Incoloy alloy 800HT

  • Resistance to sulfidation, oxidation, & carburization
  • Better creep & rupture properties in high temperatures
  • Easily machined with standard methods
  • Resistant to corrosion & prolonged temperature exposure
  • Resistant to moderate temperature based aqueous corrosion
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Description

Overview:

Another popular member from the “800 Alloy” group, the Incoloy 800HT, is also termed as Nickel Alloy 800HT. Most of its characteristics are similar to others in the family. However, a slight change in aluminum, carbon, & titanium brings in the difference between these alloys.

The right way to understand how 800HT is different from that of 800H is to decode its chemical composition. The Incoloy 800HT tends to stay within the feature limits of 800H. However, the opposite might not be true.

Common Names:

  • UNS N08810
  • UNS N08811
  • Nr. 1.4958
  • Nr. 1.4959
  • Alloy 800HT

Executive Standards:

Bar, Rod, Wire, Forging Stock, & Forgings

  • ASTM B 408 & ASME SB 408
  • ISO 9725
  • BS 3075NA15
  • SEW 470
  • VdTÜV 412 & 434
  • DIN 17460
  • BS 3076NA15
  • ASME Code Case 1949
  • ISO 9723
  • ASTM B 564 & ASME SB 564
  • ASME Code Case 1325
  • ISO 9724
  • EN 10095

Sheet, Plate, & Strip

  • ASME SA 240/SA 480
  • ASTM B 409/B 906
  • DIN 17460
  • EN 10028-7 & EN 10095
  • ASTM A 240/A 480
  • ASME Code Case 2339
  • ASME SB 409/SB 906
  • ASME Code Case 1325
  • BS 3072NA15
  • VdTÜV 412 & 434
  • BS 3073NA15
  • SEW 470

Tube & Pipe

  • ASTM B 163
  • ASME SB 407/SB 829
  • ISO 6207
  • ASME SB 163
  • ASTM B 407/B 829
  • ASTM B 515/B 751
  • ASTM B 514/B 775
  • ASME SB 514/SB 775
  • ASME SB 515/SB 751
  • SEW 470
  • ASME Code Case 1325 & 1983
  • BS 3074NA15
  • VdTÜV 412 & 434
  • DIN 17459

Fittings

  • ASME SB 366
  • ASTM B 366

Chemical Properties:

Aluminum 0.2 Maximum
Carbon 0.05 Maximum
Chromium 19.5 to 23.5
Copper 1.5 to 3.0
Iron 22.0 Minimum
Manganese 1.0 Maximum
Molybdenum 2.5 to 3.5
Nickel 38.0 to 46.0
Sulfur 0.03 Maximum
Silicon 0.5 Maximum
Titanium 0.6 to 1.2

Mechanical Properties:

Tensile Strength Psi 77000
MPa 531
Yield Strength Psi 29000
MPa 200
Hardness Brinell 126
Elongation % 52

Physical Properties:

Density Ibs/in3 0.287
g/cm3 7.94
Elasticity Modulus Psi 28.5×106
GPa 196.5
Melting Range °F 2475 to 2525
°C 1357 to 1385
Specific Heat BTU/lb-°F 0.11
J/kg-°K 460
Thermal Conductivity BTU/hr/ft2/ft/°F 10.6
W/m-°K 18.3
Electrical Resistivity At 68°F 59.5
At 20°C 99

Key Features:

  • Corrosion Resistance: The addition of nickel & chromium to 800HT ensures excellent carburization, oxidation, & sulfidation.
  • Organic Media Resistance: This alloy also flaunts great resistance to widely found organic media components such as acetic, formic, as well as propionic acids.
  • High Heat Fabrication: Alloy 800HT is known to fabricate easily in high heat between 1200°F & 1600°F. However, anything below this leads to improper fabrication.
  • High Resistance to Creep Rupture: Incoloy 800HT has better creep-rupture resistance strength as compared to Alloy 800 given the close control for Al, Ti, & C.

Product Forms Available:

  • Bar
  • Welded Pipe
  • Seamless Pipe

Applications:

  • Industrial furnace & boiler components
  • Hydrocarbon cracking
  • Heat treatment equipment
  • Heat exchangers & pressure vessels
  • Petrochemical & chemical processing

Possible Alternative Grades:

  • Alloy 800: For industrial applications with stress-corrosion resistance, the Alloy 800 fits the bill perfectly as an alternative for 800HT.
  • Alloy 800H: This nickel-chromium-iron alloy is a great alternative for 800HT and packs in high resistance from creep rupture that might occur during welding processes.

Frequently Asked Questions:

  • How are high-speed operations performed with Alloy 800HT?

Grinding, Milling, or Turning, the high-speed operations are generally performed for Alloy 800HT with the use of water-based coolants.

  • What is the use of heavy lubricants in the Alloy 800HT machining process?

Machining operations like drilling, tapping, broaching, or boring are generally performed for alloy 800HT with the use of heavy lubricants.

  • How is welding done with alloy 800HT?

Welding for Alloy 800HT is done with the help of shielded metal-arc, gas metal-arc, gas-tungsten arc, and submerged-arc.

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