24/7 Service: +1-215-464-7100

Stainless Steel Plate

304/304L Stainless Steel Plate – High-Performance Corrosion-Resistant Alloy

Most Widely Used Austenitic Stainless Steel, a Versatile Corrosion Resistant Alloy for General Purpose Applications.

Available thicknesses for Alloy 304/304L:

3/16"1/4"5/16"3/8"7/16"1/2"9/16"5/8"3/4"7/8"1"1 1/8"
4.8mm6.3mm7.9mm9.5mm11.1mm12.7mm14.3mm15.9mm19mm22.2mm25.4mm28.6mm
1 1/4"1 3/8"1 1/2"1 5/8"1 3/4"2"2 1/4"2 1/2"2 3/4"3"3 1/4"3 1/2"
31.8mm34.9mm38.1mm41.3mm44.5mm50.8mm57.2mm63.5mm69.9mm76.2mm82.6mm88.9mm
3 3/4"4"4 1/4"4 1/2"4 3/4"5"5 1/4"5 1/2"5 3/4"6"
95.3mm101.6mm108mm114.3mm120.7mm127mm133.4mm139.7mm146.1mm152.4mm

Alloy 304/304L (UNS S30400/S30403) is the most widely utilized “18-8” chromium-nickel austenitic stainless steel. It is an economical and versatile corrosion resistant alloy suitable for a wide range of general purpose applications.

It is common practice for 304L to be dual certified as 304 and 304L. The low carbon chemistry of 304L combined with an addition of nitrogen enables 304L to meet the mechanical properties of 304.

Alloy 304/304L resists atmospheric corrosion, as well as, moderately oxidizing and reducing environments. The alloy has excellent resistance to intergranular corrosion in the as-welded condition. Alloy 304/304L has excellent strength and toughness at cryogenic temperatures.

Alloy 304/304L is non-magnetic in the annealed condition, but can become slightly magnetic as a result of cold working or welding. It can be easily welded and processed by standard shop fabrication practices.

Specification Sheet Overview

for Alloy 304/304L (UNS S30400, S30403)
W. Nr. 1.4301, 1.4307:

200/201 Stainless Steel Company

Applications

Standards

ASTM……..A 240
ASME……..SA 240
AMS……….5511/5513
QQ-S……..766

Corrosion Resistance

Alloy 304/304L has good resistance to atmospheric corrosion, foods and beverages and to many organic and inorganic chemicals in moderately oxidizing to moderately reducing environments. The high chromium content of the alloy provides resistance to oxidizing solutions such as nitric acid up to 55% weight and up to 176°F (80°C).

Alloy 304/304L also resists moderately aggressive organic acids such as acetic. The nickel present in the alloy provides resistance to moderately reducing solutions such as pure phosphoric acid, whatever the concentration, in cold solutions and up to 10% diluted hot solutions. The alloy can also operate successfully in caustic solutions free of chlorides or Alloy 304/304L does not perform well in more highly reducing environments such as those containing chlorides and sulfuric acid.

Alloy 304/304L performs well in fresh water service with low levels of chlorides (less than 100ppm). At higher chloride levels the grade is susceptible to crevice corrosion and pitting. For successful performance under these more severe conditions, higher molybdenum content is need such as 316/316L. Alloy 304/304L is not recommended for service in marine environments.

In most instances, the corrosion resistance of Alloys 304, 304L and 304H will be roughly equal in most corrosive environments. However, in environments that are sufficiently corrosive to cause intergranular corrosion of welds and heat-affected zones Alloy 304L should be used because of its low carbon content.

Lowest Temperature (°F) at Which the Corrosion Rate Exceeds 5mpy

CORROSION ENVIRONMENTType 304/304HType 316L2205 (UNS S32205)2507
0.2% Hydrochloric Acid>Boiling>Boiling>Boiling>Boiling
1% Hydrochloric Acid86p86185>Boiling
10% Sulfuric Acid122140167
60% Sulfuric Acid<54<59<57
96% Sulfuric Acid1137786
85% Phosphoric Acid176203194203
10% Nitric Acid>Boiling>Boiling>Boiling>Boiling
65% Niitric Acid212212221230
80% Acetic Acid212p>Boiling>Boiling>Boiling
50% Formic Acid≤50104194194
50% Sodium Hydroxide185194194230
83% Phosphoric Acid + 2% Hydrofluoric Acid113149122140
60% Nitric Acid + 2% Hydrocloric Acid>140>140>140>140
50% Acetic Acid + 50% Acetic Anhydride>Boiling248212230
1% Hydrochloric Acid + 0.3% Ferric Chloride68p77p113ps203ps
10% Sulfuric Acid + 2000ppm Cl- + N27795122
10% Sulfuric Acid + 2000ppm Cl- + SO2<<59p<59104
WPA1, High Cl- Content<<50≤50113203
WPA2, High F- Content<<50≤50140167

ps = pitting can occur
ps = pitting/crevice corrosion can occur

WPAP2O5CL-F-H2SO4Fe2O3Al2O3SiO2CaOMgO
1540.200.504.00.300.200.100.200.70
2540.022.04.00.300.200.100.200.70

Chemical Analysis

Weight % (all values are maximum unless a range is otherwise indicated)

Element304304L
Chromium18.0 min.-20.0 max.18.0 min.-20.0 max.
Nickel8.0 min.-10.5 max.8.0 min.-12.0 max.
Carbon0.080.030
Manganese2.002.00
Phosphorus0.0450.045
Sulfer0.0300.030
Silicon0.750.75
Nitrogen0.100.10
IronBalanceBalance

Physical Properties

Density

0.285 lbs/in3
7.90 g/cm3

Specific Heat

0.12 BTU/lb-°F (32 – 212°F)
500 J/kg-°K (0 – 100°C)

Modulus of Elasticity

29.0 x 106 psi
200 GPa

Thermal Conductivity 212°F (100°C)

9.4 BTU/hr/ft2/ft/°F
16.3 W/m-°K

Melting Range

25050 – 2590°F
1398 – 1421°C

Electrical Resistivity

29.1 Microhm-in at 68°C
74 Microhm-cm at 20°C

Mean Coefficient of Thermal Expansion

Temperature Range
°F°Cin/in °Fcm/cm °C
68-21220-1009.2 x 10-616.6 x 10-6
68-93220-50010.0 x 10-618.0 x 10-6
68-160020-87011.0 x 10-619.8 x 10-6

Mechanical Properties

ASTM
Typical*Type 304Type 304H
0.2% Offset Yield Strength, ksi4230 min.25 min.
Ultimate Tensile Strength, ksi8775 min.70 min.
Elongation in 2 inches, %5840 min.40 min.
Reduction in Area, %70
Hardness, Rockwell B8292 max.92 max.

*0.375 inch plate

Fabrication Data

Alloy 304/304L can be easily welded and processed by standard shop fabrication practices.

Hot Forming

Working temperatures of 1652–2102°F (750–1150°C) are recommended for most hot working processes. For maximum corrosion resistance, the material should be annealed at 1900°F (1038°C) minimum and water quenched or rapidly cooled by other means after hot working.

Cold Forming

The alloy is quite ductile and forms easily. Cold working operations will increase the strength and hardness of the alloy and might leave it slightly magnetic.

Machining

Alloy 304/304L is subject to work hardening during deformation and is subject to chip breaking. The best machining results are achieved with slower speeds, heavier feeds, excellent lubrication, sharp tooling and powerful rigid equipment.

OperationToolLubrication
CONDITIONS
Depth-mmDepth-inFeed-mm/tFeed-in/tSpeed-m/minSpeed-ft/min
TurningHigh Speed SteelCutting Oil6.230.5.01913-1842.6-59
TurningHigh Speed SteelCutting Oil3.110.4.01620-2565.6-82
TurningHigh Speed SteelCutting Oil1.040.2.00826-3185.3-101.7
TurningCarbideDry or Cutting Oil6.230.5.01975-85246-278.9
TurningCarbideDry or Cutting Oil3.110.4.01690-100295.3-328.1
TurningCarbideDry or Cutting Oil1.040.2.008110-120360.8-393.7
Depth of cut-mmDepth of cut-inFeed-mm/tFeed-in/tSpeed-m/minSpeed-ft/min
CuttingHigh Speed SteelCutting Oil1.5.060.03-0.05.0012-.002018-2359-75.5
CuttingHigh Speed SteelCutting Oil3.110.04-0.06.0016-.002419-2462.3-78.7
CuttingHigh Speed SteelCutting Oil6.230.05-0.07.0020-.002720-2565.6-82
Drill ø mmDrill ø inFeed-mm/tFeed-in/tSpeed-m/minSpeed-ft/min
DrillingHigh Speed SteelCutting Oil1.5.060.02-0.03.0007-.001210-1432.8-45.9
DrillingHigh Speed SteelCutting Oil3.110.05-0.06.0020-.002412-1639.3-52.5
DrillingHigh Speed SteelCutting Oil6.230.08-0.09.0031-.003512-1639.3-52.5
DrillingHigh Speed SteelCutting Oil12.480.09-0.10.0035-.003912-1639.3-52.5
Feed-mm/tFeed-in/tSpeed-m/minSpeed-ft/min
Milling ProfilingHigh Speed SteelCutting Oil0.05-0.10.002-.00412-2239.4-72.2

 

Welding

Alloy 304/304L can be readily welded by most standard processes. A post weld heat treatment is not necessary.

NOTE: The information and data in this product data sheet are accurate to the best of our knowledge and belief, but are intended for informational purposes only, and may be revised at any time without notice. Applications suggested for the materials are described only to help readers make their own evaluations and decisions, and are neither guarantees nor to be construed as express or implied warranties of suitability for these or other applications. Stainless Steel, Nickel Alloy and Titanium products are classified as sheet if the thickness of the metals is less than 3/16” (4.7mm). If the thickness of the metal is 3/16” (4.7mm) or more, then it is considered a plate.
Top