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Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength

Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength

MOQ: 50
Price: 2.25
Detail Information
Certification
ISO, AISI
Model NO.:
2304 S32304
Shape:
Flat
Technique:
Hot Rolled
Surface Treatment:
Pickling
Specification:
1220*2440, 1500*3000, 1500*6000, 2000*6000mm
Production Capacity:
50000kgs
Carbon Content:
0.020%
Chromium Content:
23%
Nickel Content:
4%
Molybdenum Content:
0.2%
Nitrogen Content:
0.1%
Density:
7,800 Kg/m3
Yield Strength:
400 MPa
Tensile Strength:
600 MPa
Elongation:
25%
Highlight:

Corrosion Resistant Alloy 2304 Duplex Stainless Steel Plate

,

High Yield Strength S32304 Steel Plate

,

Hot Rolled Stainless Steel Plate

Product Description
Alloy 2304 Duplex Stainless Steel Plate S32304
Alloy 2304 (UNS S32304) is a 23% chromium, 4% nickel, molybdenum-free duplex stainless steel. This alloy offers corrosion resistance properties comparable to 316L stainless steel, while providing mechanical properties with yield strength approximately twice that of 304L/316L austenitic grades. These enhanced mechanical characteristics enable significant weight savings in properly designed pressure vessel applications.
Chemical Composition
Typical Values (Weight %)
Carbon Chromium Nickel Molybdenum Nitrogen Others
0.020 23 4 0.2 0.1 S=0.001
PREN = [Cr%] = 3.3 [Mo%] = 16 [N%] ≥ 24
Mechanical Properties
Tensile Properties (Minimum Values)
°C Rp 0.2 MPa Rp 1.0 MPa UTS MPa °F YS 0.2% Offset KSI YS 0.1% Offset KSI UTS KSI Elongation %
20 400 440 600 68 58 64 87 25
100 330 365 570 212 48 53 83 25
200 280 310 530 392 41 45 77 20
300 230 260 490 572 33 38 71 20
Values obtained for hot rolled plates (th ≤ 2"). Alloy 2304 must not be used for extended periods at temperatures exceeding 300°C (572°F) due to precipitation hardening.
Toughness Values (KCV Minimum Values)
Temp. -50°C +20°C -60°F +70°F
Single 75 J/cm² 90 J/cm² 54 ft. lbs 65 ft. lbs
Average (5) 90 J/cm² 150 J/cm² 65 ft. lbs 87 ft. lbs
Hardness (Typical Values)
Average (5) HV10 HB HRC
180-230 180-230 ≤ 20
Physical Properties
Density: 7,800 kg/m³ - 0.28 lb/in³
Interval Temp. °C Thermal expansion ax10⁻⁶K⁻¹ °C Resistivity (μΩ·cm) Thermal conductivity (W·m⁻¹·K⁻¹) Specific heat (J·kg⁻¹·K⁻¹) Young modulus E (GPa) Shear modulus G (GPa)
20-100 13 20 80 17 450 200 75
20-100 13 100 92 18 500 190 73
20-200 13.5 200 100 19 530 180 70
20-300 14 300 105 20 560 170 67
Microstructure
The chemical composition of Alloy 2304 is optimized to achieve a typical 50% austenite / 50% ferrite microstructure following solution annealing treatment at 950°-1050°C (1742°-1922°F). The microstructure demonstrates exceptional stability compared to molybdenum-containing duplex stainless steels, with intermetallic phases appearing only after 10 hours of holding time in the 750°-850°C (1382°-1562°F) temperature range. Copper additions, when specified, enhance hardness after heat treatment in the 350°-500°C (662°-932°F) range.
Processing Guidelines
Hot Forming
Hot forming operations should be conducted within the 1150°-900°C (2100°-1650°F) temperature range. Following forming, a subsequent solution annealing treatment at 950°-1050°C (1742°-1922°F) is recommended to fully restore corrosion resistance and mechanical properties. Components formed with Alloy 2304 require careful support during heating to prevent creep deformation.
Cold Forming
Alloy 2304 demonstrates excellent cold forming capabilities using equipment identical to that employed for 304L and 316L grades. Due to its superior mechanical properties and higher yield strength, increased forming stresses are necessary. A final solution annealing heat treatment is advised after cold forming to restore optimal mechanical and corrosion resistance properties.
Descaling
Utilize the same solutions and pastes as employed for Alloys 304L/316L. Pickling times will be extended compared to austenitic grades due to the enhanced corrosion resistance properties of this alloy.
Machinability
Alloy 2304 duplex exhibits improved machinability characteristics, particularly in drilling operations. Its performance is equivalent to 316LEZ*, while offering superior corrosion resistance and cleanliness properties without requiring sulphur additions. This results in enhanced localized corrosion resistance behavior.
Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength 0 Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength 1 Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength 2
Products
PRODUCTS DETAILS
Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength
MOQ: 50
Price: 2.25
Detail Information
Certification
ISO, AISI
Model NO.:
2304 S32304
Shape:
Flat
Technique:
Hot Rolled
Surface Treatment:
Pickling
Specification:
1220*2440, 1500*3000, 1500*6000, 2000*6000mm
Production Capacity:
50000kgs
Carbon Content:
0.020%
Chromium Content:
23%
Nickel Content:
4%
Molybdenum Content:
0.2%
Nitrogen Content:
0.1%
Density:
7,800 Kg/m3
Yield Strength:
400 MPa
Tensile Strength:
600 MPa
Elongation:
25%
Minimum Order Quantity:
50
Price:
2.25
Highlight

Corrosion Resistant Alloy 2304 Duplex Stainless Steel Plate

,

High Yield Strength S32304 Steel Plate

,

Hot Rolled Stainless Steel Plate

Product Description
Alloy 2304 Duplex Stainless Steel Plate S32304
Alloy 2304 (UNS S32304) is a 23% chromium, 4% nickel, molybdenum-free duplex stainless steel. This alloy offers corrosion resistance properties comparable to 316L stainless steel, while providing mechanical properties with yield strength approximately twice that of 304L/316L austenitic grades. These enhanced mechanical characteristics enable significant weight savings in properly designed pressure vessel applications.
Chemical Composition
Typical Values (Weight %)
Carbon Chromium Nickel Molybdenum Nitrogen Others
0.020 23 4 0.2 0.1 S=0.001
PREN = [Cr%] = 3.3 [Mo%] = 16 [N%] ≥ 24
Mechanical Properties
Tensile Properties (Minimum Values)
°C Rp 0.2 MPa Rp 1.0 MPa UTS MPa °F YS 0.2% Offset KSI YS 0.1% Offset KSI UTS KSI Elongation %
20 400 440 600 68 58 64 87 25
100 330 365 570 212 48 53 83 25
200 280 310 530 392 41 45 77 20
300 230 260 490 572 33 38 71 20
Values obtained for hot rolled plates (th ≤ 2"). Alloy 2304 must not be used for extended periods at temperatures exceeding 300°C (572°F) due to precipitation hardening.
Toughness Values (KCV Minimum Values)
Temp. -50°C +20°C -60°F +70°F
Single 75 J/cm² 90 J/cm² 54 ft. lbs 65 ft. lbs
Average (5) 90 J/cm² 150 J/cm² 65 ft. lbs 87 ft. lbs
Hardness (Typical Values)
Average (5) HV10 HB HRC
180-230 180-230 ≤ 20
Physical Properties
Density: 7,800 kg/m³ - 0.28 lb/in³
Interval Temp. °C Thermal expansion ax10⁻⁶K⁻¹ °C Resistivity (μΩ·cm) Thermal conductivity (W·m⁻¹·K⁻¹) Specific heat (J·kg⁻¹·K⁻¹) Young modulus E (GPa) Shear modulus G (GPa)
20-100 13 20 80 17 450 200 75
20-100 13 100 92 18 500 190 73
20-200 13.5 200 100 19 530 180 70
20-300 14 300 105 20 560 170 67
Microstructure
The chemical composition of Alloy 2304 is optimized to achieve a typical 50% austenite / 50% ferrite microstructure following solution annealing treatment at 950°-1050°C (1742°-1922°F). The microstructure demonstrates exceptional stability compared to molybdenum-containing duplex stainless steels, with intermetallic phases appearing only after 10 hours of holding time in the 750°-850°C (1382°-1562°F) temperature range. Copper additions, when specified, enhance hardness after heat treatment in the 350°-500°C (662°-932°F) range.
Processing Guidelines
Hot Forming
Hot forming operations should be conducted within the 1150°-900°C (2100°-1650°F) temperature range. Following forming, a subsequent solution annealing treatment at 950°-1050°C (1742°-1922°F) is recommended to fully restore corrosion resistance and mechanical properties. Components formed with Alloy 2304 require careful support during heating to prevent creep deformation.
Cold Forming
Alloy 2304 demonstrates excellent cold forming capabilities using equipment identical to that employed for 304L and 316L grades. Due to its superior mechanical properties and higher yield strength, increased forming stresses are necessary. A final solution annealing heat treatment is advised after cold forming to restore optimal mechanical and corrosion resistance properties.
Descaling
Utilize the same solutions and pastes as employed for Alloys 304L/316L. Pickling times will be extended compared to austenitic grades due to the enhanced corrosion resistance properties of this alloy.
Machinability
Alloy 2304 duplex exhibits improved machinability characteristics, particularly in drilling operations. Its performance is equivalent to 316LEZ*, while offering superior corrosion resistance and cleanliness properties without requiring sulphur additions. This results in enhanced localized corrosion resistance behavior.
Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength 0 Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength 1 Alloy 2304 Duplex Stainless Steel Plate S32304 Hot Rolled Corrosion Resistant High Yield Strength 2