What are the production processes for DX54D steel?

Dec 31, 2025 Leave a message

DX54D Steel

 

DX54D is a hot-dip coated deep-drawing steel in the DX series, valued for high formability. Made of low-carbon steel, it's ideal for cold forming. "DX" denotes the series, "54" the formability grade, and "D" the deep-drawing quality. Both DX54D and DX53D are automotive steels, but DX54D has higher formability, making it better for complex shapes. DX54D (equivalent to FeP06G, steel number 1.0952) is used in automotive panels and appliance housings, with corrosion resistance for outdoor or moist conditions.

 

DX54D Steel

Production Processes of DX54D Steel

 

Throughout the entire production process, we strictly control every link to ensure that each batch of products meets the highest quality standards, ensuring the reliability and durability of our DX54D steel, so you can rest assured.

 

Smelting process: First, we melt and refine the raw materials to ensure that the chemical composition of the molten steel meets the required quality standards.

Hot rolling process: Next, the molten steel is cast into billets and hot rolled at a high temperature of about 1200°C. This step is mainly to reduce the thickness of the steel and improve its properties.

Cold rolling process: After hot rolling, the steel is cold rolled to further reduce the thickness, while improving the surface finish and precision to ensure that the finished product is more accurate in size.

Continuous annealing: To reduce the internal stress generated during the cold rolling process, we will heat the steel to 700-800°C for annealing, which can enhance the ductility of the steel and make it easier to process.

Galvanizing treatment: Finally, to improve the corrosion resistance of the steel, we use a hot dip galvanizing process to immerse the steel in molten zinc at 450-460°C to form a zinc coating to effectively prevent rust.

DX54D Steel

Chemical Composition of DX54D Steel

 

Element Content (%)
Carbon, C 0.08 max
Manganese, Mn 0.45 max
Phosphorus, P 0.03 max
Sulfur, S 0.03 max
Silicon, Si 0.50 max
Aluminum, Al 0.02-0.07
Nitrogen, N 0.012 max
Titanium, Ti 0.30 max
Chromium, Cr 0.20 max
Nickel, Ni 0.20 max
Copper, Cu 0.20 max

 

Low Carbon (C): Ensures ductility and ease in deep drawing without compromising strength.

Controlled Manganese (Mn): Enhances strength and toughness.

Low Phosphorus (P) and Sulfur (S): Improves weldability and reduces brittleness.

Aluminum (Al): Acts as a deoxidizer, improving surface quality.

Titanium (Ti): Increases stability in forming, reducing cracks and defects during shaping.

 

Mechanical Properties of DX54D Steel

 

Property Metric Imperial
Tensile Strength 270 – 370 MPa 39 – 54 ksi
Yield Strength 120 – 220 MPa 17 – 32 ksi
Brinell Hardness 90 – 120 HB 90 – 120 HB
Rockwell Hardness 50 – 65 HRB 50 – 65 HRB
Vickers Hardness 100 – 130 HV 100 – 130 HV
Elongation ≥ 36% ≥ 36%
Elastic Modulus 210 GPa 30,500 ksi
Anisotropy (R-Value, Min) ≥ 1.6 ≥ 1.6
Strain Hardening Index (n-Value, Min) ≥ 0.18 ≥ 0.18

 

Moderate Tensile and Yield Strength: Provides enough strength for durability without sacrificing formability, suitable for automotive and appliance parts.

High Elongation: Allows significant stretching, enabling complex shapes without cracking.

Good Anisotropy (R-Value): Ensures consistent properties in different directions, reducing defects in deep-drawn parts.

Stable Strain Hardening Index (n-Value): Supports gradual deformation, which helps maintain structural integrity during shaping.

 

Standard

Grade

C

Si

Mn

P

S

Ti

Forcold Forming

Chinese Standard

DX51D+Z

0.12

0.50

0.60

0.100

0.045

0.30

DX52D+Z

0.12

0.50

0.60

0.100

0.045

0.30

DX53D+Z

0.12

0.50

0.60

0.100

0.045

0.30

DX54D+Z

0.12

0.50

0.60

0.100

0.045

0.30

DX56D+Z

0.12

0.50

0.60

0.100

0.045

0.30

DX57D+Z

0.12

0.50

0.60

0.100

0.045

0.30

Forcold Forming

Japanese Standard

SGCC

0.15

0.50

0.80

0.050

0.030

0.025

SGCD1
SGCD2

0.12
0.10

0.50
0.50

0.60
0.45

0.040
0.030

0.030
0.030

0.025
0.025

SGCD3

0.08

0.50

0.45

0.030

0.030

0.025

SGCD4

0.06

0.50

0.45

0.030

0.030

0.025

For Structure

Japanese Standard

SGC340

0.25

0.50

1.70

0.200

0.035

0.025

SGC400
SGC440

0.25
0.25

0.50
0.50

1.70
2.00

0.200
0.200

0.035
0.035

0.150
0.150

SGC490

0.30

0.50

2.00

0.200

0.035

0.025

SGC510

0.30

0.50

2.50

0.200

0.035

0.025

For Structure

AISI Standard

S220GD+Z

0.20

0.60

0.70

0.100

0.045

0.025

S250GD+Z

0.20

0.60

0.70

0.100

0.045

0.025

S280GD+Z

0.20

0.60

0.70

0.100

0.045

0.025

S320GD+Z

0.20

0.60

0.70

0.100

0.045

0.025

S350GD+Z

0.20

0.60

0.70

0.100

0.045

0.150

S550GD+Z

0.20

0.60

0.70

0.100

0.045

0.150

 

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