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DB6 Tool Steel Hardness (HRC): Complete Guide to Heat Treatment & Applications

DB6 Material Hardness in HRC
DB6 Tool Steel (DIN 1.2714) is a widely used hot work tool steel for forging, die casting, heavy engineering and plastic mould industries. It offers an excellent balance of toughness, wear resistance, impact strength, and heat resistance, making it suitable for demanding industrial applications.
Hardness of DB6 Tool Steel is an important factor that defines its performance properties, tool life, machinability and ability to resist deformation under high pressure and high temperature conditions. The right heat treatment to the correct Rockwell Hardness (HRC) will ensure optimum performance in forging dies, extrusion dies, hammer dies and pressure die casting application.
In this comprehensive guide, we cover DB6 Tool Steel hardness (HRC), heat treatment process, mechanical properties, applications, comparison with other tool steels, pricing considerations, and why Virat Steels is one of India’s trusted suppliers of premium-quality DB6 Tool Steel.
What is DB6 Steel?
DB6 Tool Steel is a high quality hot work tool steel, equivalent to DIN 1.2714, (AISI L6), (55NiCrMoV7). It is a nickel-chromium-molybdenum-vanadium alloy steel known for outstanding toughness and excellent resistance to thermal fatigue.
Compared to conventional hot work steels, DB6 provides:
- Superior impact strength
- High toughness
- Excellent wear resistance
- Good hardenability
- Outstanding resistance to cracking
- Longer die life
- Excellent polishability
- Good machinability
These characteristics make DB6 an ideal choice for large forging dies, hammer dies, die holders, extrusion tooling, pressure die casting dies, and heavy-duty industrial tools.
International Equivalents of DB6 Tool Steel
DB6 Tool Steel is internationally recognized under the DIN 1.2714 standard and is equivalent to EN 55NiCrMoV7. It is also considered an approximate equivalent to AISI L6 in certain applications. In India, DB6 is widely known by its trade name and is commonly used as a premium hot work tool steel for forging dies, die casting dies, extrusion tooling, and heavy engineering applications.
Chemical Composition of DB6 Tool Steel
DB6 Tool Steel contains a balanced combination of carbon, chromium, nickel, molybdenum, and vanadium, providing excellent toughness, wear resistance, and hot strength. This alloy composition ensures superior impact resistance, good hardenability, and extended tool life in demanding hot work applications.
| Element | Composition (%) |
| Carbon (C) | 0.50–0.60 |
| Silicon (Si) | 0.10–0.40 |
| Manganese (Mn) | 0.65–0.95 |
| Chromium (Cr) | 1.00–1.20 |
| Nickel (Ni) | 1.50–1.80 |
| Molybdenum (Mo) | 0.45–0.55 |
| Vanadium (V) | 0.07–0.12 |
Mechanical Properties of DB6 Tool Steel
DB6 Tool Steel offers an excellent combination of toughness, wear resistance, and heat resistance, making it ideal for high-impact and hot work applications such as forging and die casting.
| Property | Typical Value |
| Density | 7.85 g/cm³ |
| Tensile Strength | High |
| Toughness | Excellent |
| Wear Resistance | Excellent |
| Heat Resistance | Excellent |
| Thermal Fatigue Resistance | Excellent |
DB6 Tool Steel Hardness (HRC)
Hardness is the most important property when selecting DB6 Tool Steel for industrial tooling.
Different hardness according to different Tempering temperature conditions.
– Annealed condition – 255 BHN max
– Hardened and Tempered condition- 38 to 42 HRC
annealed stock measures up to 255 BHN, standard mill-supply condition is tempered to 38–42 HRC for machining, and finished dies are re-hardened and tempered to a working hardness of 45–56 HRC depending on whether the application prioritizes toughness or wear resistance.
Heat Treatment of DB6 Tool Steel
Proper heat treatment is essential to achieve the desired hardness and mechanical properties.
The process generally involves:
- Annealing
- Stress Relieving
- Hardening
- Quenching
- Tempering
Each stage contributes to the final balance of hardness, toughness, and dimensional stability.
Annealing
Annealing softens the material, improves machinability, and relieves internal stresses before hardening.
Recommended Process:
- Heat slowly to 840–860°C
- Hold for sufficient soaking time
- Cool slowly inside the furnace
Resulting Hardness:
Approximately 220–250 HB
Stress Relieving
Stress relieving is recommended after rough machining.
- Temperature: 600–650°C
- Hold for 2 hours
- Furnace cool slowly
This minimizes distortion during final hardening.
Hardening
The hardening process significantly increases hardness and wear resistance.
Procedure:
- Preheat: 600 – 650°C
- Austenitize: 840–870°C
- Oil or polymer quench
- Air cooling where appropriate
The resulting hardness typically reaches 54–56 HRC before tempering.
Tempering
Tempering reduces brittleness while maintaining the desired hardness.
It is recommended to temper immediately after quenching.
Typical Tempering Range:
450–650°C
Double tempering is often recommended for improved dimensional stability and toughness.
Advantages of Proper Heat Treatment
By improving the mechanical properties and durability of the steel, proper heat treatment can improve the performance and service life of DB6 Tool Steel.
- Enhanced wear resistance
- Greater durability
- Improved thermal fatigue resistance
- Less risk of cracking
- Longer life of die
- Reduced maintenance costs
Applications of DB6 Tool Steel
DB6 Tool Steel (DIN 1.2714) is a popular choice for hot work applications requiring high toughness, wear resistance and resistance to thermal fatigue. It is ideal for the manufacture of heavy duty dies and tools used under extreme operating conditions.
| Industry | Typical Applications |
| Forging | Closed forging dies, hammer dies |
| Die Casting | Aluminium die casting dies |
| Extrusion | Extrusion dies |
| Automotive | Crankshaft and connecting rod dies |
| Plastic Moulding | Large mould bases |
| Heavy Engineering | Die holders and forging blocks |
| Aerospace & Defence | Heavy-duty tooling |
| Steel Plants | Hot shearing blades and press tools |
DB6 Tool Steel Advantages & Disadvantages
| Advantages | Disadvantages |
| Good impact resistance and toughness | More expensive than the usual alloy steels |
| Good wear and heat fatigue resistance | Needs proper heat treatment |
| Longer die life with less cracking | Not the best choice for high abrasive cold work applications (D2 is preferred) |
| Good hardenability and dimensional stability | Special tools are required for machining after hardening |
| Suitable for large forging dies, hot working tools | Material costs are higher for more expensive alloys |
DB6 vs H13 Tool Steel Comparison
| Property | DB6 Tool Steel (DIN 1.2714) | H13 Tool Steel (DIN 1.2344) |
| Steel Type | Hot Work Tool Steel | Hot Work Tool Steel |
| Toughness | Excellent | Very Good |
| Wear Resistance | Very Good | Excellent |
| Impact Resistance | Excellent | Very Good |
| Thermal Fatigue Resistance | Excellent | Excellent |
| Hot Hardness | Very Good | Excellent |
| Best Applications | Forging Dies, Hammer Dies | Die Casting & Extrusion Dies |
| Large Die Blocks | Excellent | Very Good |
| Relative Cost | Moderate | Moderate to High |
Best Choice: Choose DB6 for heavy-impact forging applications requiring superior toughness, while H13 is ideal for high-temperature die casting and aluminium extrusion tooling.
DB6 vs H11 Tool Steel
| Property | DB6 | H11 |
| Toughness | Excellent | Excellent |
| Wear Resistance | Higher | Good |
| Hardness | 45–56 HRC | 44–52 HRC |
| Thermal Shock | Excellent | Excellent |
| Large Blocks | Excellent | Good |
| Service Life | Longer | Good |
Best Choice: DB6 is preferred where higher wear resistance and longer tool life are required.
DB6 vs D2 Tool Steel
| Property | DB6 | D2 |
| Type | Hot Work | Cold Work |
| Toughness | Excellent | Moderate |
| Wear Resistance | High | Very High |
| Hot Strength | Excellent | Poor |
| Impact Resistance | Excellent | Moderate |
| Forging Dies | Excellent | Not Recommended |
| Cold Blanking | Not Ideal | Excellent |
Best Choice: Use DB6 for hot work and D2 for cold work applications.
DB6 vs P20 Tool Steel
| Property | DB6 | P20 |
| Toughness | Excellent | Good |
| Hardness | Up to 56 HRC | 28–34 HRC |
| Plastic Moulds | Good | Excellent |
| Forging | Excellent | Not Recommended |
| Wear Resistance | High | Moderate |
| Tool Life | Longer | Moderate |
DB6 vs EN31
| Property | DB6 | EN31 |
| Steel Type | Hot Work Tool Steel | High Carbon Steel |
| Toughness | Excellent | Moderate |
| Hardness | 56 HRC | 60–64 HRC |
| Impact Resistance | Excellent | Low |
| Hot Applications | Excellent | Poor |
| Bearings | Not Suitable | Excellent |
DB6 Tool Steel vs Other Tool Steel Grades
| Steel Grade | Toughness | Wear Resistance | Heat Resistance | Typical Hardness | Ideal Applications |
| DB6 (DIN 1.2714) | Excellent | Very Good | Excellent | 45–56 HRC | Forging Dies , Hammer Dies |
| H13 (DIN 1.2344) | Very Good | Excellent | Excellent | 44–54 HRC | Die Casting, Extrusion Dies |
| H11 (DIN 1.2343) | Excellent | Good | Very Good | 44–52 HRC | Hot Work & Extrusion Tooling |
| D2 (DIN 1.2379) | Good | Excellent | Moderate | 58–62 HRC | Cold Work Dies, Punches |
| P20 (DIN 1.2311) | Good | Moderate | Moderate | 28–34 HRC | Plastic Injection Moulds |
| EN31 | Moderate | Excellent | Low | 60–64 HRC | Bearings, Rollers & Wear Parts |
“DB6 Tool Steel Equivalents Explained: SKT4, 55NiCrMoV7, L6 & DIN 1.2714 Compared”
| Property | DB6 | SKT4 | 55NiCrMoV7 | L6 | DIN 1.2714 |
| Standard | Commercial | JIS | EN | AISI | DIN |
| Steel Type | Hot Work | Hot Work | Hot Work | Low Alloy | Hot Work |
| Toughness | Excellent | Excellent | Excellent | Excellent | Excellent |
| Wear Resistance | Excellent | Very Good | Excellent | Good | Excellent |
| Hardness | 45–56 HRC | 45–54 HRC | 45–56 HRC | 45–55 HRC | 45–56 HRC |
| Hot Work Performance | Excellent | Very Good | Excellent | Moderate | Excellent |
| Main Difference | Trade Name | JIS Grade | EN Grade | Approx. Equivalent | DIN Grade |
DB6, DIN 1.2714, and 55NiCrMoV7 are essentially the same steel grade with different designations. SKT4 is a close Japanese equivalent, while AISI L6 is an approximate equivalent with similar toughness but comparatively lower hot-work performance.
Available Sizes of DB6 Tool Steel
Virat Special Steels supplies DB6 Tool Steel in a wide range of standard and custom sizes to meet the requirements of die makers, tool rooms, automotive, engineering, and precision manufacturing industries.
Available Sizes (Flat)
- Thickness: 13 mm – 1500 mm
- Width: 13 mm – 3000 mm
- Length: Available in standard mill lengths or custom-cut sizes on request.
Available Sizes (Round)
- Diameter: 13 mm – 1500 mm
- Length: Standard mill lengths and customized cut-to-size options available.
Custom Processing Services
To minimize machining time and material wastage, we also offer:
- Precision cut-to-size material
- Bandsaw cutting
- Surface machining (on request)
- Bulk supply with batch-wise traceability
- Material Test Certificate (MTC) and EN 10204 3.1 certification (where applicable)
DB6 Case Study 40% Improvement in Die Life in Forging
Operations Customer Challenge
A drop-forging plant for automotive components experienced premature die cracking of crankshaft forging dies made from standard hot work steels leading to expensive downtime.
Solution
The tooling was upgraded to DB6 (DIN 1.2714) supplied by Virat Special Steels, vacuum heat treated and double tempered to an optimized 46-48 HRC.
Results
40% increased die service life Eliminate catastrophic die cracking in high energy impact Lower maintenance and machine downtime Forged at a lower cost per part
Certifications Available
Reputable suppliers typically provide:
- Mill Test Certificate (MTC)
- Ultrasonic Tested Material
- Hardness Test Report
- Chemical Test Report
Buyer’s Guide: Selecting the Appropriate DB6 Tool Steel
Some important points to consider before buying DB6 Tool Steel (DIN 1.2714) to get the best out of your application:
1. Choose the Right Hardness
Pick the hardness for your application:
- 38-42 HRC – Greater toughness and impact resistance
- 50-56 HRC – Increased wear resistance and extended tool life
2. Choose the required form of material
DB6 Tool Steel is supplied in:
- Forged and Rolled blocks
- Round and Flat Bars
- ESR and Non ESR Blocks
3. Material Quality Inspection
Always ask for:
- Mill Test Certificate (MTC) Ultrasonic Tested Material
- Material Traceability Spectro Tested Material
4. Match the App
Select DB6, depending on your tooling needs, such as:
- Forging Dies
- Hammer Dies
- Extrusion
- Holders for
- Casting Dies
5. Select a Trusted Supplier
Join hands with a supplier who can support with ready stock, custom machining, technical support and PAN India delivery for consistent quality and timely supply.
Why purchase DB6 Tool Steel from Virat Steels?
Selecting the right supplier is critical to maximizing tool life, performance and productivity. With over 70 years of experience in the industry, Virat Steels is one of the trusted suppliers of high quality imported and domestic tool steels in India with more than 2000 customers in the automotive, forging, die casting, aerospace, plastic mould, heavy engineering, railways and defence industries.

Why do manufacturers trust us?
- 70+ Years Experience supplying quality tool steels.
- 2,000+ Happy Customers in India’s Manufacturing Industry.
- Supplier of Materials from Reputed International Mills for consistent quality and performance.
- Tool Steel Ready Stock: DB6, H13, H11, D2, D3, P20, P20+Ni, M2, M35, EN31, OHNS and other grades.
- Mill Test Certificate (MTC) with full traceability of material.
- UT Tested & Spectro Tested Material for proven quality and internal soundness.
- Custom Cutting & Machining Services to suit your required sizes.
- Material Selection Assistance from experienced technical professionals.
- Fast PAN India Delivery, timely supply & reduced production downtime.
Virat Steels offers authentic quality, certified material and dependable service for all your tool steel needs. Whether DB6 Round Bars, Forged Blocks, ESR Blocks, Flat Blocks or Cut-to-size Material, we have it all.
Our Supply Network Across India
Virat Steels is one of the leading suppliers of DB6 Tool Steel (DIN 1.2714) to the manufacturers in the major industrial hubs of India like Ahmedabad, Rajkot, Pune, Nashik, Aurangabad, Kolhapur, Belgaum, Chennai, Coimbatore, Hosur, Bengaluru, Hyderabad, Faridabad, Manesar, Bhiwadi, Gurugram, Delhi NCR, Ludhiana, Chandigarh, Haryana, Punjab and Jamshedpur.
Our strong logistics network, ready stock and technical knowledge enable us to provide fast PAN India delivery to forging companies, die makers, tool rooms, plastic mould manufacturers, die casting industries and heavy engineering businesses.
Conclusion
DB6 Tool Steel (DIN 1.2714) is a high-performance hot work tool steel, known for its excellent toughness, wear resistance and thermal fatigue resistance. Proper heat treatment gives it hardness in the range of 45–56 HRC and makes it ideal for forging dies, extrusion tooling, die casting dies, and other demanding industrial applications.
Virat Steels is your trusted partner for premium quality DB6 Tool Steel with 70+ years of experience, 2000+ customers, ready stock, MTC, UT & Spectro Tested materials and PAN India delivery.
Call us or send your drawing to receive a customised material recommendation.
Request a Quote
Looking for premium-quality DB6 Tool Steel (DIN 1.2714)?
Virat Steels supplies DB6 Round and Flat Bars & Forged and Rolled Blocks, ESR /non ESR Blocks, Cut-to-Size Material with:
- ✔ 70+ Years of Industry Experience
- ✔ 2,000+ Satisfied Customers
- ✔ Ready Stock
- ✔ MTC Available
- ✔ UT Tested Material
- ✔ Spectro Tested Material
- ✔ Custom Machining
- ✔ PAN India Delivery



Contact Virat Steels today for technical guidance and a customized quotation for your DB6 Tool Steel requirements.
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Frequently Asked Questions
1. What is the working hardness of DB6 steel?
DB6 steel is typically tempered to a working hardness of 44–50 HRC depending on the forging application.
2. Is DB6 a hot work or cold work tool steel?
DB6 (DIN 1.2714) is a premium hot work alloy tool steel containing Nickel, Chromium, Molybdenum, and Vanadium.
3. What is the annealed hardness of DB6?
In annealed condition, DB6 has a hardness of 220–250 HB (Brinell Hardness) for easy machining.
4. What is the hardening temperature for DB6?
The recommended hardening (austenitizing) temperature is 840–870°C followed by oil, polymer, or air quenching.
5. How many tempering cycles are required for DB6?
At least two tempering cycles (double tempering) are required to relieve stress and stabilize the micro-structure.
6. Is DB6 equivalent to D2 or SKD11?
No. DB6 is a hot work steel (1.2714). D2 / SKD11 (1.2379) is a cold work steel used for cold punching and blanking.
7. What is the DIN equivalent of DB6?
The exact DIN equivalent is DIN 1.2714 (55NiCrMoV7) (L6).
8. What makes DB6 tough?
The presence of 1.50–1.80% Nickel (Ni) gives DB6 exceptional core toughness and resistance to impact cracking.
9. Can DB6 be used for blanking dies?
No, cold blanking requires cold work steels like D2 or DC53. DB6 is engineered for hot forging and high-impact dies.
10. What industries rely on DB6 tool steel?
Drop forging, press forging, automotive component manufacturing, heavy engineering, and defense.
11. Is pre-hardened DB6 available?
Yes, DB6 is often supplied in a pre-hardened condition (~35–40 HRC) for direct die cavity machining.
12. Can DB6 steel be welded?
Welding DB6 is difficult due to its high hardenability. Preheating to 300–400°C and post-weld stress relief are essential if welding is necessary.
13. Why does DB6 outperform H13 in drop forging hammer dies?
DB6 has higher Nickel content, offering superior impact energy absorption compared to H13, preventing die shattering under heavy hammer blows.
14. Why is stress relieving important before hardening DB6?
It removes machining stresses, preventing warping and dimensional movement during quenching.
15. What quality reports come with DB6 from Virat Special Steels?
Material Test Certificate (EN 10204 3.1), Ultrasonic Testing (UT) report, and Hardness/Chemical test reports.
16. Does DB6 resist thermal fatigue?
Yes, its balanced Cr-Ni-Mo composition gives high resistance to heat checking (thermal fatigue).
17. What supply forms are available for DB6?
Round bars, flat blocks, forged blocks, and custom cut plates.
18. What is the primary advantage of DB6?
High impact toughness combined with excellent hardenability across large block sizes.
19. What should buyers check before buying DB6?
Ensure ultrasonic soundness (UT testing) to prevent internal defects in large die blocks.
20. Why choose Virat Special Steels for DB6?
Extensive stock, certified quality, precision cutting facilities, quick delivery, and decades of technical expertise.
Hardness Ratings (HRC) in Tool and Die Steel
Virat Steels | India’s Leading Tool and Die Steel Supplier

Virat Steels | India’s Leading Tool and Die Steel Supplier
If you’ve ever looked at a tool steel datasheet and wondered what “58 HRC” means and why it matters for your die or mould. Hardness is one of the most critical properties in tool and die steel selection. Get it right, and your tooling performs reliably for thousands of production cycles. Get it wrong, and you’re facing premature wear, unexpected cracking, or both. This complete blog explains what is the Rockwell C scale means, maps HRC ranges to every major tool steel grade, and shows you exactly how to choose the right hardness for your application.
What is Hardness in Steel and Why Does It Matter?
In simple terms, hardness is a material’s ability to resist dents, scratches, or permanent deformation under pressure.
For tool and die steel, hardness is one of the most important properties because it affects:
- Wear resistance – resists abrasion and surface wear
- Edge retention – keeps cutting tools sharper for longer
- Compressive strength – withstands heavy forming pressure
- Dimensional stability – maintains shape and accuracy during production
However, hardness always comes with a trade-off: toughness.
As hardness increases, the steel can become more brittle and prone to cracking under impact.
So, the right steel grade and hardness level should provide the best balance of wear resistance and toughness for the application.
What is the Rockwell Hardness Test?
The Rockwell hardness test is the most widely used hardness measurement method in the tool steel industry.
The Rockwell hardness test checks how hard a material is by measuring how deep a diamond cone goes into its surface.
It works in 3 simple steps:
- Minor load applied – A small force (10 kgf) is applied first to set the starting point and remove surface unevenness.
- Major load applied – A bigger force (150 kgf for HRC) pushes the diamond into the material.
- Load removed – The big force is removed, and the machine measures how deep the mark remains.
Result:
- Less depth = harder material = higher HRC
- More depth = softer material = lower HRC
Understanding HRC -The Rockwell C Scale
HRC stands for Hardness Rockwell C -meaning the result was obtained using the Rockwell C scale. It is the standard unit used to express the hardness of virtually all tool and die steels.
The HRC scale for tool steels runs approximately from 20 HRC(soft, annealed or pre-hardened low-alloy steel) to 68 HRC (the upper limit of conventional hardened tool steel). Here is how the HRC range maps to practical tool steel conditions:
| HRC Range | Condition / Category | In Practice |
| 20-35HRC | Soft / pre-hardened | Easily machined; P20 mould steel supply condition |
| 36-44 HRC | Medium Hardness | Good toughness; forging dies for heavy impact |
| 45-52 HRC | Hard | Balanced wear resistance and toughness; H13 die casting dies |
| 53-60 HRC | Very Hard | High wear resistance; D2 cold work dies, punches |
| 61-66 HRC | Extremely Hard | Maximum wear resistance; M2, M42 high-speed steel cutting tools |
| Above 66 HRC | Ultra Hard | Extremely brittle; not typical for standard die steels |
HRC vs HRB vs HRA — Which Scale Applies to Tool Steel?
| HRC | HRB | HRA |
| Indenter: Diamond cone | Indenter: 1/16″ steel ball | Indenter: Diamond cone |
| Major load: 150 kgf | Major load: 100 kgf | Major load: 60 kgf |
| Range: Approx 20–70 HRC | Range: Approx 0–100 HRB | Range: for very hard materials |
| Used For: All hardened and heat-treated tool steels, die steels, high-speed steels, and hardened alloy steels | Used For: Softer steels (mild steel, annealed low-alloy steel), copper alloys, aluminium alloys | Used For: Cemented carbides, case-hardened surfaces, thin hardened layers |
You cannot directly compare numbers from different Rockwell scales. 60 HRC and 60 HRB are not equivalent, they refer to completely different hardness levels. Always confirm which scale a hardness value is expressed in before comparing materials.
HRC vs Brinell (HB) vs Vickers (HV): Approximate conversion table for tool steel
While HRC is the standard for tool steel, you will also encounter Brinell (HB or HBW) and Vickers (HV) hardness values — particularly on material certificates from European suppliers who use DIN specifications.
| HRC | HB (Brinell) | HV (Vickers) | Approx. Tensile Strength |
| 20 | 226 | 238 | ~780 MPa |
| 25 | 253 | 266 | ~870 MPa |
| 30 | 286 | 302 | ~995 MPa |
| 35 | 327 | 345 | ~1140 MPa |
| 40 | 371 | 392 | ~1310 MPa |
| 45 | 421 | 446 | ~1500 MPa |
| 48 | 455 | 481 | ~1630 MPa |
| 50 | 481 | 509 | ~1720 MPa |
| 52 | 512 | 544 | ~1820 MPa |
| 55 | 560 | 595 | ~1980 MPa |
| 58 | 615 | 655 | ~2160 MPa |
| 60 | 654 | 697 | ~2280 MPa |
| 62 | 746 | 746 | ~2400 MPa |
*Note: These are approximate conversions. For precise engineering calculations, always use the original test method. Conversion between hardness scales involves empirical estimates, not exact equivalences. *
HRC Ranges for Common Applications — Quick Reference
If you are selecting tool steel hardness based on the application & the grade, here is a practical quick-reference guide:
| Application | Recommended HRC | Recommended Grade |
| Aluminium die inserts | 44–48 HRC | H13 tool steel / DIN 1.2344 ESR |
| Aluminium extrusion dies | 48–52 HRC | H13 tool steel / DIN 1.2344 |
| Hot forging dies (heavy hammers) | 40–45 HRC | H13 or H11 |
| Hot forging dies (mechanical press) | 46–50 HRC | H13 |
| Cold stamping and blanking dies | 58–62 HRC | D2 tool steel / DIN 1.2379 |
| Cold forming and bending dies | 56–60 HRC | D2 or A2 |
| Plastic injection mould cavities | 48–54 HRC | H13 or P20+Ni |
| Plastic injection mould bases | 28–32 HRC | P20 / DIN 1.2311 |
| Drill bits and taps | 62–65 HRC | M2 / DIN 3343 |
| Cutting and slitting knives | 58–62 HRC | D2 or M2 |
| Punches (light impact) | 58–62 HRC | D2 |
| Punches (heavy impact) | 52–58 HRC | H13 |
| Gauges and measuring tools | 58–64 HRC | D2 or EN31 |
What Happens if HRC is Too High or Too Low?
1. If HRC is too high
The die becomes too hard and brittle.
- More chances of cracking or breaking under impact or stress
- In hot work, heat checking (small surface cracks) starts earlier
- Sharp corners and weak areas may fracture suddenly
- Failure can happen without warning
2. If HRC is too low
The die becomes too soft.
- Surface wears out quickly
- Shape and size accuracy reduce over time
- Can deform permanently under heavy pressure
- In die casting, molten metal may stick to the die (soldering)
- In cutting/stamping, edges become dull or chip fast
- Failure is gradual, but die life becomes much shorter
So, the correct HRC should balance hardness and toughness for the application.
What to check on the MTC
1. Verify the hardness is within the specification for the supply condition. H13 in annealed supply should not exceed 229 HBW. Higher values may indicate the material was not properly annealed.
2. Check for uniformity. If multiple hardness readings are reported from different locations in the bar, they should be consistent. Large variation in hardness across a section is a warning sign of segregation or poor annealing.
3. Confirm the test method. Brinell (HBW) and Vickers (HV) hardness values on the certificate are not directly comparable to HRC values you may see on a datasheet — use the conversion table above if comparison is needed.
4. For pre-hardened grades (P20): Verify the HRC range corresponds to 28–32 HRC. Values outside this range may indicate the steel will machine differently than expected or may not meet the performance requirements of the mould design.
Frequently Asked Questions
1. What HRC stands for in steel?
HRC stands for Hardness Rockwell C, a standard hardness scale for hardened tool steels. Higher HRC means harder and more wear-resistant steel.
2. What HRC is H13 tool steel?
H13 is typically hardened to 40–52 HRC depending on use:
- Die casting: 44–48 HRC
- Extrusion/plastic moulds: 48–52 HRC
- Forging dies: 40–44 HRC
3. What is the HRC of D2 steel?
D2 is usually hardened to 55–62 HRC for stamping and blanking applications.
4. What is the difference between HRC and HB hardness?
HRC uses a diamond cone and measures depth; HB (Brinell) uses a ball indenter and measures impression size.
5. Is higher HRC always better for dies?
No. Higher HRC improves wear resistance but reduces toughness, increasing crack risk.
6. What HRC should I specify for a plastic injection mould?
- P20: 28–32 HRC
- H13: 48–52 HRC for longer runs or abrasive materials
7. Can I check tool steel hardness without a lab?
Yes. Use portable Rockwell or Leeb hardness testers for quick on-site checking.
8. What hardness should I specify when ordering H13?
H13 is usually supplied soft-annealed (max 229 HBW) for machining or can be supplied pre-hardened (30–36 HRC) / fully hardened as required.
9. Why do two steels with the same HRC perform differently?
HRC alone doesn’t tell the full story & performance also depends on:
- Chemical composition
- Heat treatment quality
- Grain structure
- Alloying elements
10. What is the HRC of DB6 steel for forging dies?
For forging dies, DB6 is commonly used around 38–42 HRC to balance toughness and wear resistance. It is known for better toughness than H13 in heavy-impact applications.
- Pre-hardened condition: 360–430 BHN (approx. 38–45 HRC)
- Fully hardened / heat-treated: up to 50–55 HRC
- Annealed condition: max 240–255 BHN
Conclusion
At Virat Steels, we help customers across India choose the right tool steel grade, correct HRC, and suitable size/form for die casting, forging, extrusion, and plastic moulding applications backed by stock availability, test certificates, and ultrasonic-tested material.
📞+91 98140-21775 | 🌐 www.viratsteels.com | ✉ info@viratsteels.com




