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SOG Tools Featured On Discovery Channel

SOG® Tools was featured on Discovery Channel’s Unchained Reaction, a new show from the hosts of MythBusters.


The hosts chose SOG to be part of the Jack of All Trades episode, which originally aired April 15, 2012 at 10 p.m. EST.

 

Unchained Reaction is a new series executive produced and judged by Adam Savage and Jamie Hyneman of MythBusters. The show pits two teams of varying backgrounds against each other to build an elaborate chain reaction contraption. In this Sunday’s episode, a team of designers and a team of construction workers square off to build the most impressive multi-step machines using the theme of “tools.” SOG provided the teams with a wide array of tools to use during the episode, including the Hand Axe, Double Headed Axe, FastHawk, Tomahawk, Pocket PowerPlier, PowerLock and the PowerAssist.

 

SOG was founded in 1986 by Spencer Frazer, a former R&D tool and die maker for the Top Secret Black Projects Division of the aerospace defense industry. SOG’s name was inspired by elite joint services military unit – the Studies and Observation Group – formed in advance of the Vietnam War to conduct covert operations and authorized to develop and purchase their own weapons.

 


 

Click here to browse BLADE-approved knives and tools at ShopBlade.com.

FORGE FAVORITES: Adam and Haley DesRosiers

Haley DesRosiers’ five applicant knives for the rating of ABS journeyman smith include the one (center) judged best of all those submitted by JS applicants, thereby winning the 2011 George Peck Award. (SharpByCoop.com photo)

 

By B.R. Hughes, a founding member of the American Bladesmith Society, a member of the Blade Magazine Cutlery© and ABS Halls Of Fame, and BLADE® field editor

 

If you are old enough, you may recall a 1954 hit song written by Johnny Richards and Carolyn Leigh that went something like this:

    Fairy tales can come true, it can happen to you,

    If you’re young at heart …

    Don’t believe in fairy tales? After reading the storybook saga of Adam and Haley DesRosiers and the adventures they experienced at the 2011 BLADE Show, you just might alter your thinking.

    Let’s begin with Haley, a winsome lass born in Stika, Alaska, the daughter of a commercial fisherman and a mother who assisted in the family business. The future Mrs. DesRosiers spent many days on her dad’s fishing vessels working as a deckhand, and there were occasions when her boat was at sea for as long as several weeks.

    At 17 she developed an interest in knives, and, inspired by a video, decided to be a bladesmith. Her first forge was a hole in the ground, the air power supplied by an electric hair dryer via a pipe.

    As her skills improved, so did her smithy. One day she decided her beat-up anvil needed repairing. On an Internet knife discussion forum she learned her anvil could indeed be fixed, and ABS master smith Jason Knight e-mailed her about Adam DesRosiers, an Alaskan ABS journeyman smith who might be willing to help. In turn, Jason told Adam of the young Alaskan lady interested in bladesmithing. Adam promptly e-mailed Haley and offered his assistance.

    Setting up the initial meeting between the future husband and wife was not so simple. Both lived in remote areas, approachable only by air or sea, so they agreed to rendezvous at a folk festival in Juneau on April 8, 2008. While there, Adam took Haley’s anvil to the shop of ABS journeyman smith David Mirabile, where it was refurbished. Haley gave Adam some caribou antler and he presented her with a handmade gas forge. At the time, Haley was still using a hairdryer as a blower. Many communications between the two followed. A bit later, Haley’s father offered Adam a job as a deckhand for the balance of the season. He accepted and so, in reality, Adam and Haley’s first date consisted of six weeks of offshore fishing, both working as deckhands.

    Born in Anchorage in 1976, Adam is the son of a commercial fisherman and a nurse. After Adam was graduated from high school, he attended the University of Alaska, studying marine technology.  While there he worked at a local boatyard and, after college, joined the Merchant Marine, serving as a deckhand for three years.

    As for his first memory of making knives, at the ripe old age of 5 he took his mother’s butter knife and “improved it” in his father’s workshop, using the cement floor as a grinder. It must be noted that his mother was not impressed with the “improvements.”

    Adam’s first forge was a galvanized washtub, also featuring an electric hairdryer. In 2001 he attended the William F. Moran School of Bladesmithing in Washington, Arkansas, for the introduction to bladesmithing class, where his instructors were Kevin Cashen and Dickie Robinson. The same year he took a damascus class taught by John Fitch at the school. Adam returned the following year to take another damascus class, one taught by Steve Dunn. In 2006, Adam received his ABS journeyman smith rating. I was the head judge of the review panel that year, and Adam received not one negative vote from the panel.

    As Adam and Haley’s romance flourished, Haley took the introduction to bladesmithing class at Haywood College in Clyde, North Carolina. Adam joined her, deciding it would not hurt to take a refresher course. The instructors were Burt Foster and Jason Knight, the latter the man who initially introduced Adam and Haley. It was on the bank of Jason’s pond in South Carolina that Haley and Adam became engaged on April 12, 2009. 

    They were married Sept. 13, 2009. Haley was borne by a raft down an Alaskan creek to the ceremony. Using the anvil that had brought the bridge and groom together for the first time as an altar, the service was performed by Pastor Berry Byrd. ABS master smiths Knight and James Rodebaugh were among the groomsmen. Adam wore a sword for the ceremony, as did the groomsmen, and their swords provided the arch under which the happy couple departed. (For more, see Haley’s story “A Match Made in Handforged Heaven” in the October 2010 BLADE®.)

    Haley set up bladesmithing in Adam’s shop. There they made their first knife together, featuring a blade of 5160 carbon steel. Adam prefers to make camp knives and Haley likes hunters, which is certainly natural enough since she is a devoted outdoors enthusiast. When I inquired what type of game she most enjoyed hunting, she quickly replied, “Deer, duck, caribou, black bear and brown bear.”

    “Ever been charged by a bruin?” I asked.

    “Once.”

    “What happened?”

    “I dropped him with my .30-06.”

    Verily, a modern-day Diana!

    As the 2011 BLADE Show neared, the DesRosiers were extremely busy. Adam was preparing to test for ABS master smith, while Haley was getting ready for her quest for a JS stamp.

    “Did Adam do anything to help you get ready?” I asked. “Yes,” Haley smiled, “Among other things, he told me to quit playing with damascus!” For the ABS JS review, no damascus is permitted on any of the five applicant knives. Hence, she concentrated on knives featuring blades of 1084 and W2, her two favorite carbon steels.

    During the BLADE Show, each took his/her five review knives to two separate rooms in Atlanta’s Cobb Galleria Center, where judging panels awaited. In addition to passing or failing the applicants, the panels were also required to select the winners of the George Peck Award and the B.R. Hughes Award. The former is for the best knife submitted by a JS applicant, the latter for the single finest knife made by an MS applicant.

    A happy ending for this tale would have both Haley and Adam earning their respective ratings. They did—but there’s more. An incredible conclusion would have Haley winning the Peck Award and Adam receiving the Hughes Award—and they did! (See page 48, January BLADE.)

    If that is not a fairy tale come true, it will do until one comes along.

 


THE DESROSIERS’ FILE

 

Adam and Haley DesRosiers

POB EXI

Juneau, AK 99850

907-321-7258

www.alaskablades.com

Adam’s Specialties: Forged fixed blades, especially camp knives

Haley’s Specialties: Forged fixed blades, especially hunters

Adam’s Steels: W2, damascus in 1084 and 15n20

Haley’s Steels: W2 and 1084; damascus

Handles of Both: Natural materials, including the ancient ivories, assorted woods and others

Adam’s Honors: ABS master smith, winner of 2011 B.R. Hughes Award

Haley’s Honors: ABS journeyman smith, winner of 2011 George Peck Award

For more on the latest knives, knife legislation, knifemaking instruction, knife trends, knifemakers, what knives to buy and where and much more, subscribe to BLADE® Magazine, the World’s No. 1 Knife Publication. For subscription information click on http://www.shopblade.com/product/blade-magazine-one-year-subscripti…?r+ssfb040912#BL1SU.

 

Knife Test: Buck 931 Chef Knife

Buck 931 8″ Chef Knife Review Knife: http://bit.ly/tdJql8 The Buck Knives 931 Chef Knife is amazing. 

Survival Necker

Since the 1095 blade of Jonathan McNees’ Survival Necker is differentially hardened for a hard edge and softer back—which also results in a handsome hamon—a portion of the blade is not hard enough for sparking via the striker. As a result, McNees also includes a fire steel for the purpose. (SharpByCoop.com photo)

McNees’ PSK has the essentials to survive a short-term emergency

Jonathan McNees’ Survival Necker—PSK (Personal Survival Knife) for short—features the bare survival essentials all in one modular system. The 5.75-inch knife has a differentially hardened blade of 1095 carbon steel and a G-10 handle with hollow-tube construction to accept a lanyard. The handle sports a glow-in-the-dark dot for ease of location at night.

    Included are a fire steel and striker, three-phase (high, low and blinking) flashlight, paracord and whistle. The handle of the fire steel is hour-glass shaped to contain two fish hooks wrapped with 30 feet of 30-pound Spiderwire® fishing line, which also can be used for snares and trip wires. In addition to the Kydex® sheath, a two-sided plate with a compass on one side and a mirror on the other rides on a necklace/bead chain. The system also breaks down for belt wear.

Knife: Survival Necker

Maker: Jonathan McNees

Blade Steel: 1095 carbon

Heat Treatment: Differentially hardened

Handle: G-10 w/glow-in-the-dark dot

Sheath: Kydex®

Survival Items: Fire steel and striker, compass, mirror, whistle, flashlight, paracord and fishing line with two fishhooks

Maker’s List Price: $185

    For more information contact Jonathan McNees, 15203 Starboard Pl., Northport, AL 35475 205-915-3254 www.mcneescustomknives.com.

For more on the latest knives, knife legislation, knifemaking instruction, knife trends, knifemakers, what knives to buy and where and much more, subscribe to BLADE® Magazine, the World’s No. 1 Knife Publication. For subscription information click on http://www.shopblade.com/product/blade-magazine-one-year-subscripti…?r+ssfb040512#BL1SU.

 

ABS Knife Auction – 2012 Journeyman Smith Knife of the Year

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The 2012 ABS Journeyman Smith Knife of the Year is by Karl B. Andersen, JS. It is part of the 2012 at the ABS Knife Auction set for June 9, 2012 at the Blade…

ABS Knife Auction – 2012 Master Smith Knife of the Year

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The 2012 ABS Master Smith Knife of the Year is by Jon Christensen, MS. It is part of the 2012 ABS Knife Auction set for June 9, 2012 at the Blade Show in Atl…

FROZEN SHARP! Cryogenically Treated Blades

Cryogenic quenching may be performed on a single blade or hundreds at a time. Blade Magazine Cutlery Hall-Of-Fame© member Paul Bos said he may do a single blade or put a large quantity in a basket for immersion at one time, and control the rate of cooling and return to room temperature precisely. (Buck Knives photo)

Given the right steels, cryo treatments can enhance overall performance as well as aesthetics

By Mike Haskew, BLADE® field editor

Whether called cryogenic quenching or the probably more correct cryogenic treating of the steel, the process of freeze treating to help make a steel the best performer it can be is nothing new. Since the U.S. military became involved in cryogenically quenching steels during World War II and required it in the manufacture of various defense-related products, several methods have been evaluated with the same goal in mind: optimizing the amount of martensitic iron in the structure of the steel while minimizing the residual amount of austenitic iron. In turn, the qualities most sought in a knife blade are enhanced, particularly edge holding.

    “There are different ways that cryogenic treating is performed,” explained Scott Devanna, vice president of marketing and product development for Carpenter Steel, “but all methods are designed to accomplish the same goal, although the methods sometimes attain differing degrees of transformation from austenite to martensite. Cryogenic treatment is not a different type of quenching method but is an additional treatment normally used after quenching. It’s used after the quench in an effort to achieve more complete transformation of austenite to martensite [martensite being the hardest of the transformation products of austenite].

    “Most tool steels actually develop their hardened structure, or martensite, during the quench,” he continued. “For various reasons, however, in some cases transformation to martensite may not be complete even at room temperature. In such cases, some of the high-temperature microstructure, or austenite, may be retained after normal heat treating.”

    A2 and D2, as well as other high-alloyed tool and specialty steels, may contain as much as 20 percent austenite after normal heat treating. Cooling the steel to cryogenic temperatures furthers the conversion to martensite. However, the process is specialized and requires close attention to actual temperature, levels of exposure, and the time intervals involved in raising and lowering the temperatures of the steel itself.

    “The newly formed martensite is similar to the original as-quenched structure and must be tempered,” Devanna warned. “Cryogenic treatments should always be followed by tempering. Often the cryogenic treatment is actually performed between normally scheduled multiple tempers. Technically, cryogenic treatments are most effective as an integral part of the original quench, but due to the high risk of cracking, it’s recommended that tempering or a snap temper be performed before any cryogenic treatments.”

    The cryogenic quench itself is performed primarily in two ways: shallow and deep treatments. In the shallow treatment, the blade steel is brought to approximately -112°F for five hours, while in the deep treatment it is reduced to roughly -321°F for about 35 hours. This is most often accomplished through immersion in liquid nitrogen.

    “The term quench tends to imply that there’s a rapid change in temperature,” noted Spencer Frazer of SOG Specialty Knives & Tools. “In the case of cryogenic treatment, the quench term is quite misleading. Due to the severity of the temperature involved, quenching the material would cause it to crack or fracture. For that reason, cryogenic treatment is performed using computer-controlled temperature changes. At SOG, we use a version of deep cryogenic treatment, and some adjustments were made to the standard method to best suit the knife steels SOG uses. We consider it a supplementary process that helps improve the wear resistance of the blade steel.”

Blending In The Clumps

Blade Magazine Cutlery Hall-Of-Fame© member Paul Bos began heat treating knife blades in the 1950s. Back then he worked in the aircraft industry and treated a number of components. He said he also has seen the cryogenic process produce higher performance in guitar strings, women’s nylon stockings, gun barrels and engine parts.

    “I figured if the military wanted it done, then it would be good for knives,” Bos said. “Originally, it was there to get rid of austenite in martensitic steel. Austenite makes steel brittle, and under a microscope you can see what looks like little clumps of carbon. The cryogenic process is like putting stuff in a blender with clumps and pretty soon everything is mixed in a fine solution. Once you do the cryo on a steel, then the austenite dissipates and you are left with a fine grain structure.”

    Bos does a snap temper on high-carbon tool steel and then the cryogenic process at -280°F for about eight hours, and then brings the steel slowly back up to room temperature before a second temper. While cryogenic quenching is not a necessity on high-carbon steels*, its effects are more profound on higher-alloy-content steels, which do not completely transition from austenite to martensite at room temperature.

    “Once the steel gets past -100°F it’s in a state where you aren’t hurting it, but you can’t leave it in there too long,” Bos added. “Some guys go right from the quench into the cryo, but the blade could crack or break, and I don’t do that because I can’t take a chance with my customers’ blades.”

    Both factory and custom knifemakers take advantage of cryogenic quenching, and the process may be performed on a single blade or hundreds at a time. Bos’s career has spanned decades of heat treating blades for Buck and for a vast number of custom makers, including some of the most famous of all time. He may do a single blade or put a large quantity in a basket for immersion at one time, and control the rate of cooling and return to room temperature precisely.

    According to Bos, creating the optimal transformation of austenite to martensite is an integral part of the heat-treating process. To obtain the maximum formation of martensite, two or more complete tempering cycles are necessary following the sub-zero cryogenic quench. He stressed that the blades always should be allowed to cool to room temperature between tempering sessions.

Deep-Treatment Believer

For many custom makers, the benefits of cryogenic quenching are proven in the knife’s overall performance. Bob Beaty is a firm believer in the deep treatment below -300°F. A knifemaker since 1994, he does, however, note that simple steels do not seem to exhibit enhanced performance as a result of the procedure.

    “I do both forging and stock removal,” Beaty remarked, “and basically you find most of the benefit in the more complex stainless steels. I believe the knife stays sharper longer, and I’ve tested that a lot and am still testing it. Once a month I’ll cut rope, cardboard and leather. I always get a big difference, probably a 40-to-50-percent difference in edge-holding capability, as the cryogenic quench refines the grain of the steel.”

    Though he admits there are skeptics, Beaty says the enhancements of the cryogenic quench are real. In fact, he says he has experienced fewer incidences of edge chipping and an easier time getting a mirror finish on a blade after the cryogenic treatment.

    For the custom maker, outsourcing cryogenic treating remains the most efficient method of getting the job done. “I recommend it for those makers using complex steels, and I’m only charged a small amount for the blades I send for cryo treating,” Beaty noted. “One of the downsides of liquid nitrogen is it evaporates, and that would make the process more expensive for me. Not only would I have to buy the nitrogen, but also the tank and other equipment, including an oven. It really does not add much to the overall cost of the knife. Of course, if you wanted to, you could cryo treat something in a thermos bottle. Just don’t put the lid on it, don’t put your hand in it, and don’t do it in your wife’s kitchen!”

A Difference Maker

The choice of steel apparently drives the benefit of the cryogenic quench. From a knife buyer’s standpoint, a cryogenically treated blade could make the difference in performance and easily justify any minimal added expense.

    *According to Paul Bos, high-carbon steel usually is any steel containing anywhere from .6 to 2 percent carbon.

For more on the latest knives, knife legislation, knifemaking instruction, knife trends, knifemakers, what knives to buy and where and much more, subscribe to BLADE Magazine, the World’s No. 1 Knife Publication. For subscription information click on http://www.shopblade.com/product/blade-magazine-one-year-subscripti…?r+ssfb040312#BL1SU.

 

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