Tool Steel Comparison Guide

Cr12MoV vs D2 Tool Steel, Are They Equivalent?

Cr12MoV is not equivalent to AISI D2 tool steel. Both are high-carbon, high-chromium cold-work tool steels, but they differ in alloy content, heat treatment response, wear resistance, and international grade equivalency.

The main difference is between molybdenum and vanadium. D2 contains higher Mo and V than Cr12MoV, so it performs better in abrasive wear, secondary hardening, and long-run cold-work tooling. Cr12MoV can still work well in standard cold-work applications, but it should not be used as a direct D2 replacement without customer approval.

In Chinese GB grades, Cr12Mo1V1 is the equivalent of AISI D2. Cr12MoV is a related Chinese cold-work tool steel, not the same material as D2.

Cr12MoV and D2 Differ Mainly in Molybdenum and Vanadium Content

The chemical composition explains the performance gap between Cr12MoV and D2. Their carbon and chromium contents are close, but D2 contains more molybdenum and vanadium.

ElementCr12MoVAISI D2
Carbon1.45%–1.70%1.40%–1.60%
Chromium11.00%–12.50%11.00%–13.00%
Molybdenum0.40%–0.60%0.70%–1.20%
Vanadium0.15%–0.30%0.50%–1.10%
Silicon≤0.40%≤0.60%
Manganese≤0.40%≤0.60%

Composition data is for general reference only. Actual values vary by standard, mill, and heat number. Confirm against the material test certificate (MTC) or contact Aobo Steel.

Molybdenum improves hardenability and tempering resistance. Vanadium helps form hard carbides and improves wear resistance. This is why D2 usually has a higher performance ceiling in wear-critical tooling.

Cr12MoV still offers useful wear resistance, but its lower Mo and V content makes it a lower-alloy choice than D2. The full property set for D2 is collected on the D2 steel properties page.

D2 Offers Stronger Wear Resistance and Secondary Hardening Than Cr12MoV

D2 usually provides better abrasive wear resistance because its higher Mo and V content promotes the formation of harder alloy carbides. These carbides help the tool keep its working edge and surface under abrasive contact.

D2 also responds better to high-temperature tempering. During tempering at 500–550 °C, molybdenum and vanadium promote secondary hardening via fine-carbide precipitation. This helps D2 maintain high hardness after tempering.

Performance FactorCr12MoVAISI D2
Wear resistanceGoodBetter
Secondary hardeningModerateStronger
Dimensional stabilityGood when properly treatedVery good with air hardening
Best fitGeneral cold-work toolingLong-run and wear-critical tooling

This does not mean Cr12MoV is weak. It means D2 is the stronger option when abrasive wear, edge retention, and tool life are the main concerns.

D2 and Cr12MoV Use Similar Heat Treatment Steps but Respond Differently

Both steels require controlled heat treatment. The process usually includes preheating, austenitizing, quenching, and tempering. Their temperature ranges are close, but their responses are not identical.

Heat Treatment ItemCr12MoVAISI D2
AustenitizingAbout 1000–1050 °CAbout 1010–1040 °C
QuenchingOil or air, depending on section size and processUsually air quenching
Low-temperature temperingAbout 150–200 °CAbout 150–200 °C
High-temperature temperingAbout 500–520 °CAbout 500–550 °C
Typical working hardnessAbout 58–61 HRCAbout 58–62 HRC

Cr12MoV can achieve high hardness and low deformation when heat treatment is properly controlled. Overheating should be avoided because it can cause grain growth and reduce toughness.

D2 has better air-hardening behavior. It can harden with lower quenching stress, so it usually provides better dimensional stability in precision tooling and long-run production. The full sequence is in the D2 heat treatment guide, and the austenitizing range is covered in detail on the D2 austenitizing temperature page. Tempering response for both grades is compared in the tempering chart.

Cr12Mo1V1 Is the Chinese Equivalent to AISI D2

Cr12MoV is not the Chinese equivalent of AISI D2. The Chinese GB equivalent is Cr12Mo1V1.

This distinction matters in international purchasing. Drawings and purchase orders may specify D2, 1.2379, SKD11, X153CrMoV12, or Cr12Mo1V1. These grades refer to D2-type material requirements. Cr12MoV should not be used in place of them unless the buyer confirms the substitution. The complete cross reference is in the tool steel equivalent grades table.

GradeStandard / RegionRelationship
AISI D2USAReference grade
1.2379DIN / ENCommon D2 equivalent
X153CrMoV12ENCommon D2-type designation
SKD11JISCommon Japanese equivalent to D2
Cr12Mo1V1GBChinese equivalent to AISI D2
Cr12MoVGBRelated cold-work tool steel, not direct D2 equivalent

Cr12MoV Fits General Cold-Work Tooling, While D2 Fits Longer Production Runs

Cr12MoV and D2 can appear in similar tooling categories, but they are suited to different levels of working severity, and both belong to the cold-work tool steel family. Cr12MoV is more practical when cost control is a priority, and the tool does not experience extreme wear. D2 is more suitable when production volume, dimensional stability, and service life are more important.

Application or RequirementBetter ChoiceReason
General punching diesCr12MoV or D2Choose by wear level and production volume
Long-run blanking diesD2Better edge retention and wear resistance
Thread-rolling diesD2Better for high pressure and long service life
Cold shears and slitter bladesD2Better under abrasive cutting conditions
General drawing diesCr12MoV or D2Cr12MoV fits moderate use; D2 fits heavier wear
Gauges and precision toolsD2Better dimensional stability after heat treatment
Cost-sensitive cold-work toolsCr12MoVLower alloy content can reduce material cost
International D2-type requirementD2 or Cr12Mo1V1Matches common D2 equivalent expectations

Choose Cr12MoV as a cost-effective option for standard cold-work tooling. Choose D2 or Cr12Mo1V1 when the tool needs higher wear resistance, better dimensional stability, longer service life, or D2-type international equivalency. For a full application map, see tool steel selection by application and how to select tool steels.

Aobo Steel supplies D2 / 1.2379 / SKD11 and Cr12MoV cold-work tool steel in an annealed condition as round bar and flat bar for bulk industrial orders. Size range, tolerances, minimum order and lead times are set out on our tool steel supply capability page.

The comparison data in this guide is provided as general technical reference for our customers. Actual performance depends on the delivered heat number, section size, heat treatment practice, and tooling design. Confirm final grade selection against the material test certificate (MTC) or with our technical team.

Need D2 or cr12mov cold-work tool steel?

Aobo Steel supplies D2 / 1.2379 / SKD11 and Cr12MoV round bar and plate with mill certificates and dimensional inspection before shipment.

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Composition and heat-treatment figures are typical published values for Cr12MoV / Cr12Mo1V1 (GB) and D2 / 1.2379 / SKD11. Confirm the exact range against the MTC or mill certificate for the delivered lot.