DIN 1.2327 Cold Work Tool Steel manufacturer
DIN 1.2327 Cold Work Tool Steel provides high hardness, wear resistance, and reliable toughness. With good dimensional stability and machinability, it is ideal for dies, punches, gauges, and cold-work tooling.
- Standard:DIN 1.2327 (86CrMoV7)
- Technique: EAF + LF + VD or ESR, forged, multi-directional forging ratio ≥4, spheroidized annealed
- Shape: Round, Flat, Plates, Blocks
- Heat treatment: Supplied in annealed condition, hardness ≤248 HBW; pre-hardened to 56–60 HRC (quenched and tempered) available on request
- Surface Treatment: Black (hot-rolled / forged surface), turned, milled / ground, sawn ends
- Tolerance: flat bars & plates thickness: +0.5/-0.0 mm (turned); forged blocks: ±0.2 mm
- MOQ: 1 Ton
We supply DIN 1.2327 in various custom sizes

flat size range
- Thickness: 6-100 mm
- Width: 40-810 mm

block size range
- Thickness: 100-400 mm
- Width: 200-810 mm

round size range
- Diameter: φ10-700 mm
Chemical Composition (%)
Grade | C | Si | Mn | P (≤) | S (≤) | Cr | Mo | V | (Other Elements, ≤) |
1.2327 (86CrMoV7) | 0.83–0.90 | 0.15–0.35 | 0.30–0.45 | 0.030 | 0.030 | 1.60–1.90 | 0.20–0.35 | 0.05–0.15 | Ni 0.25, Cu 0.25 |
Main characteristics of 1.2327 tool steel
- High wear resistance – extended die and punch life
- Good toughness – withstands impact and heavy loads
- Reliable hardness – consistent cold-work performance
- Excellent dimensional stability – ensures precise tooling accuracy
1.2327 tool steel applications
1.2327 steel for Cold Heading Die
Excellent combination of high hardness and toughness enables 1.2327 to endure repeated impact and wear in cold heading of high-strength fasteners.
1.2327 steel for Cold Extrusion Die
High compressive strength and good anti-galling properties ensure reliable performance and extended die life in cold extrusion of complex-shaped components.
1.2327 steel for Precision Shear Blade
Superior wear resistance and edge stability make 1.2327 ideal for precision shear blades cutting thin to medium-gauge sheet metal with minimal burr formation.
Our Production Technology For 1.2327 (86CrMoV7 / OHV4) Cold Work Tool Steel
- EAF
- LF
- VD
- ESR
- Forged or Hot Rolled
- Spheroidizing Annealed
- Machined surface / Peeled
- Ultrasonic testing (UT) 100% as per SEP 1921, ASTM A388, or EN 10228-3 (upon request)
- Micro Cleanliness as per ASTM E45 or DIN 50602
- Spheroidized microstructure as per relevant tool steel standards
- Macrostructure, microstructure, grain size, and mechanical properties shall meet the standards specified in GB/T 1299 for Tool and Die Steels
- Delivery condition: Soft annealed, hardness max. 230 HB
mechanical properties & heat treatment of 1.2327 steel
| Heat temperature | Start forging temperature | Finish forging temperature | Cooling method |
| 1100 – 1150 °C | 1100 – 1050 °C | ≥ 850 °C | Pit, sand, or furnace cooling |
Annealing
- Heat slowly and uniformly to 720 – 750°C
- Hold at temperature for 2 – 5 hours, depending on section thickness
- Cool slowly in the furnace at a controlled rate down to approximately 600°C
- Then air cool to room temperature
- Hardness after annealing: max. 230 HB
- Annealing in a protective atmosphere is recommended to reduce decarburization
Hardening
- 1.2327 is a low-alloyed, chromium-molybdenum-vanadium alloyed cold work tool steel. It is a shell hardenable grade with high wear resistance. Hardness after quenching can reach up to 67 HRC. Temper immediately after quenching
- Pre-heat (recommended): Where possible, preheat at 400 – 500°C before austenitizing
- Austenitizing temperature: 800 – 820°C or 830 – 850°C.800–820°C: Lower range for oil quenching.830–850°C: Upper range for water or oil quenching
- Holding time: After temperature equalization, hold for 30 minutes per 25mm of section thickness
- Quenching media:Water (for maximum hardness)Oil (preferred for complex shapes to minimize distortion)
- Hardness after quenching: 64 – 67 HRC
Stress relieving
- Perform after rough machining or heavy stock removal, especially for tools with unbalanced cross-sections, to reduce the risk of distortion during final heat treatment
- Heat carefully to approx. 650°C
- Hold at temperature for 1 – 2 hours (or 2 hours per 25mm of section thickness)
- Air cool after holding
- This operation is performed to reduce distortion during heat treatment
Tempering
- Temper immediately after the workpiece cools to handwarm temperature (approx. 50–70°C). Delayed tempering may cause cracking
- Number of tempers: Minimum 2 times. Double tempering is recommended to improve toughness and ensure complete transformation
- Holding time: Soak for at least 1 hour per 25mm of total thickness (minimum 2 hours per cycle)
- Cooling method: Air cool after each tempering cycle (must cool to room temperature before the next tempering)
- Tempering temperature range: 200 – 600°C
Why Choose NSPM as Your 1.2327 Tool Steel Supplier
Source Direct
Direct mill cooperation ensures stable supply, competitive pricing, and consistent quality. Global resource integration and strong supply chain management guarantee reliable material sourcing and long-term availability.
Stock Ready
50,000+ tons inventory across 11 warehouses enables fast delivery. Flexible cutting, short lead times, and ready stock support urgent demands and improve customers’ production efficiency.
Expert Team
600+ professionals, including R&D specialists and technical engineers, provide application-driven support. Fast response and deep tooling knowledge ensure accurate solutions for diverse industrial needs.
Fully Inspected
Strict quality control system with full traceability, UT testing, and heat treatment records. Certified standards (ISO, CE) ensure every material meets high-performance and reliability requirements.
Full-Chain Machining
From steel supply to precision machining, heat treatment, and equipment manufacturing, NSPM offers integrated solutions that enhance accuracy, efficiency, and overall tooling performance.