Material G26CrMo4 (1.7221)

The hard-wearing all-rounder

G26CrMo4 (1.7221) offers the ideal combination of strength, toughness and workability. This heat-treated steel is easy to weld, machine and form, thereby enabling the efficient manufacture of complex components. Through targeted heat treatment, the material’s properties can be optimally tailored to the specific application.

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Material designations and standards

Material number:

1.7221

Standard designation (EN):

G26CrMo4

Standards:

EN 10293 (Cast steels for general applications)

AISI/SAE:

Similar materials:

25CrMo4 (1.7218, forged steel)

Specifications and details

Material name & material no. Comparable materials or standards Main elements of material analysis (mass fraction in %) Physical and mechanical properties General heat treatment, unless otherwise agreed
acc. to DIN EN 10293 acc. to acc. to ASTM acc. to SAE/AISI acc. to JIS acc. to China C Si Mn Cr Mo Ni N Cu Nb Other elements Density in kg/dm3 Type of heat treatment Rp0.2 min Rm min Hardness values in HB (approx.) A % min KV2 J min Temperature °C
GS200 & 1.0449 DIN EN 10340 or SEL A 216 Grade WCA SC360 ZG200-400 ≤ 0,18 ≤ 0,60 ≤ 1,20 _ _ _ _ _ _ _ _ +N 200 380 - 530 110 - 155 25 35 RT Normalizing
GS240 & 1.0455 DIN EN 10340 or SEL A 414 Grade F A 445 1012 SB450 SB480 _ ≤ 0,23 ≤ 0,60 ≤ 1,20 _ _ _ _ _ _ _ _ +N 240 450 - 600 130 - 180 22 31 RT Normalizing
G20Mn5 & 1.6220 DIN EN 10213, DIN EN 10340 or SEL A 352 Grade LCC _ SCC 3 SCPH 11-CF ZG300-500 0,17 - 0,23 ≤ 0,60 1,00 -1,60 _ _ ≤ 0,80 _ _ _ _ 7,8 +N | +QT 300 | 300 480 - 620 | 500 - 650 140 - 185 | 150 - 190 20 | 22 27 | 50 | 27 | 60 -30 | RT | -40 | RT Normalizing | Quenched and tempered
G24Mn6 & 1.1118 DIN EN 10213, DIN EN 10340 or SEL _ _ _ _ 0,20 - 0,25 ≤ 0,60 1,50 - 1,80 _ _ _ _ _ _ _ 7,8 +QT1 | +QT2 | +QT3 550 | 500 | 400 700 - 800 | 650 - 800 | 600 - 800 210 - 240 | 190 - 240 | 180 - 240 12 | 15 | 18 27 | 27 | 27 -20 | -30 | -30 Quenched and tempered
G20Mo5 & 1.5419 DIN EN 10213 or SEL A 217 Grade WC1 A 217 J12524 4422 SCPH 11 SCPL 11 ZG19MoG 0,15 - 0,23 ≤ 0,60 0,50 - 1,00 _ 0,40 - 0,60 _ _ _ _ _ 7,85 +QT 245 440 - 590 130 - 175 22 27 RT Quenched and tempered
G15CrMoV6-9 & 1.7710 1.7711 acc. to DIN EN 10269 or SEL _ _ _ _ 0,12 - 0,18 ≤ 0,60 0,60 - 1,00 1,30 - 1,80 0,80 - 1,00 _ _ _ _ V 0,15 - 0,25 7,85 +QT1 | +QT2 700 | 930 850 - 1000 | 980 - 1150 250 - 300 | 290 - 340 10 | 6 27 RT Quenched and tempered
G17CrMo9-10 & 1.7379 DIN EN 10213 or SEL A 217 Grade WC9 A 487 Grade 8 Class A 4118 SCPH 32-CF ZG17Cr2Mo1 ZG12Cr2Mo1G 0,13 - 0,20 ≤ 0,60 0,50 - 0,90 2,00 - 2,50 0,90 - 1,20 _ _ _ _ _ 7,85 +QT 400 590 - 740 175 - 220 18 40 RT Quenched and tempered
G26CrMo4 & 1.7221 SEW 658 or SEL A 148 Grade 105-85 4118 SCCrM 1 25CrMo 0,22 - 0,29 ≤ 0,60 0,50 - 0,80 0,08 - 1,20 0,15 - 0,30 _ _ _ _ _ 7,85 +QT1 | +QT2 300 - 450 | 550 550 - 750 | 700 - 850 160 - 220 | 210 - 250 14 - 16 | 10 27 - 40 | 18 RT Quenched and tempered
G42CrMo4 & 1.7231 1.7225 acc. to DIN EN 10250 _ 4140 4142 SCM440 42Cr1Mo 40CrMnMo 0,38 - 0,45 ≤ 0,60 0,60 - 1,00 0,08 - 1,20 0,15 - 0,30 _ _ _ _ _ 7,85 +QT1 | +QT2 350 - 600 | 700 650 - 950 | 850 - 1000 190 - 280 | 250 - 300 10 - 12 | 10 16 - 31 | 27 RT Quenched and tempered
G35CrNiMo6-6 & 1.6579 _ _ 4337 4330 SNCM447 _ 0,32 - 0,38 ≤ 0,60 0,60 - 1,00 1,40 -1,70 0,15 - 0,35 1,40 - 1,70 _ _ _ _ _ +N | +QT1 | +QT2 500 - 550 | 650 - 700 | 800 750 - 950 | 800 - 1000 | 900 - 1050 220 - 280 | 240 - 300 | 265 - 310 12 | 12 | 10 31 | 30 - 45 | 35 RT Annealed | Quenched and tempered
GX9Ni5 & 1.5681 _ _ _ _ _ 0,06 - 0,12 ≤ 0,60 0,50 - 0,80 _ _ 4,50 - 5,50 _ _ _ _ +QT 380 550 - 700 160 - 210 18 100 RT Quenched and tempered
G17NiCrMo13-6 & 1.6781 DIN EN 10213 or SEW520 A 352 Grade LC2-1 A 352 J42215 _ _ ZG17Ni3Cr2Mo 0,15 - 0,19 ≤ 0,50 0,55 - 0,80 1,30 - 1,80 0,45 - 0,60 3,00 - 3,50 _ _ _ _ 7,85 +QT 600 750 - 900 220 - 265 15 27 -80 Quenched and tempered
GX3CrNi3-4 & 1.6982 DIN EN 10213 or SEL A 217 Grade CA15 A 743 J91540 SCS 1 ZG05Cr13Ni4Mo ≤ 0,05 ≤ 1,00 ≤ 1,00 12,00 - 13,00 ≤ 0,70 3,50 - 5,00 _ _ _ _ 7,7 +QT 500 700 - 900 210 - 265 15 27 120 Quenched and tempered

The advantages of G26CrMo4 (1.7221)

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High strength and toughness – ideal for cast components subjected to high loads
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Good wear resistance – enhanced by the chromium and molybdenum content
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Good machinability – mechanical properties can be adjusted
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Good machinability – particularly when annealed
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Moderate corrosion resistance – protection can be provided by coating
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G26CrMo4 Properties at a Glance

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Distinctive feature

G26CrMo4 offers high strength combined with good toughness, enabling it to withstand even high loads.

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Versatility

Ideal for use in machinery and plant subject to high loads and dynamic stresses.

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Resilience

G26CrMo4 reliably withstands both static and dynamic loads.

Areas of application

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Mechanical Engineering
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Vehicle manufacturing
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Toolmaking
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Hydraulics and Pneumatics
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Chemical composition and mechanical properties.

C (carbon):

0.23–0.28%

Si (silicon):

0.10–0.40%

Mn (Manganese):

0.60–0.90%

P (phosphorus):

≤ 0.035 %

S (sulphur):

≤ 0.035 %

Cr (chromium):

0.90–1.20%

Mo (molybdenum):

0.15–0.30%

Tensile strength (Rm):

700 - 900 MPa

Yield strength (Rp0.2):

≥ 500 MPa

Elongation at break (A5):

≥ 14 %

Impact strength (ISO-V, -20°C):

≥ 35 years

Hardness (HB):

approx. 180–240 HB (tempered)

 

Soft annealing:

680–720 °C → Improved machinability

Normal annealing:

850 - 880°C → Fine-grained texture

Hardening:

830 - 860°C (Water/oil quenching)

Starting:

540 - 680°C (depending on the desired hardness)

Why G26CrMo4?

Cost-effectiveness
G26CrMo4 offers good value for money thanks to its long service life and versatility.

Processing
The material is easy to machine and weld, which means that even complex components can be manufactured. Alternatively, the material is also suitable for forging.

Applications
G26CrMo4 is an extremely versatile material used in mechanical engineering, vehicle manufacturing and general steel construction.

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