Description Thick Len Wid Price Qty Stock

M2 Carbon Steel, HRDA

.062 in 23.5 in 1.5 in $33.00
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BSM2-0062-235015 3

M2 Carbon Steel, HRDA

.090 in 23.5 in 2.0 in $50.60
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BSM2-0090-235020 5

M2 Carbon Steel, HRDA

.090 in 23.5 in 6.3 in $159.30
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BSM2-0090-235063 1

M2 Carbon Steel, HRDA

.090 in 23.5 in 11.5 in $290.90
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BSM2-0090-235115 1

M2 Carbon Steel, HRDA

.104 in 23.5 in 2.3 in $60.20
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BSM2-0104-235023 1

M2 Carbon Steel, HRDA

.104 in 23.5 in 2.4 in $62.90
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BSM2-0104-235024 2

M2 Carbon Steel, HRDA

.122 in 23.5 in 2.0 in $55.80
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BSM2-0122-235020 2

M2 Carbon Steel, HRDA

.122 in 23.5 in 2.1 in $58.60
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BSM2-0122-235021 1

M2 Carbon Steel, HRDA

.120 in 23.5 in 2.3 in $63.20
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BSM2-0120-235023 1

M2 Carbon Steel, HRDA

.122 in 23.5 in 2.8 in $78.20
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BSM2-0122-235028 1

M2 Carbon Steel, HRDA

.122 in 23.5 in 6.0 in $167.50
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BSM2-0122-235060 1

M2 Carbon Steel, HRDA

.142 in 11.6 in 1.1 in $17.80
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BSM2-0142-116011 2

M2 Carbon Steel, HRDA

.142 in 11.6 in 1.5 in $24.30
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BSM2-0142-116015 11

M2 Carbon Steel, HRDA

.142 in 23.5 in 1.5 in $49.20
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BSM2-0142-235015 8

M2 Carbon Steel, HRDA

.142 in 23.5 in 1.9 in $62.30
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BSM2-0142-235019 1

M2 Carbon Steel, HRDA

.142 in 11.6 in 2.0 in $32.40
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BSM2-0142-116020 10

M2 Carbon Steel, HRDA

.140 in 23.2 in 2.0 in $63.80
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BSM2-0140-232020 2

M2 Carbon Steel, HRDA

.142 in 23.5 in 2.0 in $65.60
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BSM2-0142-235020 1

M2 Carbon Steel, HRDA

.142 in 23.5 in 2.3 in $75.40
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BSM2-0142-235023 1

M2 Carbon Steel, HRDA

.142 in 11.6 in 2.4 in $38.90
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BSM2-0142-116024 2

M2 Carbon Steel, HRDA

.142 in 23.5 in 2.5 in $82.00
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BSM2-0142-235025 1

M2 Carbon Steel, HRDA

.142 in 11.6 in 3.0 in $48.60
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BSM2-0142-116030 2

M2 Carbon Steel, HRDA

.142 in 23.5 in 3.0 in $98.40
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BSM2-0142-235030 2

M2 Carbon Steel, HRDA

.142 in 23.5 in 5.9 in $193.50
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BSM2-0142-235059 1

M2 Carbon Steel, HRDA

.142 in 23.5 in 6.0 in $196.80
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BSM2-0142-235060 1

M2 Carbon Steel, HRDA

.142 in 23.5 in 11.5 in $377.10
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BSM2-0142-235115 2

M2 Carbon Steel, HRDA

.164 in 11.6 in 1.4 in $23.90
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BSM2-0164-116014 3

M2 Carbon Steel, HRDA

.164 in 11.6 in 1.5 in $25.60
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BSM2-0164-116015 6

M2 Carbon Steel, HRDA

.164 in 23.5 in 1.5 in $51.90
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BSM2-0164-235015 3

M2 Carbon Steel, HRDA

.164 in 11.6 in 2.0 in $34.10
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BSM2-0164-116020 3

M2 Carbon Steel, HRDA

.164 in 23.5 in 2.0 in $69.10
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BSM2-0164-235020 1

M2 Carbon Steel, HRDA

.210 in 23.5 in 2.0 in $92.60
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BSM2-0210-235020 3

M2 Carbon Steel, HRDA

.210 in 23.5 in 11.5 in $532.50
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BSM2-0210-235115 1

M2 Carbon Steel, HRDA

.228 in 23.5 in 1.8 in $94.80
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BSM2-0228-235018 1

M2 Carbon Steel, HRDA

.230 in 11.6 in 2.0 in $52.40
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BSM2-0230-116020 18

M2 Carbon Steel, HRDA

.230 in 23.3 in 2.0 in $105.30
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BSM2-0230-233020 1

M2 Carbon Steel, HRDA

.230 in 23.5 in 2.0 in $106.20
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BSM2-0230-235020 1


InformationM2 Carbon Steel Information and Composition

Condition:
Our M2 has been properly annealed and is in the soft condition. You do not have to do any non-standard wasteful processes before heat treating. The steel must be heat treated to get to a hardened state. Follow the heat treat recipe and the steel will get hard.

Ratings:
20 = Maximum Toughness
46 = Maximum Edge Holding

The rating scale is 0-100, 0 being minimum and 100 being maximum. The ratings are the maximum potential of the alloy. I do not recommend heat treating to the maximum value. Choose a heat treat recipe that results in the attributes you want.

Thank you to Dr Larrin Thomas for all the testing he performed and information he has provided. Buy his book Knife Engineering to learn more about knifemaking.

Alloy Comparison Table:

Description:
This steel gets very sharp and has good edge holding. M2 has been used by Benchmade and Gerber and is known for its edge holding. The most common use for M2 is to make tools to cut metal. For example, many drill bits are made from M2.

We do not disclose the mill where this alloy is made. The mill is located in Europe and has very tight tolerances for alloys they produce.

Flat Ground:
Any alloy that has “Flat Ground” in the description has been Blanchard ground. Our tolerances for flat grinding are +-.001” across 12”. You can identify Blanchard grinding by circular grind marks. Do not be mislead by other descriptions. Others try to pass off less accurate types of grinding with lower tolerances as flat grinding. This is why we call out our tolerances.

Information Sources:
There are many sources of information regarding knifemaking. Some sources, like Dr. Larrin Thomas of Knife Steel Nerds, are excellent. Other sources are not as credible. It is important to vet the your information sources. Be careful of anyone who says the way to heat treat 1095 or O1 is to heat to non-magnetic and quench in used motor oil. Anyone who publishes this type of information is not credible. When possible, we use information from manufacturers and industry experts.

AI Information:
The latest trend of bad information is from Artificial Intelligence (AI). Multiple companies have AI programs. AI collects and compiles information. The problem is, AI is does not know if the information is accurate or garbage. When asked, AI regurgitates and merges good and bad data. Beware of AI data when researching materials. If you read material information that sounds like it was written by a poetry graduate student, compares materials that are not similar, contains blatantly false information, etc, it was probably AI generated. At AKS, we never use AI to generate material information.

Data Sheet:
Crucible M2 Data Sheet


Heat TreatM2 Heat Treat Information:

Preheat: Heat to 840-930°F. Equalize temperature. Second pre-heat stage at 1,560-1,650°F. Equalize temperature.

Austenitize: It is critical to not exceed the maximum austenitize temperature. If you overshoot the maximum temperature by a small amount, toughness will go down dramatically.

1,875-2,200°F. Soak time at temperature:

  • 1,875°F - 45 minutes
  • 1,975°F - 30 minutes
  • 2,050°F - 20 minutes
  • 2,100°F - 15 minutes
  • 2,150°F - 10 minutes
  • 2,200°F - 5 minutes

For cutting tools use 2,150-2,200°F. For cold work applications use 1,875-2,125°F. Quench in air or positive pressure quench to below 125°F, or salt or interrupted oil quench to about 1,000°F, then air cool to below 125°F. A fast quench rate from hardening temperature to below 1,100°F is critical to achieve optimum heat treat response. A slower cooling rate below 1,000°F may be used to minimize distortion.

Temper: Double temper at 1,000°F minimum. Triple temper recommended when hardening from 2,100°F or higher. 2 hours minimum each temper. Air cool to room temperature between tempers. Use the chart below to select the tempering temperature.

Cryogenic Treating: After the first temper may improve long term dimensional stability by transforming retained austenite. Any cryogenic treatment must be followed by a temper.

Use the graph below to select your temperatures:


CertsM2 Certs

Chemical Composition Certification*

  1. Click on the button below to get the chemical composition of the steel you purchased.
  2. You will be required to enter the three character code written in red letters on your steel.
  3. If you do not see red letters on the steel, your specific chemical composition is not in the system.

Lookup Cert
 
* This material is NOT certified for medical or aerospace applications.
  .

BSM2 BSM2-0040 BSM2-0060 BSM2-0080 BSM2-0100 BSM2-0120 BSM2-0140 BSM2-0160 BSM2-0180 BSM2-0200 BSM2-0220 BSM2-0240 BSM2-0260
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M2 Carbon Steel
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