Stal 4Cr5MoSiV1

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4Cr5MoSiV1 is a hot-work tool steel grade under the Chinese standard GB/T 1299. It is a widely used chromium-molybdenum-vanadium (Cr-Mo-V) hot work tool steel, commonly known internationally by designations such as H13 (AISI/ASTM), SKD61 (JIS), 1.2344(DIN), and X40CrMoV5-1 (ISO/EN/DIN). This steel grade has excellent strength and toughness, good hot workability, and resistance to thermal fatigue.

1. Chemical Composition (GB/ T 1299—2000)

CSiMnKrMoVPS
0.32-0.450.80-1.200.20-0.504.75-5.501.10-1.750.80-1.20≤0,030≤0,030

2. Physical Properties of 4Cr5MoSiV1

2.1 Critical Point Temperatures

Punkt krytycznyAc1Ac3Ar1Ar3SMMf
Temperatura /°C860915775875340215

2.2 Współczynnik rozszerzalności liniowej

Temperatura/°C20 ~ 10020 ~ 20020 ~ 30020 ~ 40020 ~ 50020 ~ 60020 ~ 700
Linear Expansion Coefficient α/×10⁻⁶℃⁻¹9.110.311.512.212.813.213.5

2.3 Przewodność cieplna

Temperatura/°C250650
Przewodność cieplna λ/[W/(m·K)]32.228.8

2.4 Density and Elastic Modulus

Density/(g/cm³)Elastic Modulus E/MPa
7.8210 000

3. Hot Forging Process Specification of 4Cr5MoSiV1

PrzedmiotTemperatura ogrzewania/°CPoczątkowa temperatura kucia/°CTemperatura końcowego kucia/°CMetoda chłodzenia
Sztabka stali1140 ~ 11801100 ~ 1150850 ~ 900Slow Cooling (Sand or Pit Cooling)
Kęsy stalowe1120 ~ 11501050 ~ 1100850 ~ 900Slow Cooling (Sand or Pit Cooling)

4. Heat Treatment of 4Cr5MoSiV1

4.1 Podgrzewanie wstępne

Preheating Treatment Process Specification for 4Cr5MoSiV1 Steel

Pre-heat Treatment PlanParametry procesu
Post-forging Annealing ProcessHeating temperature: 860 ~ 890°C, hold for 3 ~ 4h, cool to below 500°C then air cool. Hardness after annealing ≤229HBW, microstructure is globular pearlite + small amount of carbides.
Wyżarzanie odprężająceHeating temperature: 730 ~ 760°C, hold for 3 ~ 4h, furnace cool.

Hardness and Microstructure of 4Cr5MoSiV1 Steel Before and After Annealing

Before AnnealingAfter AnnealingMicrostructure (Before Annealing)Microstructure (After Annealing)
Indentation Diameter/mm≈2.75≥3.9Sorbite or MartensiteGlobular pearlite + small amount of carbides
HBW≈500≤241

4.2 Hartowanie

Quenching Process Specification for 4Cr5MoSiV1 Steel

Temperatura hartowania/°CChłodzenieTwardość HRC
1020 ~ 1080Quenching CoolantQuenching Coolant Temperature/°C
Oil or Air20 ~ 60

Relationship between Quenching Temperature, Hardness, and Grain Size for 4Cr5MoSiV1 Steel

Temperatura hartowania/°C930950980100010201040106010801100
Twardość HRC50.35253.554.856.357.858.259.159.1
Grain Size/Grade11.211.111.111.1111087

3. Hartowanie

Tempering Process Specification for 4Cr5MoSiV1 Steel

CelTemperatura odpuszczania/°CEquipmentChłodzenieTempering Hardness HRC
Złagodź stres, zmniejsz twardość560 ~ 580¹Molten salt bath or air furnaceChłodzenie powietrzem47 ~ 49

Note: Usually tempered twice. The second tempering temperature is 20°C lower than the first.

Relationship between Tempering Temperature and Hardness for 4Cr5MoSiV1 Steel

Temperatura odpuszczania /°CTwardość HRCTemperatura odpuszczania /°CTwardość HRC
10059.050057.5
20057.055053.5
30054.560049.5
40054.565040.0
45057.570030.0

4. Surface Strengthening Treatment Process Specifications for 4Cr5MoSiV1 Steel

ProcesTemperatura/°CTime/hŚredniDiffusion Layer
Depth/mmMicrohardness HV
Azotowanie560250% KNO₃ + 50% NaNO₃ (mass fraction)0.04 – 0.07640 – 690
Azotowanie5808Natural Gas + Ammonia0.25835 – 860
Azotowanie530 – 55012 – 20Ammonia decomposition rate α is 30% – 60%0.12 – 0.20550 – 760

5. Właściwości mechaniczne

4Cr5MoSiV1 (H13) steel is an air-hardening hot-work tool steel. It has good toughness and high strength. Because it can be hardened in air, the quenching deformation and residual stress are small, and the tendency for surface oxidation is also small. It can produce a secondary hardening phenomenon, has good thermal stability, and can resist the erosion of molten aluminum alloy. At a working temperature below 650°C, it has high ductility, impact toughness, oxidation resistance, thermal fatigue resistance, as well as high creep strength and tensile strength.

5.1 Longitudinal Mechanical Properties at Room Temperature

Temperatura odpuszczania/°CPo hartowaniu200400500520550580600650700
Twardość HRC56545455.55452.54945.53328
Tensile Strength RM/MPa2040210020801980178016501180
Reduction of Area Z (%)40344048535455
Elongation A (%)111111.51212.51418
Impact Toughness ak/(J/cm²)403235506070100

Notatka: 1020°C oil quenching, tempered 2 times.

5.2 Fatigue Performance of 4Cr5MoSiV1 Steel

Temperatura testu/°CTemperatura pokojowa540
σ₋₁/MPa730510
σ₋₁ₖ/MPa670370

5.3 Longitudinal Impact Toughness of 4Cr5MoSiV1 Steel Bar1

Temperatura odpuszczania/°CTwardość2 Rada Praw CzłowiekaCharpy V-notch impact absorption energy/J at the following test temperatures
-73°C21°C260°C540°C595°C
524547142731
565527143034343
60747824414543
615439.524526057
  1. Air-cooled from 1010°C, and secondary tempered, tempered twice at each specified temperature.
  2. Room temperature.
  3. 565°C.

5.4 Longitudinal Tensile Properties of 4Cr5MoSiV1 Steel Bar1

Room Temp. Hardness HRCTemperatura testu/°CTensile Strength RM/MPaLower Yield Strength RM/MPaElongation after Fracture A (%)Reduction of Area Z (%)
5224251620124013.750.6
5401305100013.954
595102082517.565.4
65045034028.988.9
483425140011501559.9
540116096017.162.4
5959407501868.5
65045535033.689
444425120010051764.1
54099582020.670
59582769022.674
65045035028.487
  1. Quenched at 1010°C (1850°F) in oil, then tempered to the specified hardness.
  2. Tempered at 527°C for 2 × 2 hours.
  3. Tempered at 575°C for 2 × 2 hours.
  4. Tempered at 605°C for 2 × 2 hours.

6. Zastosowania

4Cr5MoSiV1 steel is widely used in the manufacture of hot extrusion dies and mandrels, hammer forging dies, forging press dies, precision forging dies, and die-casting molds for aluminum, copper, magnesium, and their alloys.

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