100 yards. Now it approaches half-MOA for three shots (see photo).”

.221 Fireball remington 700 hunting rifle sunday gunday accurateshooter forum

And Thomas was successful with this rig as “reborn” with new stock and barrel. Here’s the gun and a Ptarmigan he shot in the Norwegian snow-covered backcountry.

.221 Fireball remington 700 hunting rifle sunday gunday accurateshooter forum

If you like that Gunwerks ClymR carbon stock, here’s a Gunwerks video showcasing the ClymR Rifle System. A complete Gunwerks ClymR rifle with Titanium action and scope was a shocking $9734.99, so we can understand why Thomas went with the stock alone, paired with a older Rem 700 action.


.221 Fireball remington 700 hunting rifle sunday gunday accurateshooter forum

Permalink - Videos, Gear Review, Hunting/Varminting No Comments »
December 8th, 2024

How Hammer-Forged Barrels Are Crafted — Process Explained

bear creek arsensal cold hammer forged barrel rifling forging production

Gun-maker Bear Creek Arsenal has a good article on its website about rifling barrels. The article explains four common methods of rifling the interior of barrels: Cut Rifling, Broach Rifling, Button Rifling, and Hammer Forging. In addition, the article describes a new (and somewhat radical) method, Cation Rifling, which employs acid to etch rifling. READ Full Article.

The main focus of the article is on Cold Hammer Forging of barrels. This requires massive, expensive tooling, but the results can be very consistent. Many top gun-makers, such as FN, HK, and Ruger, have used the hammer forging process. And now Bear Creek Arsenal also offers hammer-forged barrels. Bear Creek recently acquired two state-of-the-art cold hammer forging machines. With hammer forging, a chamber can be formed and barrel contour shaped at the same time. This process produces some of the most consistent barrels available today. Here is a summary of how Cold Hammer Forging works:

Cold Hammer Forging — Machinery and Process

A cold hammer-forged barrel starts life… as a short and fat blank with a polished hole running through the center. A hardened mandrel of proper width (caliber) and rifling pattern — again reversed/inverted — is placed into the smooth bore. The pair go into a forging machine that compresses the steel against the mandrel, hammering it into final shape. The barely detectable external spiral patterns that remain on some barrels are imprints from those hammers at work. Some companies polish them out, however.

Cold hammer forging machinery is very expensive, representing a significant investment for companies. However, when the hammer forging process is done and the mandrel removed, the resulting barrel is the proper length and profile with rifling that is consistent and butter smooth. No lapping is required — a time and expense saver — although a stress-relief step often follows.

bear creek arsensal cold hammer forged barrel rifling forging production

The process takes place at room temperature, despite the misleading “cold” terminology. There is a hot hammer forging process, but the equipment is even more expensive and the slight improvement in grain consistency hasn’t proven advantageous enough for a return on that investment. Performance is impressive and consistent.

One of the biggest advantages of a cold hammer forged barrel is longevity. They… survive abuse and last longer. The manufacturing process adds those enviable virtues with each strike of those hammers — strengthening the metal in a work-hardening process employed by blacksmiths for centuries.

Comparing Popular Rifling Methods
What rifling process should you choose? If long-distance is your passion and you home brew custom cartridges to print tiny groups in the next zip code, cut rifling is the optimum choice. Button rifling is a solid second choice, but not always the Holy Grail long-distance shooters dream about. Cold hammer forged barrels, however, last longer and [offer great performance for the price.]

bear creek arsensal cold hammer forged barrel rifling forging production

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December 8th, 2024

Brass Faults That Predict Case Failure — Inspect Your Brass

Glen Zediker reloaders corner midsouth book AR-16 reloading semi-auto brass safety primer resizing
Close-up view of a sectioned case. This one here was “fixin’ to pop”, observed Glen Zediker.

Here are highlights from an article Glen Zediker wrote for the Midsouth Blog. In that article Glen, who sadly passed away in 2020, focused on cartridge brass. Glen identified the most common failures that appear with brass that has been shot multiple times, or which has been fired at excessive pressures. Glen explained some simple ways to check your cartridge brass to detect “early warning signs” of case failure, particularly case head separation, which can be very dangerous.

Glen authored many excellent books on reloading. This article is adapted from two of Glen’s books: Handloading For Competition and Top-Grade Ammo.

How Cases Degrade with Multiple Firings By Glen Zediker
This article explains when, and then how, to check after the progress of changes commencing with the firing on a new case. It’s the “progress of degeneration,” in a way of looking at it because the concern is getting a handle on when enough change in the brass has come about to require attention. Or abandonment. As said then, for me that’s 4 firings. That, as said last time, is when I might see changes that need attention. Also as said, that figure didn’t come out of a hat, but from my own notes in running my competition NRA High Power Rifle loads. [Editor’s Note: With Lapua brass, using moderate loads, in bolt-action rifles, we typically get about 10 good (match-worthy) firings. But if you anneal your Lapua brass, and run modest pressures, Lapua brass can perform well for 20 or more load cycles.]

The areas most affected are the case neck and case head area. Case neck walls get thicker [but] the case head area body walls get thinner. Primer pockets get shallower and larger diameter.

Glen Zediker reloaders corner midsouth book AR-16 reloading semi-auto brass safety primer resizing

This case shows a cracked neck AND a crack (separation) above the case head. Zediker says it is “rare to see one case with both of the most common failures. [This case] was attacked by an M14.”

Case Head — Causes of Separation and Cracking
When a case is under pressure during firing, the brass, like water, flows where it can, where it’s more free to move. Of course, the chamber steel limits the amount it can expand. The case shoulder blows fully forward and the case base is slammed back against the bolt face. There is, therefore and in effect, a tug on both ends — it gets stretched. The shoulder area is relatively free to expand to conform to the chamber, but the other end, the case head area, is not. Since that’s the area of the case with the thickest walls, it doesn’t expand “out” much at all. What it does is stretch. The “case head area,” as I refer to it here, is the portion of the case above the web, which is just above the taper that leads in to the extractor groove. The “area” extends approximately an eighth-inch up the case body.

Glen Zediker reloaders corner midsouth book AR-16 reloading semi-auto brass safety primer resizing

Here’s a “pressure ring.” You’ll see this after firing, if you see it. And, if you see it, that case is done. The bright ring indicates excessive stretching, which indicates excessive thinning. If you see a ring circling the case, noticeable because it’s lighter color than the case body, and it’s in this area, I’d say that case is done. And that’s right where a “head separation” occurs. It can crack and also blow slap in two, and that’s the “separation” part of case head separation.

Case-head case cartridge pressure ring separation head failure GS Arizona
Photo courtesy GS Arizona.

This is a spot to keep close watch on as cases age. It is also the area that is more “protected” by sizing with less case shoulder set-back. That is, pretty much, where the freedom for the stretching movement in this area comes from (the case shoulder creates a gap). If you’re seeing a sign that a head separation [might happen with relatively few firings], chances are the shoulder set-back is excessive, and also… the load pressure level.

Bent Paper Clip Case-Wall Gauge
Case-Head Separation paper clip Glen Zediker GS Arizona

Editor: You can use a bent paper clip to detect potential case wall problems. Slide the paper clip inside your case to check for thin spots. GS Arizona explains: “This simple little tool (bent paper clip) will let you check the inside of cases before you reload them. The thin spot will be immediately apparent as you run the clip up the inside of the case. If you’re seeing a shiny line on the outside and the clip is really hitting a thin spot inside, it’s time to retire the case.” Photo by GS Arizona.

Monitor Primer Pocket Dimensional Changes
Another case-head-area and pressure-related check is the primer pocket. As said, the primer pocket will get larger in diameter and shallower in depth each firing. As with many such things, the questions are “when” and “how much,” and the main thing, “how much?”

If the pocket gets excessively shallow, and that’s judged by a primer that seats fully but isn’t at least a tick below flush with the case base, there could be function issues. There’s a risk of a “slam-fire” with a semi-auto that uses a floating firing pin, and, if there is actual protrusion, that has the same effect as insufficient headspace. A primer pocket uniformer can reset the depth of a shallowed primer pocket to what it should be, but the real test for me is how easily the next primer seats into it. If it’s significantly less resistance, I’ll say that case is done. Shallower can be refurbished. That’s a primary function of a primer pocket uniformer. Larger diameter, though, can’t be fixed. I’ve mentioned in another article or two that, any more at least, my main gauge of load pressure has become how much primer pocket expansion there’s been.

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