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Alloy 310 / 310S / 310H Stainless Steel Bar Black / Smooth / Bright Surface

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SHANGHAI UNITE STEEL

Alloy 310 / 310S / 310H Stainless Steel Bar Black / Smooth / Bright Surface

Country/Region china
City & Province shanghai shanghai
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Product Details

Alloy 310 / 310S / 310H stainless steel round bar, stainless steel bar, small MOQ

 

Applications

  • Cryogenic Components
  • Food Processing
  • Furnaces – burners, doors, fans, piping and recuperators
  • Fluidized Bed Furnaces – coal combustors, grids, piping, wind boxes
  • Ore Processing/Steel Plants – smelter and steel melting equipment, continuous casting equipment
  • Petroleum Refining – catalytic recovery systems, flares, recuperators, tube hangers
  • Power Generation – coal gasifier internals, pulverized coal burners, tube hangers
  • Sintering/Cement Plants – burners, burner shields, feeding and discharging systems, wind boxes
  • Thermal Processing – annealing covers and boxes, burner grids, doors, fans, muffles and retorts, recuperators, walking beams

Standards

ASTM........A 240
ASME........SA 240
AMS..........5521

 

Alloy 310 is not designed for service in wet corrosive environments. The high carbon content, which is present to enhance creep properties, has a detrimental effect on aqueous corrosion resistance. The alloy is prone to intergranular corrosion after long term exposure at high temperatures. However, due to its high chromium content (25%), Alloy 310 is more corrosion resistant than most heat resistant alloys.

High Temperature Corrosion
The high chromium (25%) and silicon (0.6%) content of Alloy 310 make it more resistant to high temperature corrosion in most in-service environments. Operating temperatures are listed below.

Oxidizing conditions (max sulfur content – 2 g/m3)
1922°F (1050°C) continuous service
2012°F (1100°C) peak temperature

Oxidizing conditions (max sulfur greater than 2 g/m3)
1742°F (950°C) maximum temperature

Low oxygen atmosphere (max sulfur content – 2 g/m3)
1832°F (1000°C) maximum temperature

Nitriding or carburizing atmospheres
1562 – 1742°F (850 – 950°C) maximum

The alloy does not perform as well as Alloy 600 (UNS N06600) or Alloy 800 (UNS N08800) in reducing, nitriding or carburizing atmospheres, but it does outperform most heat resistant stainless steels in these conditions.

 

Typical Creep Properties

TemperatureCreep Strain (MPa)Creep Rupture (MPa)
°C°F1000 H10000 H100000 H1000 H10000 H100000 H
60011121201004020014080
7001292503520804520
80014722010835208
9001652106315105
10001832531.5942

Chemical Analysis

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

Element310310S310H
Chromium24.0 min.-26.0 max.24.0 min.-26.0 max.24.0 min.-26.0 max.
Nickel19.0 min.-22.0 max.19.0 min.-22.0 max.19.0 min.-22.0 max.
Carbon0.250.080.40 min. - 0.10 max.
Manganese2.002.002.00
Phosphorus0.0450.0450.045
Sulfer0.0300.0300.030
Silicon1.501.500.75
IronBalanceBalanceBalance

 

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