DIN 1.2714

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Grade Introduction:

1.2714 cold working tool steel is for general-purpose tools and dies where greater toughness is required, but with some sacrifice of abrasion resistance. Typically used below applications:

  • spindles,
  • forming rolls,
  • punches,
  • blanking and forming dies,
  • trimmer dies,
  • clutch parts,
  • pawls,
  • bearings,
  • chucks parts,
  • rollers,
  • knuckle pins,
  • clutch pins,
  • shear blades

Grade Application:

Typical applications for D2 Steel:

  • Stamping or Forming Dies
  • Punches
  • Forming Rolls
  • Knives, slitters, shear blades
  • Tools
  • Scrap choppers
  • Tyre shredders

Equivalent grades:

USA Germany China Japan France England Italy Poland Czechia Austria Russia Inter
L6 55NiCrMoV6 5CrNiMo SKT4 55NCDV7 BH224-5 44NiCrMoV7- KU WNL 19662 W501 5KHNM 55NiCrMoV7
56NiCrMoV7 56NiCrMoV7-KU WNLV 19663 W502 5KHNV

Addition to other grades:

MS, EN1A, EN3B, EN8, EN8D, EN9, EN19, EN24, EN31, EN32B, EN36C, EN41B, EN43B, EN47, EN353, IS2062, 42Crmo4, HCHCR, OHNS, D2, D3, H-11, H-13, CW-1, M2, M35, M42, SKD-11, P20, P20+S, P20+Ni, SCM 420, ASTM SA-36, ASTM SA-105, SAE 1018, SAE 1020, SAE 4140, SAE 8620, 16MNCR5, 20MNCR5, C20, C35, C40, C45, C50, C60, CK45, 20C8, 40C8, 45C8, 55C8, C55MN75, SAE 52100, S40C, S355J2G3.

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Chemical composition:

Element C Si Mn Ni P S Cr Mo V
Content (%) 0.5 – 0.6 0.1 – 0.4 0.6 – 0.9 1.5 – 1.8 0.03 Max 0.03 Max 0.8 – 1.2 0.35 – 0.55 0.05 – 0.15

Mechanical Properties:

The mechanical properties of D2 steels are tabulated below:

Hardness (HB) Rp 0.2 Yield Strength Rm Tensile Strength Elongation K C V 20°C Elastic modulus
MPa ksi MPa ksi % J GPa ksi
376 1045 151 1270 184 10 40 205 29733


Annealing 255 HB max, Q+T: 58-38HRc, different hardness according to different Tempering temperature.

Heat Treatment:

Heat treatment temperatures, rate of heating, cooling, and soaking times will vary due to factors such as the shape and size of each component. Other considerations during the heat treatment process include the type of furnace, quenching medium, and workpiece transfer facilities.


Hardening temperature/℃: 840~870, Quenching in oil


Commonly used drawing temperature/℃: 400~650; tempering after-hardening values /MPa|400℃: 1770; tempering after-hardening values /MPa|500℃: 1570; tempering after-hardening values /MPa|600℃: 1320; tempering after-hardening values /MPa|650℃: 1180

Physical Properties

  • Density: 7.85kg/m3
  • Thermal conductivity
  • Forging ratio: 4:1 Minimum
  • Microstructure
  • Magnetic

Thermal Properties

Thermal conductivity (°C) 20 350 700
W/(m*K) 35.0 39.0 36.0

Forging Properties:

For forging 1.2714 steel, Slowly Pre-heat, at Hot-working temperature/℃: 1050~850

Stress Relieving:

When tools made from 1.2714 steel are heavily machined or ground, the relief of internal strains is advisable before hardening to minimize the possibility of distortion. Stress-relieving of this grade should be done after rough machining. To stress relief, heat the component carefully to 600-650°C, allow a good soaking period, about two hours per 25mm of section. Cool in the furnace to 500°C then freely in the air. Tools may then be finish machined before hardening.


Because of its air-hardening ability, 1.2714 – Hot-Work Mould Steel should not be normalized.


Annealing temperature/℃: 680~710; After the annealing, degree of hardness ≤HBS: 250


  • Density: 7.85kg/m3


The machinability of tool steel L6 is very good. It rates 90% of the machinability of the W-group water hardening low alloy steels rated 100% as a baseline.


Stress tempering for prehardened condition.

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