Stainless Steel Plate Sheet 410

Sandmeyer Steel Company stocks Alloy 410 stainless steel plate in thicknesses from 3/16" through 4". We also stock 410S stainless steel plate, the restricted carbon version of 410 stainless steel plate, in thicknesses from 3/16" through 3". We are known for having the world's largest inventory of 410 stainless steel plate.

Available thicknesses for Alloy 410:

3/16" 1/4" 5/16" 3/8" 1/2" 5/8" 3/4" 7/8" 1" 1 1/8" 1 1/4" 1 3/8"
4.8mm 6.3mm 7.9mm 9.5mm 12.7mm 15.9mm 19mm 22.2mm 25.4mm 28.6mm 31.8mm 34.9mm
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" 3 3/4" 4"
38.1mm 41.3mm 44.5mm 50.8mm 57.2mm 63.5mm 69.9mm 76.2mm 82.6mm 88.9mm 95.3mm 101.6mm
Alloy 410 stainless steel plate is the general purpose 12% chromium martensitic stainless steel that can be heat treated to obtain a wide range of mechanical properties. 410 stainless steel plate possesses high strength and hardness coupled with good corrosion resistance. Alloy 410 stainless steel plate is ductile and can be formed. It is magnetic in all conditions.

General Properties


Alloy 410 (UNS S41000) is a 12% chromium martensitic stainless steel plate that can be heat treated to obtain a wide range of mechanical properties. The alloy has good corrosion resistance along with high strength and hardness. In the annealed condition, 410 stainless steel plate is ductile and may be formed. It remains magnetic in both the annealed and heat treated conditions.

Applications

  • Cutlery
  • Petroleum Refining and Petrochemical Processing Equipment
  • Ore Processing
  • Sugar Processing
  • Gate valves
  • Press plates

Standards

ASTM........A 240
ASME........SA 240
AMS...........5504

Corrosion Resistance

Alloy 410 stainless steel plate is resistant to atmospheric conditions, water and some chemicals. It can be used in environments containing weak or diluted acetic acid, naptha, nitric acid and sulfuric acid. The alloy is also resistant to acids contained in foods.

410 stainless steel plate can also be used in slightly chlorinated and desaereted water. It performs well in oil and gas applications where desaereted and low hydrogen sulfide exist. However, the alloy is prone to chloride attack, particularly in oxidizing conditions.

410 stainless steel plate stainless steel plate operates well in environments requiring moderate corrosion resistance and high mechanical properties.

Oxidation Resistance

Alloy 410 stainless steel plate resists oxidation up to 1292°F (700°C) continuously, and up to 1500°F (816°C) on an intermittent basis.

Chemical Analysis

Weight % (all values are maximum unless a range is otherwise indicated)
       
Chromium 11.5 min.-13.5 max. Phosphorus 0.04
Nickel 0.75 Sulfur 0.03
Carbon 0.08 min.-0.15 max. Silicon 1.0
Manganese 1.0 Iron Balance

Physical Properties

  • Density

    0.28 lbs/in3
    7.74 g/cm3

  • Specific Heat

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

  • Modulus of Elasticity

    29.0 x 106 psi
    200 GPa

  • Thermal Conductivity 200°F (100°C)

    14.4 BTU/hr/ft2/ft/°F
    24.9 W/m-°K

  • Melting Range

    2700 – 2790°F
    1480 – 1530°C

  • Electrical Resistivity

    22.50 Microhm-cm at 68°C
    57 Microhm-cm at 20°C

Mechanical Properties

Typical Values at 68°F (20°C)
Yield Strength
0.2% Offset
Ultimate Tensile
Strength
Elongation
in 2 in.
Hardness
psi (MPa) psi (MPa) % (max.)
42,000 290 74,000 510 34 96 Rb

Fabrication Data

Heat Treatment

Annealing – Heat slowly to 1500 – 1650°F (816 – 899°C), cool to 1100oF (593°C) in furnace, air cool
Process Annealing – Heat to 1350 – 1450°F (732 – 788°C), air cool
Hardening – Heat to 1700 – 1850°F (927 – 1010°C), air cool or oil quench. Follow by stress-relief or temper
Stress Relieving – Heat to 300 – 800°F (149 – 427°C) for 1 to 2 hours, air cool
Tempering – Heat to 1100 – 1400°F (593 – 760°C) for 1 to 4 hours, air cool

Cold Forming

The alloy can be cold worked with moderate forming in the annealed condition.

Hot Forming

It is typically done in the 1382 – 2102°F (750 – 1150°C) range followed by air cooling. For smaller plate deformation such as bending, preheating should be done in the 212 – 572°F (100 – 300°C) temperature range. If a plate undergoes substantial deformation it should undergo a re-anneal or stress-relieving treatment at about 1202°F (650°C).

Machining

Alloy 410 stainless steel plate is best machined in the annealed condition at surface speeds of 60 – 80 feet (18.3 – 24.4m) per minute. Post machining decontamination and passivation are recommended.

 

Welding

Alloy 410 stainless steel plate is best machined in the annealed condition at surface speeds of 60 – 80 feet (18.3 – 24.4m) perDue to its martensitic structure, Alloy 410 stainless steel plate has limited weldability because of its hardenability. A post-weld heat treatment should be considered to assure the attainment of the required properties. When weld filler is needed, AWS E/ER 410, 410 NiMo and 309L are the most widely specified.minute. Post machining decontamination and passivation are recommended.

Get Information